Pre-crimp terminal
The pre-crimp terminal's innovative linking portion and stress relief design address the issue of reduced bending strength in smaller terminal fittings by integrating the second side wall with the third side wall and distributing stress, enhancing durability and preventing bending at the rear end.
Patent Information
- Application Number
- JP2022069893
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Filing Date
- 2022-04-21
- Publication Date
- 2025-11-14
- Estimated Expiration
- 2042-04-21
AI Technical Summary
Existing terminal fittings face a decrease in bending strength as they become smaller and thinner, with the connecting portion being prone to bending at the rear end when subjected to external forces, especially with thinner electric wires.
The pre-crimp terminal design includes a linking portion where the second side wall is integrally formed with the third side wall up to its vertex and connected over its entire height, along with a stress relief portion, to distribute stress and prevent bending at the rear end.
This design enhances the strength of the connecting portion, preventing bending at the rear end and effectively distributing stress, thereby increasing the terminal's overall durability.
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Abstract
Description
[Technical Field]
[0001] The present disclosure relates to a pre-crimp terminal before it is crimped onto an electrical wire. [Background technology]
[0002] A terminal fitting described in Japanese Patent Laid-Open Publication No. 2012-54107 (Patent Document 1 below) is known as a terminal to be crimped to an electric wire. This terminal fitting has a rectangular cylindrical box portion, an open-barrel-shaped crimping portion disposed at the rear of the box portion, and a connecting portion connecting the rear end of the box portion to the front end of the crimping portion. The connecting portion is generally U-shaped with a pair of side plate portions extending from both side edges of a bottom wall portion. The front end of the bottom plate portion is continuous with the bottom wall portion constituting the box portion, and the rear end of the bottom plate portion is continuous with a mounting plate portion constituting the crimping portion. The front end of the side plate portion is continuous with a side wall portion extending from the side edge of the bottom wall portion, and the rear end of the side plate portion is continuous with a first crimping piece extending from the side edge of the mounting plate portion. In the crimping portion, the first crimping piece is bent and deformed while being wrapped around the end of the electric wire placed on the mounting plate portion, thereby crimping the electric wire. A reinforcing portion is formed at the rising edge of the side plate portion, which is continuous from the front end connected to the side wall portion to the rear end connected to the first crimping piece, and has a curved area that wraps inward. [Prior art documents] [Patent documents]
[0003] [Patent Document 1] Japanese Patent Application Laid-Open No. 2012-54107 Summary of the Invention [Problem to be solved by the invention]
[0004] In the above-described terminal fitting, before crimping, the rising edge of the side plate portion is connected to the front edge of the first crimping piece at a position lower than the apex of the first crimping piece. With this configuration, the reinforcing portion reinforces the connecting portion to a certain extent. However, as the metal plate used for the terminal fitting becomes thinner as the terminal fitting becomes smaller, there is a concern that the bending strength of the connecting portion will decrease. Furthermore, as the diameter of the electric wire becomes thinner as the terminal fitting becomes smaller, the crimping portion becomes thinner, and the rear end of the connecting portion will still be the starting point for bending when subjected to external force. Therefore, to achieve smaller terminal fittings and thinner electric wires, it is necessary to further increase the strength of the connecting portion. [Means for solving the problem]
[0005] The pre-crimp terminal of the present disclosure is a pre-crimp terminal before being crimped to an electric wire, and includes: a terminal connection portion; an electric wire connection portion disposed rearward of the terminal connection portion and connected to the electric wire; and a linking portion linking the terminal connection portion and the electric wire connection portion; the terminal connection portion includes a first bottom wall and a pair of first side walls rising from both side edges of the first bottom wall; the linking portion includes a second bottom wall continuing to the first bottom wall and a pair of second side walls rising from both side edges of the second bottom wall; a third bottom wall continuing from the wall, and a pair of third side walls rising from both side edges of the third bottom wall, wherein the wire connection portion is crimped to the wire by wrapping the pair of third side walls around the end portion of the wire placed on the third bottom wall while bending and deforming the pair of third side walls, and the second side wall is formed integrally with the third side wall in a range extending to the vertex of the third side wall farthest from the third bottom wall, and is connected to the third side wall over the entire height of the second side wall. [Effects of the Invention]
[0006] According to the present disclosure, the strength of the connecting portion can be increased, and the rear end of the connecting portion can be prevented from becoming the starting point of bending when subjected to an external force. [Brief explanation of the drawings]
[0007] [Figure 1]FIG. 1 is a perspective view of the pre-crimp terminal as seen obliquely from behind. [Figure 2] FIG. 2 is a perspective view of the pre-crimp terminal as seen obliquely from the front. [Figure 3] FIG. 3 is a side view of the terminal before crimping. [Figure 4] FIG. 4 is a plan view of the terminal before crimping. [Figure 5] FIG. 5 is a perspective view of the electric wire with terminal as seen obliquely from behind. [Figure 6] FIG. 6 is a perspective view of the electric wire with terminal as seen obliquely from the front. [Figure 7] FIG. 7 is a side view of the electric wire with terminal. [Figure 8] FIG. 8 is a plan view of the electric wire with terminal. [Figure 9] FIG. 9 is an enlarged side view of a portion of the electric wire with terminal. [Figure 10] FIG. 10 is an enlarged plan view of a portion of the electric wire with terminal. [Figure 11] FIG. 11 is a cross-sectional view taken along line AA in FIG. [Figure 12] FIG. 12 is a cross-sectional view taken along the line BB in FIG. [Figure 13] FIG. 13 is a cross-sectional view taken along CC in FIG. [Figure 14] FIG. 14 is a cross-sectional view taken along line DD in FIG. [Figure 15] FIG. 15 is a cross-sectional view taken along the line E-E in FIG. [Figure 16] FIG. 16 is a cross-sectional view taken along the line FF in FIG. [Figure 17] FIG. 17 is a development view of the terminal before crimping. DETAILED DESCRIPTION OF THE INVENTION
[0008] [Description of the embodiments of the present disclosure] First, embodiments of the present disclosure will be listed and described. (1) A pre-crimp terminal according to the present disclosure is a pre-crimp terminal before being crimped to an electric wire, and includes: a terminal connection portion; an electric wire connection portion disposed behind the terminal connection portion and connected to the electric wire; and a linking portion linking the terminal connection portion and the electric wire connection portion; the terminal connection portion includes a first bottom wall and a pair of first side walls rising from both side edges of the first bottom wall; the linking portion includes a second bottom wall continuing to the first bottom wall and a pair of second side walls rising from both side edges of the second bottom wall; and the electric wire connection portion includes the second This pre-crimp terminal comprises a third bottom wall continuous with the bottom wall and a pair of third side walls rising from both side edges of the third bottom wall, wherein the wire connection portion is crimped to the wire by wrapping the pair of third side walls around the terminal portion of the wire placed on the third bottom wall while bending and deforming the pair of third side walls, and the second side wall is formed integrally with the third side wall in a range extending to the vertex of the third side wall farthest from the third bottom wall and is connected to the third side wall over the entire height of the second side wall.
[0009] Because the second side wall is formed integrally with the third side wall in an area extending up to the apex of the third side wall, no depression that could become a bending starting point is formed at the rear end of the connecting portion, and it is possible to prevent the rear end of the connecting portion from becoming a bending starting point when an external force is applied. Also, because the second side wall is connected to the third side wall over its entire height, stress is more easily transmitted from the second side wall to the third side wall, which makes it easier to alleviate stress applied to the rear end of the connecting portion and increases the strength of the connecting portion.
[0010] (2) It is preferable that the second side wall is integrally formed with the first side wall to an extent that does not reach the vertex of the first side wall that is farthest from the first bottom wall, and is connected to the first side wall over the entire height of the second side wall, and that the connecting portion of the second side wall with the vertex of the third side wall is formed so as to be highest from the second bottom wall. The connecting portion of the second side wall with the apex of the third side wall is formed so as to be the highest from the second bottom wall, thereby enabling pinpoint strength increase near the rear end of the connecting portion, which is the likely starting point for bending.
[0011] (3) It is preferable that a curved stress relief portion be formed at the front end of the second side wall so that the rising edge from the second bottom wall smoothly connects to the rear end edge of the first side wall. Since a stress relief portion is formed at the front end of the second side wall, stress is more easily transmitted from the second side wall to the first side wall, making it easier to relieve stress on the front end of the connecting portion, thereby increasing the strength of the connecting portion.
[0012] (4) It is preferable that the rising edge of the second side wall from the second bottom wall has the stress relief portion and a straight portion extending linearly from the stress relief portion toward the apex of the third side wall. Since a straight portion is formed at the rising edge of the second side wall, the strength of the connecting portion increases toward the rear, and stress is less likely to be concentrated in one place.
[0013] [Details of the embodiments of the present disclosure] Specific examples of pre-crimped terminals according to the present disclosure will be described below with reference to the drawings. Note that the present disclosure is not limited to these examples, but is defined by the claims, and is intended to include all modifications within the meaning and scope of the claims.
[0014] [Terminal before crimping] As shown in Figs. 1 to 4, the pre-crimp terminal 10 is configured to include a rectangular cylindrical terminal connection portion 20, an open-barrel shaped wire connection portion 30 disposed behind the terminal connection portion 20, and a connecting portion 40 connecting the rear end of the terminal connection portion 20 to the front end of the wire connection portion 30. The pre-crimp terminal 10 is a female terminal before being crimped to an electric wire W. The end of the electric wire W is connected to the wire connection portion 30. By connecting the pre-crimp terminal 10 to the end of the electric wire W, a terminal-fitted electric wire 50 shown in Fig. 5 is configured. The electric wire W is of a well-known form in which a conductor W1 made of a thin conductive metal wire is surrounded by an insulating coating W2.
[0015] The pre-crimp terminal 10 is formed by punching a conductive metal plate material into the state shown in the developed view in Fig. 17, and then performing bending or other processes. In this embodiment, the interior of the terminal connection portion 20 is hollowed out to simplify the drawing, but an actual pre-crimp terminal has elastic contact pieces or the like (not shown) formed therein that are electrically connected to a male terminal. The terminal connection portion 20 includes a first bottom wall 21, a pair of first side walls 22 rising upward from both side edges of the first bottom wall 21, and a ceiling wall 23 extending from a rising edge (hereinafter referred to as the "upper edge") of one of the first side walls 22 toward the upper edge of the other first side wall 22.
[0016] The wire connection portion 30 includes a wire barrel 31 electrically connected to the conductor W1, an insulation barrel 34 disposed behind the wire barrel 31 and fixed to the insulating coating W2, and a connecting portion 37 connecting the wire barrel 31 and the insulation barrel 34. The wire barrel 31 includes a third bottom wall 32 and a pair of third side walls 33 rising upward from both side edges of the third bottom wall 32. The insulation barrel 34 includes a fourth bottom wall 35 and fourth side walls 36 rising upward from both side edges of the fourth bottom wall 35. The connecting portion 37 includes a fifth bottom wall 38 and fifth side walls 39 rising upward from both side edges of the fifth bottom wall 38.
[0017] The third bottom wall 32 of the wire barrel 31, the fifth bottom wall 38 of the connecting portion 37, and the fourth bottom wall 35 of the insulation barrel 34 are integrally formed to be flush with each other. Similarly, the pair of third side walls 33 of the wire barrel 31, the pair of fifth side walls 39 of the connecting portion 37, and the pair of fourth side walls 36 of the insulation barrel 34 are integrally formed to be flush with each other.
[0018] The wire barrel 31 is longer in the front-rear direction than the insulation barrel 34 and longer in the front-rear direction than the connecting portion 37. In addition, the pair of third side walls 33 of the wire barrel 31 are shorter in the up-down direction than the pair of fourth side walls 36 of the insulation barrel 34 and longer in the up-down direction than the pair of fifth side walls 39 of the connecting portion 37.
[0019] The connecting portion 40 includes a second bottom wall 41 and a pair of second side walls 42 rising upward from both side edges of the second bottom wall 41. The front end of the second bottom wall 41 is connected to the rear end of the first bottom wall 21 of the terminal connection portion 20, and the rear end of the second bottom wall 41 is connected to the front end of the third bottom wall 32 of the wire barrel 31. As shown in FIG. 3 , the first bottom wall 21 of the terminal connection portion 20, the second bottom wall 41 of the connecting portion 40, and the third bottom wall 32 of the wire barrel 31 are flush with each other and aligned in a straight line.
[0020] The second side wall 42 is integrally formed with the third side wall 33 in a range from the third bottom wall 32 to the farthest vertex 33T of the third side wall 33 of the wire barrel 31. Therefore, the second side wall 42 is connected to the third side wall 33 over the entire height of the second side wall 42.
[0021] The second side wall 42 is formed integrally with the first side wall 22 but does not reach the vertex 22T of the first side wall 22 of the terminal connection portion 20 that is farthest from the first bottom wall 21. The second side wall 42 is connected to the first side wall 22 over the entire height of the second side wall 42. The connecting portion of the second side wall 42 with the vertex 33T of the third side wall 33 is formed so as to be highest from the second bottom wall 41.
[0022] The rising edge of the second side wall 42 from the second bottom wall 41 includes a stress relief portion 43 and a straight portion 44. The stress relief portion 43 is formed at the front end of the second side wall 42, and the rising edge from the second bottom wall 41 is curved so as to smoothly connect to the rear edge of the first side wall 22. The straight portion 44 is formed to extend linearly from the stress relief portion 43 toward the connecting portion with the vertex 33T of the third side wall 33. Note that, at the rear end of the first side wall 22 (the portion extending upward from the stress relief portion 43) and the rear end of the ceiling wall 23, a retaining member is provided to engage from the rear when the terminal-attached electric wire 50 is accommodated in the housing, thereby preventing the terminal-attached electric wire 50 from coming out.
[0023] [Terminal-attached wire] The electric wire with terminal 50 is configured to include a terminal 60 and an electric wire W. The terminal 60 is a crimped terminal formed by crimping the electric wire connection portion 30 of the pre-crimp terminal 10 to the electric wire W. The same reference numerals are used for the components of the terminal 60 that are common to the pre-crimp terminal 10, and descriptions thereof will be omitted.
[0024] 5 to 8, the terminal 60 is configured to include a terminal connection portion 20, a coupling portion 70, and an electric wire connection portion 80. The electric wire connection portion 80 includes a wire barrel 81 crimped onto the conductor W1, an insulation barrel 82 crimped onto the insulating coating W2, and a connecting portion 83 connecting the wire barrel 81 and the insulation barrel 82.
[0025] Before crimping onto the electric wire W, the insulating coating W2 is removed from the front end of the electric wire W over a region slightly longer than the front-to-rear length of the wire barrel 81, thereby exposing the conductor W1 (i.e., stripped). When crimping onto the electric wire W, the exposed portion of the conductor W1 is placed on the third bottom wall 32, and then the pair of third side walls 33 are fixed while being curved and deformed so as to be wrapped around (surround) the conductor W1. That is, in the wire barrel 81 of the electric wire connection part 80, the pair of third side walls 33 are curved and deformed while being wrapped around the conductor W1 placed on the third bottom wall 32. In this way, the wire barrel 81 is configured to crimp onto the electric wire W.
[0026] 9, the wire barrel 81 is crimped using a die 90 having the same length as the length of the wire barrel 81 in the front-rear direction. Typically, such a die has tapered inclined surfaces formed on the front and rear ends, and these inclined surfaces are used to form bell mouths at both the front and rear ends of the wire barrel 81. However, in the terminal 60 of the present disclosure, the die 90 does not have inclined surfaces, but the bell mouth 71 is formed at the front end of the wire barrel 81.
[0027] The bell mouth 71 is formed in the connecting portion 70. The bell mouth 71 has a shape that slopes upward as it moves forward from the front end of the wire barrel 81. The area from the apex 72 of the bell mouth 71 to the stress relief portion 43 is formed in a straight line that slopes gently downward. The bell mouth 71 significantly increases the thickness of the rear end side of the connecting portion 70, and the strength of the connecting portion 70 is increased by 1.4 to 1.8 times compared to when the bell mouth 71 is not present. In addition, the bell mouth 71 distributes the stress applied to the connecting portion 70, making it possible to prevent the rear end of the connecting portion 70 from becoming a bending starting point.
[0028] FIG. 11 is a cross-sectional view taken along line AA in FIG. 10, showing a cross-sectional view of the wire barrel 81 at the center in the front-rear direction. The pair of third side walls 33 are crimped by a mold 90 and crimped to the conductor W1. The figure shows how the tips of the pair of third side walls 33 abut against each other and are pressed toward the third bottom wall 32. FIG. 12 is a cross-sectional view taken along line BB in FIG. 10, showing a cross-sectional view of the front end of the wire barrel 81. Although the pair of third side walls 33 are crimped to the conductor W1, the tips of the pair of third side walls 33 are slightly spaced apart. The portion of the pair of second side walls 42 shown in FIG. 12 that reaches the vertex 72 constitutes a bell mouth 71.
[0029] 10, and is a cross-sectional view taken along the line CC of the connecting portion 40. Although the pair of second side walls 42 are spaced apart from the conductor W1, the tips of the pair of second side walls 42 are parallel to the second bottom wall 41 and are arranged facing each other with a slight gap therebetween.
[0030] FIG. 14 is a DD cross-sectional view of FIG. 10, and is a cross-sectional view of the connecting portion 40 slightly forward of FIG. 13. The pair of second side walls 42 rise in a substantially straight line, and the tips of the pair of second side walls 42 face diagonally upward. FIG. 15 is an EE cross-sectional view of FIG. 10, and is a cross-sectional view of the connecting portion 40 further forward than FIG. 14. It can be seen that the pair of second side walls 42 rise at an angle closer to vertical than in FIG. 14. FIG. 16 is an FF cross-sectional view of FIG. 10, and is a cross-sectional view of the connecting portion 40 slightly forward of FIG. 15. The pair of second side walls 42 rise vertically, and are in almost the same shape as before crimping.
[0031] 17 is a development view of the pre-crimp terminal 10. Both side edges of the connecting portion 40 are formed linearly from the vertices 33T of the pair of third side walls 33 toward the first side wall 22, and this portion corresponds to the straight portion 44, and the connecting portion 40 is shown to have been reinforced by being thickened.
[0032] [Effects of the Pre-Crimped Terminal of the Present Disclosure] The pre-crimp terminal 10 of the present disclosure is a pre-crimp terminal 10 before being crimped to an electric wire W, and comprises a terminal connection portion 20, an electric wire connection portion 30 arranged behind the terminal connection portion 20 and connected to the electric wire W, and a linking portion 40 linking the terminal connection portion 20 and the electric wire connection portion 30, the terminal connection portion 20 comprising a first bottom wall 21 and a pair of first side walls 22 rising from both side edges of the first bottom wall 21, the linking portion 40 comprising a second bottom wall 41 continuing to the first bottom wall 21 and a pair of second side walls 42 rising from both side edges of the second bottom wall 41, The terminal 31 has a third bottom wall 32 connected to the second bottom wall 41 and a pair of third side walls 33 rising from both side edges of the third bottom wall 32, and the wire connection portion 30 is crimped to the wire W by wrapping the pair of third side walls 33 around the terminal portion of the wire W placed on the third bottom wall 32 while bending and deforming it, and the second side walls 42 are formed integrally with the third side wall 33 in a range extending to the vertex 33T of the third side wall 33 that is farthest from the third bottom wall 32, and are connected to the third side walls 33 over the entire height of the second side walls 42, forming a pre-crimp terminal 10.
[0033] Because the second side wall 42 is formed integrally with the third side wall 33 in an area extending up to the vertex 33T of the third side wall 33, no depression that could become a bending starting point is formed at the rear end of the connecting portion 40, and it is possible to prevent the rear end of the connecting portion 40 from becoming a bending starting point when an external force is applied. Furthermore, because the second side wall 42 is connected to the third side wall 33 over the entire height, stress is more easily transmitted from the second side wall 42 to the third side wall 33, which makes it easier to alleviate stress acting on the rear end of the connecting portion 40 and increases the strength of the connecting portion 40.
[0034] The second side wall 42 is formed integrally with the first side wall 22 to an extent that does not reach the vertex 22T of the first side wall 22 that is farthest from the first bottom wall 21, and is connected to the first side wall 22 over the entire height of the second side wall 42, and it is preferable that the connection portion of the second side wall 42 with the vertex 33T of the third side wall 33 is formed so as to be highest from the second bottom wall 41. The connecting portion of the second side wall 42 with the vertex 33T of the third side wall 33 is formed to be the highest from the second bottom wall 41, so that the strength can be increased precisely near the rear end of the connecting portion 40, which is likely to be the starting point of bending.
[0035] It is preferable that a curved stress relief portion 43 be formed at the front end of the second side wall 42 so that the rising edge from the second bottom wall 41 smoothly connects to the rear edge of the first side wall 22 . Since a stress relief portion 43 is formed at the front end of the second side wall 42, stress is more easily transmitted from the second side wall 42 to the first side wall 22, and stress acting on the front end of the connecting portion 40 is more easily relieved, thereby increasing the strength of the connecting portion 40.
[0036] It is preferable that the rising edge of the second side wall 42 from the second bottom wall 41 has a stress relief portion 43 and a straight portion 44 formed by extending in a straight line from the stress relief portion 43 toward the vertex 33T of the third side wall 33. Since the straight portion 44 is formed at the rising edge of the second side wall 42, the strength of the connecting portion 40 increases toward the rear, and stress is less likely to be concentrated in one place.
[0037] [Other embodiments] (1) In the above embodiment, the electric wire connecting portion 30 includes the wire barrel 31 and the insulation barrel 34, but the electric wire connecting portion may include only the wire barrel.
[0038] (2) In the above embodiment, the connecting portion 37 is connected to the fourth side wall 36 of the insulation barrel 34 without reaching the apex thereof. However, the connecting portion may be connected to the fourth side wall 36 of the insulation barrel 34 in a range that reaches the apex thereof. This increases the strength of the fourth side wall 36 at the connecting portion 37.
[0039] (3) In the above embodiment, the connecting portion of the second side wall 42 of the connecting portion 40 with the vertex 33T of the third side wall 33 is formed to be the highest from the second bottom wall 41, but it may be formed to be the highest midway through the straight portion. In addition, the portion from the stress relief portion 43 toward the vertex 33T of the third side wall 33 does not have to be linear, and may be arc-shaped.
[0040] (4) In the above embodiment, the stress relief portion 43 is formed in a curved shape. However, the stress relief portion may be formed in a straight line so as to form an obtuse angle with respect to the rear edge of the first side wall 22 . [Explanation of symbols]
[0041] 10: Terminal before crimping 20: Terminal connection portion 21: First bottom wall 22: First side wall 22T: Top vertex 23: Top wall 30: Wire connection part 31: Wire barrel 32: Third bottom wall 33: Third side wall 33T: Vertex 34: Insulation barrel 35: Fourth bottom wall 36: Fourth side wall 37: Joint part 38: Fifth bottom wall 39: Fifth side wall 40: Connecting portion 41: Second bottom wall 42: Second side wall 43: Stress relief portion 44: Straight portion 50: Wire with terminal 60: Terminal 70: Connection part 71: Bell mouth 72: Vertex 80: Wire connection part 81: Wire barrel 82: Insulation barrel 83: Joint part 90: Mold W: Electric wire W1: Conductor W2: Insulating coating
Claims
[Claim 1] A pre-crimp terminal before being crimped onto an electric wire, a terminal connection portion; an electric wire connection portion disposed behind the terminal connection portion and connected to the electric wire; a connecting portion that connects the terminal connecting portion and the electric wire connecting portion, The terminal connection portion includes a first bottom wall and a pair of first side walls rising from both side edges of the first bottom wall, the connecting portion includes a second bottom wall connected to the first bottom wall and a pair of second side walls rising from both side edges of the second bottom wall, the wire connection portion includes a third bottom wall continuous with the second bottom wall and a pair of third side walls rising from both side edges of the third bottom wall, the electric wire connection portion is crimped to the electric wire by winding the pair of third side walls around an end portion of the electric wire placed on the third bottom wall while bending and deforming the pair of third side walls, the second side wall is integrally formed with the third side wall in a range from the third bottom wall to the vertex of the third side wall that is farthest from the third bottom wall, and is connected to the third side wall over the entire height of the second side wall, the second side wall is integrally formed with the first side wall within a range not reaching the vertex of the first side wall farthest from the first bottom wall, and is connected to the first side wall over the entire height of the second side wall, a stress relief portion is formed at a front end of the second side wall, the stress relief portion having a curved shape such that an edge rising from the second bottom wall smoothly connects to a rear edge of the first side wall; an edge of the second side wall rising from the second bottom wall includes the stress relaxation portion and a straight portion extending linearly from the stress relaxation portion toward the apex of the third side wall; A pre-crimp terminal, wherein a connecting portion of the second side wall with the apex of the third side wall is formed at a rear end of the straight portion that is highest from the second bottom wall.
Citation Information
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