materials Exploiting Friedel pairs to interpret scanning 3DXRD data from complex geological materials By journals.iucr.org Published On :: A new processing technique for synchrotron scanning 3D X-ray diffraction data is introduced, utilizing symmetric Bragg reflections hkl and hkl, known as Friedel pairs. This technique is designed to tackle the difficulties associated with large, highly deformed, polyphase materials, especially geological samples. Full Article text
materials RAPID, an ImageJ macro for indexing electron diffraction zone axis spot patterns of cubic materials By journals.iucr.org Published On :: RAPID (RAtio method Pattern InDexing) is an ImageJ macro script developed for the quick determination of sample orientation and indexing of calibrated and uncalibrated zone axis aligned electron diffraction patterns from materials with a cubic crystal structure. In addition to SAED and NBED patterns, the program is also capable of handling zone axis TEM Kikuchi patterns and FFTs derived from HR(S)TEM images. The software enables users to rapidly determine whether materials are cubic, pseudo-cubic, or non-cubic, and to distinguish between P, I, and F Bravais lattices. It can also provide lattice parameters for material verification and aid in determining the camera constant of the instrument, thus making the program a convenient tool for on-site crystallographic analysis in the TEM laboratory. Full Article text
materials Exploiting Friedel pairs to interpret scanning 3DXRD data from complex geological materials By journals.iucr.org Published On :: 2024-11-08 The present study introduces a processing strategy for synchrotron scanning 3D X-ray diffraction (s3DXRD) data, aimed at addressing the challenges posed by large, highly deformed, polyphase materials such as crystalline rocks. Leveraging symmetric Bragg reflections known as Friedel pairs, our method enables diffraction events to be precisely located within the sample volume. This method allows for fitting the phase, crystal structure and unit-cell parameters at the intra-grain scale on a voxel grid. The processing workflow incorporates several new modules, designed to (i) efficiently match Friedel pairs in large s3DXRD datasets containing up to 108 diffraction peaks; (ii) assign phases to each pixel or voxel, resolving potential ambiguities arising from overlap in scattering angles between different crystallographic phases; and (iii) fit the crystal orientation and unit cell locally on a point-by-point basis. We demonstrate the effectiveness of our technique on fractured granite samples, highlighting the ability of the method to characterize complex geological materials and show their internal structure and mineral composition. Additionally, we include the characterization of a metal gasket made of a commercial aluminium alloy, which surrounded the granite sample during experiments. The results show the effectiveness of the technique in recovering information about the internal texture and residual strain of materials that have undergone high levels of plastic deformation. Full Article text
materials Combination of XEOL, TR-XEOL and HB-T interferometer at the TPS 23A X-ray nanoprobe for exploring quantum materials By journals.iucr.org Published On :: 2024-01-19 In this study, a combination of X-ray excited optical luminescence (XEOL), time-resolved XEOL (TR-XEOL) and the Hanbury-Brown and Twiss (HB-T) interferometer at the Taiwan Photon Source (TPS) 23A X-ray nanoprobe beamline for exploring quantum materials is demonstrated. On the basis of the excellent spatial resolution rendered using a nano-focused beam, emission distributions of artificial micro-diamonds can be obtained by XEOL maps, and featured emission peaks of a selected local area can be obtained by XEOL spectra. The hybrid bunch mode of the TPS not only provides a sufficiently high peak power density for experiments at each beamline but also permits high-quality temporal domain (∼200 ns) measurements for investigating luminescence dynamics. From TR-XEOL measurements, the decay lifetime of micro-diamonds is determined to be approximately 16 ns. Furthermore, the XEOL spectra of artificial micro-diamonds can be investigated by the HB-T interferometer to identify properties of single-photon sources. The unprecedented strategy of combining XEOL, TR-XEOL and the HB-T interferometer at the X-ray nanoprobe beamline will open new avenues with significant characterization abilities for unraveling the emission mechanisms of single-photon sources for quantum materials. Full Article text
materials ForMAX – a beamline for multiscale and multimodal structural characterization of hierarchical materials By journals.iucr.org Published On :: 2024-02-22 The ForMAX beamline at the MAX IV Laboratory provides multiscale and multimodal structural characterization of hierarchical materials in the nanometre to millimetre range by combining small- and wide-angle X-ray scattering with full-field microtomography. The modular design of the beamline is optimized for easy switching between different experimental modalities. The beamline has a special focus on the development of novel fibrous materials from forest resources, but it is also well suited for studies within, for example, food science and biomedical research. Full Article text
materials Hyperspectral full-field quick-EXAFS imaging at the ROCK beamline for monitoring micrometre-sized heterogeneity of functional materials under process conditions By journals.iucr.org Published On :: 2024-08-23 Full-field transmission X-ray microscopy has been recently implemented at the hard X-ray ROCK–SOLEIL quick-EXAFS beamline, adding micrometre spatial resolution to the second time resolution characterizing the beamline. Benefiting from a beam size versatility due to the beamline focusing optics, full-field hyperspectral XANES imaging has been successfully used at the Fe K-edge for monitoring the pressure-induced spin transition of a 150 µm × 150 µm Fe(o-phen)2(NCS)2 single crystal and the charge of millimetre-sized LiFePO4 battery electrodes. Hyperspectral imaging over 2000 eV has been reported for the simultaneous monitoring of Fe and Cu speciation changes during activation of a FeCu bimetallic catalyst along a millimetre-sized catalyst bed. Strategies of data acquisition and post-data analysis using Jupyter notebooks and multivariate data analysis are presented, and the gain obtained using full-field hyperspectral quick-EXAFS imaging for studies of functional materials under process conditions in comparison with macroscopic information obtained by non-spatially resolved quick-EXAFS techniques is discussed. Full Article text
materials STEM SerialED: achieving high-resolution data for ab initio structure determination of beam-sensitive nanocrystalline materials By journals.iucr.org Published On :: 2024-01-01 Serial electron diffraction (SerialED), which applies a snapshot data acquisition strategy for each crystal, was introduced to tackle the problem of radiation damage in the structure determination of beam-sensitive materials by three-dimensional electron diffraction (3DED). The snapshot data acquisition in SerialED can be realized using both transmission and scanning transmission electron microscopes (TEM/STEM). However, the current SerialED workflow based on STEM setups requires special external devices and software, which limits broader adoption. Here, we present a simplified experimental implementation of STEM-based SerialED on Thermo Fisher Scientific STEMs using common proprietary software interfaced through Python scripts to automate data collection. Specifically, we utilize TEM Imaging and Analysis (TIA) scripting and TEM scripting to access the STEM functionalities of the microscope, and DigitalMicrograph scripting to control the camera for snapshot data acquisition. Data analysis adapts the existing workflow using the software CrystFEL, which was developed for serial X-ray crystallography. Our workflow for STEM SerialED can be used on any Gatan or Thermo Fisher Scientific camera. We apply this workflow to collect high-resolution STEM SerialED data from two aluminosilicate zeolites, zeolite Y and ZSM-25. We demonstrate, for the first time, ab initio structure determination through direct methods using STEM SerialED data. Zeolite Y is relatively stable under the electron beam, and STEM SerialED data extend to 0.60 Å. We show that the structural model obtained using STEM SerialED data merged from 358 crystals is nearly identical to that using continuous rotation electron diffraction data from one crystal. This demonstrates that accurate structures can be obtained from STEM SerialED. Zeolite ZSM-25 is very beam-sensitive and has a complex structure. We show that STEM SerialED greatly improves the data resolution of ZSM-25, compared with serial rotation electron diffraction (SerialRED), from 1.50 to 0.90 Å. This allows, for the first time, the use of standard phasing methods, such as direct methods, for the ab initio structure determination of ZSM-25. Full Article text
materials Bridging length scales in hard materials with ultra-small angle X-ray scattering – a critical review By journals.iucr.org Published On :: 2024-08-01 Owing to their exceptional properties, hard materials such as advanced ceramics, metals and composites have enormous economic and societal value, with applications across numerous industries. Understanding their microstructural characteristics is crucial for enhancing their performance, materials development and unleashing their potential for future innovative applications. However, their microstructures are unambiguously hierarchical and typically span several length scales, from sub-ångstrom to micrometres, posing demanding challenges for their characterization, especially for in situ characterization which is critical to understanding the kinetic processes controlling microstructure formation. This review provides a comprehensive description of the rapidly developing technique of ultra-small angle X-ray scattering (USAXS), a nondestructive method for probing the nano-to-micrometre scale features of hard materials. USAXS and its complementary techniques, when developed for and applied to hard materials, offer valuable insights into their porosity, grain size, phase composition and inhomogeneities. We discuss the fundamental principles, instrumentation, advantages, challenges and global status of USAXS for hard materials. Using selected examples, we demonstrate the potential of this technique for unveiling the microstructural characteristics of hard materials and its relevance to advanced materials development and manufacturing process optimization. We also provide our perspective on the opportunities and challenges for the continued development of USAXS, including multimodal characterization, coherent scattering, time-resolved studies, machine learning and autonomous experiments. Our goal is to stimulate further implementation and exploration of USAXS techniques and inspire their broader adoption across various domains of hard materials science, thereby driving the field toward discoveries and further developments. Full Article text
materials Crossing length scales: X-ray approaches to studying the structure of biological materials By journals.iucr.org Published On :: 2024-08-28 Biological materials have outstanding properties. With ease, challenging mechanical, optical or electrical properties are realised from comparatively `humble' building blocks. The key strategy to realise these properties is through extensive hierarchical structuring of the material from the millimetre to the nanometre scale in 3D. Though hierarchical structuring in biological materials has long been recognized, the 3D characterization of such structures remains a challenge. To understand the behaviour of materials, multimodal and multi-scale characterization approaches are needed. In this review, we outline current X-ray analysis approaches using the structures of bone and shells as examples. We show how recent advances have aided our understanding of hierarchical structures and their functions, and how these could be exploited for future research directions. We also discuss current roadblocks including radiation damage, data quantity and sample preparation, as well as strategies to address them. Full Article text
materials Crystal structure solution and high-temperature thermal expansion in NaZr2(PO4)3-type materials By journals.iucr.org Published On :: 2024-03-22 The NaZr2P3O12 family of materials have shown low and tailorable thermal expansion properties. In this study, SrZr4P6O24 (SrO·4ZrO2·3P2O5), CaZr4P6O24 (CaO·4ZrO2·3P2O5), MgZr4P6O24 (MgO·4ZrO2·3P2O5), NaTi2P3O12 [½(Na2O·4TiO2·3P2O5)], NaZr2P3O12 [½(Na2O·4ZrO2·3P2O5)], and related solid solutions were synthesized using the organic–inorganic steric entrapment method. The samples were characterized by in-situ high-temperature X-ray diffraction from 25 to 1500°C at the Advanced Photon Source and National Synchrotron Light Source II. The average linear thermal expansion of SrZr4P6O24 and CaZr4P6O24 was between −1 × 10−6 per °C and 6 × 10−6 per °C from 25 to 1500°C. The crystal structures of the high-temperature polymorphs of CaZr4P6O24 and SrZr4P6O24 with R3c symmetry were solved by Fourier difference mapping and Rietveld refinement. This polymorph is present above ∼1250°C. This work measured thermal expansion coefficients to 1500°C for all samples and investigated the differences in thermal expansion mechanisms between polymorphs and between compositions. Full Article text
materials Importance of powder diffraction raw data archival in a curated database for materials science applications By journals.iucr.org Published On :: 2024-08-26 In recent years, there is a significant interest from the crystallographic and materials science communities to have access to raw diffraction data. The effort in archiving raw data for access by the user community is spearheaded by the International Union of Crystallography (IUCr) Committee on Data. In materials science, where powder diffraction is extensively used, the challenge in archiving raw data is different to that from single crystal data, owing to the very nature of the contributions involved. Powder diffraction (X-ray or neutron) data consist of contributions from the material under study as well as instrument specific parameters. Having raw powder diffraction data can be essential in cases of analysing materials with poor crystallinity, disorder, micro structure (size/strain) etc. Here, the initiative and progress made by the International Centre for Diffraction Data (ICDDR) in archiving powder X-ray diffraction raw data in the Powder Diffraction FileTM (PDFR) database is outlined. The upcoming 2025 release of the PDF-5+ database will have more than 20 800 raw powder diffraction patterns that are available for reference. Full Article text
materials JUAMI, the joint undertaking for an African materials institute: building materials science research collaborations and capabilities between continents By journals.iucr.org Published On :: 2024-01-26 JUAMI, the joint undertaking for an African materials institute, is a project to build collaborations and materials research capabilities between PhD researchers in Africa, the United States, and the world. Focusing on research-active universities in the East African countries of Kenya, Ethiopia, Tanzania and Uganda, the effort has run a series of schools focused on materials for sustainable energy and materials for sustainable development. These bring together early-career researchers from Africa, the US, and beyond, for two weeks in a close-knit environment. The program includes lectures on cutting-edge research from internationally renowned speakers, highly interactive tutorial lectures on the science behind the research, also from internationally known researchers, and hands-on practicals and team-building exercises that culminate in group proposals from self-formed student teams. The schools have benefited more than 300 early-career students and led to proposals that have received funding and have led to research collaborations and educational non-profits. JUAMI continues and has an ongoing community of alumni who share resources and expertise, and is open to like-minded people who want to join and develop contacts and collaborations internationally. Full Article text
materials The master key: structural science in unlocking functional materials advancements By journals.iucr.org Published On :: 2024-05-24 From the historical roots of metalworking to the forefront of modern nanotechnology, functional materials have played a pivotal role in transforming societies, and their influence is poised to persist into the future. Encompassing a wide array of solid-state materials, spanning semiconductors to polymers, molecular crystals to nanoparticles, functional materials find application in critical sectors such as electronics, computers, information, communication, biotechnology, aerospace, defense, environment, energy, medicine and consumer products. This feature article delves into diverse instances of functional materials, exploring their structures, their properties and the underlying mechanisms that contribute to their outstanding performance across fields like batteries, photovoltaics, magnetics and heterogeneous catalysts. The field of structural sciences serves as the cornerstone for unraveling the intricate relationship between structure, dynamics and function. Acting as a bridge, it connects the fundamental understanding of materials to their practical applications. Full Article text
materials A study of stress, composition and grain interaction gradients in energy-dispersive X-ray stress analysis on materials with cubic symmetry By journals.iucr.org Published On :: 2024-06-07 The influence of various combinations of residual stress, composition and grain interaction gradients in polycrystalline materials with cubic symmetry on energy-dispersive X-ray stress analysis is theoretically investigated. For the evaluation of the simulated sin2ψ distributions, two different strategies are compared with regard to their suitability for separating the individual gradients. It is shown that the separation of depth gradients of the strain-free lattice parameter a0(z) from residual stress gradients σ(z) is only possible if the data analysis is carried out in section planes parallel to the surface. The impact of a surface layer z* that is characterized by a direction-dependent grain interaction model in contrast to the volume of the material is quantified by comparing a ferritic and an austenitic steel, which feature different elastic anisotropy. It is shown to be of minor influence on the resulting residual stress depth profiles if the data evaluation is restricted to reflections hkl with orientation factors Γhkl close to the model-independent orientation Γ*. Finally, a method is proposed that allows the thickness of the anisotropic surface layer z* to be estimated on the basis of an optimization procedure. Full Article text
materials A simple protocol for determining the zone axis direction from selected-area electron diffraction spot patterns of cubic materials By journals.iucr.org Published On :: 2024-06-18 Using the well known Rn ratio method, a protocol has been elaborated for determining the lattice direction for the 15 most common cubic zone axis spot patterns. The method makes use of the lengths of the three shortest reciprocal-lattice vectors in each pattern and the angles between them. No prior pattern calibration is required for the method to work, as the Rn ratio method is based entirely on geometric relationships. In the first step the pattern is assigned to one of three possible pattern types according to the angles that are measured between the three reciprocal-lattice vectors. The lattice direction [uvw] and possible Bravais type(s) and Laue indices of the corresponding reflections can then be determined by using lookup tables. In addition to determining the lattice direction, this simple geometric analysis allows one to distinguish between the P, I and F Bravais lattices for spot patterns aligned along [013], [112], [114] and [233]. Moreover, the F lattice can always be uniquely identified from the [011] and [123] patterns. Full Article text
materials Operando pair distribution function analysis of nanocrystalline functional materials: the case of TiO2-bronze nanocrystals in Li-ion battery electrodes By journals.iucr.org Published On :: 2024-07-29 Structural modelling of operando pair distribution function (PDF) data of complex functional materials can be highly challenging. To aid the understanding of complex operando PDF data, this article demonstrates a toolbox for PDF analysis. The tools include denoising using principal component analysis together with the structureMining, similarityMapping and nmfMapping apps available through the online service `PDF in the cloud' (PDFitc, https://pdfitc.org/). The toolbox is used for both ex situ and operando PDF data for 3 nm TiO2-bronze nanocrystals, which function as the active electrode material in a Li-ion battery. The tools enable structural modelling of the ex situ and operando PDF data, revealing two pristine TiO2 phases (bronze and anatase) and two lithiated LixTiO2 phases (lithiated versions of bronze and anatase), and the phase evolution during galvanostatic cycling is characterized. Full Article text
materials The AUREX cell: a versatile operando electrochemical cell for studying catalytic materials using X-ray diffraction, total scattering and X-ray absorption spectroscopy under working conditions By journals.iucr.org Published On :: 2024-09-20 Understanding the structure–property relationship in electrocatalysts under working conditions is crucial for the rational design of novel and improved catalytic materials. This paper presents the Aarhus University reactor for electrochemical studies using X-rays (AUREX) operando electrocatalytic flow cell, designed as an easy-to-use versatile setup with a minimal background contribution and a uniform flow field to limit concentration polarization and handle gas formation. The cell has been employed to measure operando total scattering, diffraction and absorption spectroscopy as well as simultaneous combinations thereof on a commercial silver electrocatalyst for proof of concept. This combination of operando techniques allows for monitoring of the short-, medium- and long-range structure under working conditions, including an applied potential, liquid electrolyte and local reaction environment. The structural transformations of the Ag electrocatalyst are monitored with non-negative matrix factorization, linear combination analysis, the Pearson correlation coefficient matrix, and refinements in both real and reciprocal space. Upon application of an oxidative potential in an Ar-saturated aqueous 0.1 M KHCO3/K2CO3 electrolyte, the face-centered cubic (f.c.c.) Ag gradually transforms first to a trigonal Ag2CO3 phase, followed by the formation of a monoclinic Ag2CO3 phase. A reducing potential immediately reverts the structure to the Ag (f.c.c.) phase. Following the electrochemical-reaction-induced phase transitions is of fundamental interest and necessary for understanding and improving the stability of electrocatalysts, and the operando cell proves a versatile setup for probing this. In addition, it is demonstrated that, when studying electrochemical reactions, a high energy or short exposure time is needed to circumvent beam-induced effects. Full Article text
materials Foreword to the special virtual issue on X-ray spectroscopy to understand functional materials: instrumentation, applications, data analysis By journals.iucr.org Published On :: 2024-10-21 Full Article text
materials Use of Radioactive Materials in Commercial Applications Has Increased by 30 Percent - Government Should Improve Security and Support Development of Alternatives, Says New Report By Published On :: Mon, 14 Jun 2021 04:00:00 GMT The use of high-risk radioactive materials in medical, research, and commercial applications has increased by about 30 percent in the U.S. in the last 12 years, and the government should improve security, tracking, and accountability to reduce health and security risks — while also supporting the development of nonradioactive alternatives to replace them — says a new report from the National Academies of Sciences, Engineering, and Medicine. Full Article
materials 'Materials that compute' advances as Pitt engineers demonstrate pattern recognition By esciencenews.com Published On :: Sun, 04 Sep 2016 19:23:45 +0000 PITTSBURGH (September 2, 2016) ... The potential to develop "materials that compute" has taken another leap at the University of Pittsburgh's Swanson School of Engineering, where researchers for the first time have demonstrated that the material can be designed to recognize simple patterns. This responsive, hybrid material, powered by its own chemical reactions, could one day be integrated into clothing and used to monitor the human body, or developed as a skin for "squishy" robots. read more Full Article Physics & Chemistry
materials Snack and bakery packaging materials offer better sustainability and extended shelf life By www.snackandbakery.com Published On :: Mon, 21 Sep 2020 09:00:00 -0400 Advances in packaging materials continue to extend shelf life, while adding convenience and freshness to bakery and snack goods. Innovations in modified-atmosphere packaging (MAP), microbial-inhibiting film, and the use of cellulose nanocrystals are helping to push the envelope. Full Article
materials Munson releases Cylindrical Plow Blender for problematic bulk materials By www.snackandbakery.com Published On :: Tue, 25 Apr 2023 10:35:41 -0400 Full Article
materials How water chemistry impacts residential plumbing materials By www.pmmag.com Published On :: Mon, 15 Apr 2024 00:00:00 -0400 Builders often overlook local water chemistry when selecting materials. Water chemistry and plumbing materials require more attention. Full Article
materials PODCAST | The future of materials handling By www.ishn.com Published On :: Thu, 01 Aug 2024 15:00:00 -0400 Doug Backinger of Caster Concepts discusses the growing trend of automation and ergonomics in the materials handling industry. Full Article
materials How to use automation for improved safety shipping hazardous materials By www.ishn.com Published On :: Thu, 29 Jul 2021 10:54:00 -0400 Requests to ship hazardous and perishable goods across greater distances are increasing in frequency. With the surge of globalization, companies must contend with how to get fragile or potentially dangerous items to suppliers and end-users a world away. Full Article
materials Consider ergonomics to reduce materials handling By www.ishn.com Published On :: Wed, 01 Apr 2020 00:00:00 -0400 Warehouse hazards are often the cause of workplace accidents. Choosing the correct type of storage will greatly reduce the potential hazard in a facility. The correct storage medium will reduce improper lifting, reaching and travel distance to retrieve an item. Full Article
materials Your guide to green building: Sustainable construction, renewable materials and energy efficiency By www.ishn.com Published On :: Tue, 29 Oct 2024 14:14:08 -0400 This shift towards eco-conscious construction responds to escalating environmental concerns, evolving regulations, and growing consumer demand for sustainable living spaces. Full Article
materials Global materials for global challenges in the food and beverage industry By www.bevindustry.com Published On :: Wed, 01 May 2024 00:00:00 -0400 The demands of today’s global markets are rigorous. Full Article
materials Labeling materials adapt for a circular future By www.bevindustry.com Published On :: Wed, 02 Aug 2023 00:00:00 -0400 Within the beverage industry, when it comes to efforts that support sustainability and a circular economy, experts stress the importance of considering how label materials affect the recyclability of packaging. Full Article
materials Marquis Who's Who Selects Barry Bingruey Wu, PhD, for Expertise in Device Physics and Materials Science By www.24-7pressrelease.com Published On :: Wed, 24 Jan 2024 08:00:00 GMT Dr. Barry Bingruey Wu is lauded for his work with Keysight Technologies Full Article
materials Marquis Who's Who Honors Sanford L. Moskowitz, Ph.D for Expertise in Innovation, Advanced Materials, the History of Semiconductors, Higher Education and Authorship By www.24-7pressrelease.com Published On :: Mon, 22 Apr 2024 08:00:00 GMT Sanford L. Moskowitz is lauded for his contributions as Author in high-tech innovation and Educator at Saint John's University and the College of St. Benedict Full Article
materials The Materials Research Society (MRS) Endorses PUZZLE X™ Global Event to Advance Frontier Materials Technologies for Societal Impact By www.24-7pressrelease.com Published On :: Tue, 12 Apr 2022 08:00:00 GMT PUZZLE X™ has received an official endorsement from MRS to engage international materials stakeholders in its flagship event PUZZLE X™ Nov 15-17 in Barcelona, Spain Full Article
materials The Materials Group, Ford Motor Co. Recognized at The SPE Innovation Awards for Recycled Content Exterior Auto Part By www.24-7pressrelease.com Published On :: Thu, 09 Dec 2021 08:00:00 GMT Cowl Vent Grille Reduces Landfill Waste, Carbon Emissions, Part Weight and Cost Full Article
materials Chromatic 3D Materials Raises $6 Million for Third Equity Issuance By www.24-7pressrelease.com Published On :: Tue, 17 Sep 2024 08:00:00 GMT The funding will enable Chromatic to build production capabilities, advance customers through their approval processes and grow revenue. Full Article
materials nanoMaterials Discovery Corporation Issues Voluntary Nationwide Recall of its Alcohol Antiseptic 80% Alcohol Solution By www.24-7pressrelease.com Published On :: Wed, 15 Feb 2023 08:00:00 GMT nanoMaterials Discovery Corporation is voluntarily recalling all lots of its Alcohol Antiseptic 80% Alcohol Solution Full Article
materials Embracing Sustainability: Renovation Industry Adopts Eco-Friendly Materials for a Greener Future By www.24-7pressrelease.com Published On :: Tue, 11 Jul 2023 08:00:00 GMT Industries around the world are seeking sustainable alternatives to reduce their carbon footprint. 5J Building Group explores the emergence of sustainable construction materials and their increasing adoption in the renovation industry. Full Article
materials Marquis Who's Who Honors Michael Makepeace Thackeray for his Distinguished Career in the Field of Materials Chemistry By www.24-7pressrelease.com Published On :: Thu, 11 Jul 2024 08:00:00 GMT Michael Makepeace Thackeray's career as a materials chemist spanned 50 years and two continents Full Article
materials Agriculture Technology Company, Re-Nuble Partners with Circular Materials Company, Cruz Foam to Create First Compostable, Circular Sourced Indoor Growing Media By www.24-7pressrelease.com Published On :: Thu, 23 Jun 2022 08:00:00 GMT Indoor growers will have access to a highly engineered, inert, fully-compostable grow media, eliminating food waste, creating an efficient closed-loop agriculture system and alleviating climate-related risks from current industry grow media types. Full Article
materials Orbano, Your Trusted Sign Supplier With a Large Inventory of Top-Quality Sign Materials, Equipment and More By www.24-7pressrelease.com Published On :: Tue, 17 Sep 2024 08:00:00 GMT Orbano, Inc., a wholesale distributor of signage materials, supplies and equipment, debuts on September 16, 2024. The company's online shopping platform is set to offer a wide range of premium products coupled with an intuitive customer experience. Full Article
materials No Summary Judgment for Worker Struck by Falling Materials By ww3.workcompcentral.com Published On :: Fri, 18 Oct 2024 00:00:00 -0700 A New York appellate court ruled that a worker struck by falling materials was not entitled to summary judgment on his Labor Law claim. Case: Shewprasad v. KSK Construction Group LLC, No. Full Article
materials New Materials Identified for Protecting Astronauts from Mars Radiation By www.labroots.com Published On :: Fri, 23 Aug 2024 15:10:00 -0700 How will future Mars astronauts shield themselves from harmful space radiation? This is what a recent study published in The European Physical Journal Plus Full Article Space & Astronomy
materials Additional Materials Available On Web Site By www.ukoln.ac.uk Published On :: The slides and handouts for the parallel session on "Hey! You! Get Offa My Web! Hidden Desires and Unforeseen Circumstances in Web Management" are now available. [2005-07-28] Full Article
materials Machine learning meets materials discovery: Researchers from IBM, Toyota, and Citrine Informatics speak at UofT By media.utoronto.ca Published On :: Mon, 17 Jul 2017 14:11:40 +0000 Toronto, ON – Machine learning and artificial intelligence are poised to revolutionize the way companies do business in the fields of healthcare, transportation, and materials research. With the launch of the new Vector Institute, Toronto is quickly becoming a hub for machine learning development. Following this momentum is a three-part limited edition CIFAR seminar series, […] Full Article Engineering Media Releases
materials University of Toronto physicists discover new laws governing the “developmental biology of materials” By media.utoronto.ca Published On :: Mon, 22 Feb 2016 18:47:38 +0000 Toronto, ON – When one atom first meets another, the precise nature of that interaction can determine much about what kinds of physical properties and behaviours will emerge. In a paper published today in Nature Physics, a team led by U of T physicist Joseph Thywissen reported their discovery of a new set of rules […] Full Article Media Releases Science University of Toronto
materials Materials Testing: Inside the Vascular Labyrinth By www.qualitymag.com Published On :: Thu, 22 Aug 2024 00:00:00 -0400 Catheters are used for various medical procedures, including addressing issues in a person's arterial network and urological conditions. They also deliver medical devices and treat conditions such as clogged arteries and irregular heartbeats. Testing for catheters includes tensile testing, lubricity testing, and usability/trackability testing. Full Article
materials Glass Transition Temperature of Polymeric Materials By www.qualitymag.com Published On :: Mon, 10 Aug 2015 00:00:00 -0400 The thermal properties of polymeric materials are important to the function of components and assemblies that will operate in cold or warm environments. Full Article
materials Materials Matter: The Science of Lightweighting in Aerospace By www.qualitymag.com Published On :: Thu, 12 Sep 2024 00:00:00 -0400 In aerospace, lightweighting is crucial for fuel efficiency, range, and emissions. Material analysis and technology advancements offer weight reduction without sacrificing performance or safety. Full Article
materials Automation in Materials Testing By www.qualitymag.com Published On :: Mon, 15 May 2023 00:00:00 -0400 Materials testing is critical for the development and quality assurance of all products in the market, with some industries such as biomedical, aerospace, and automotive companies experiencing high volumes of testing throughput in addition to strict quality standards. Full Article
materials Materials Testing: Getting It Right the First Time By www.qualitymag.com Published On :: Wed, 31 Jan 2024 00:00:00 -0500 Materials testing ensures quality by subjecting materials and products to controlled conditions to evaluate properties and behavior under stress. Learn how mechanical, physical, and chemical properties are evaluated to determine suitability for different applications. Full Article
materials Compression Testing: How to Put the Squeeze on Materials for Quality Control By www.qualitymag.com Published On :: Sun, 06 Oct 2024 00:00:00 -0400 Quality control in manufacturing and engineering relies heavily on compression force testing to determine material strength, durability, and stability. This article highlights the key uses and equipment needed for such testing. Full Article