Shielding member for slide fastener, and shielding member mounting structure
By installing a U-shaped shielding piece at the gap between the end of the pull tab mounting post and the upper flange, the problem of pull tabs and wires getting stuck is solved, achieving easy installation and improved usability.
Patent Information
- Application Number
- CN202520834094.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-29
- Publication Date
- 2026-02-27
- Estimated Expiration
- 2035-04-29
AI Technical Summary
The gap between the end of the mounting post of the zipper pull tab and the upper flange of the existing zipper is difficult to completely eliminate, which makes it easy for rope-like zipper pull tabs or wires to get stuck, affecting usability and installation operability.
Design a zipper cover, including a U-shaped cover body and a pair of protrusions, which are fixed near the gap between the end of the zipper mounting post and the upper wing plate by a simple installation method, to cover and block the gap.
It effectively prevents the pull tab from leaving the gap or the wire from getting stuck, improving the usability and ease of installation of the zipper, and also has an aesthetically pleasing structure.
Smart Images

Figure CN223943909U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a kind of technical field of zipper, and more particularly to a kind of shield for zipper, and the installation structure (hereinafter referred to as shield installation structure) for installing shield. BACKGROUND
[0002] Common zipper generally includes fastener chain consisting of left and right pair of fastener tape and element column installed on fastener tape, and fastener slider installed on fastener chain and opened or closed element column by sliding, and element column is opened or closed by the sliding of fastener slider on fastener chain. And, pull tab can be provided on fastener slider to drive the sliding of fastener slider on fastener chain.
[0003] In prior art, fastener slider is provided with pull tab mounting column extending from front side to upper side and rear side of upper surface of upper wing plate, and gap is formed between the end of pull tab mounting column and the upper surface of upper wing plate. The end of pull tab mounting column can be close to the upper surface of upper wing plate by reinforcing process to reduce the gap, so that the pull tab (which can be installed before or after reinforcing process) mounted on pull tab mounting column is difficult to leave pull tab mounting column from the gap.
[0004] However, in such a method, the end of pull tab mounting column is difficult to completely eliminate the gap by reinforcing process due to the specific operation means of process. Thus, there is a concern that the rope part of rope pull tab or wire such as earphone wire is stuck in the gap. And, even if the gap is reduced by reinforcing process, the elastic deformation of pull tab mounting column may occur due to repeated pulling of pull tab, so that the gap is enlarged, and there is a concern that pull tab leaves pull tab mounting column from the gap or wire is stuck in the gap. Thus, it is necessary to further improve the structure near pull tab mounting column to improve usability and installation operability. SUMMARY
[0005] The utility model provides a kind of shield for zipper and shield installation structure, which can improve usability and installation operability by simple installation means.
[0006] The utility model discloses a kind of shielding pieces for zipper, which is suitable for being installed in the gap between the end of pull tab mounting column and the upper surface of upper panel of pull head for zipper, and includes: shielding body, it is configured as U shape under planar perspective and has three parts of continuous bending, and it is suitable for being installed on the upper surface of the upper panel and surrounds the front side in front-back direction and left and right two sides in left-right direction of the end of pull tab mounting column;And a pair of protruding parts, from the opposite two ends of U shape shielding body, it is protruded to inside, it is separated from each other and forms opening part, and it is suitable for fixing the shielding body in the end in the state that the shielding body surrounds the front side and the left and right two sides, and the shielding body and a pair of the protruding part shield at least one side of the gap in the front-back direction.
[0007] In the embodiment of the utility model, the three parts of continuous bending of the shielding body include: base; and a pair of side parts, which are respectively bent and extended from opposite two ends of the base, and a pair of the protruding parts are protruded to the inside from the ends of a pair of the side parts and form the opening part opposite to the base.
[0008] In the embodiment of the utility model, the size in the front-back direction of the base is smaller than the size in the left-right direction of the side part.
[0009] In the embodiment of the utility model, the base is provided with a stepped part recessed in the thickness direction.
[0010] In the embodiment of the utility model, the shielding body gradually increases from the top to the bottom in the thickness direction.
[0011] The shielding piece mounting structure of the utility model includes: the shielding piece for zipper described above, which is installed as a mounting component and has a first size; a separation connecting part, which connects the mounting component and has a second size smaller than the first size of the mounting component; and a mounting tool, which connects the mounting component through the separation connecting part and has a third size larger than the first size of the mounting component, and the mounting component can be separated from the mounting tool through the separation connecting part.
[0012] In the embodiment of the utility model, the shielding piece for zipper installed as the mounting component, the separation connecting part, and the mounting tool are integrally connected with each other.
[0013] In the embodiment of the utility model, the zip fastener shielding member, the separating connecting part and the installation tool as the installation part are arranged in a straight line, the opening part of the zip fastener shielding member is open to the straight line, and the separating connecting part is arranged in the shielding body of the zip fastener shielding member and opposite to the opening part.
[0014] In the embodiment of the utility model, the installation tool comprises: a body plate extending from the separating connecting part to the side opposite to the installation part and formed with a holding part; and an auxiliary plate extending from the body plate to the side of the installation part.
[0015] In the embodiment of the utility model, the installation part and the separating connecting part are arranged on the same side of the body plate and separated by the auxiliary plate.
[0016] Based on the above, in the zip fastener shielding member of the utility model, when the zip fastener shielding member is installed near the gap between the end of the pull tab mounting column and the upper surface of the upper wing plate, the shielding body is installed on the upper surface of the upper wing plate and near the gap with the front side and the left and right sides of the end of the pull tab mounting column surrounded by the three parts of continuous bending, a pair of protruding parts extend from the left and right sides of the end to the rear side to fix the shielding body on the end, and the shielding body and the pair of protruding parts shield at least one side of the gap in the front and rear directions. In this way, the zip fastener shielding member can shield the gap (whether reinforced or not) and block at least one side of the gap in the front and rear directions. In addition, in the shielding member installation structure of the utility model, the zip fastener shielding member as the installation part is arranged to be separable from the installation tool through the separating connecting part. In this way, the shielding member installation structure can easily install the zip fastener shielding member (installation part) from the outside of the pull tab mounting column through the large-size installation tool, and easily separate the zip fastener shielding member (installation part) from the installation tool by twisting the small-size separating connecting part, so as to leave the zip fastener shielding member near the gap and complete the installation of the zip fastener shielding member. Accordingly, the zip fastener shielding member and the shielding member installation structure of the utility model can improve the usability and installation operability through simple installation means.
[0017] In order to make the above features and advantages of the utility model more obvious and easy to understand, the following examples are given, and the details are described as follows with the help of the drawings. BRIEF DESCRIPTION OF DRAWINGS
[0018] Figure 1 is the perspective view of the zip fastener shielding member according to the first embodiment of the utility model installed near the gap of the pull tab mounting column of the zip fastener puller;
[0019] Figure 2 isFigure 1 The diagram shown is a top view of the zipper cover installed near the gap of the zipper pull mounting post.
[0020] Figure 3 yes Figure 1 The diagram shows a side view of a zipper cover installed near the gap of the zipper pull mounting post.
[0021] Figure 4 yes Figure 1 A three-dimensional schematic diagram of a zipper cover shown;
[0022] Figure 5 yes Figure 4 The diagram shown is a top view of the zipper cover.
[0023] Figure 6 This is a perspective view of a zipper shielding member installed near the gap of the zipper pull mounting post according to the second embodiment of the present invention;
[0024] Figure 7 yes Figure 6 A three-dimensional schematic diagram of the zipper cover shown;
[0025] Figure 8 yes Figure 6 The diagram shown is a top view of the zipper cover.
[0026] Figure 9 This is a perspective view of a zipper shielding member installed near the gap of the zipper pull mounting post according to the third embodiment of the present invention.
[0027] Figure 10 yes Figure 9 A three-dimensional schematic diagram of the zipper cover shown;
[0028] Figure 11 yes Figure 9 The diagram shown is a top view of the zipper cover.
[0029] Figure 12 This is a three-dimensional schematic diagram of the shielding component installation structure according to an embodiment of the present utility model;
[0030] Figure 13 yes Figure 12 A top view of the shielding component installation structure shown;
[0031] Figure 14 and Figure 15 yes Figure 12 The diagram shown is a three-dimensional representation of the zipper cover installation structure in operation, where the cover is installed near the gap as an installation component.
[0032] REFERENCE NUMERALS
[0033] 50A, 50B, 50C: puller for a zipper
[0034] 52: pull tab mounting post
[0035] 52a: tip end
[0036] 54: upper wing plate
[0037] 54a: upper surface
[0038] 56: gap
[0039] 58: lower wing plate
[0040] 100A, 100B, 100C: shield for a zipper
[0041] 110A, 110B, 110C: shield body
[0042] 112A, 112B, 112C: base
[0043] 114A, 114B, 114C: side portion
[0044] 116: stepped portion
[0045] 120A, 120B, 120C: protruding portion
[0046] 130A, 130B, 130C: opening portion
[0047] 200: shield mounting structure
[0048] 210: mounting member
[0049] 220: separation connecting portion
[0050] 230: mounting tool
[0051] 232: body plate
[0052] 232a: grip portion
[0053] 234: auxiliary plate
[0054] D1, D2, D3, D4, D5, D6, D7, D8: dimension
[0055] L: straight line direction
[0056] L1: first length
[0057] L2: second length
[0058] L3: third length
[0059] P: intermediate portion
[0060] S1: Front side
[0061] S2: Left side
[0062] S3: Right side
[0063] S4: Rear side
[0064] T: Thickness direction
[0065] T1, T2, T3: Thickness
[0066] X: Forward / backward direction
[0067] Y: Left and right directions Detailed Implementation
[0068] The exemplary embodiments of the present invention will now be described in detail with reference to the accompanying drawings. In particular, Figures 1 to 5 This description is used to illustrate the specific structure of the zipper cover 100A and the zipper pull 50A installed on the zipper cover 100A in the first embodiment of this utility model. Figures 6 to 8 This description is used to illustrate the specific structure of the zipper cover 100B and the zipper pull 50B installed on the zipper cover 100B in the second embodiment of this utility model. Figures 9 to 11 This description is used to illustrate the specific structure of the zipper cover 100C and the zipper pull 50C installed on the zipper cover 100C in the third embodiment of this utility model, and... Figures 12 to 15 This description is intended to illustrate the specific structure and installation method of the shielding component installation structure 200 in this embodiment of the present utility model. However, the above content is only an example and is not intended to limit the present utility model. It can be adjusted according to requirements.
[0069] The following is for reference Figures 1 to 5 This section describes the specific structure and installation method of the zipper cover 100A and the zipper pull 50A installed on the zipper cover 100A according to the first embodiment of this utility model. In the first embodiment, as... Figures 1 to 3 As shown, the zipper cover 100A is suitable for installation near the gap 56 between the end 52a of the pull tab mounting post 52 of the zipper pull 50A and the upper surface 54a of the upper flange 54. Figure 4 and Figure 5 As shown, the zipper cover 100A includes a cover body 110A and a pair of protrusions 120A. The cover body 110A, in a planar view (e.g., Figure 2 and Figure 5 From the perspective shown, it consists of three parts that form a U-shape with continuous bends, and as... Figures 1 to 3As shown, the shielding body 110A is adapted to be mounted on the upper surface 54a of the upper wing plate 54 and surrounds the front side S1 in the front-rear direction X and the left and right sides (i.e., left side S2 and right side S3) in the left-right direction Y of the end 52a of the pull tab mounting post 52. A pair of protrusions 120A protrude inward from opposite ends of the U-shaped shielding body 110A, spaced apart to form openings 130A, and as shown... Figures 1 to 3 As shown, a pair of protrusions 120A are adapted to fix the shielding body 110A to the end 52a in the state where the shielding body 110A surrounds the front side S1 and the left and right sides (i.e., the left side S2 and the right side S3), and the shielding body 110A and the pair of protrusions 120A shield at least one side of the gap 56 in the front-rear direction X (e.g., a portion of the front side S1, the left side S2, the right side S3 and the rear side S4).
[0070] Specifically, in this embodiment, as Figures 1 to 3 As shown, the zipper pull 50A to which the zipper cover 100A is applied has a pull body composed of an upper wing plate 54, a lower wing plate 58, etc., and a pull tab mounting post 52 extends upward and backward (opposite to the connecting post and open outward) from the front side (the side with the connecting post not shown) of the upper surface 54a of the upper wing plate 54 in the front-rear direction X (equivalent to the length direction). The end 52a of the pull tab mounting post 52 corresponding to the rear end is not connected to the upper surface 54a of the upper wing plate 54, but is spaced apart from it, thus creating a gap 56 between the end 52a of the pull tab mounting post 52 and the upper surface 54a of the upper wing plate 54. Furthermore, the height of the zipper cover 100A is greater than the height of the gap 56 (i.e., the distance between the end 52a of the pull tab mounting post 52 and the upper surface 54a of the upper wing plate 54). Therefore, when the zipper cover 100A is installed near the gap 56 between the end 52a of the pull tab mounting post 52 and the upper surface 54a of the upper wing plate 54, the zipper cover 100A can surround the end 52a of the pull tab mounting post 52 and cover at least a portion of the gap 56 from the periphery (e.g., a portion of the front side S1, left side S2, right side S3, and rear side S4). However, in other embodiments not shown, the height of at least a portion of the zipper cover is equal to or less than the height of the gap 56, so the zipper cover can cover at least a portion of the gap 56 by filling it into the gap 56. The covering is not limited to covering from the periphery of the gap 56 or filling it into the gap 56. This utility model does not limit the specific structure of the zipper pull 50A (including the pull tab mounting post 52, the upper wing plate 54, the gap 56, etc.) and the zipper cover 100A, as well as their relative relationship (whether the zipper cover 100A fills the gap 56 or not), which can be adjusted according to requirements.
[0071] Further, in the present embodiment, as shown in Figure 4 With Figure 5 the pair of protrusions 120A are integrally formed with the shielding body 110A, the zipper shielding member 100A can be installed as a single member in the vicinity of the gap 56. In the case where the zipper shielding member 100A is installed in the vicinity of the gap 56 between the tip end 52a of the pull-tab mounting post 52 and the upper surface 54a of the upper flap 54, the shielding body 110A is installed on the upper surface 54a of the upper flap 54 so as to surround the front side SI and the left and right sides (i.e., the left side S2 and the right side S3) of the tip end 52a of the pull-tab mounting post 52 in three continuous bent portions, and the pair of protrusions 120A extend further toward the rear side S4 of the tip end 52a of the pull-tab mounting post 52 in a state where the shielding body 110A surrounds the front side SI and the left and right sides (i.e., the left side S2 and the right side S3), thereby fixing the shielding body 110A to the tip end 52a. Here, the pair of protrusions 120A protrude toward the inside from the opposite ends of the shielding body 110A and are separated from each other to form the opening portion 130A, so that the lengths of the protrusions 120A are shorter than the dimensions of any of the three continuous bent portions of the shielding body 110A and are separated from each other, and the opening portion 130A can serve as an insertion opening for installing the zipper shielding member 100A from the outside of the zipper puller 50A to the tip end 52a of the pull-tab mounting post 52.
[0072] In detail, in the present embodiment, as shown in Figures 1 to 3 In the case where the zipper shielding member 100A is installed in the vicinity of the gap 56 between the tip end 52a of the pull-tab mounting post 52 and the upper surface 54a of the upper flap 54, the pair of protrusions 120A, which are short in length and separated from each other, easily flex with respect to the shielding body 110A to open the opening portion 130A, thereby enabling the zipper shielding member 100A to be easily installed in a manner where the opening portion 130A faces the tip end 52a of the pull-tab mounting post 52. Here, by causing the opening portion 130A to be inserted from the front side SI toward the tip end 52a of the pull-tab mounting post 52, the shielding body 110A can be installed on the upper surface 54a of the upper flap 54 so as to surround the front side SI and the left and right sides (i.e., the left side S2 and the right side S3) of the tip end 52a of the pull-tab mounting post 52 in three continuous bent portions in the vicinity of the gap 56, and then the protrusions 120A, which are flexed, can be reset by angle adjustment, and the pair of protrusions 120A can extend from the left and right sides (i.e., the left side S2 and the right side S3) of the tip end 52a toward the rear side S4 to fix the shielding body 110A to the tip end 52a. At this time, although the pair of protrusions 120A form the opening portion 130A between them and do not completely shield the gap 56 (as shown in Figure 1However, in other embodiments not shown, the pair of protrusions can be arranged to be detachably butted against each other to form an opening portion with a small size. The size of the pair of protrusions 120A and the opening portion 130A can be adjusted according to requirements, and the present application is not limited in this regard.
[0073] With the above arrangement, in the zipper shielding member 100A of the present embodiment, as shown in Figures 1 to 5 In the case where the zipper shielding member 100A is installed in the vicinity of the gap 56 between the end 52a of the pull-tab mounting post 52 and the upper surface 54a of the upper wing plate 54, the shielding body 110A is installed on the upper surface 54a of the upper wing plate 54 in the vicinity of the gap 56 with three parts of the continuous bending portion surrounding the front side S1 and the left and right sides (i.e., the left side S2 and the right side S3) of the end 52a of the pull-tab mounting post 52, the pair of protrusions 120A extend from the left and right sides (i.e., the left side S2 and the right side S3) of the end 52a to the rear side S4 to fix the shielding body 110A to the end 52a, and the shielding body 110A and the pair of protrusions 120A shield at least one side of the gap 56 in the front-rear direction X. In this way, the zipper shielding member 100A can shield the gap 56 (whether reinforced or not) and block at least one side of the gap 56 in the front-rear direction X. Therefore, the zipper shielding member 100A can prevent the pull-tab (not shown) installed on the pull-tab mounting post 52 from being separated from the pull-tab mounting post 52 from the gap 56, or the rope portion of the rope-like pull-tab or the wire (not shown) such as an earphone wire from being inserted into the gap 56, and the like. Accordingly, the zipper shielding member 100A can improve the usability and the installation operability by simple installation means. The specific installation means of the zipper shielding member 100A will be described later.
[0074] Further, in the present embodiment, as shown in Figure 4 and Figure 5As shown, the shielding body 110A comprises three continuously bent parts, including a base 112A and a pair of side portions 114A. The pair of side portions 114A extend from opposite ends of the base 112A. A pair of protrusions 120A protrude inwards from the ends of the pair of side portions 114A, forming openings 130A opposite to the base 112A. Thus, the pair of side portions 114A and the base 112A are connected to each other to form three continuously bent parts, and the shielding body 110A is U-shaped. Preferably, the pair of side portions 114A extend substantially parallel to each other and are symmetrically arranged relative to the base 112A. The pair of protrusions 120A extend substantially parallel to each other and are symmetrically arranged relative to the base 112A. The dimensions of the pair of protrusions 120A in the left-right direction Y (here, length / protrusion amount in the extending direction) are equal. Therefore, the opening 130A roughly corresponds to the middle portion of the base 112A in the left-right direction Y. Thus, the symmetrically arranged zipper cover 100A is not limited by the installation direction (i.e., the front and back can be the same). However, this invention does not limit the specific structure of the zipper cover 100A, etc., which can be adjusted according to requirements.
[0075] Therefore, in this embodiment, as Figures 1 to 5 As shown, the shielding body 110A is installed with the opening 130A facing the front side S1 of the end 52a of the pull tab mounting post 52. Therefore, when the zipper shielding member 100A is installed near the gap 56 between the end 52a of the pull tab mounting post 52 and the upper surface 54a of the upper wing plate 54, the shielding body 110A covers the front side S1 of the end 52a with the base 112A and covers the left and right sides of the end 52a (i.e., the left side S2 and the right side S3) with a pair of side portions 114A, and at least a portion of the rear side S4 of the end 52a is covered by a pair of protrusions 120A. The pull tab mounting post 52 can be a column structure with a generally rectangular cross-section or a column structure with a circular cross-section (not shown), as long as the zipper cover 100A installed near the gap 56 can surround the end 52a from the periphery (the three adjacent sides of the front side S1, left side S2, and right side S3) with the base 112A and a pair of side portions 114A correspondingly, and cover at least a portion of the gap 56 with a pair of protrusions 120A further fixing the cover body 110A from the periphery (a portion of the rear side S4). The zipper cover 100A is not limited to the structure of the pull tab mounting post 52 used. In this way, the zipper cover 100A can improve usability and installation operability through simple installation means. However, this utility model is not limited thereto, and it can be adjusted according to needs.
[0076] Furthermore, in this embodiment, as Figure 4 and Figure 5As shown, the dimension D1 (here, the width) of the base 112A in the front-rear direction X is smaller than the dimension D2 (here, the width) of the side portion 114A in the left-right direction Y. Here, since the base 112A and the side portion 114A have different extension directions due to the bending, the width of the base 112A and the width of the side portion 114A refer to the dimensions of the base 112A and the side portion 114A in the directions intersecting the extension directions, respectively. With the above arrangement, since the shielding body 110A is arranged such that the dimension D1 (width) of the base 112A is smaller than the dimension D2 (width) of the side portion 114A, during the installation of the shielding member 100A for a zipper, the side portion 114A of the shielding body 110A is easily deflected with respect to the base 112A to open the opening portion 130A, the opening portion 130A is inserted from the front side S1 toward the end 52a of the pull tab mounting post 52, the shielding body 110A is installed in the vicinity of the gap 56, and then the deflected side portion 114A is reset by angle adjustment, and the pair of side portions 114A can surround the left and right sides (i.e., the left side S2 and the right side S3) of the end 52a to fix the shielding body 110A to the end 52a. In this way, the shielding member 100A for a zipper can improve the usability and the installation operability by a simple installation method. However, the present application is not limited to the specific structure of the shielding member 100A for a zipper, and the like, and can be adjusted as needed.
[0077] Further, in the present embodiment, as Figure 3 With Figure 4As shown, the thickness of the base 112A, the thickness of the side portion 114A, and the thickness of the pair of protrusions 120A are equal (e.g., each has a thickness T1), and constitute a continuous level structure. Here, the thickness refers to the dimension of the portion in the thickness direction T (corresponding to the up-down direction). Also, the shielding body 110A gradually increases in size from the top toward the bottom (corresponding to from above toward below in the up-down direction) in the thickness direction T, and constitutes a pedestal-shaped structure. With the above arrangement, since each portion of the zipper shielding member 100A generally constitutes a continuous level structure, the zipper shielding member 100A has an aesthetically pleasing appearance, and even if the puller mounting post 52 elastically deforms to cause the gap 56 to expand, each portion of the zipper shielding member 100A can cover the periphery of the gap 56 (e.g., a portion of the front side S1, the left side S2, the right side S3, and the rear side S4) to shield at least a portion of the gap 56. Further, since the shielding body 110A constitutes a pedestal-shaped structure with a wide bottom, and the zipper shielding member 100A is installed in a manner that the wide bottom corresponds to the upper surface 54a of the upper flap 54, at least the lower half or wider portion of the shielding body 110A corresponds to the gap 56, and the narrower upper half corresponds to the end 52a of the puller mounting post 52, and thus the zipper shielding member 100A can be stably installed near the gap 56 and shield the gap 56. In this way, the zipper shielding member 100A can improve usability and installation operability by simple installation means. However, the present application is not limited thereto, and can be adjusted as needed.
[0078] The second embodiment of the zipper shielding member 100B and the specific structure, installation means, etc. of the zipper slider 50B to which the zipper shielding member 100B is installed will be described below with reference to Figures 6 to 8 FIG. 6. In the second embodiment, as shown in Figures 6 to 8 FIG. 6, the zipper shielding member 100B is adapted to be installed near the gap 56 between the end 52a of the puller mounting post 52 and the upper surface 54a of the upper flap 54 of the zipper slider 50B. The zipper shielding member 100B includes a shielding body 110B and a pair of protrusions 120B. The shielding body 110B has three portions that are continuously bent in a U shape in plan view (as shown in the view of Figure 8 FIG. 6), and as shown in Figure 6 FIG. 6, the shielding body 110B is adapted to be installed on the upper surface 54a of the upper flap 54 and enclose the front side S1 in the front-rear direction X and the left and right sides (i.e., the left side S2 and the right side S3) in the left-right direction Y of the end 52a of the puller mounting post 52. The pair of protrusions 120B protrude inwardly from opposite ends of the U-shaped shielding body 110B, are spaced apart from each other to form an opening 130B, and as shown in Figure 6As shown, the pair of protrusions 120B are adapted to fix the shielding body 110B to the end 52a in a state where the shielding body 110B encloses the front side S1 and the left and right sides (i.e. the left side S2 and the right side S3), and the shielding body 110B and the pair of protrusions 120B shield at least one side (e.g. a portion of the front side S1, the left side S2, the right side S3 and the rear side S4) of the gap 56 in the front-rear direction X.
[0079] As such, the zipper shielding 100B in the second embodiment has similar structural arrangement (e.g. the shielding body 110B and the pair of protrusions 120B are integrally formed), installation means (e.g. the zipper shielding 100B is installed in a manner that the opening 130B faces the end 52a of the puller mounting post 52), and purpose (e.g. the specific structure of the zipper puller 50B to which the zipper shielding 100B is adapted can refer to the zipper puller 50A as aforementioned) as the zipper shielding 100A in the first embodiment as aforementioned, thus the description regarding the shielding body 110B, the pair of protrusions 120B, and the opening 130B can refer to the description of the shielding body 110A, the pair of protrusions 120A, and the opening 130A as aforementioned, and will not be elaborated here. The main difference between the zipper shielding 100B in the second embodiment and the zipper shielding 100A in the first embodiment as aforementioned is that the specific structure (shape, size ratio, etc.) of the shielding body 110B and the pair of protrusions 120B is different from the specific structure of the shielding body 110A and the pair of protrusions 120A as aforementioned. With the above arrangement, the zipper shielding 100B is able to shield the gap 56 (whether reinforced or not) and block at least one side of the gap 56 in the front-rear direction X. Accordingly, the zipper shielding 100B is able to improve the usability and installation operability through simple installation means.
[0080] Further, in the present embodiment, as shown, Figures 6 to 8 The continuous three portions of the shielding body 110B include a base portion 112B and a pair of side portions 114B. The pair of side portions 114B extend from opposite ends of the base portion 112B. The pair of protrusions 120B protrude inwardly from ends of the pair of side portions 114B opposite to the base portion 112B, and form the opening 130B. As such, the pair of side portions 114B and the base portion 112B are connected to each other to form the continuous three portions, and the shielding body 110B is configured in a U shape. As an example, compared to the zipper puller 50A in the first embodiment as shown, Figures 1 to 3 reinforcing the puller mounting post 52 to reduce the gap 56, Figure 6In the second embodiment shown, the zipper pull 50B does not reinforce the pull tab mounting post 52 and has a wider gap 56. Therefore, compared to the zipper cover 100A in the first embodiment, the zipper cover 100B in the second embodiment is provided with a thicker and stronger cover body 110B and a pair of protrusions 120B.
[0081] In detail, in the second embodiment, as Figures 6 to 8 As shown, the dimension D3 (width) of the base 112B in the front-rear direction X is equal to the dimension D4 (width) of the side portion 114B in the left-right direction Y. Since the base 112B and side portion 114B are formed by bending and have different extending directions, the widths of the base 112B and side portion 114B refer to the dimensions of the base 112B and side portion 114B in the direction intersecting their respective extending directions. Furthermore, the thickness of the base 112B, the thickness of the side portion 114B, and the thickness of the pair of protrusions 120B are equal (e.g., both have a thickness T2), forming a continuous, equal-height structure. The shielding body 110B gradually increases in thickness T from top to bottom and outwards, forming a pedestal-shaped structure (e.g.,...). Figure 6 and Figure 8 (As shown). With the above configuration, since the size D3 (width) of the base 112B of the shielding body 110B is equal to the size D4 (width) of the side portion 114B, all parts of the zipper shielding member 100B have uniform structural strength, making it suitable for applications such as... Figure 6 This applies to zipper pulls 50B with a wider gap 56, where the pull tab mounting post 52 is not reinforced (but it can also be applied to zipper pulls 50A with the pull tab mounting post 52 reinforced). Furthermore, since the various parts of the zipper cover 100B form a generally continuous, equal-height structure, the zipper cover 100B has an aesthetically pleasing appearance, and each part of the zipper cover 100B can cover at least a portion of the gap 56 from its periphery. In addition, since the zipper cover 100B is configured as a pedestal-shaped structure with a wider base, the zipper cover 100B can be securely installed near the gap 56 and cover the gap 56. Thus, the zipper cover 100B improves usability and ease of installation through simple installation methods. However, this invention is not limited to this and can be adjusted according to requirements.
[0082] The following is for reference Figures 9 to 11 This invention will describe the specific structure and installation method of the zipper cover 100C and the zipper pull 50C installed on the zipper cover 100C, according to the third embodiment of the present invention. In the third embodiment, as... Figures 9 to 11As shown, the zipper cover 100C is adapted to be installed near the gap 56 between the end 52a of the pull tab mounting post 52 of the zipper pull 50C and the upper surface 54a of the upper flange 54. The zipper cover 100C includes a cover body 110C and a pair of protrusions 120C. The cover body 110C, in a planar view (e.g., Figure 11 From the perspective shown, it consists of three parts that form a U-shape with continuous bends, and as... Figure 9 As shown, the shielding body 110C is adapted to be mounted on the upper surface 54a of the upper wing plate 54 and surrounds the front side S1 in the front-rear direction X and the left and right sides (i.e., the left side S2 and the right side S3) in the left-right direction Y of the end 52a of the pull tab mounting post 52. A pair of protrusions 120C protrude inward from opposite ends of the U-shaped shielding body 110C, spaced apart to form an opening 130C, and as shown... Figure 9 As shown, a pair of protrusions 120C are adapted to fix the shielding body 110C to the end 52a in the state where the shielding body 110C surrounds the front side S1 and the left and right sides (i.e., the left side S2 and the right side S3), and the shielding body 110C and the pair of protrusions 120C shield at least one side of the gap 56 in the front-rear direction X (e.g., a portion of the front side S1, the left side S2, the right side S3 and the rear side S4).
[0083] Therefore, it can be seen that the zipper cover 100C in the third embodiment has a similar structural configuration (e.g., the cover body 110C and the pair of protrusions 120C are integrally formed), installation means (e.g., the zipper cover 100C is installed with the opening 130C facing the end 52a of the pull tab mounting post 52), and application (e.g., the specific structure of the zipper pull 50C to which the zipper cover 100C is applicable can be referred to the aforementioned zipper pull 50A). Therefore, the description of the cover body 110C, the pair of protrusions 120C, and the opening 130C can be referred to the description of the cover body 110A, the pair of protrusions 120A, and the opening 130A, and will not be repeated here. The main difference between the zipper cover 100C in the third embodiment and the zipper cover 100A in the first embodiment is that the specific structure (shape, size ratio, etc.) of the cover body 110C and the pair of protrusions 120C are different from those of the cover body 110A and the pair of protrusions 120A. With the above configuration, the zipper cover 100C can cover the gap 56 (whether reinforced or not) and block at least one side of the gap 56 in the front-rear direction X. Accordingly, the zipper cover 100C can improve usability and ease of installation through a simple installation method.
[0084] Further, in the present embodiment, as shown in Figures 9 to 11 the continuous bent three portions of the shielding body 110C include a base portion 112C and a pair of side portions 114C. The pair of side portions 114C are respectively bent and extended from opposite ends of the base portion 112C. A pair of protruding portions 120C protrude inwardly from ends of the pair of side portions 114C opposite to each other, and form an opening portion 130C opposite to the base portion 112C. Thus, the pair of side portions 114C and the base portion 112C are connected to each other to constitute the continuous bent three portions, and the shielding body 110C is configured in a U shape. As an example, a dimension D5 (here, a width) in the front-rear direction X of the base portion 112C is equal to a dimension D6 (here, a width) in the left-right direction Y of the side portion 114C, and a dimension D7 (here, a length) in the front-rear direction X of the side portion 114C is greater than a dimension D8 (here, a length) in the left-right direction Y of the base portion 112C. Here, since the base portion 112C and the side portion 114C have different extension directions due to the bending, the width of the base portion 112C and the width of the side portion 114C refer to dimensions in directions intersecting the extension directions of the base portion 112C and the side portion 114C, respectively, and the length of the base portion 112C and the length of the side portion 114C refer to dimensions in the extension directions of the base portion 112C and the side portion 114C, respectively. By the above arrangement, since the shielding body 110C is arranged such that the dimension D5 (width) of the base portion 112C is equal to the dimension D6 (width) of the side portion 114C and the dimension D7 (length) of the side portion 114C is greater than the dimension D8 (length) of the base portion 112C, each portion of the shielding member 100C has uniform structural strength, and it is easy to cause the longer side portion 114C to be deflected with respect to the base portion 112C to open the opening portion 130C during installation. In this way, the shielding member 100C can improve usability and installation operability by simple installation means. However, the present application is not limited to the specific structure of the shielding member 100C, and the like, and can be adjusted as needed.
[0085] Further, in the present embodiment, as shown in Figures 9 to 11 the thickness of the base portion 112C, the thickness of the side portion 114C, and the thickness of the pair of protruding portions 120C are equal (for example, each has a thickness T3), and constitute a continuous uniform height structure, and the base portion 112C is provided with a stepped portion 116 recessed in the thickness direction T (as shown in Figure 10 and Figure 11The gap 56 is covered by the shield 100C, and the shield 100C has an attractive appearance. In addition, the step portion 116 of the shield 100C can correspond to a convex column (not shown) provided on the upper surface 54a of the upper wing plate 54 of the slider 50C corresponding to the pull tab mounting column 52, so that the shield 100C can be closely fitted to the upper surface 54a of the upper wing plate 54. Thus, the shield 100C can improve the usability and the installation operability by simple installation means. However, the utility model is not limited thereto, and can be adjusted according to requirements.
[0086] The specific structure, installation means, etc. of the shield mounting structure 200 of the utility model embodiment will be described below with reference to Figures 12 to 15 In this embodiment, as shown in Figure 12 and Figure 13 The shield mounting structure 200 includes the above-mentioned shield 100C installed as an installation component 210, a separate connecting portion 220, and an installation tool 230. The above-mentioned shield 100C installed as the installation component 210 has a first size. The separate connecting portion 220 connects the installation component 210 (the shield 100C) and has a second size. The installation tool 230 connects the installation component 210 (the shield 100C) through the separate connecting portion 220 and has a third size. The second size of the separate connecting portion 220 is smaller than the first size of the installation component 210 (the shield 100C), the third size of the installation tool 230 is larger than the first size of the installation component 210 (the shield 100C), and the installation component 210 (the shield 100C) can be separated from the installation tool 230 through the separate connecting portion 220 (as shown in Figure 14 and Figure 15(As shown). Here, although the cover mounting structure 200 is described using the example of mounting the zipper cover 100C of the aforementioned third embodiment onto the zipper pull 50C (i.e., mounting the zipper cover 100C of the third embodiment as the mounting component 210), it can also be applied to mounting the zipper cover 100A of the aforementioned first embodiment onto the zipper pull 50A, or to mounting the zipper cover 100B of the aforementioned second embodiment onto the zipper pull 50B. The application means is to replace the zipper cover 100C described below with the aforementioned zipper cover 100A or zipper cover 100B. This utility model is not limited thereto and can be adjusted according to needs.
[0087] Specifically, in this embodiment, as Figure 12 and Figure 13 As shown, the first dimension of the mounting member 210 (zipper cover 100C) includes a first length L1 in the straight direction L (equivalent to the extension direction here). The second dimension of the separating connecting portion 220 includes a second length L2 in the straight direction L. The third dimension of the mounting tool 230 includes a third length L3 in the straight direction L. As an example, the second length L2 of the separating connecting portion 220 is smaller than the first length L1 of the mounting member 210, and the third length L3 of the mounting tool 230 is larger than the first length L1 of the mounting member 210. That is, compared to the mounting member 210 (zipper cover 100C), the separating connecting portion 220 is configured to be small in size and easy to separate the mounting member 210 (zipper cover 100C) from the mounting tool 230 by twisting. Furthermore, compared to the mounting member 210 (zipper cover 100C), the mounting tool 230 is configured to be large in size and easy to grip and twist the separating connecting portion 220. However, in other embodiments not shown, the second width of the separating connecting portion 220 may be smaller than the first width of the mounting member 210, and the third width of the mounting tool 230 may be larger than the first width of the mounting member 210. This invention is not limited thereto and can be adjusted according to requirements.
[0088] Therefore, in this embodiment, as Figure 14 and Figure 15As shown, when the zipper cover 100C, which serves as the mounting component 210, is installed via the cover mounting structure 200, the cover mounting structure 200 is installed such that the opening 130C of the zipper cover 100C faces the front side S1 of the end 52a of the pull tab mounting post 52. This allows the cover body 110C and the pair of protrusions 120C to cover at least one side of the gap 56 in the front-rear direction X (the installation process of the zipper cover 100C can be referred to the descriptions of zipper covers 100A, 100B, and 100C). During this process, as... Figure 14 As shown, even when installing the mounting component 210 (zipper cover 100C) from the front side S1 of the end 52a of the pull tab mounting post 52, the cover mounting structure 200 can easily install the mounting component 210 (zipper cover 100C) by inserting it between the pull tab mounting post 52 and the upper wing plate 54 from the front side S1 of the pull tab mounting post 52 using a large-sized installation tool 230. Furthermore, as... Figure 15 As shown, by twisting the small separating connecting part 220 using the outer mounting tool 230, the mounting component 210 (zipper cover 100C) can be separated from the mounting tool 230 and remain on the end 52a of the pull tab mounting post 52. The separated mounting tool 230 can be moved out from between the pull tab mounting post 52 and the upper wing plate 54, or it can be reinserted between the pull tab mounting post 52 and the upper wing plate 54. By pushing the mounting component 210 (zipper cover 100C), the mounting angle is adjusted so that the mounting component 210 (zipper cover 100C) is tightly fixed to the end 52a (e.g., ...) corresponding to the shape of the end 52a. Figure 9 (As shown).
[0089] With the above-described configuration, in the shielding component mounting structure 200 of this utility model, as follows: Figures 12 to 15As shown, the zipper cover 100C, which is the mounting component 210, is designed to be detachable from the mounting tool 230 via the separation connector 220. Thus, the cover mounting structure 200 allows the zipper cover 100C (mounting component 210) to be easily installed from the outside of the pull tab mounting post 52 using the large mounting tool 230, and the zipper cover 100C (mounting component 210) to be easily detached from the mounting tool 230 by twisting the small separation connector 220, thereby completing the installation of the zipper cover 100C by leaving it near the gap 56. Accordingly, the cover mounting structure 200 improves usability and ease of installation through simplified installation methods. However, the above installation process is only one example. The zipper cover 100C can also be installed from the left side S2, right side S3, or rear side S4 of the end 52a of the pull tab mounting post 52. Alternatively, the aforementioned zipper cover 100C (and zipper covers 100A and 100B) is not limited to being installed as a mounting component 210 and via the cover installation structure 200. This utility model is not limited thereto and can be adjusted according to requirements.
[0090] Furthermore, in this embodiment, as Figure 12 and Figure 13 As shown, the zipper cover 100C, the separation connector 220, and the installation tool 230, which are installed as mounting components 210, are integrally connected to each other. As an example, the aforementioned parts of the cover mounting structure 200 are integrally manufactured using a flexible material (allowing the opening 130C of the zipper cover 100C to be opened by elastic deformation, and the zipper cover 100C to be separated by twisting, etc.). Furthermore, the zipper cover 100C (including the cover body 110C and a pair of protrusions 120C), the separation connector 220, and the installation tool 230, which are installed as mounting components 210 of the cover mounting structure 200, generally form a continuous, equal-height structure. Thus, the cover mounting structure 200 can be manufactured and installed as a single component. However, the dimensions and materials of each part of the cover mounting structure 200 can be adjusted according to requirements. As long as the shielding mounting structure 200 can separate the mounting component 210 from the mounting tool 230 by twisting the separating connecting part 220, and the mounting component 210 can be installed from the outside by the mounting tool 230, this utility model is not limited thereto and can be adjusted according to needs.
[0091] Furthermore, in this embodiment, such as Figure 12 and Figure 13As shown, the zipper shielding member 100C installed as the installation member 210, the separation connecting portion 220, and the installation tool 230 are arranged in the linear direction L (here, corresponding to the extending direction), the opening portion 130C of the zipper shielding member 100C is open corresponding to the linear direction L, and the separation connecting portion 220 is arranged in the shielding body 110C of the zipper shielding member 100C at a portion (i.e., the base portion 112C) opposite to the opening portion 130C. That is, taking the extending direction of the installation tool 230 as the linear direction L, the separation connecting portion 220 and the installation member 210 (the zipper shielding member 100C) are arranged in the linear direction L at the end of the installation tool 230 in the extending direction of the installation tool 230, and the installation member 210 (the zipper shielding member 100C) is connected to the separation connecting portion 220 through the base portion 112C in a manner that the opening portion 130C faces outward. Through the above arrangement, in the case that the zipper shielding member 100C as the installation member 210 is installed through the shielding member installation structure 200, the zipper shielding member 100C can easily insert the opening portion 130C open to the outside into the end 52a of the puller mounting column 52 through the installation tool 230 by the movement of the installation tool 230 in the linear direction L, thereby being installed in the end 52a of the puller mounting column 52 to shield the gap 56. Moreover, the breaking portion formed by the torsion of the separation connecting portion 220 is on the base portion 112C without affecting the fixing effect of the pair of protruding portions 120C and hidden between the front side S1 of the end 52a of the puller mounting column 52 and the upper surface 54a of the upper wing plate 54. In this way, the shielding member installation structure 200 can easily install the zipper shielding member 100C and improve the usability and the installation operability. However, the present application is not limited thereto, and can be adjusted according to requirements.
[0092] Further, in the present embodiment, as shown in Figure 12 With Figure 13 As shown, the installation tool 230 includes a body plate 232 and an auxiliary plate 234. The body plate 232 extends from the separation connecting portion 220 to the side opposite to the installation member 210 (the zipper shielding member 100C), and is formed with a holding portion 232a (e.g., a platform portion formed on the surface of the body plate 232). The auxiliary plate 234 extends from the body plate 232 to the side of the installation member 210 (the zipper shielding member 100C). As an example, as shown in Figure 13As shown, the length of the auxiliary plate 234 in the linear direction L is less than the size of the body plate 232 in the linear direction L, and the auxiliary plate 234 extends to the front end side more than the middle part P of the mounting member 210. In addition, the mounting member 210 (the shield 100C for the zipper), the separation connecting part 220, and the auxiliary plate 234 extending to the side edge of the mounting member 210 are formed on the same side of the body plate 232, for example, one of the opposite sides in the linear direction L of the body plate 232. Through the above arrangement, in the case of installing the shield 100C for the zipper as the mounting member 210 through the shield mounting structure 200, the shield mounting structure 200 can make the movement of the installation tool 230 in the linear direction L (equivalent to the extending direction) more easily through the holding part 232a holding the body plate 232, so as to make the installation operation of the shield 100C for the zipper more easily. Furthermore, the auxiliary plate 234 assists from the side edge of the mounting member 210 (the shield 100C for the zipper) in the installation process, so as to avoid the opening part 130C of the shield 100C for the zipper from being excessively opened in the installation process. In this way, the shield mounting structure 200 can make the shield 100C for the zipper installed easily and improve the usability and the installation operability. However, the present application does not limit the specific structure of the installation tool 230 (the specific structure of the body plate 232, the holding part 232a, and the auxiliary plate 234, and the arrangement or not, etc.), which can be adjusted according to the requirement.
[0093] In addition, in the present embodiment, as shown in FIG. 1, the shield 100 for the zipper is provided with a plurality of the opening parts 130, and the shield mounting structure 200 is provided with a plurality of the separation connecting parts 220 corresponding to the opening parts 130 of the shield 100 for the zipper. Figure 12 With the shield mounting structure 200, the shield 100 for the zipper can be installed easily and the usability and the installation operability can be improved. Figure 13As shown, the mounting components 210 (zipper shielding member 100C) and the separation connecting components 220 are provided in multiple sets on the same side of the body plate 232 and are separated from each other by the auxiliary plate 234. For example, multiple mounting components 210 (zipper shielding member 100C) are formed on one side (the same side) of the body plate 232 on opposite sides in the linear direction L, and each mounting component 210 (zipper shielding member 100C) is connected to the body plate 232 by a corresponding separation connecting component 220. Moreover, the auxiliary plate 234 extending from the side of the body plate 232 to the mounting component 210 (zipper shielding member 100C) is formed between the multiple mounting components 210 (zipper shielding member 100C) as a separation. Through the above arrangement, the shielding member mounting structure 200 can install multiple sets of mounting components 210 (zipper shielding member 100C) by one mounting tool 230, and the multiple sets of mounting components 210 (zipper shielding member 100C) are separated by the auxiliary plate 234 and do not interfere with each other. Preferably, the mounting components 210 (zipper shielding member 100C) and the separation connecting components 220 are provided on opposite corner portions of the same side of the body plate 232, so that the mounting tool 230 can be moved obliquely to install the mounting components 210 (zipper shielding member 100C) located at the corner portions of the body plate 232. In this way, the shielding member mounting structure 200 can improve the installation efficiency of the zipper shielding member 100C and reduce the manufacturing cost, etc. However, the present application is not limited thereto, and can be adjusted according to requirements.
[0094] In the zipper shielding member of the utility model, in the case that the zipper shielding member is installed near the gap between the end of the puller mounting column and the upper surface of the upper wing plate, the shielding body is installed on the upper surface of the upper wing plate and located near the gap with the front side and the left and right sides of the end of the puller mounting column surrounded by the three parts of the continuous bending, a pair of protruding parts extend from the left and right sides of the end to the rear side to fix the shielding body at the end, and the shielding body and the pair of protruding parts shield at least one side of the gap in the front-rear direction. In this way, the zipper shielding member can shield the gap (whether reinforced or not) and block at least one side of the gap in the front-rear direction. In addition, in the shielding member mounting structure of the utility model, the zipper shielding member as the mounting component is arranged to be separable from the mounting tool through the separating connecting part. In this way, the shielding member mounting structure can easily install the zipper shielding member (mounting component) from the outside of the puller mounting column through the large-size mounting tool, and easily separate the zipper shielding member (mounting component) from the mounting tool by twisting the small-size separating connecting part, so as to leave the zipper shielding member near the gap and complete the installation of the zipper shielding member. Preferably, the size of the base of the shielding body in the front-rear direction is smaller than the size of the left-right direction of the side part, or the zipper shielding member, the separating connecting part, and the mounting tool are arranged in a straight line direction, so that the zipper shielding member is more easily installed. Accordingly, the zipper shielding member and the shielding member mounting structure of the utility model can improve the usability and installation operability through simple installation means.
[0095] Finally, it should be noted that: the above embodiments are only used to illustrate the technical solutions of the utility model, and not to limit them; although the utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that: it can still modify the technical solutions recorded in the foregoing embodiments, or make equivalent replacement for part or all of the technical features; and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the scope of the technical solutions of the embodiments of the utility model.
Claims
1. A zipper cover, suitable for installation near the gap (56) between the end (52a) of the pull tab mounting post (52) of a zipper pull (50A, 50B, 50C) and the upper surface (54a) of the upper flange (54), characterized in that, include: The shielding body (110A, 110B, 110C), in a planar view, is configured as a U-shape with three continuously bent parts, and is suitable for mounting on the upper surface (54a) of the upper wing plate (54) and surrounding the end (52a) of the pull tab mounting post (52) in the front (S1) direction (X) and the left and right sides in the left and right (Y) direction; and A pair of protrusions (120A, 120B, 120C) protrude inwardly from opposite ends of the U-shaped shielding body (110A, 110B, 110C), spaced apart to form openings (130A, 130B, 130C), and are adapted to fix the shielding body (110A, 110B, 110C) to the end (52a) while the shielding body (110A, 110B, 110C) surrounds the front side (S1) and the left and right sides. The shielding bodies (110A, 110B, 110C) and the pair of protrusions (120A, 120B, 120C) shield at least one side of the gap (56) in the front-rear direction (X).
2. The zipper cover according to claim 1, characterized in that, The three parts of the continuous bending of the shielding body (110A, 110B, 110C) include: base; and A pair of sides, each bending and extending from opposite ends of the base, A pair of protrusions (120A, 120B, 120C) protrude inward from the ends of a pair of side portions and form the openings (130A, 130B, 130C) opposite to the base.
3. The zipper cover according to claim 2, characterized in that, The dimension (D1) of the base in the front-back direction (X) is smaller than the dimension (D2) of the side in the left-right direction (Y).
4. The zipper cover according to claim 2, characterized in that, The base is provided with a step portion (116) that is recessed in the thickness direction (T).
5. The zipper cover according to claim 1, characterized in that, The shielding bodies (110A, 110B, 110C) gradually increase in size from top to bottom and outward in the thickness direction (T).
6. A shielding component mounting structure (200), characterized in that, include: The zipper cover according to any one of claims 1 to 5 is installed as a mounting component (210) and has a first dimension; A separation connector (220) is provided to connect the mounting component (210) and has a second dimension smaller than the first dimension of the mounting component (210). as well as The installation tool (230) connects to the mounting component (210) via the separation connector (220) and has a third dimension larger than the first dimension of the mounting component (210). The mounting component (210) can be separated from the mounting tool (230) via the separation connector (220).
7. The shielding component mounting structure (200) according to claim 6, characterized in that, The zipper cover, the separation connector (220), and the installation tool (230) that are installed as the mounting component (210) are integrally connected to each other.
8. The shielding component mounting structure (200) according to claim 6, characterized in that, The zipper cover, the separation connector (220), and the installation tool (230), which are installed as the mounting component (210), are arranged in a straight line (L). The opening of the zipper cover corresponds to the straight direction (L) and The separation connecting part (220) is provided in the portion of the zipper cover body facing the opening.
9. The shielding component mounting structure (200) according to claim 6, characterized in that, The installation tool (230) includes: The body plate (232) extends from the separation connector (220) to the side opposite to the mounting member (210) and has a gripping portion (232a); and An auxiliary plate (234) extends from the main body plate (232) toward the side of the mounting component (210).
10. The shielding component mounting structure (200) according to claim 9, characterized in that, Multiple sets of the mounting component (210) and the separation connection part (220) are provided on the same side of the main body plate (232) and are separated from each other by the auxiliary plate (234).