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CSSplay - Vimeo video replacing default controls with Play / Pause button

A tutorial to replace the default controls on a Vimeo video with a Play / Pause button, and make responsive.




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The super easy microwave peanut butter bread recipe that takes 90 seconds to cook

The quick bread recipe tastes delicious and requires just five ingredients




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Round Top Butte Research Natural Area: guidebook supplement 46

This guidebook describes major biological and physical attributes of the 243-ha (600-ac) Round Top Butte Research Natural Area. The area supports high-quality examples of valley upland grasslands and savanna of the Cascade foothills. Plant communities include Oregon white oak (Quercus garryana) savanna and open woodland with forbs and grasses; ponderosa pine (Pinus ponderosa)-Oregon white oak woodland; bluebunch wheatgrass-California oatgrass-Lemmon’s needlegrass (Pseudoroegneria spicata-Danthonia californica-Achnatherum lemmonii) grasslands; and tufted hairgrass (Deschampsia cespitosa)-California oatgrass vernally flooded prairie.




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Queen's Brian May Trashes His Butt In An 'Over-Enthusiastic Gardening' Injury

So legendary QUEEN guitarist BRIAN MAY, known for being very active on INSTAGRAM, revealed, "Reality check! For me. No - the Virus didn’t get me yet - thank God. Hope you’re … more




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Getting My Butt in Gear with Digital Strategy School!

I have been running CMD+Shift Design since 2008. In those 7 years I learned a lot, I made a lot of mistakes, found some amazing clients, did some really fun projects and made some good money. I’ve had ups and downs and these past 2 years have been tough… really tough. Part of it has […]




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How to make sure your call to action buttons convert the way you want

You are probably already familiar with the concept of call to action, but if somehow you are new to web design, call to action refers to elements in a page that request an action from its visitors. If you are indeed new to web design, there are high chances that you will neglect this important […]




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Technical Report of "Deductive Joint Support for Rational Unrestricted Rebuttal". (arXiv:2005.03620v1 [cs.AI])

In ASPIC-style structured argumentation an argument can rebut another argument by attacking its conclusion. Two ways of formalizing rebuttal have been proposed: In restricted rebuttal, the attacked conclusion must have been arrived at with a defeasible rule, whereas in unrestricted rebuttal, it may have been arrived at with a strict rule, as long as at least one of the antecedents of this strict rule was already defeasible. One systematic way of choosing between various possible definitions of a framework for structured argumentation is to study what rationality postulates are satisfied by which definition, for example whether the closure postulate holds, i.e. whether the accepted conclusions are closed under strict rules. While having some benefits, the proposal to use unrestricted rebuttal faces the problem that the closure postulate only holds for the grounded semantics but fails when other argumentation semantics are applied, whereas with restricted rebuttal the closure postulate always holds. In this paper we propose that ASPIC-style argumentation can benefit from keeping track not only of the attack relation between arguments, but also the relation of deductive joint support that holds between a set of arguments and an argument that was constructed from that set using a strict rule. By taking this deductive joint support relation into account while determining the extensions, the closure postulate holds with unrestricted rebuttal under all admissibility-based semantics. We define the semantics of deductive joint support through the flattening method.





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Melt your problems away with this cannabutter ice cream

The Cannabis Issue As we look ahead to sunnier days, few things are as satisfying as a scoop of nice, cold ice cream.…




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Control button

Control button having a metal body (10) provided along its axis with a blind hole (16) closed by a cap (18) and extended by a wall (14) of revolution. The body (10) includes a groove (20) made in the outer surface of the wall (14) and channels (26) connecting said surface to the inside of the blind hole (16). The button further includes a fitting (12) made of synthetic material, formed of a ring (28) closing the groove and extended radially by raised portions (34) as far as the openings of the channels (26) in the wall (14) of a radial structure with several branches (30) closing the channels (26), and a core (32) connecting the branches (30) to secure between them the different parts (28, 30, 32, 34) of the fitting (12).




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Buttress and surgical stapling apparatus

Multilayer structures including a porous layer and a non-porous layer are useful as buttresses when associated with a surgical stapling apparatus.




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Releasable buttress retention on a surgical stapler

A surgical stapling apparatus including a releasable buttress material includes a cartridge assembly, an anvil assembly, and a buttress material. The cartridge assembly includes a plurality of staples, a tissue contacting surface defining staple retaining slots, and a swaged outer edge. The anvil assembly includes a tissue contacting surface defining staple pockets for forming staples expelled from the staple retaining slots of the cartridge assembly. The buttress material has an outer portion that is retaining within the swaged outer edge of the cartridge assembly.




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Circular stapler including buttress

A surgical stapling device for joining tissue portions includes a handle assembly, and a tubular body portion having a staple cartridge assembly containing a plurality of surgical staples in an annular array. The surgical stapling device includes an anvil assembly having a shaft for removably connecting the anvil assembly to the tubular body portion. The anvil assembly and the tubular body portion are juxtaposed with respect to one another along the shaft and are arranged so as to be approximated with respect to one another. The surgical stapling device includes a buttress material supported by the tubular body portion and disposed between the anvil assembly and the staple cartridge assembly. The surgical stapling device includes a suture material that is adapted for engagement with the tubular body portion and the buttress material to secure the buttress material to the tubular body portion.




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Buttress retention system for linear endostaplers

An end effector for use with a surgical stapler comprising a staple cartridge having a tissue contacting surface, a first side surface, and a second side surface opposite the first side surface, an anvil plate having a tissue contacting surface, a first side surface, and a second side surface opposite the first side surface, wherein the first and second side surfaces of each of the staple cartridge and anvil plate have overmolded zones, a buttress releasably disposed on the tissue contacting surfaces of each of the staple cartridge and the anvil plate, and a pair of sutures wherein each suture is bonded to the respective overmolded zones of the first and second side surfaces configured to retain the respective buttress atop the respective tissue contacting surfaces.




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Buttress support design for EEA anvil

An apparatus for joining two hollow organ sections with an annular array of surgical staples includes a staple cartridge, an anvil, a buttress member, and a buttress mount. In particular, the staple cartridge includes a plurality of surgical staples in an annular array. The anvil includes an anvil member and a shaft extending therefrom. The anvil member defines a plurality of staple pockets for deforming the surgical staples. The anvil is movable relative to the staple cartridge component between spaced apart and approximated positions to adjustably clamp tissue between the staple cartridge and the anvil. The buttress member is concentrically aligned with the plurality of staple pockets defined in the anvil member. The buttress mount is detachably secured with the shaft of the anvil. The buttress mount includes at least one support member radially extending outward to secure the buttress member to the anvil member.




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Interlocking buttress material retention system

A surgical stapler is provided having a pair of jaws including a staple containing cartridge and an anvil. Buttress material is releasable affixed to the staple containing cartridge and the anvil. One of the jaws includes a pair of longitudinal projections at a first end of the jaw and configured to frictionally engage corresponding slots in a first end the buttress material. One of the jaws includes a post at a second end of the jaw. The buttress material includes a hole in a second end of the buttress material for receipt of the post.




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Triple offset butterfly valve and rotary for severe services

This invention relates to a novel rotary control valve with new joint methods and flow control mechanisms, inline-reparability and fully metal seals more particularly to a triple offset butterfly valve or ball valve with those features used for on-off and flow controlling under multiple extreme conditions or in severe services; such as the integrated gasification combined cycle under high temperature and pressure, Fluid Catalytic Cracking under high temperature over 1200 F with hard diamond like catalytic particles, shale fracking process under extreme high pressure and high velocity fluid with solid particles and corrosive additives and other critical applications for products life lasting 5 to 30 years like deepsea flow control systems and nuclear power plants and for the applications of millions cycles like jet or rocket turbine engine fuel delivery systems with high velocity fuel fluid mixed with highly oxidative gas under temperature 1365 F.




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Butterfly valve

A butterfly valve (100) is provided. The butterfly valve (100) includes a valve body (103) including a valve bore (109) passing through the valve body (103), with the valve bore (109) including an upstream valve bore portion (109U) and a downstream valve bore portion (109D), a shaft bore (112), a valve shaft (121) located in the shaft bore (112) and extending substantially across the valve bore (109), and a valve flap (107) affixed to the valve shaft (121) and configured to be rotated by the valve shaft (121). The valve flap (107) is configured to rotate between a closed orientation blocking the valve bore (109) and an open orientation. The valve flap (107) is affixed on an upstream valve bore portion side of the valve shaft (121), wherein incoming fluid presses the valve flap (107) against the valve shaft (121).




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Low torque, high flow and tight sealing tube butterfly valve

A butterfly valve including a valve body having a passage, a valve shaft assembly, a valve plate, and a tube that is friction fit inside the passage is provided. The valve shaft assembly includes a first shaft portion and a second shaft portion. The first and second shaft portions are in opposing spaced relation with the valve plate disposed therebetween. The valve plate has a flange such that when the butterfly valve is in the closed position a seal is formed with the tube, which is disposed within the fluid flow passage. The valve plate has lip extending from a portion of the valve plate that is radially outward from the circumference of the tube. The lip acts to reduce flow induced torque experienced while the valve plate is actuated from the closed to the open position.




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Nozzle structure of dispenser pump button

The present invention relates to a nozzle structure of a dispenser pump button. According to the present invention, the nozzle structure of the dispenser pump button is designed in such a way that an outer nozzle with a discharge hole forwardly moves by the pressure of the content, and the content is discharged through the discharge hole distanced from an inner nozzle, thereby preventing the deformation of the nozzle. Therefore, the inflow of air into a cosmetic container is blocked, and thus the deterioration of the content can be prevented.




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Jig for assembling fabric covered button




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Method and device for manufacturing buttons consisting of several elements




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Apparatus for fabricating covered buttons




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Tufted back mold for fabric covered button




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TRIM BUTTON MANUFACTURE




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BUTTON ASSEMBLING MACHINE




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MACHINE FOR MAKING COVERED BUTTONS




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ASSEMBLY APPARATUS FOR COVERED BUTTONS




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BUTTON ASSEMBLY APPARATUS

A button assembly apparatus including a die assembly having two die members movable between an open and closed position. The die members include means for applying a covering on a button shell upon closing of the die members. Upon closing the die members a second time, selectively positionable means render the die members suitable for assembling the covered shell to a body member to complete the button.




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CUTTING AND ASSEMBLING APPARATUS FOR MAKING BUTTONS

Portions of a pin-on button are cut and assembled as a result of a plurality of operations in a machine having a vertical press. Cutter and work deforming tools are displaced by a single press ram to cut blanks and deform the blanks onto a button top placed in one of two die assemblies positioned in alignment below the work deforming tool on the lower end of the ram.




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BUTTON-FORMING DEVICE

Device for forming buttons from a pin-on back plate, a front plate, and a cover over the front plate, with the device having a pair of button-forming dies alternately shiftable into operation alignment with a forming punch which on descent with the successively aligned dies cooperates with the latter to assemble the separate button parts into a button, and a cover-blanking punch and die set above the forming punch, of which the blanking die is topmost and has a die aperture open at the top and bottom and a cutting edge at the bottom of the aperture, with the blanking die being by the forming punch raised into blanking cooperation with the blanking die, and the forming punch being moved upwardly and downwardly by manually operable means.




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BUTTON-FORMING DEVICE

Device for forming buttons from a pin-on back plate, a front plate, and a cover over the front plate, with the device having a pair of button-forming dies alternately shiftable into operative alignment with a forming punch which on descent into the successively aligned dies cooperates with the latter to assemble the separate button parts into a button, and a blanking punch and die set above the forming punch, of which the blanking punch is raised into cooperation with the blanking die for blanking a cover from a supply sheet, and a handlever operatively connected with the punches for simultaneously lowering the forming punch and raising the blanking punch.




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APPARATUS FOR MAKING A DISPLAY BUTTON

Apparatus for the manufacture of a laminated button comprising a metallic backing plate having a transverse peripheral edge and an outwardly extending flange, an illustrated paper sheet and a protective acetate covering. The apparatus comprises a pneumatically operated press which receives the plate, illustrated sheet and covering, and, with a single downward movement, causes the sheet to conform to the plate and be crimped between the transverse edge and flange.




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APPARATUS FOR COVERING BUTTONS

Apparatus for covering buttons operable in an automatic, semi-automatic or manual mode. The apparatus includes a rotatable table having alternately positioned shell and back receiving lower dies, means for automatically delivering the shells and backs to their respective lower dies, a reciprocating upper die synchronized for movement with the rotation of the rotatable table and engageable with the lower dies at a first station to transfer a shell and fabric covering from a shell receiving lower die to the upper die and press-fit a back from a back receiving lower die into the covered shell in the upper die to form an assembled covered button and having means permitting its use with a range of fabric cover thicknesses, and means for ejecting the assembled covered buttons.




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MACHINE FOR PRODUCING OF BUCKLES, BUTTONS OR THE LIKE

A machine for the manufacture of buckles, buttons or the like which comprises an upper tool and a lower tool. The lower tool has an outer, spring-mounted frame and an inner core piece displaceable vertically with respect to the surrounding frame. The lower tool is adapted to support the assembled button after the opening stroke of the upper tool. A device is provided for lifting the core piece of the lower tool relative to the surrounding frame up to about the height of a transversely directed stream of blast air serving for discharging the product from the lower tool.




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Button covering device

A button covering device having a platform with a central opening which forms a well to receive a button to be covered and the fabric for covering the button. A pair of sliding plates having contoured recesses are mounted on the platform whereby the contoured recesses may be positioned to overlap the opening to gather the fabric over the rear of the button.




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Method for fabrication of communicative buttons and buttons made thereby

A method for fabrication of a relatively low cost display or communicative novelty button in which a consumable restrictor sheet is placed over a vacuum draw type female mold cavity. The restrictor sheet may be of cardboard and be apertured with a diameter smaller than the mold cavity diameter. A thermoplastic sheet material is then placed over the restrictor sheet, heated to reach a formable state and vacuum drawn through the restricted aperture and down so that the sheet comes into contact with and generally conforms to the desired shape defined by the mold cavity. The plastic sheet material may then be trimmed near the edge of the restrictor sheet to leave a button shell mounted on a restrictor sheet which may then be used for purposes of display. The restrictor sheet also enables fabrication with an inwardly facing peripheral groove that may be used to secure a pin fastener. An alternate form of fastener in which a portion of the remaining plastic sheet is used is also disclosed.




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Fabric-covered button and the method for fabricating same

A fabric covered button comprising a button head having a peripheral groove for receiving a locking ring. The fabric is secured to the button head and the marginal edge thereof is retained within the groove by the locking ring.




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Apparatus for assembling covered buttons

Apparatus for assembling covered buttons in which a first die assembly including a first punch carrying a first sleeve which sequentially receives a piece of covering material and the button shell with its flange extending toward the open end of the sleeve. A second assembly including a second sleeve having a bore one end of which is formed with a first cam surface extending axially inwardly of the above. The second sleeve is spring loaded to an extended position on a supporting post having a centrally located button back fastener receiving cavity in the end thereof with a second cam surface extending inwardly from the outer edge of the end to the bottom of a recess surrounding the cavity. An annular boss at the inner edge of the recess around the cavity is elevated to allow the material and the shell flange to curl inwardly under the button back. In the retracted position of the second sleeve on the post, the second cam surface forms a continuation of the first. In operation, when the first assembly carrying the covering piece and the shell moves toward the second assembly, the first sleeve stops against the spring loaded bottom sleeve and the punch continues forcing the material down so that the material is tucked inward by the beveled or curved surface of the second sleeve. Upon continued relative movement of the assemblies, the shell flange acts on the cam surface of the second sleeve to force the sleeve to its retracted position and the shell flange is moved inwardly of the back wall under the continued action of the first post, the extent of the inward movement of the shell flange being determined by the thickness of the material of the covering piece, as well as the height of the shell and the type of back used.




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Button assembler

A device to assemble buttons of the type having a safety pin associated with a fastening member including an outer shell having a covering. The present invention is directed to the mechanism snap-out of the finished button and a cam and bar for automatically adjusting the length of travel of the upper die.




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Device for pressing buttons by resisting upward movement

A device is disclosed for pressing objects by lifting the objects into a waiting pressing shaft. The shaft includes a forming element at its lower end for forming the object, and the shaft is engaged by its upper end through a pivot member to an air cylinder in a manner which provides a force advantage to the air cylinder. Also, a system for pressing objects is disclosed, in which the press device is employed in conjunction with a turntable for sequential and continuous pressing operations.




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Automated button closing machine

A machine for automatically joining front and back parts of buttons employs a turntable with nests that are rotated through a series of stations at which the parts are placed in the nests in a desired orientation, joined, and checked for defects. Orientation of the parts is achieved by video imaging of a first part as it is randomly placed in a nest, and computer-controlled placement of the second part based on the ascertained position of the first part.




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Semi-automated button closing machine

A method and apparatus for substantially automatically joining front and back parts of buttons employs a turntable with retaining means that are rotated through a series of stations at which the parts are placed in the retaining means in a desired orientation, joined, and checked for defects. A human operator places button front parts at a first station, and the remaining stations carry out the assembly and quality control steps automatically. Placement at the first station determines the alignment and orientation of the two buttons.




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Punch button and process

A punch button (32) has a central disc (36) integral with and separable from an outer peripheral annular ring (38). The disc and ring are joined by a breakaway portion (40) of reduced thickness. A pair of peel points or pilot cuts (50 and 52) may be provided on distally opposite sides of the disc, and if so, the disc is initially separable from the ring at the peel points and then rotatable about a rotation axis perpendicular to an axis through the distally opposite pilot cuts. The punch button is formed by providing a strip of material of a first thickness, placing the strip in a die, performing an inner cut with the die and partially cutting through the strip to yield first and second subpieces joined to each other by material of a second reduced thickness, and performing an outer cut with the die and cutting all the way through the strip to yield a piece composed of the first and second subpieces providing the disc and ring. The pilot cuts are performed by the die during performance of the inner cut and to a deeper depth than the inner cut. All of the cuts are performed in a singular die step operation wherein an outer punch (58) is moved toward an inner punch (66) in one axial direction to perform the inner cut, the pilot cuts, and a portion of the outer cut, and continuing movement of the outer punch in the one direction and simultaneously moving the inner punch in the same direction in unison with the outer punch to complete the outer cut.




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Apparatus for manufacturing buttons

A universal assembly machine manufactures conventional buttons with formed backs. The machine comprises a rotatably indexable die table to which are mounted pickup and crimp dies. The die table indexes about a center column of the machine frame. A ram die is advancable and retractable in a pickup stroke and a crimp stroke by means of a handle. The ram die includes a ram outer ring that is rotatable by means of a shifter post joined to the die table. Indexing the die table causes the shifter post to rotate the ram outer ring into a pickup mode or a crimp mode to suit the ram pickup and crimp strokes, respectively. The universal assembly machine also manufactures buttons with flat backs by using a different crimp die pedestal than is used with the formed backs. An adapter on the crimp die pedestal used with formed backs allows that crimp die pedestal to also be used for manufacturing buttons with flat backs. The invention also embraces button medallions. A flat back button is loaded into the pickup die, and the die table is indexed. The ram die is advanced in a third press to form the shell frusto-conical wall of the flat back button inwardly to be flat and parallel to the flat back.




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Method of manufacturing a button medallion

A universal assembly machine manufactures button medallions. The machine comprises a rotatably indexable die table to which are mounted pickup and crimp dies. The die table indexes about a center column of the machine frame. A ram die is advancable and retractable in a pickup stroke and a crimp stroke by means of a handle. The ram die includes a ram outer ring that is rotatable by means of a shifter post joined to the die table. Indexing the die table causes the shifter post to rotate the ram outer ring into a pickup mode or a crimp mode to suit the ram pickup and crimp strokes, respectively. The universal assembly machine also manufactures buttons with flat backs. To make a button medallion a flat back button is loaded into the pickup die. The ram die is advanced in a third press stroke to bend the shell frusto-conical wall of the flat back button inwardly to be flat and parallel to the flat back. The thin edge of the button medallion enables it to be used as an attractive embellishment on flat surfaces.




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Buttons and a universal assembly machine for manufacturing same

A universal assembly machine manufactures conventional buttons with formed backs. The machine comprises a rotatably indexable die table to which are mounted pickup and crimp dies. The die table indexes about a center column of the machine frame. A ram die is advancable and retractable in a pickup stroke and a crimp stroke by means of a handle. The ram die includes a ram outer ring that is rotatable by means of a shifter post joined to the die table. Indexing the die table causes the shifter post to rotate the ram outer ring into a pickup mode or a crimp mode to suit the ram pickup and crimp strokes, respectively. The universal assembly machine also manufactures buttons with flat backs by using a different crimp die pedestal than is used with the formed backs. An adapter on the crimp die pedestal used with formed backs allows that crimp die pedestal to also be used for manufacturing buttons with flat backs. The invention also embraces button medallions. A flat back button is loaded into the pickup die, and the die table is indexed. The ram die is advanced in a third press stroke to bend the shell frusto-conical wall of the flat back button inwardly to be flat and parallel to the flat back.




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Custom button system and method for identifying a fiber from which an associated article of apparel is manufactured

A button system and method of manufacturing the same are provided for identifying fiber from which an article of apparel is manufactured. Initially, an article of apparel manufactured with a predetermined fiber is identified. Next, indicia indicative of the predetermined fiber is selected. Next, at least one button is manufactured with the indicia thereon for identifying the fiber from which the article of apparel is manufactured.




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Adapter for machine for manufacturing buttons and method

An adapter enables a universal assembly machine to manufacture buttons with either flat backs or formed backs. The machine comprises a rotatably indexable die table to which are mounted pickup and crimp dies. A ram die is advancable and retractable in a pickup stroke and a crimp stroke. Indexing the die table causes a shifter post to rotate a ram outer ring into a pickup mode or a crimp mode to suit the ram pickup and crimp strokes, respectively. The universal assembly machine manufactures buttons with flat backs by using the adapter on the same crimp die pedestal as is used for manufacturing buttons with formed backs. The adapter has a top surface that is in the location relative to the ram die that suits flat back buttons. The adapter enables the same crimp die pedestal to be used for manufacturing both flat back and formed back buttons.




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Two-stroke machine for making buttons having coplanar shell flanges

A machine manufactures buttons having coplanar shell flanges in a two-stroke operation. The machine comprises a crimp die having different resistances to advancement of a ram. The first resistance enables a metal shell margin to partially bend under a flat back that is placed on a first surface of the crimp die. The second resistance enables the shell wall to completely bend against a second surface of the crimp die so as to form flanges that lie in a single plane. Both round and rectangular buttons are manufacturable using the same basic machine. The rectangular machine uses a shifter cage on the ram that rotates in response to indexing a die table on which the crimp die and a pickup die are attached. The round machine uses a rotatable frame on the ram. With the rectangular machine, the shell is initially bent during a pickup stroke of the ram.