Patent classifications
B29C2045/14278
Suspension seating surface edge encapsulation method, seating surface carrier and seat made therewith
A seat includes a seat surface having a periphery and a carrier overmolded onto the seat surface over the periphery. The carrier has a periphery and a frame is overmolded onto the carrier over the carrier periphery. The seat is assembled without fasteners. A method for making the seat includes overmolding a carrier onto a periphery of a seat surface to form a seat surface/carrier assembly, tensioning the seat surface/carrier assembly in a mold and overmolding a frame onto a periphery of the seat surface/carrier assembly.
SUSPENSION SEATING SURFACE EDGE ENCAPSULATION METHOD, SEATING SURFACE CARRIER AND SEAT MADE THEREWITH
A seat includes a seat surface having a periphery and a carrier overmolded onto the seat surface over the periphery. The carrier has a periphery and a frame is overmolded onto the carrier over the carrier periphery. The seat is assembled without fasteners. A method for making the seat includes overmolding a carrier onto a periphery of a seat surface to form a seat surface/carrier assembly, tensioning the seat surface/carrier assembly in a mold and overmolding a frame onto a periphery of the seat surface/carrier assembly.
Method and apparatus for producing primary packaging having an integrated septum and primary packaging having an integrated septum
The invention relates to a method for producing primary packaging having an integrated septum characterised by: a) providing a septum, b) providing an injection-molding die having two die halves, c) positioning the septum in the injection-molding die, d) moving the two die halves of the injection-molding die to form a cavity corresponding to the shape of the primary packaging to be produced, e) injecting a material into the cavity via an injection opening, where the two die halves of the injection-molding die pretensioningly holding the septum, and a rim of the septum is overmolded by the material, f) cooling the injected material while maintaining a holding pressure, g) moving the two die halves of the injection-molding die such that the produced primary packaging means having the integrated septum can be removed from the injection-molding die, and h) removing the produced primary packaging having the integrated septum from the injection-molding die.
Inverted Injection Method of Affixing a Termination to a Tensile Member
A method for attaching an anchor to an end of a tensile member by inverting the assembly of anchor and tensile member and injecting pressurized potting compound. A length of filaments of the tensile member are placed within a cavity through the anchor. The anchor and filaments are placed in an inverted position, with the distal end of the anchor facing downward and the cable extending upward out of the anchor. If the anchor has an open distal end this is sealed. Liquid potting compound is injected into the anchor cavity and allowed to solidify. During the solidification process, a controlled translation (pulling) of the cable is preferably introduced.
Inverted injection method of affixing a termination to a tensile member
A method for attaching an anchor to an end of a tensile member by inverting the assembly of anchor and tensile member and injecting pressurized potting compound. A length of filaments of the tensile member are placed within a cavity through the anchor. The anchor and filaments are placed in an inverted position, with the distal end of the anchor facing downward and the cable extending upward out of the anchor. If the anchor has an open distal end this is sealed. Liquid potting compound is injected into the anchor cavity and allowed to solidify. During the solidification process, a controlled translation (pulling) of the cable is preferably introduced.
Method and Apparatus for Producing Primary Packaging Having an Integrated Septum and Primary Packaging Having an Integrated Septum
The invention relates to a method for producing primary packaging having an integrated septum characterised by: a) providing a septum, b) providing an injection-molding die having two die halves, c) positioning the septum in the injection-molding die, d) moving the two die halves of the injection-molding die to form a cavity corresponding to the shape of the primary packaging to be produced, e) injecting a material into the cavity via an injection opening, where the two die halves of the injection-molding die pretensioningly holding the septum, and a rim of the septum is overmolded by the material, f) cooling the injected material while maintaining a holding pressure, g) moving the two die halves of the injection-molding die such that the produced primary packaging means having the integrated septum can be removed from the injection-molding die, and h) removing the produced primary packaging having the integrated septum from the injection-molding die.
Inverted Injection Method of Affixing a Termination to a Tensile Member
A method for attaching an anchor to an end of a tensile member by inverting the assembly of anchor and tensile member and injecting pressurized potting compound. A length of filaments of the tensile member are placed within a cavity through the anchor. The anchor and filaments are placed in an inverted position, with the distal end of the anchor facing downward and the cable extending upward out of the anchor. If the anchor has an open distal end this is sealed. Liquid potting compound is injected into the anchor cavity and allowed to solidify. During the solidification process, a controlled translation (pulling) of the cable is preferably introduced.
Inverted injection method of affixing a termination to a tensile member
A method for attaching an anchor to an end of a tensile member by inverting the assembly of anchor and tensile member and injecting pressurized potting compound. A length of filaments of the tensile member are placed within a cavity through the anchor. The anchor and filaments are placed in an inverted position, with the distal end of the anchor facing downward and the cable extending upward out of the anchor. If the anchor has an open distal end this is sealed. Liquid potting compound is injected into the anchor cavity and allowed to solidify. During the solidification process, a controlled translation (pulling) of the cable is preferably introduced.
Door trim armrest substrate structure
A vehicle armrest including a fabric member tensioned across a gap defined between inner and outer armrest substrates that are formed around a portion of the fabric member. At least one buckling member extends across the gap between the inner and outer armrest substrates and a cover member extends over and vertically supported by the fabric member.