Clamp, clamp-equipped wire harness, and harness installation method
The clamp design with a guide and movement restricting mechanism addresses attachment issues by absorbing positional tolerances and manufacturing errors, ensuring secure and efficient wire harness fixation to vehicle body panels.
Patent Information
- Application Number
- JP2021189136
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Filing Date
- 2021-11-22
- Publication Date
- 2025-09-17
- Estimated Expiration
- 2041-11-22
AI Technical Summary
Existing wire harness clamps face difficulties in attaching to vehicle body panels due to dimensional tolerances and manufacturing errors in through-holes, especially with reduced wire harness lengths aimed at vehicle weight reduction.
A clamp design featuring a fixing member with a guide portion and movement restricting portion that allows relative movement along a perpendicular direction, incorporating a harness holding member with a guide recess and engaging protrusion to absorb positional tolerances and manufacturing errors, and a stop lever to restrict excessive movement.
The clamp effectively absorbs positional tolerances and manufacturing errors, reduces load on the fixing member, and prevents detachment, while allowing easy adjustment and attachment to vehicle body panels.
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Abstract
Description
[Technical Field]
[0001] The present invention relates to a clamp for fixing a wire harness to, for example, a body panel of a vehicle, a clamp-equipped wire harness, and a harness mounting method. [Background technology]
[0002] A long wire harness electrically connecting electrical devices mounted on a vehicle is routed in a two-dimensional or three-dimensional complex routing path that combines straight and curved portions, and is attached to a body panel of the vehicle via a band clamp such as that disclosed in Patent Document 1.
[0003] The band clamp disclosed in Patent Document 1 will be described in detail. This band clamp can hold a wire harness by wrapping a strip-shaped band around the wire harness and inserting a tip end of the band into a buckle connected to the base end of the band and tightening it. Then, the wire harness can be fixed to the vehicle body panel by inserting and fixing a fixing member (anchor) of the band clamp holding the wire harness into a through-hole, which is a fixing location in the vehicle body panel.
[0004] A long wire harness is routed along a complex routing path and is therefore fixed to a vehicle body panel using multiple band clamps. However, in recent years, in order to reduce the weight of vehicles, the excess length of the wire harness has been shortened, which has led to a problem that if dimensional tolerances or manufacturing errors occur in the through holes in the vehicle body panel, it becomes difficult to attach the fixing members of the clamps to the through holes. [Prior art documents] [Patent documents]
[0005] [Patent Document 1] Japanese Patent Application Laid-Open No. 2007-282352 Summary of the Invention [Problem to be solved by the invention]
[0006] In view of the above-mentioned problems, an object of the present invention is to provide a clamp, a clamp-equipped wire harness, and a harness attaching method that can absorb positional tolerances and manufacturing errors relative to a through-hole. [Means for solving the problem]
[0007] The present invention relates to a clamp for routing a wire harness on a vehicle body, the clamp comprising: a fixing member that is inserted into a through-hole in the vehicle body and fixed to the vehicle body; and a harness holding member that is attached to the fixing member and holds the wire harness. The clamp also comprises a guide portion that guides the fixing member relative to the harness holding member along a direction perpendicular to an insertion direction of the wire harness through the through-hole; and a movement restricting portion that restricts relative movement of the fixing member along the direction perpendicular to the insertion direction by the guide portion within a predetermined range. The harness holding member has a long-shaped placing portion on which the wire harness is placed, the guide portion guides the fixing member relative to the harness holding member along the longitudinal direction of the placing portion, and the fixing member is provided with a protruding portion that protrudes in a guiding direction for guiding the fixing member in the harness holding member and in a direction intersecting the insertion direction when the fixing member is attached to the harness holding member. It is characterized by: The present invention also provides a clamp-equipped wire harness including the clamp described above and the wire harness held by the harness holding member.
[0008] The wire harness includes a covered electric wire formed by bundling a plurality of round electric wires, a bundle of the covered electric wires, and a flat electric wire. The above-mentioned electric wires include not only conductive wires that electrically connect electrical devices mounted on a vehicle, but also communication wires such as optical fibers that transmit and receive signals between electrical devices. The orthogonal direction includes a direction intersecting the longitudinal direction and the insertion direction of the wire harness, as well as a direction intersecting the longitudinal direction and the insertion direction.
[0009] The harness holding member includes a plate-shaped harness holding member having a long-shaped mounting portion on which the wire harness is placed, and a harness holding member having a band structure that is wound around the wire harness to hold the wire harness in a wound state. The fixing member and the harness holding member may be configured to be separable from each other.
[0010] Furthermore, the movement restricting portion is not particularly limited in shape as long as it restricts the relative movement of the fixing member along the guide portion. The movement restricting portion may be integral with the harness holding member or may be separate. For example, if the guide portion is configured with a guide recess and an engaging protrusion that is movable along the guide recess, a plug portion that closes a part of the guide recess may be provided, and the plug portion may serve as the movement restricting portion. Alternatively, a pin that restricts the movement of the engaging protrusion may be provided, and the pin may serve as the movement restricting portion.
[0011] According to this invention, even when the fixing member is fixed to the through-hole of the vehicle body with the wire harness held by the harness holding member, the harness holding member and the fixing member can move relative to each other along the guide portion, which makes it possible to absorb positional tolerances and manufacturing errors between the clamp that holds the wire harness on the harness holding member and the through-hole.
[0012] Furthermore, since the harness holding member and the fixing member can move relative to each other along the guide portion, even if an external force acts on the harness holding member due to tension of the wire harness, the load acting on the fixing member can be reduced. Furthermore, since the movement restriction portion can restrict the relative movement of the fixed member within a predetermined range, the fixed member can be prevented from moving excessively relative to the guide portion, and excessive movement can be prevented from causing the fixed member to come off the guide portion.
[0013] In addition, the harness holding member has a long-shaped placing portion on which the wire harness is placed, and the guide portion is configured to guide the fixing member relative to the harness holding member along the longitudinal direction of the placing portion. This allows the harness holding member to be made more compact in the width direction.
[0014] Furthermore, the fixing member is provided with a protruding portion that protrudes in a direction intersecting the insertion direction and a guiding direction for guiding the fixing member in the harness holding member when the fixing member is attached to the harness holding member. .
[0015] This allows the position of the fixing member to be estimated from the outside by visually inspecting the protrusion, and when inserting the fixing member into the through hole in the vehicle body, the position of the fixing member can be changed by grasping the protrusion so that the fixing member is in a position corresponding to the through hole.
[0016] In one aspect of the present invention, the guide portion may be composed of a guide recess provided on one of the fixing member and the harness holding member, recessed in a direction perpendicular to the insertion direction and a guide direction that guides the fixing member relative to one another, and an engaging protrusion provided on the other of the fixing member and the harness holding member that hooks onto the guide recess.
[0017] This invention allows the engaging protrusion to be hooked onto the guide recess with a simple structure, thereby preventing the engaging protrusion from falling out of the guide recess and allowing the fixing member to move reliably relative to the harness holding member.
[0018] In another aspect of the present invention, an insertion portion into which the engaging protrusion can be inserted and which is attached to the guide recess may be provided on one side, and the movement restricting portion may restrict the movement of the engaging protrusion into the insertion portion.
[0019] The insertion portion may be provided at an end of the guide recess in the guide direction, or may be provided in a direction perpendicular to the guide direction. The movement restricting portion includes a structure that restricts movement of the engaging protrusion toward the insertion portion by directly or indirectly blocking part or all of the insertion portion, or a configuration that restricts movement of the engaging protrusion toward the insertion portion outside the guide recess.
[0020] According to this invention, the engaging protrusion can be inserted into and removed from the guide recess via the insertion portion, so the fixing member can be replaced according to the through-hole of the vehicle body. Also, the movement restricting portion restricts the engaging protrusion inserted into the guide recess from moving toward the insertion portion, so that the fixing member can be reliably prevented from falling out of the insertion portion.
[0021] In another aspect of the present invention, the width direction is defined as a direction perpendicular to the insertion direction and the guiding direction that guides the fixing member relative to the harness holding member, and the movement regulating portion is connected to one side of the harness holding member in the width direction and includes a pivot portion that pivots relative to the harness holding member and a locking portion that locks with the other side of the harness holding member in the width direction, and the movement regulating portion may restrict the relative movement of the fixing member with respect to the guide portion when the locking portion is locked.
[0022] The movement restricting portion may be provided in one or more. Note that when a plurality of movement restricting portions are provided along the guiding direction, the range of relative movement of the fixed member along the guiding portion may be restricted in stages. The pivot portion may be formed integrally with or separate from the harness holding member.
[0023] According to this invention, the movement of the fixing member along the guide portion can be restricted with a simple structure in which the fixing member pivots about the pivot portion as a pivot axis and is fixed by engaging the engaging portion. Furthermore, when the insertion portion is provided, the fixing member can be attached to the harness holding member with the movement restricting portion open, using the pivot portion as a fulcrum, and the relative movement of the fixing member can be restricted within a predetermined range with the locking portion locked and fixed. This makes it possible to easily restrict the relative movement of the fixing member in the guiding direction with a simple structure. Furthermore, if the pivot portion is formed integrally with the harness holding member, the number of parts can be reduced.
[0024] In another aspect of the present invention, the harness holding member may be provided with a central protrusion that protrudes in a direction perpendicular to the guiding direction and the insertion direction at the central portion of a predetermined range that guides the fixing member. According to this invention, by checking the positional relationship between the protrusion and the central convex portion, it is possible to visually check the variation of the fixing member relative to the central convex portion within a predetermined range of the harness holding member.
[0025] In another aspect of the present invention, the harness holding member may be provided with an inner convex portion that protrudes in a direction perpendicular to the guiding direction and the insertion direction at a position corresponding to the inner end of the movement restricting portion in the guiding direction.
[0026] With this invention, the movement range of the harness holding member can be confirmed by visually checking the positional relationship between the protrusion and the inner convex portion, and the wire harness can be fixed with fixing tape using the position of the inner convex portion as a guide.
[0027] As another aspect of the present invention, the harness holding member may be provided with an outer protrusion for preventing removal of a fixing tape that fixes the wire harness with the tape. According to this invention, when the wire harness is fixed to the harness holding member with the fixing tape, the outer convex portion can prevent the fixing tape from coming off.
[0028] The harness installation method according to the present invention involves using the above-mentioned clamp to tape the wire harness to the harness holding member, guiding the fixing member attached to the harness holding member along the guide portion to a position corresponding to the through hole, and fixing the fixing member to the through hole in the vehicle body.
[0029] According to this invention, after the wire harness is fixed to the harness holding member with tape, when the fixing member is fixed to the through hole in the vehicle body, the fixing member and the harness holding member can move relative to each other along the guide portion, so that the positional tolerance and manufacturing error between the clamp and the through hole can be absorbed.
[0030] Similarly, in the harness installation method according to the present invention, the harness holding member is fixed by tape to the longitudinal inside of the wire harness using the above-mentioned clamp, the fixing member attached to the harness holding member is guided along the guide portion to a position corresponding to the through hole, and the fixing member is fixed to the through hole in the vehicle body.
[0031] This invention makes it possible to absorb tolerances and manufacturing errors on the inner longitudinal side (central portion) of the wire harness. In other words, when three or more clamps are attached to a wire harness, the clip of the present invention can be attached to the inner longitudinal side (central portion) and regular clamps can be used in other locations on the wire harness. This makes it possible to absorb tolerances and manufacturing errors while reducing the total number of parts. [Effects of the Invention]
[0032] According to the present invention, it is possible to provide a clamp, a clamp-equipped wire harness, and a harness attaching method that can absorb positional tolerances and manufacturing errors relative to a through-hole. [Brief explanation of the drawings]
[0033] [Figure 1] FIG. [Figure 2] FIG. [Figure 3] 3A and 3B are side and rear views of an anchor which is a fixing member. [Figure 4] FIG. [Figure 5] FIG. 5 is a bottom perspective view of the plate, showing the state as seen from a different direction than in FIG. 4. [Figure 6] Top view of the plate. [Figure 7] Bottom view of the plate. [Figure 8] 7 is a cross-sectional view taken along line AA in FIG. 6. [Figure 9] FIG. 7 is a cross-sectional view taken along line BB in FIG. 6. [Figure 10] FIG. 10 is a cross-sectional view of the plate with the insertion section blocked by the stop lever. [Figure 11] FIG. [Figure 12] 12 is a cross-sectional view taken along line CC in FIG. 11. [Figure 13] Left side view of the clamp. [Figure 14] 14 is a cross-sectional view taken along line DD in FIG. 13. DETAILED DESCRIPTION OF THE INVENTION
[0034] An embodiment of the present invention will be described in detail with reference to the drawings. Fig. 1 shows a top perspective view of the clamp 1, Fig. 2 shows a bottom perspective view of the clamp 1, and Figs. 3(a) and 3(b) show a side view and a rear view of the fixing member 3.
[0035] 4 shows a bottom perspective view of plate 4, Fig. 5 shows a bottom perspective view of plate 4 seen from a different direction than Fig. 4, Fig. 6 is a plan view of plate 4, and Fig. 7 shows a bottom view of plate 4. Furthermore, Fig. 8 shows a cross-sectional view taken along line AA in Fig. 6, Fig. 9 shows a cross-sectional view taken along line BB in Fig. 6, and Fig. 10 shows a cross-sectional view corresponding to the cross-sectional view taken along line BB in Fig. 6, with the insertion portion 39 of the guide recess 48 blocked by the stop lever 6.
[0036] 11 shows a plan view of the clamp 1, FIG. 12 shows a cross-sectional view taken along the CC arrow in FIG. 11, FIG. 13 shows a left side view of the clamp 1, and FIG. 14 shows a cross-sectional view taken along the DD arrow in FIG.
[0037] In the present application, the up-down direction in Fig. 1 is defined as the height direction H, the longitudinal direction of the wire harness 2 is defined as the front-rear direction L, and the direction perpendicular to the height direction H and the front-rear direction L is defined as the left-right direction W. In Fig. 1, the left side along the front-rear direction L is defined as the front side Lf, and the right side along the front-rear direction L is defined as the rear side Lb. Similarly, the right side along the left-rear direction W is defined as the left side Wl, the left side along the left-rear direction W is defined as the right side Wr, and the upper side along the height direction H is defined as the upper side Hu, and the lower side is defined as the lower side Hd. These directions are the same in Figs. 2 to 14.
[0038] 1, the clamp-attached wire harness 100 is composed of a clamp 1 that is inserted into and fixed to an anchor hole 91 in a body panel 90, and a wire harness 2 that is held by the clamp 1. The anchor hole 91 is a through-hole that penetrates the body panel 90 in the plate thickness direction, and is formed in a generally oval shape in a plan view.
[0039] The clamp 1 is used to route the wire harness 2 at a predetermined location in a body panel 90, and as shown in Figures 1 and 2, has a fixing member 3 that is inserted into an anchor hole 91 to fix it to the body panel 90, and a plate 4 that serves as a harness holding member to which the fixing member 3 is attached and that holds the wire harness 2. The fixing member 3 is configured to be detachable from the plate 4.
[0040] The wire harness 2 may be any of a covered electric wire formed by bundling a plurality of round electric wires, a bundle of covered electric wires, and a flat electric wire, but the illustrated embodiment illustrates a wire harness formed by bundling a plurality of round electric wires. As shown in Fig. 1, the wire harness 2 is fixed to the plate 4 by wrapping the wire harness 2 and the plate 4 together with a fixing tape 7. The electric wires may include, in addition to conductive wires that electrically connect electric devices to each other, communication wires that transmit and receive signals between the electric devices.
[0041] The fixing member 3 is a so-called anchor that can be fixed to a fixing target (body panel 90), and is mainly composed of an anchor body 30 that is long in the height direction H, as shown in FIGS. The anchor body 30 is formed in a generally oval shape when viewed from the lower side Hd, and is inserted into an anchor hole 91 in a body panel 90 to be fixed (see FIGS. 1 and 12). Note that, since the cross-sectional shape of the anchor body 30 is oval, the position of the anchor body 30 cannot be adjusted after it is attached to the anchor hole 91.
[0042] As shown in Figures 3(a) and 3(b), the anchor body 30 is composed of a fixed shaft portion 31 extending downward, and locking arms 32, 32 extending in the front-to-rear direction L from the tip of the fixed shaft portion 31. The anchor body 30 is also provided with an umbrella-shaped panel abutment portion 33 at its upper end.
[0043] The locking arms 32, 32 have their tips connected to the tip of the fixed shaft portion 31 and extend in the front-to-rear direction L. The locking arms 32, 32 gradually move away from the fixed shaft portion 31 from the tip side toward the base end side of the fixed shaft portion 31.
[0044] The panel abutment portion 33 is formed in a generally oval shape when viewed from the lower side Hd, and abuts against the surface of the body panel 90 when the anchor body 30 is inserted into the anchor hole 91 of the body panel 90. In addition, the panel abutment portion 33 is inclined downward Hd as it extends radially outward, and therefore its elastic force allows a load to be applied in a direction away from the body panel 90, which ultimately contributes to stably supporting the clamp 1 (see FIG. 12).
[0045] When the anchor body 30 configured in this manner is inserted into the anchor hole 91, which is the fixing point in the body panel 90, the locking arms 32, 32 can be locked onto the edge of the anchor hole 91, and the panel abutment portion 33 abuts against the surface of the body panel 90, sandwiching the body panel 90 between the locking arms 32, 32 and the panel abutment portion 33, thereby fixing the clamp 1 to the body panel 90.
[0046] In addition, as shown in Figures 3(a) and 3(b), an upper wall portion 34 having a roughly rectangular shape in a plan view is integrally formed at the upper central portion of the panel abutment portion 33 of the fixing member 3, and a square-shaped neck portion 35 which is slightly smaller than the upper wall portion 34 in a plan view protrudes toward the upper side Hu at the central part of the upper wall portion 34 in the left-right direction W, and an engaging protrusion 36 is integrally formed via the neck portion 35. As shown in Figures 3(a) and 3(b), this engagement protrusion 36 is formed so as to protrude in the left-right direction W (left side Wl and right side Wr) from the upper end portion of the neck portion 35, and has a flat upper surface.
[0047] The fixed member 3 is also provided with a protrusion 37 that protrudes from the upper wall portion 34 toward the left side Wl. More specifically, the protrusion 37 has a horizontal piece 371 extending outward to the left side from the upper wall 34, and a vertical piece 372 extending upward from the outer end of the horizontal piece 371 to the upper side Hu, and the horizontal piece 371 and the vertical piece 372 are integrally formed into a generally L-shape in front view. In addition, a protruding piece 373 protruding toward the engaging protrusion 36 is provided at the upper end portion of the vertical piece 372.
[0048] The protruding portion 37 configured in this manner is formed so that, when the fixing member 3 is attached to the plate 4, it protrudes to the left side Wl beyond the left end of an upper surface portion 41 (described later), and the upper end of the vertical piece portion 372 of the protruding portion 37 extends further upward to the upper side Hu than the top of the plate 4. The protruding piece 373 is disposed on the upper side Hu of the upper surface portion 41 (see FIG. 14).
[0049] The plate 4 is a harness holding member that holds the wire harness 2, and as shown in Figures 4 to 8, is composed of a plate body 40 that is a hollow plate-like body that extends along the front-to-rear direction L of the wire harness 2.
[0050] The plate main body 40 has an upper surface portion 41 as a long-shaped mounting portion on which the wire harness 2 is placed, a left side surface portion 42 extending from the left end of the upper surface portion 41 in the left-right direction W to the downward side Hd, and a right side surface portion 43 extending from the right end of the upper surface portion 41 to the downward side Hd.
[0051] In addition, the plate body 40 has, in a range of approximately two-thirds of the front side Lf, a left bottom surface portion 44 extending from the lower end of the left side surface portion 42 to the right side Wr parallel to the upper surface portion 41, and a right bottom surface portion 45 extending from the lower end of the right side surface portion 43 to the left side Wl parallel to the upper surface portion 41.
[0052] On the other hand, as shown in Figures 4, 5 and 7, in the range excluding the area where the left bottom surface portion 44 and the right bottom surface portion 45 are provided, i.e., in the range of approximately one-third of the front side Lf of the plate main body 40, the lower end of the left side surface portion 42 and the lower end of the right side surface portion 43 are connected by a continuous bottom surface portion 46.
[0053] The distance between the left bottom surface portion 44 and the right bottom surface portion 45 is configured to be slightly longer than the width of the neck portion 35. In other words, an opening 47 is formed between the left bottom surface portion 44 and the right bottom surface portion 45 along the front-rear direction L, through which the neck portion 35 of the fixing member 3 is inserted so as to be movable in the front-rear direction L.
[0054] Furthermore, as shown in Figures 4, 5, 7 and 8, a guide recess 48 is formed between the top surface portion 41 and the left and right bottom surfaces 44 and 45 of the plate body 40 of the plate 4, which is connected to the opening 47 and extends in the front-to-rear direction L over the entire length of the plate body 40 in the front-to-rear direction L.
[0055] More specifically, the width of the guide recess 48, i.e., the distance between the inner wall of the left side surface portion 42 and the inner wall of the right side surface portion 43, is configured to be slightly longer than the width of the engaging protrusion 36 in the left-right direction W, and the height of the guide recess 48, i.e., the distance between the top surface portion 41 and the left bottom surface portion 44 and the right bottom surface portion 45, is configured to be slightly longer than the height of the engaging protrusion 36. In other words, the guide recess 48 recesses the inside of the plate main body 40 in the left-right direction W.
[0056] The guide recess 48 configured in this manner is configured to hook onto the engaging protrusion 36 of the fixing member 3 and move in the front-to-rear direction L. The guide recess 48, together with the engaging protrusion 36 of the fixing member 3, configures the guide portion 5 that guides the fixing member 3 relative to the plate 4.
[0057] That is, the guide portion 5, which is composed of the guide recess 48 and the engaging protrusion 36, can guide the fixing member 3 relative to the plate 4 along the front-rear direction L, as shown in Fig. 14. This allows the plate 4 to be made compact in the left-right direction W.
[0058] The opening 47 and the guide recess 48 are connected to the end of the front side Lf of the plate body 40. That is, the end of the rear side Lb of the plate body 40 is formed with an insertion portion 49 that is connected to the outside and into which the engagement protrusion 36 can be inserted and attached to the guide recess 48 (see FIG. 7). This allows the fixing member 3 to be replaced in accordance with the anchor hole 91 of the body panel 90.
[0059] 4, 5, 7, 9, and 10, a stop lever 6 is provided at the rear of the plate-shaped plate body 40, more specifically, in the range of one-third of the rear side Lb of the plate body 40. In other words, the stop lever 6 is provided on the opposite side of the plate body 40 from the front part where the continuous bottom surface portion 46 is provided.
[0060] In more detail, as shown in Figures 4 to 10, the stop lever 6 is a cover body that is connected to the right side Wr of the plate 4 in the left-right direction W and has a plastic hinge 61 that is a pivot part that moves the plate 4 relative to it, and a locking part 62 that locks with the left side Wl of the plate 4 in the left-right direction W, which is the opposite side of the plastic hinge 61.
[0061] More specifically, the stop lever 6 is composed of a cover portion 63 that covers the lower part of the opening 47, a base end side connecting piece 64 that connects the base end of the cover portion 63 to the resin hinge 61, and a free end side connecting piece 65 that connects the free end of the cover portion 63 to the locking portion 62. A locking projection 421 for locking the locking portion 62 is integrally formed on the left side surface 42 of the plate 4 so as to protrude outward from the left side surface 42 .
[0062] 9 and 10, an engagement protrusion 66 is provided on the inner surface of the base end side connecting piece 64 of the stop lever 6, which protrudes toward the right side surface 43 of the plate 4 when the engagement portion 62 is engaged with the engagement protrusion 421. In addition, on the right side surface 43 of the plate 4, a receiving portion 431 (so-called retainer) that receives the engagement protrusion 66 protrudes outward to the right at a position that corresponds to the engagement protrusion 66 when the engagement portion 62 is engaged with the engagement protrusion 421.
[0063] The stop lever 6 configured in this manner can engage or disengage the locking portion 62 and the locking protrusion 421 by pivoting the stop lever 6 about the resin hinge 61 that is aligned in the front-rear direction L of the plate body 40 as a pivot axis. This allows the stop lever 6 to be opened or closed relative to the plate body 40.
[0064] In more detail, when the stop lever 6 is rotated downward from the open state shown in Figure 9, the locking portion 62 of the stop lever 6 is locked with the locking protrusion 421 of the plate 4, and the engaging protrusion 66 of the stop lever 6 is received by the receiving portion 431 of the plate 4 (see Figure 10).
[0065] At this time, the abutment between the engaging protrusion 66 and the receiving portion 431 prevents the locking portion 62 from coming off the locking protrusion 421 even when an external force is applied to the stop lever 6, for example, an external force that presses the stop lever 6 from the right side Wr to the left side Wl.
[0066] 10, when the locking portion 62 and the locking projection 421 are locked together, the base end connecting piece 64 extends in the height direction H along the right side surface 43 of the plate 4. The cover portion 63 extends in the left-right direction W along the left bottom surface 44 and right bottom surface 45 of the plate 4. The free end connecting piece 65 extends diagonally downward Hd and to the left side Wl from the free end of the cover portion 63. The locking portion 62 extends from the tip of the free end connecting piece 65 to the right side Wr. The stop lever 6 can close the guide recess 48 and the lower part of the opening 47.
[0067] As shown in Figures 4 to 7, the left side surface portion 42 of the plate 4 is provided with a central protrusion 80 in the central portion in the front-to-rear direction L that protrudes in a direction perpendicular to the front-to-rear direction L and the lower side Hd, i.e., toward the left side Wl. Furthermore, the left side surface portion 42 of the plate 4 has front and rear inner protrusions 81, 82 that protrude toward the left side Wl at positions corresponding to the inner end of the stop lever 6 and the rear end of the continuous bottom surface portion 46.
[0068] In this embodiment, the protruding lengths of the central convex portion 80 and the inner convex portions 81, 82 from the left side surface portion 42 of the plate main body 40 are the same, but the protruding lengths of the central convex portion 80 and the inner convex portions 81, 82 may be different.
[0069] In addition, in this embodiment, the central convex portion 80 and the inner convex portions 81, 82 are formed in the shape of a rectangular column or a square tube with a bottom, but they are not limited to the shape shown in the figure as long as they protrude outward from the left side surface portion 42.
[0070] On the other hand, as shown in FIGS. 4 and 5, the plate 4 is provided with outer protrusions 83 and 84 that prevent the fixing tape 7 that fixes the wire harness 2 with the tape from coming off. The front outer protrusion 83 is integrally formed with the front end of the plate body 40. The outer protrusion 83 has a protrusion 831 that protrudes outward from the front end of the left side surface portion 42 and a protrusion 832 that protrudes downward Hd from the front end of the continuous bottom surface portion 46, and does not protrude from the top surface portion 41 or the right side surface portion 43.
[0071] Further, the rear outer protrusion 84 is integrally formed with the rear end of the plate body 40. The outer protrusion 84 has a protrusion 841 that protrudes outward from the rear end of the left side surface 42, and is structured so as not to protrude from the top surface 41, the right side surface 43, the left bottom surface 44, or the right bottom surface 45.
[0072] As shown in FIG. 7, the protruding length of the outer convex portions 83 and 84 from the left side surface portion 42 is set to be the same as the protruding length of the central convex portion 80 and the inner convex portions 81 and 82 from the left side surface portion 42, but the protruding lengths may be different.
[0073] Next, a method for attaching the harness will be described. To attach the wire harness 2 to the body panel 90, first, the stop lever 6 is opened (see FIG. 9), the neck portion 35 and the engaging protrusion 36 of the fixing member 3 are inserted from the insertion portion 49 into the opening 47 and the guide recess 48 of the plate 4, and the fixing member 3 is moved forward Lf to a position where it exceeds the inner protrusion 82, and the stop lever 6 is used to close the guide recess 48 and the lower portion of the opening 47 as shown in FIG. 10 (anchor placement process).
[0074] As a result, the engaging protrusion 36 catches on the guide recess 48, allowing the fixing member 3 to reliably move relative to the plate 4 in the front-to-rear direction L. Furthermore, because the stop lever 6 closes the guide recess 48 and the lower portion of the opening 47, the relative movement of the fixing member 3 toward the rear side Lb is restricted by the stop lever 6, and the relative movement of the fixing member 3 toward the front side Lf is restricted by the continuous bottom surface portion 46. In other words, the continuous bottom surface portion 46 and the stop lever 6 can restrict the relative movement of the fixing member 3 along the front-to-rear direction L within the movement restriction range α (see FIGS. 7, 8, and 12).
[0075] Furthermore, by blocking the insertion portion 49 (specifically, the insertion passage including the insertion portion 49 when the fixing member 3 is attached) with the stop lever 6, it is possible to prevent the fixing member 3 from falling off from the insertion portion 49 when the plate 4 and the fixing member 3 move relative to each other.
[0076] Next, the wire harness 2 is placed on the upper surface portion 41, which is an elongated placing portion, and the wire harness 2 and the plate 4 are fixed together with the fixing tape 7 (tape fixing process). More specifically, with the wire harness 2 placed on the upper surface portion 41, the wire harness 2 and the plate 4 are fixed together by wrapping the fixing tape 7 between the inner convex portion 81 and the outer convex portion 83 and between the inner convex portion 82 and the outer convex portion 84. At this time, the wire harness 2 can be fixed with the fixing tape 7 using the positions of the inner convex portions 81, 82 protruding from the left side surface portion 42 toward the left side Wl as guides.
[0077] Then, the protrusion 37 that protrudes to the left side Wl beyond the upper surface portion 41 is grasped, and the position of the fixing member 3 is manipulated so that the fixing member 3 is in a position corresponding to the anchor hole 91, and the position of the fixing member 3 relative to the plate 4 is adjusted (anchor position adjustment process), and the fixing member 3 is fixed to the anchor hole 91 of the body panel 90 (anchor fixing process).
[0078] In this way, when the plate 4 to which the wire harness 2 is fixed is fixed to the anchor hole 91 of the body panel 90 via the fixing member 3, the position of the fixing member 3 is relatively difficult to see. However, by visually checking the protrusion 37 that protrudes toward the left side Wl beyond the upper surface portion 41, the position of the fixing member 3 can be easily estimated from the outside. Therefore, the operability of adjusting the position of the fixing member 3 can be improved, and the fixing member 3 can be easily inserted into the anchor hole 91.
[0079] According to this method, after the wire harness 2 is fixed to the plate 4 with tape, when the fixing member 3 is fixed to the anchor hole 91 of the body panel 90, the fixing member 3 and the plate 4 can be moved relative to each other in the fore-and-aft direction L along the guide portion 5, thereby absorbing the positional tolerance and manufacturing error between the plate 4 and the anchor hole 91.
[0080] Furthermore, when three or more clamps are attached to the wire harness 2, the clamp 1 of this embodiment is attached to the central portion of the wire harness 2 in the fore-and-aft direction L, and normal clamps are used at other locations of the wire harness 2, sandwiching the clamp 1. This allows the clamp 1 attached in the center to absorb tolerances and manufacturing errors, while reducing the total number of parts.
[0081] Furthermore, by blocking the lower part of the guide recess 48 with the stop lever 6, the relative movement of the fixed member 3 can be restricted within the movement restriction range α, thereby preventing the fixed member 3 from moving excessively relative to the guide portion 5 and preventing the fixed member 3 from coming off the guide portion 5 due to excessive movement in the forward / backward direction L. Furthermore, since the plate 4 and the fixing member 3 can move relative to each other in the forward / backward direction L along the guide portion 5, even if an external force acts on the plate 4 due to the tension of the wire harness 2, the load acting on the fixing member 3 can be reduced.
[0082] Furthermore, by checking the positional relationship between the central protrusion 80 that protrudes from the central part of the left side surface portion 42 in the fore-and-aft direction L to the left side Wl and the protrusion 37, the variation of the fixing member 3 relative to the central protrusion 80 (in other words, the tolerance and manufacturing error of the anchor hole 91) can be visually recognized within the movement restriction range α of the plate 4.
[0083] In this way, the clamp 1 that routes the wire harness 2 to the body panel 90 has a fixing member 3 that is inserted into the anchor hole 91 in the body panel 90 and fixed to the body panel 90, and a plate 4 that is attached to the fixing member 3 and holds the wire harness 2.The clamp 1 is also provided with a guide portion 5 that guides the fixing member 3 relative to the plate 4 along the fore-and-aft direction L that is perpendicular to the lower side Hd that is inserted into the anchor hole 91, and a continuous bottom portion 46 and a stop lever 6 that restrict the relative movement of the fixing member 3 along the fore-and-aft direction L by the guide portion 5 within the movement restriction range α. The clamp 1 and the wire harness 2 held by the plate 4 constitute a clamp-attached wire harness 100.
[0084] As a result, even when the fixing member 3 is fixed to the anchor hole 91 of the body panel 90 with the wire harness 2 held on the plate 4, the plate 4 and the fixing member 3 can move relative to each other along the guide portion 5, so that the positional tolerance and manufacturing error between the clamp 1 holding the wire harness 2 on the plate 4 and the anchor hole 91 can be absorbed.
[0085] Furthermore, since the plate 4 and the fixing member 3 can move relatively along the guide portion 5, even if an external force acts on the plate 4 due to the tension of the wire harness 2, the load acting on the fixing member 3 can be reduced. Furthermore, the continuous bottom surface portion 46 and the stop lever 6 can restrict the relative movement of the fixed member 3 within the movement restriction range α, thereby preventing the fixed member 3 from moving excessively relative to the guide portion 5 and preventing the fixed member 3 from coming off the guide portion 5 due to excessive movement.
[0086] The guide portion 5 is also composed of a guide recess 48 provided on the plate 4, which is recessed in the front-to-back direction L, which is the guide direction for relatively guiding the fixed member 3, and in the left-to-right direction W, which is a direction perpendicular to the downward side Hd, and an engaging protrusion 36 provided on the fixed member 3, which hooks onto the guide recess 48.
[0087] This allows the engaging protrusion 36 to be hooked onto the guide recess 48 with a simple structure, thereby preventing the engaging protrusion 36 from falling out of the guide recess 48 and ensuring that the fixing member 3 moves relative to the plate 4.
[0088] Furthermore, the plate 4 is provided with an insertion portion 49 into which the engaging protrusion 36 can be inserted and which is attached to the guide recess 48, and the stop lever 6 restricts movement of the engaging protrusion 36 into the insertion portion 49. This allows the engaging protrusion 36 to be inserted into and removed from the guide recess 48 via the insertion portion 49, making it possible to replace the fixing member 3 in accordance with the anchor hole 91. Furthermore, since the stop lever 6 restricts the engaging protrusion 36 inserted into the guide recess 48 from moving into the insertion portion 49, it is possible to reliably prevent the fixing member 3 from falling off the insertion portion 49.
[0089] Furthermore, the stop lever 6 is connected to one side (left side Wl) of the plate 4 in the left-right direction W, and is equipped with a resin hinge 61 that pivots relative to the plate 4, and an engaging portion 62 that engages with the other side (right side Wr) of the plate 4 in the left-right direction W, and the continuous bottom portion 46 and the stop lever 6 restrict the relative movement of the fixed member 3 with respect to the guide portion 5 when the engaging portion 62 is engaged.
[0090] This makes it possible to restrict the movement of the fixed member 3 along the guide portion 5 with a simple structure in which the stop lever 6 is pivoted around the resin hinge 61 as a pivot axis and the locking portion 62 is locked and fixed. Furthermore, the stop lever 6 allows the fixing member 3 to be attached to the plate 4 with the plastic hinge 61 as a fulcrum and the stop lever 6 opened, and the relative movement of the fixing member 3 can be easily restricted within the movement restriction range α with the locking portion 62 locked and fixed. This makes it possible to easily restrict the relative movement of the fixing member 3 in the front-rear direction L with a simple structure. Note that by integrating the plastic hinge 61 with the plate 4, the number of parts can also be reduced.
[0091] In addition, the plate 4 has a long upper surface portion 41 on which the wire harness 2 is placed, and the guide portion 5 is configured to guide the fixing member 3 relative to the plate 4 along the front-to-back direction L of the upper surface portion 41, thereby making it possible to make the plate 4 more compact in the left-to-right direction W.
[0092] Furthermore, when the fixing member 3 is attached to the plate 4, a protrusion 37 is provided that protrudes the fixing member 3 from the plate 4 in the left-right direction W. Therefore, by visually inspecting the protrusion 37, the position of the fixing member 3 can be estimated from the outside, and when inserting the fixing member 3 into the anchor hole 91 of the clamp 1, the protrusion 37 can be grasped and the position of the fixing member 3 can be changed so that the fixing member 3 is in a position corresponding to the anchor hole 91.
[0093] Furthermore, the plate 4 is provided with a central protrusion 80 that protrudes in the left-right direction W in the central portion of the movement restriction range α that guides the fixed member 3. By checking the positional relationship between this central protrusion 80 and the protrusion 37, it is possible to visually check the variation of the fixed member 3 relative to the central protrusion 80 within the movement restriction range α of the plate 4.
[0094] Furthermore, the plate 4 is provided with inner convex portions 81, 82 that protrude in the left-right direction W at positions corresponding to the inner ends of the continuous bottom surface portion 46 and the stop lever 6 in the front-rear direction L that guides the fixing member 3 relative to the plate 4. This makes it possible to check the movement range of the plate 4 by visually checking the positional relationship between the protrusion 37 and the inner convex portions 81, 82, and also makes it possible to fix the wire harness 2 with the fixing tape 7 using the positions of the inner convex portions 81, 82 as a guide.
[0095] Furthermore, the plate 4 is provided with outer protrusions 83, 84 that prevent the fixing tape 7 that fixes the wire harness 2 with tape from coming off. Therefore, when the wire harness 2 is fixed to the plate 4 with the fixing tape 7, the outer protrusions 83, 84 can prevent the fixing tape 7 from coming off.
[0096] In correspondence between the configuration of this invention and the above-mentioned embodiment, The wire harness of the present invention corresponds to the wire harness 2 of the embodiment, and the same applies hereinafter. The body is made of 90 body panels. The clamp corresponds to clamp 1, The through holes correspond to the anchor holes 91, The fixing member corresponds to fixing member 3, The harness holding member corresponds to the plate 4, The insertion direction corresponds to the lower side Hd, The orthogonal direction and the guide direction correspond to the front-rear direction L, The guide portion corresponds to the guide portion 5, The predetermined range corresponds to a movement restriction range α, The movement restricting portion corresponds to the stop lever 6 and the continuous bottom portion 46, The guide recess corresponds to the guide recess 48; The engaging protrusion corresponds to the engaging protrusion 36, The insertion portion corresponds to the insertion portion 49, The width direction corresponds to the left-right direction W, The pivot corresponds to a plastic hinge 61, The locking portion corresponds to the locking portion 62, The placement portion corresponds to the upper surface portion 41, The protrusion corresponds to the protrusion 37, The central protrusion corresponds to the central protrusion 80, The inner convex portions correspond to the inner convex portions 81 and 82, The outer convex portions correspond to the outer convex portions 83 and 84, The present invention is not limited to the configurations of the above-described embodiments, and many other embodiments can be obtained.
[0097] For example, instead of the plate 4 having the long-shaped mounting portion shown in the embodiment, the harness holding member may be configured with a band structure in which a band is wound around the wire harness 2 to fasten and hold the wire harness 2.
[0098] Furthermore, the stop lever 6, which is the movement restricting portion, may be integral with or separate from the plate 4. For example, when the guide portion 5 is configured with the guide recess 48 and the engaging protrusion 36 as disclosed in the embodiment, a plug portion that closes one end of the guide recess 48 may be provided, and this plug portion may serve as the movement restricting portion. Furthermore, a pin that restricts the movement of the engaging protrusion 36 may be provided, and the pin may serve as the movement restricting portion.
[0099] Furthermore, although the continuous bottom surface portion 46 is used as a movement restricting portion that restricts movement toward the rear side Lb, the stop lever 6 may be provided on the rear side Lb instead of the continuous bottom surface portion 46. As a result, insertion portions 49 for inserting and mounting the engaging protrusions 36 into the guide recesses 48 are provided on both ends of the front side Lf and rear side Lb of the plate main body 40.
[0100] It should be noted that a continuous bottom surface portion 46 may be provided instead of the stop lever 6. As a result, the movement of the fixing member 3 in the front-to-rear direction L is restricted by the continuous bottom surface portions 46, 46 on both the front side Lf and the rear side Lb of the plate main body 40. In this case, it is not possible to remove the fixing member 3 from the plate 4.
[0101] Furthermore, when the guide portion 5 is configured with the guide recess 48 and the engaging protrusion 36, a structure in which the guide recess 48 is provided in the fixed member 3 and the engaging protrusion 36 is provided in the plate 4 may be employed. Furthermore, in this embodiment, the fixing member 3 is configured to move relative to the plate 4 along the front-rear direction L, but this is not limited to the front-rear direction L. The guide recess 48 may be provided along the left-right direction W, and the fixing member 3 may move relative to the plate 4 along the left-right direction W, or may be a direction orthogonal to the height direction H and intersecting the front-rear direction L and the left-right direction W. Note that the fixing member 3 may be moved relative to the plate 4 along a direction intersecting the height direction H depending on the arrangement space in the vicinity of where the wire harness 2 is routed.
[0102] Furthermore, although the insertion portion 49 is provided at the end of the linearly extending guide recess 48 in the front-to-rear direction L, a structure may also be adopted in which the guide recess 48 is formed in an L-shape when viewed from the bottom of the plate 4, and the insertion portion 49 is formed in a direction perpendicular to the front-to-rear direction L (left-to-right direction W).
[0103] Additionally, a structure may be adopted in which the stop lever 6 as a movement restricting portion is divided into a plurality of portions in the guide direction, and the range of relative movement of the fixed member 3 along the guide portion 5 is restricted in stages. It should be noted that the pivot portion may be of a general hinge structure having a hinge pin instead of the resin hinge 61 disclosed in the embodiment, or may be of a structure in which a plurality of parts are combined to form the pivot portion. [Explanation of symbols]
[0104] 1 clamp 2 Wire harness 3 Fixing member 4 plates 5 Information Department 6 Stop lever 36 Engagement protrusion 37 Protrusion 41 Top part 46 Continuous bottom part 48 Guide recess 49 Insertion section 61 Resin hinge 62 Locking part 80 Central convex part 81,82 Medial convexity 83,84 Outer convex part 90 body panels 91 Anchor hole 100 Wire harness with clamp L Anteroposterior direction W Left / right direction HD lower side α Movement restriction range
Claims
1. A clamp for routing a wire harness to a vehicle body, a fixing member that is inserted into the through hole in the vehicle body and fixed to the vehicle body; a harness holding member that is attached to the fixing member and holds the wire harness, a guide portion that guides the fixing member relative to the harness holding member along a direction perpendicular to an insertion direction of the fixing member through the through hole; a movement restriction portion that restricts relative movement of the fixed member along the orthogonal direction by the guide portion within a predetermined range, The harness holding member has an elongated mounting portion on which the wire harness is mounted, the guide portion guides the fixing member relative to the harness holding member along a longitudinal direction of the placement portion, The fixing member is provided with a protruding portion that protrudes in a direction intersecting the insertion direction and a guiding direction for guiding the fixing member in the harness holding member when the fixing member is attached to the harness holding member. Clamp.
2. The harness holding member is A central protrusion is provided in a central portion of a predetermined range for guiding the fixing member, the central protrusion protruding in a direction perpendicular to the guiding direction and the insertion direction. The clamp of claim 1 .
3. The harness holding member is an inner protrusion protruding in a direction perpendicular to the guiding direction and the insertion direction is provided at a position corresponding to an inner end of the movement restricting portion in the guiding direction; The clamp according to claim 1 or 2.
4. The harness holding member is An outer protrusion is provided to prevent the fixing tape that fixes the wire harness with tape from coming off. A clamp according to any one of claims 1 to 3.
5. The guide unit is a guide recess provided on one of the fixing member and the harness holding member, the guide recess being recessed in a direction perpendicular to the insertion direction and in a direction in which the fixing member is relatively guided; and an engaging protrusion provided on the other of the fixing member and the harness holding member, the engaging protrusion being hooked onto the guide recess. A clamp according to any one of claims 1 to 4.
6. On the one hand, an insertion portion into which the engaging protrusion can be inserted and which is fitted into the guide recess; The movement restricting portion restricts movement of the engaging protrusion toward the insertion portion. The clamp of claim 5.
7. a width direction of the harness holding member, the width direction being perpendicular to the insertion direction and the guide direction of the fixing member relative to the harness holding member; The movement restriction portion is a pivot portion connected to one side of the harness holding member in the width direction and pivotable relative to the harness holding member; a locking portion that locks with the other side of the harness holding member in the width direction, The movement restricting portion restricts relative movement of the fixed member with respect to the guide portion when the locking portion is locked. A clamp according to any one of claims 1 to 6.
8. A clamp according to any one of claims 1 to 7, the wire harness held by the harness holding member; Wire harness with clamp.
9. Using a clamp according to any one of claims 1 to 7, The wire harness is fixed to the harness holding member with a tape; the fixing member attached to the harness holding member is guided along the guide portion to a position corresponding to the through hole; The fixing member is fixed to the through hole in the vehicle body. How to install the harness.
10. Using a clamp according to any one of claims 1 to 7, The harness holding member is fixed to the inside of the wire harness in the longitudinal direction by tape, the fixing member attached to the harness holding member is guided along the guide portion to a position corresponding to the through hole; The fixing member is fixed to the through hole in the vehicle body. How to install the harness.
Citation Information
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