SEAL MOLD DIVIDED STRUCTURE FOR COMBINATION CABLE AND METHOD FOR MANUFACTURING THE SAME
20210210248 · 2021-07-08
Assignee
Inventors
Cpc classification
B60T8/171
PERFORMING OPERATIONS; TRANSPORTING
B60T13/66
PERFORMING OPERATIONS; TRANSPORTING
H01R13/5845
ELECTRICITY
B60R16/0215
PERFORMING OPERATIONS; TRANSPORTING
B60R16/023
PERFORMING OPERATIONS; TRANSPORTING
International classification
H01B7/00
ELECTRICITY
H01B7/18
ELECTRICITY
Abstract
A seal mold divided structure for combination cable disclosed comprises the following structures: a first cable and a second cable separated from the combination cable; a connector provided at the end of the first cable; a division molding portion that molds the division part between the first cable and the second cable and keeps the first cable and the second cable separated from each other; a connector molding portion that molds the connection part between the connector and the first cable; and a protect tube, with its ends respectively fixed to the division molding portion and the connector molding portion to protect the first cable and prevent inflow of a molding compound.
Claims
1. A seal mold divided structure for combination cable, comprising: a first cable and a second cable separated from the combination cable; a connector provided at the end of said first cable; a division molding portion that molds the division part between said first cable and second cable and keeps said first cable and second cable separated from each other; a connector molding portion that molds the connection part between said connector and said first cable; and a protect tube, with its ends respectively fixed to said division molding portion and said connector molding portion to protect said first cable and prevent inflow of a molding compound.
2. The seal mold divided structure for combination cable of claim 1, wherein said connector can be used as the connector of an electronic parking brake (EPB); and one of a wheel speed sensor (WSS) and a WSS extension cable connector is connected to said second cable.
3. The seal mold divided structure for combination cable of claim 1, wherein said division molding portion further comprises: an integral portion, which wraps the outer surface of said combination cable and fixes it; a first division portion, which is formed by bending towards the side of the first cable exposed to said integral portion; and a second division portion, which is formed by straightening towards the side of the second cable exposed to said integral portion.
4. The seal mold divided structure for combination cable of claim 1, wherein said connector molding portion bends to take an “n” shape in order that a right angle is formed between said connector and said first cable.
5. The seal mold divided structure for combination cable of claim 1, wherein the outer surface of said protect tube is circular.
6. The seal mold divided structure for combination cable of claim 5, wherein the inner surface of said protect tube is elliptical, and the protect tube closely fits the outer surface of said first cable, which comprises two winding displacements, thus preventing the inflow of a molding compound.
7. The seal mold divided structure for combination cable of claim 1, wherein a cord grommet portion is formed and integrated on the outer surface of said division molding portion, allowing a mounting bracket to be installed.
8. The seal mold divided structure for combination cable of claim 7, wherein said cord grommet portion is located on the integral portion of said division molding portion.
9. A method for manufacturing a seal mold divided structure for combination cable, comprising: removing the sheathing of the combination cable to expose the first cable and the second cable and separate them; providing a protect tube on the outer surface of the separated first cable; providing an EPB connector at the end of said first cable; providing a WSS at the end of said second cable; wrapping and molding the division portion between said first cable and second cable and one end of said protect tube to form a seal molded portion; and wrapping and molding the division portion between said connector and said first cable and the other end of said protect tube to separate it from said seal molded portion, thus forming a connector molded portion.
10. The method of claim 9, further comprising preventing the inflow of a molding compound by forming the inner surface of said protect tube in an elliptical shape, such that the protect tube closely fits the outer surface of said first cable, which comprises two winding displacements.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0026] The present disclosure will become more fully understood from the detailed description and the accompanying drawings, wherein:
[0027]
[0028]
[0029]
[0030]
[0031]
[0032]
[0033]
DETAILED DESCRIPTION
[0034] By referring to the drawings, the following describes in detail the method for manufacturing a seal mold divided structure for combination cable according to the present invention.
[0035] For ease and clarity of description, representations of the line thickness or sizes of structure elements shown in the drawings may be exaggerated. In addition, the terms used in the following description are the terms defined according to the functions in the present invention and vary with the intentions of users and operators or usual practice. Therefore, these terms should be defined on the basis of the entire contents of this specification.
[0036]
[0037]
[0038]
[0039] As shown in
[0040] As shown in
[0041] After the second cable (20) is separated from the combination cable (2), the wheel speed sensor (WSS) (22) or the WSS extension cable connector (24) is connected to its end. As shown in
[0042] The connector (30) is provided at the end of the first cable (10), allowing the EPB to work. After the connector (30) is connected to the end of the first cable (10), the connector molding portion (50) described below fixes it.
[0043] The division molding portion (40) is a molding structure that is molded in the divided part between the first cable (10) and the second cable (20) and keeps the first cable (10) and the second cable (20) in a divided state. By means of molding, the division molding portion (40) integrally fixes the combination cable (2), the second cable (20), which is formed by connecting to it in a straight line, and the first cable (10) division portion that bends into an n shape, so that the combination cable (2) keeps the first cable (10) and the second cable (20) in a divided state.
[0044] The division molding portion (40) comprises the following structures: the integral portion (42), which wraps and fixes the outer surface of the outer sheathing (4) of the combination cable (2); the first division portion (44), which is formed by bending towards the side of the first cable (10) exposed to the integral portion (42); the second division portion (46), which is formed by straightening towards the side of the second cable (20) exposed to the integral portion (42). In this case, the diameter of the first division portion (44) almost remains the same from one end to the other end. This ensures that the first division portion (44) secures one end of the protect tube (60) and keeps the first cable (10) bent. In addition, the diameter of the second division portion (46) gradually increases from one end to the other end. The diameter of the second cable (20) is smaller than the diameter of the protect tube (60) that wraps the first cable (10). Therefore, a diameter the same as that of the protect tube (60) that wraps the first division portion (44) is maintained. In order to improve the flexibility of the second cable (20), its diameter is made to gradually decrease towards its end. The division molding portion (40) wraps the separated first cable (10) and second cable (20) and the combination cable (2) not separated, thus preventing intrusion of any foreign matters, such as moisture.
[0045] The connector molding portion (50) is a structure that molds the connection portion between the connector (30) and the first cable (10). The connector molding portion (50) can mold concurrently with, before, or after the division molding portion (40). The connector molding portion (50) bends to be n-shaped; thus, when the connector (30) is set, the first cable (10) can be bent to reach a preset degree and direction. The connector molding portion (50) is roughly right-angled. The connector molding portion (50) wraps the separated first cable (10) and part of the connector (30), capable of preventing intrusion of foreign matters, such as moisture.
[0046] As shown in
[0047] As shown in
[0048] By referring to
[0049] First, the method for manufacturing a seal mold divided structure for combination cable according to the present invention comprises the phase of exposure and division (S10), the phase of sheathing setting (S20), the phase of connector setting (S30), the phase of WSS setting (S40), the phase of forming the division molding portion (S50), and the phase of forming the connector molding portion (S60).
[0050] The phase of exposure and division (S10) is the phase of removing the outer sheathing (4) of the combination cable (2) to expose and separate partial sections of the first cable (10) and the second cable (20). In this case, part of the inner sheathing (6) possibly remains on the second cable (20).
[0051] The phase of sheathing setting (S20) is the phase of setting the sheathing (60) on the outer surface of the separated first cable (10). The outer surface of the sheathing (60) is circular, and the sheathing's inner surface (62) is elliptical. Therefore, the side face of the sheathing (60) fits the first cable (10) as closely as possible. When the division molding portion (40) and the connector molding portion (50) are molded, a molding compound can be prevented from flowing into the inner side of the protect tube (60).
[0052] The connector setting phase (S30) is the phase of setting the EPB connector (30) at the end of the first cable (10).
[0053] The phase of WSS setting (S40) is the phase of setting the WSS (22) at the end of the second cable (20).
[0054] The phase of forming the division molding portion (S50) is the phase of wrapping the division portion between the first cable (10) and the second cable (20) and one end of the protect tube (60) to form the division molding portion (40). The division molding portion (40) concurrently wraps the division portion between the first cable (10) and the second cable (20) and part of the combination cable (2), thus preventing intrusion of any foreign matters, such as moisture.
[0055] The phase of forming (S60) the connector molding portion (40) is the phase of wrapping the connection portion between the connector (30) and the first cable (10) and the other end of the protect tube (60) to form the connector molding portion (50). The connector molding portion (50) bends to take the shape of “¬”. The connector molding portion (50) wraps the first cable (10) and part of the connector (30), capable of preventing intrusion of foreign matters, such as moisture.
[0056] While the present invention has been particularly described above with reference to preferred embodiments shown in the drawings, it should be understood that said embodiments are only exemplary and that those of ordinary skill in the art can make various modifications and equivalent substitutions therefrom.