Patent classifications
B65D7/34
Container Assembly Having a Heat-Sealed Metal End, a Metal End Therefor, and a Method for Making Same
A container assembly includes a container body having a side wall encircling an axis, and a metal end for attachment to an upper edge of the side wall via heat-sealing. The outer peripheral region is shaped prior to application to the container body such that an annular channel is defined between an inner chuck wall and an outer chuck wall of the metal end. The metal end is pushed straight onto the side wall such that the upper edge of the side wall is received into the channel The surfaces of the side wall and the opposing surfaces of the chuck walls have heat-sealable material thereon. The metal end is heated to melt and fuse the heat-sealable layers, thereby sealing the metal end onto the side wall. The metal end is shaped such that the free edge of the outer chuck wall is not exposed.
CONTAINER ASSEMBLY HAVING A HEAT-SEALED METAL END, A METAL END THEREFOR, AND A METHOD FOR MAKING SAME
A container assembly includes a container body having a side wall encircling an axis, and a metal end for attachment to an upper edge of the side wall via heat-sealing. The outer peripheral region is shaped prior to application to the container body such that an annular channel is defined between an inner chuck wall and an outer chuck wall of the metal end. The metal end is pushed straight onto the side wall such that the upper edge of the side wall is received into the channel. The surfaces of the side wall and the opposing surfaces of the chuck walls have heat-sealable material thereon. The metal end is heated to melt and fuse the heat-sealable layers, thereby sealing the metal end onto the side wall. The metal end is shaped such that the free edge of the outer chuck wall is not exposed.
METAL CONTAINER AND METAL CLOSURE THEREOF
Container (1) comprising a substantially tubular metal container body (2) having a top opening defined by an outwardly curled edge, and a bottom opening. The container further comprises a peelable lid (9) bonded to an upper surface of said curled edge to close said top opening in an airtight manner, the outermost edge of the peelable lid not extending beyond an outermost extent of said curled edge, and a metal closure (4) comprising a generally planar centre panel (8) and a downwardly extending sidewall (7) depending from a peripheral region of the centre panel and terminating with an inwardly or outwardly directed fold (12), and a plurality of features (5) pressed into the sidewall at respective circumferentially spaced locations between said peripheral region and the fold, wherein the radial inward extent of the features is greater than that of the fold. The closure and the container body have relative dimensions to allow the features to pass over said curled edge during closure and to be retained beneath the curled edge to resist removal of the closure.
Container assembly having a heat-sealed metal end, a metal end therefor, and a method for making same
A container assembly includes a container body having a side wall encircling an axis, and a metal end for attachment to an upper edge of the side wall via heat-sealing. The outer peripheral region is shaped prior to application to the container body such that an annular channel is defined between an inner chuck wall and an outer chuck wall of the metal end. The metal end is pushed straight onto the side wall such that the upper edge of the side wall is received into the channel. The surfaces of the side wall and the opposing surfaces of the chuck walls have heat-sealable material thereon. The metal end is heated to melt and fuse the heat-sealable layers, thereby sealing the metal end onto the side wall. The metal end is shaped such that the free edge of the outer chuck wall is not exposed.
Container assembly having a heat-sealed metal end, a metal end therefor, and a method for making same
A container assembly includes a container body having a side wall encircling an axis, and a metal end for attachment to an upper edge of the side wall via heat-sealing. The outer peripheral region is shaped prior to application to the container body such that an annular channel is defined between an inner chuck wall and an outer chuck wall of the metal end. The metal end is pushed straight onto the side wall such that the upper edge of the side wall is received into the channel. The surfaces of the side wall and the opposing surfaces of the chuck walls have heat-sealable material thereon. The metal end is heated to melt and fuse the heat-sealable layers, thereby sealing the metal end onto the side wall. The metal end is shaped such that the free edge of the outer chuck wall is not exposed.
Chafing dish systems and devices
A chafing dish set may comprise a stand, a water pan capable of being restably coupled to the stand, wherein the water pan comprises a holding portion configured to receive and hold a liquid, and a food pan capable of being restably coupled to the water pan, wherein the food pan comprises an interior portion configured to receive and hold at least one of a food and a liquid. In some embodiments, the chafing dish set further comprises a lid capable of being restably coupled to the food pan, wherein the lid is configured to substantially cover the interior portion of the food pan.
STORAGE BASKET
A storage basket, including a side frame and a bottom plate arranged at the bottom of the side frame. The side frame and the bottom plate are of an integrated structure or split-type structures. An outer edge of the top of the side frame is provided with an outer frame; gaps are formed in all bends of the outer frame; corner protectors are wrapped on all the bends of the side frame; and the top of each corner protector has a bent portion that is bent towards the inner side of the side frame or the outer side of the side frame and covers the gap. The outer frame at the top of the storage basket deforms or breaks when the storage basket is made into a taper. The storage basket has high qualification rate, high production efficiency and attractive appearance.
ALU-BOX COMPRISING A PROFILE AND THE PROFILE AS SUCH
The present invention relates to a metal-box (14) comprising a metal frame (15), at least one metal wall (13) and at least one metal bottom plate (12), wherein the metal frame (15) comprises a metal profile (1), wherein the metal profile (1) comprising an elongated element (2) and a cross-section (3), wherein the cross-section (3) comprising (i) a cavity (4), and the cavity (4) is enclosed by a first flange (5), a bottom part (6) and a first side (8) of a second flange (7), and (ii) a recess (9) enclosed by a second side (10) of the second flange (7) and the bottom part (6).
CONTAINER ASSEMBLY HAVING A HEAT-SEALED METAL END, A METAL END THEREFOR, AND A METHOD FOR MAKING SAME
A container assembly includes a container body having a side wall encircling an axis, and a metal end for attachment to an upper edge of the side wall via heat-sealing. The outer peripheral region is shaped prior to application to the container body such that an annular channel is defined between an inner chuck wall and an outer chuck wall of the metal end. The metal end is pushed straight onto the side wall such that the upper edge of the side wall is received into the channel. The surfaces of the side wall and the opposing surfaces of the chuck walls have heat-sealable material thereon. The metal end is heated to melt and fuse the heat-sealable layers, thereby sealing the metal end onto the side wall. The metal end is shaped such that the free edge of the outer chuck wall is not exposed.
Container assembly having a heat-sealed metal end, a metal end therefor, and a method for making same
A container assembly includes a container body having a side wall encircling an axis, and a metal end for attachment to an upper edge of the side wall via heat-sealing. The outer peripheral region is shaped prior to application to the container body such that an annular channel is defined between an inner chuck wall and an outer chuck wall of the metal end. The metal end is pushed straight onto the side wall such that the upper edge of the side wall is received into the channel. The surfaces of the side wall and the opposing surfaces of the chuck walls have heat-sealable material thereon. The metal end is heated to melt and fuse the heat-sealable layers, thereby sealing the metal end onto the side wall. The metal end is shaped such that the free edge of the outer chuck wall is not exposed.