B29C51/10

INNER CASE FOR REFRIGERATOR AND METHOD OF MANUFACTURING THE SAME
20170097186 · 2017-04-06 ·

A method of manufacturing an inner case for a refrigerator includes disposing a heated inner case sheet above a mold in a chamber, disposing at least one of screw accommodation member on an external surface of the mold, facing the inner case sheet, curving the inner case sheet to be convex toward an opposite side to the mold, moving the mold toward an internal side of the inner case sheet, and adsorbing the inner case sheet onto the external surface of the mold to form the inner case sheet to correspond to a shape of the mold and insert-molding the screw accommodation member into the inner case sheet.

INNER CASE FOR REFRIGERATOR AND METHOD OF MANUFACTURING THE SAME
20170097186 · 2017-04-06 ·

A method of manufacturing an inner case for a refrigerator includes disposing a heated inner case sheet above a mold in a chamber, disposing at least one of screw accommodation member on an external surface of the mold, facing the inner case sheet, curving the inner case sheet to be convex toward an opposite side to the mold, moving the mold toward an internal side of the inner case sheet, and adsorbing the inner case sheet onto the external surface of the mold to form the inner case sheet to correspond to a shape of the mold and insert-molding the screw accommodation member into the inner case sheet.

Thermoforming with precision in-lay

A thermoforming in-lay technique is discussed that uses retractable pins to hold an in-lay piece securely in place in a primary mold. The in-lay piece is fabricated prior to the primary molding process and creates multiple pin receivers in the in-lay that are retractably engaged by the retractable pins when placed into the primary mold. When the primary substrate is formed into the primary mold, the retractable pins prevent the in-lay piece from moving out of position. Once the primary substrate has cooled sufficiently, the pins are retracted allowing the finished primary carrier art to be removed from the primary mold.

METHOD OF MANUFACTURING SPORTS PROTECTIVE EQUIPMENT, AND SPORT PROTECTIVE EQUIPMENT MANUFACTURED BY THE SAME
20170087786 · 2017-03-30 ·

Disclosed are a method of manufacturing sport protective equipment and sport protective equipment manufactured by the method. A thin casing is manufactured by a thin sheet material in a vacuum forming process; protrusions are formed apart from one another on a surface of the thin casing; a containing space is formed on an inner side of each protrusion for filling a filler; and a substrate is provided to seal the bottom of the thin casing, so that the filler in each of the containing spaces will not fall out, so as to improve the manufacturing efficiency and the product quality. The sport protective equipment manufactured by this method does not require any sewing manufacture or increase thickness, so that the flexibility of wearing and using is improved, and the thin casing and the filler are provided for absorbing shocks to improve the protective effect.

METHOD OF MANUFACTURING SPORTS PROTECTIVE EQUIPMENT, AND SPORT PROTECTIVE EQUIPMENT MANUFACTURED BY THE SAME
20170087786 · 2017-03-30 ·

Disclosed are a method of manufacturing sport protective equipment and sport protective equipment manufactured by the method. A thin casing is manufactured by a thin sheet material in a vacuum forming process; protrusions are formed apart from one another on a surface of the thin casing; a containing space is formed on an inner side of each protrusion for filling a filler; and a substrate is provided to seal the bottom of the thin casing, so that the filler in each of the containing spaces will not fall out, so as to improve the manufacturing efficiency and the product quality. The sport protective equipment manufactured by this method does not require any sewing manufacture or increase thickness, so that the flexibility of wearing and using is improved, and the thin casing and the filler are provided for absorbing shocks to improve the protective effect.

Light Weight Thermoplastic Flex Foam and Hybrid Duct System

An aerospace vessel including a fuselage, a means for causing the fuselage to fly coupled to the fuselage, and an environmental control system within the fuselage. The environmental control system includes a duct made of closed cell thermoplastic foam, such as polyvinylidene fluoride foam.

Light Weight Thermoplastic Flex Foam and Hybrid Duct System

An aerospace vessel including a fuselage, a means for causing the fuselage to fly coupled to the fuselage, and an environmental control system within the fuselage. The environmental control system includes a duct made of closed cell thermoplastic foam, such as polyvinylidene fluoride foam.

Artist Palette and Method of Making Same
20170080746 · 2017-03-23 ·

An artist palette having a tray with an upper surface, a plurality of recessed wells positioned in the tray, an aperture in an edge of the upper surface of the tray providing a place for a painter to hold the tray, a drip ledge groove positioned on a periphery of the upper surface of the tray including a first upwardly extending edge useful for removing excess paint and water from a paintbrush, and wherein the drip ledge groove serves to hold paint or water that has been removed from the paintbrush.

Thermoformed Article Formed from a Porous Polymeric Sheet

A thermoformed article that is formed from a polymeric sheet having a thickness of from about 0.1 to about 100 millimeters is provided. The polymeric sheet contains a thermoplastic composition that includes a continuous phase that includes a matrix polymer. A microinclusion additive and nanoinclusion additive are dispersed within the continuous phase in the form of discrete domains, and a porous network is defined in the composition that includes a plurality of nanopores having an average cross-sectional dimension of about 800 nanometers or less.

Thermoformed Article Formed from a Porous Polymeric Sheet

A thermoformed article that is formed from a polymeric sheet having a thickness of from about 0.1 to about 100 millimeters is provided. The polymeric sheet contains a thermoplastic composition that includes a continuous phase that includes a matrix polymer. A microinclusion additive and nanoinclusion additive are dispersed within the continuous phase in the form of discrete domains, and a porous network is defined in the composition that includes a plurality of nanopores having an average cross-sectional dimension of about 800 nanometers or less.