Abstract:
A sheathing member mounting apparatus is provided with a support mechanism that supports a sheet member from the side of a protective layer, electric wire holding mechanisms that hold an electric wire portion in a state of being disposed along a bonding layer of the sheet member, and a folding mechanism that folds the sheet member in two. A second region supported by a second support portion is pivoted toward a first support portion, whereby the electric wire portion of a wire harness is sandwiched in the folded sheet member to be covered.
Abstract:
A wire harness assembly system is disclosed. The wire harness assembly system includes a grid tile designed to receive repositionable accessories to route wires along the grid tile. The grid tile includes a plurality of keyed holes extending from the top of the grid tile, through the grid tile, to the bottom of the grid tile. The grid tile also includes a locking surface on the bottom of the grid tile. The locking surface complements the plurality of keyed holes to receive the repositionable accessory and to maintain the repositionable accessory in a locked position.
Abstract:
Running over components such as an electrical wire when displacing a work table is inhibited. An assembly work conveyor device includes a plurality of work tables and a displacement support mechanism that includes a displacement driver causing the work tables to displace along an oval displacement path. The plurality of work tables are displaced along the oval displacement path in a state supported in a cantilevered manner by the displacement support mechanism and in a posture projecting toward an outer periphery of the oval displacement path.
Abstract:
A sheathing member mounting apparatus is provided with a support mechanism that supports a sheet member from the side of a protective layer, electric wire holding mechanisms that hold an electric wire portion in a state of being disposed along a bonding layer of the sheet member, and a folding mechanism that folds the sheet member in two. A second region supported by a second support portion is pivoted toward a first support portion, whereby the electric wire portion of a wire harness is sandwiched in the folded sheet member to be covered.
Abstract:
A wire harness is manufactured by: forming a standard harness by integrally forming exterior components with a standard electric wire at predetermined positions by a forming machine provided on upstream in a conveying direction of a conveying device for conveying a plurality of wiring boards in the conveying direction; wiring the standard harness on the wiring boards, and wiring a plurality of electric wires along the standard harness; and then bundling the standard harness and the plurality of electric wires.
Abstract:
A tape which has enhanced heat resistance, flame retardancy, and wearing resistance and is suitable for use in bundling a group of electric wires which will be laid in a high-temperature environment. The tape is configured using the same yarns (10) each composed of high-function fiber filaments (11) and general-purpose fiber filaments (12), as a warp (3) and a weft (4). The high-function fiber filaments are superior to the general-purpose fiber filaments in heat resistance, flame retardancy, and wearing resistance. The high-function fiber filaments are of at least one kind selected from paraaramid fibers, polyarylate fibers, ultrahigh-molecular polyethylene fibers, glass fibers, and polyphenylene sulfide fibers. The general-purpose fiber filaments comprise at least one selected from polyesters, polyethylene, and polypropylene.
Abstract:
Embodiments of the invention include a method for generating a two-dimensional (2D) flattened nailboard representation of a wiring harness in a three-dimensional (3D) computer-aided design (CAD) model. The nailboard representation invention may be used to provide a dimensionally accurate “flattened” view of a complex 3D wiring harness depicted in a CAD model, without cutting any of the wires included in the harness, and minimizing the overlap of multiple exposed wires present in wire loops.
Abstract:
The present invention relates to apparatus for manufacturing a harness of electrically conductive wire segments, the apparatus comprising a twisting tool (20) having at least two cavities (31 to 38), each cavity being associated with retaining means (43, 44) enabling at least a portion of a wire segment to be retained in the cavity, release means enabling said wire segment portion to be extracted from the cavity, and opening means (46) enabling said wire segment portion to be inserted into the cavity.
Abstract:
A wiring harness manufacturing method and a wiring harness manufacturing apparatus is provided, wherein manufacturing costs of a wiring harness is reduced. The wiring harness manufacturing apparatus (1) has a pair of wire stocking units (10a, 10b), a pair of cutting units (11a, 11b), a pair of joining units (12a, 12b), and a case insertion unit (13). Painting devices (14,15,16) are attached to one wire stocking unit (10a). Painting devices (17,18,19) are attached to one cutting unit (11a). Painting devices (18,19) are attached to one joining unit (12a). The painting devices (14,15,16,17,18,19) color the electric wire.
Abstract:
A quick acting gated retainer for wire, cable, or other elongated material requiring a permanent or temporary mount. The device features one or a pair of spring biased gates on one or both sides rotating and concurrently translating inwardly, during both the insertion and removal process of cable from the guide cavity formed to hold the inserted cable. This provides a clear line for both insertion and removal of cable or similar elongated objects from the guide cavity and prevention of damage to the inserted object from the gates which will naturally retract from contact with the inserted wire since the gates translate as well as rotate in their engagement. The nylon structure with the internal reinforcing guarantees a long lasting, rigid device that will not damage wires, cables or ropes held within the guide cavity.