Abstract:
An energy-absorbing element (5) for a vehicle component is provided. The element is formed of a composite material comprising a combination or mixture of mineral fibers, such as glass fibers, and organic fibers, such as polypropylene fibers.
Abstract:
Le procédé consiste à fabriquer un ensemble de commercialisation (6) constitué d'un outil à main (1) solidaire d'un plateau présentoir (2); l' outil à main (1) est obtenu par surmoulage d'un manche de manoeuvre (5) sur une tige (26) avec une matière thermoplastique; le plateau présentoir (2) est soit moulé dans la même matière, soit dans un matériau différent et rapporté et fixé par surmoulage, au cours de l'opération de surmoulage du manche de manoeuvre (5).
Abstract:
A bead of liquid encapsulant or underfilled material (16) is dispensed along one or more edges of the flip chip (12). A plenum is located along the sides of the chip (12) in which encapsulant or underfilled material has not been deposited, such as opposite the dispensed material. Thereafter, the plenum is subject to a negative pressure source for drawing a vacuum to the area beneath the chip (12) and the substrate (10). The negative pressure aids in the natural capillary underfilling action and for quicker and more effective underfilling of the chip. Simultaneous underfilling of a plurality of chips (12) can be achieved by mounting a like plurality of vacuum tools to a plate which is moved into registration with a like plurality of chip/substrate workstations. By operatively connecting the vacuum tools to a controller, and to appropriate valves which can be set to adjust the vacuum level.
Abstract:
A method of forming the outer package body of a product, comprising the steps of disposing, in a metal mold, a semi-finished product (50) formed of a plurality of components assembled integral with each other and filling a molten resin into the metal mold to cover ,with resin, the peripheral areas of the semi-finished product (50) with the opening parts (34, 35, 36) provided in the semi-finished product (50) at the portions in correspondence with a positive terminal (4), a negative terminal (5), and a temperature detection terminal (6) of the semi-finished product (50), or cover, with resin, the semi-finished product (50) by filling the resin into opening ends provided in outer package cases (51) to (54) to allow the semi-finished product (50) to be inserted therein after the semi-finished product (50) is stored in the outer package cases (51) to (54), whereby the outer package body of the product of thin closed structure can be formed with small size and excellent dustproofness and dripproofness.
Abstract:
An assembly of an operating knob and a case therefor, wherein the size is reduced by minimizing the gap between the knob and the case by utilizing thermal shrinkage occurring in the molding step so as to reduce the size of the knob as compared with the conventional. The operating knob (7) and the case (1) for guiding the movement of the knob (7) are formed of a synthetic resin in two colors and then separated from each other after molding to provide the assembly (K). The above thermal shrinkage permits the formation of a guide clearance required between the knob (7) and the case (1) after assembling, and this guide clearance in turn permits moving of the knob (7).
Abstract:
A sponge roll, such as a toner supply roll, a transfer roll, a cleaning roll, a developing roll and a charged roll which are used for a copier and a printer which utilize an electrophotographic system. The sponge roll has a shaft member, and an elastic sponge layer, at least a part of an outer circumferential surface of the shaft member being formed as a rough surface having a ten-point average roughness (Rz) of 5-300 mu m, the elastic sponge layer being integrally molded with the shaft member on the outer circumference of the shaft member without interposing a layer of a bonding agent therebetween. Merely forming a specific rough surface on the shaft member and molding the shaft member and elastic sponge layer together enable a large adhesive strength to be obtained therebetween, so that the sponge roll can sufficiently deliver a higher operating speed and a higher durability required by an electrophotographic copier, the sponge roll requiring no layer of a bonding agent between the shaft member and elastic sponge layer, unlike a conventional sponge roll, whereby it becomes possible to prevent oozed-out bonding agent which causes contamination, and render troublesome steps, such as a bonding agent application step and a bonding agent drying step unnecessary, i.e., simplify the sponge roll manufacturing steps.
Abstract:
Die Erfindung beschreibt ein Verfahren zur Herstellung eines Kabels, aufweisend ein Formwerkzeug (1) mit einer Kavität (2) und zumindest einer ersten Öffnung (3, 4), sowie eine Leitung (7), wobei die Leitung (7) aus zumindest einer Ader sowie einem, die zumindest eine Ader umgebenden Leitungsmantel (12) besteht. Erfindungsgemäß wird die Leitung (7) in die Kavität (2) eingelegt und über zumindest die erste Öffnung (3, 4) aus der Kavität (2) herausgeführt wird. Eine Formmasse wird mit einem Druck in die Kavität (2) des Formwerkzeugs (1) eingespritzt, wobei die Leitung (7) durch den Druck der Formmasse an eine Dichtfläche (10) der Kavität (2) gepresst wird und die Leitung (7) die Kavität (2) an der Dichtfläche (10) verschließt.
Abstract:
A method of forming a vehicle component comprising: • introducing at least one reinforcing tie (110) into a mould tool (142), the tie comprising at least one continuous reinforcing fibre portion (112) provided with a first retention portion (114A) at a first end and a second retention portion (114B) at a second end; • coupling the at least one continuous reinforcing fibre portion to the mould tool at a plurality of spaced apart locations (144) of the mould tool by coupling the retention portions to corresponding spaced apart retention portion locating features of the mould tool, wherein the retention portions are in the form of peg members (114A,114B) and the retention portion locating features are peg mount recesses (144) in the mould tool (142); and • introducing moulding material to the mould tool whereby the moulding material is moulded by the mould tool and the tie (110) is at least partially encapsulated by the moulding material.
Abstract:
A disclosed induction sealing device (100) for induction welding of a packaging material comprises an inductor coil (101) configured to induce an alternating current in a metal foil of the packaging material for inductive heating thereof, and a magnetic insert (102) encapsulating the inductor coil (101) apart from an outer portion (103) thereof to be arranged towards the packaging material to be sealed. The magnetic insert (102) is configured to interact with the packaging material to be sealed via at least one interactive surface (104). The induction sealing device (100) comprises a connection unit (105). The connection unit (105) comprises a parallel connection (106) to the inductor coil (101) and is configured for connection to an AC power source. A corresponding method (200) of manufacturing an induction sealing device (100) is also disclosed.
Abstract:
Verfahren zur Herstellung eines Verbundkörpers (1) umfassend einen Trägerkörper (2) und wenigstens einen Dekorkörper (3), vorzugsweise einen Schmuckstein (3a, 3b), wobei der Trägerkörper (2) thermoplastisches Material umfasst, gekennzeichnet durch die Schritte: • Anordnen des Dekorkörpers (3) auf dem Trägerkörper (2), • Erwärmen des Trägerkörpers (2), • Eindrücken des Dekorkörpers (3) in den Trägerkörper (2) mit einem Stempel (4) aus elastisch verformbarem Material, wobei das Material des Stempels (4) ausgewählt ist aus der Gruppe der Elastomere.