Method of crimping terminal with cable and terminal crimping apparatus
11152754 ยท 2021-10-19
Assignee
Inventors
Cpc classification
International classification
Abstract
A method of crimping a terminal with a cable which crimps and connects a crimping portion of a crimp terminal to an end of a cable by a crimp die, includes an anticorrosive supply step and a terminal crimping step. In the anticorrosive supply step, an anticorrosive agent is stored in or supplied to an anticorrosive supply portion formed in the crimp die. In the terminal crimping step, the crimping portion of the crimp terminal is crimped to the cable by the crimp die. During or after the terminal crimping step, the anticorrosive agent is applied to a predetermined area around the crimping portion of the crimp terminal by the anticorrosive supply portion of the crimp die.
Claims
1. A method of crimping a terminal with a cable which includes: a cable having a core wire covered with an insulating sheath; and a crimp terminal having a crimping portion including: a core wire crimping portion crimped to the core wire exposed from the insulating sheath; and a sheath crimping portion crimped to the insulating sheath, and wherein the method crimps and connects the crimping portion of the crimp terminal to an end of the cable by a crimp die, the method comprising: an anticorrosive supplying step of storing an anticorrosive agent in or supplying an anticorrosive agent to an anticorrosive supply portion formed in the crimp die; and a terminal crimping step of crimping the crimping portion of the crimp terminal to the cable by the crimp die, wherein during or after the terminal crimping step, the anticorrosive agent is transferred directly or dropped directly to a portion where the core wire is exposed between the core wire crimping portion and the sheath crimping portion of the crimp terminal by the anticorrosive supply portion of the crimp die.
2. The method of crimping the terminal with a cable according to claim 1, wherein the anticorrosive supply portion is a porous body in which a liquid anticorrosive agent is soaked, and the anticorrosive agent is transferred to the predetermined area around the core wire crimping portion of the crimp terminal by the porous body.
3. The method of crimping the terminal with a cable according to claim 1, wherein the anticorrosive supply portion supplies a fixed amount of the stored liquid anticorrosive agent, and the stored liquid anticorrosive agent is dropped to the predetermined area around the core wire crimping portion of the crimp terminal.
4. A terminal crimping apparatus used for a method of crimping a terminal with a cable, which including: a cable having a core wire covered with an insulating sheath; and a crimp terminal having a crimping portion including: a core wire crimping portion crimped to the core wire exposed from the insulating sheath; and a sheath crimping portion crimped to the insulating sheath, and the apparatus comprising: a crimp die which crimps and connects the crimping portion of the crimp terminal to an end of the cable; and, an anticorrosive supply portion which is provided at the position directly facing a portion where the core wire is exposed between the core wire crimping portion and the sheath crimping portion of the crimp terminal in the crimp die and which supplies an anticorrosive agent.
Description
BRIEF DESCRIPTION OF DRAWINGS
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DETAILED DESCRIPTION
(21) Hereinafter, embodiments of the present invention will be described with reference to the accompanying drawings.
(22) A first embodiment will be described with reference to
(23) As illustrated in
(24) The terminal connection portion 31 is formed on a front side of the crimp terminal 30. The other terminal is electrically connected to the terminal connection portion 31. The crimping portion 32 has a core wire barrel (core wire crimping portion) 33 and a sheathed barrel (sheath crimping portion) 34. The core wire barrel 33 is crimped to the core wire 22 exposed from the insulating sheath 21 at a rear side from a center of the crimp terminal 30. The sheathed barrel 34 is crimped to the insulating sheath 21.
(25) An anticorrosive agent 40 is applied around the crimping portion 32 of the crimp terminal 30 via a terminal crimping apparatus 50 having a crimp die 60 to cover the crimping portion 32.
(26) In the terminal 10 with a cable, the core wire 22 of the cable 20 and the crimp terminal 30 are each made of different metals. For example, the core wire 22 is formed of a wire rod of aluminum or an aluminum alloy. The crimp terminal 30 is made of a member in which a base material of a copper alloy is plated with a tin alloy or the like. In this case, a bare portion of the core wire 22 in contact with the crimp terminal 30 is likely to be electrolytically corroded (corroded) due to different metal contact corrosion (galvanic corrosion). Therefore, the anticorrosive agent 40 is applied between the core wire barrel 33 and the sheathed barrel 34 of the crimping portion 32 of the crimp terminal 30 where the bare portion of the core wire 22 is exposed, thereby preventing electrolytic corrosion (see
(27) Examples of the anticorrosive agent 40 include a liquid ultraviolet curable resin such as urethane acrylate or a liquid thermoplastic resin such as polyethylene, polypropylene, polystyrene, polyvinyl chloride, polyester, and polyamide.
(28) When an ultraviolet curable resin or a thermoplastic resin is used as the anticorrosive agent 40, there are two methods for applying the anticorrosive agent 40.
(29) In both methods, as illustrated in
(30) In the first method, during or after the terminal crimping step in which the crimping portion 32 of the crimp terminal 30 is crimped to an end of the cable 20 by the crimp die 60, in an anticorrosive supplying step of storing or supplying the anticorrosive agent 40, as illustrated in
(31) In the second method, during or after the terminal crimping step, in the anticorrosive supplying step, as illustrated in
(32) In both methods, it is preferable to drop or transfer and apply the anticorrosive agent 40 to the portion to which the core wire 22 between the core wire barrel 33 and the sheathed barrel 34 of the crimp terminal 30 is exposed. As illustrated in
(33) When an ultraviolet curable resin is used as the anticorrosive agent 40, as illustrated in
(34) In the UV irradiation step, as illustrated in
(35) When the thermoplastic resin is used as the anticorrosive agent 40, as illustrated in
(36) In the method of crimping a terminal 10 with a cable by the crimp die 60, a terminal crimping apparatus 50 illustrated in
(37) As illustrated in
(38) The anvil (fixed lower die) 61 and the crimper 63A on the front side of the movable upper die 63 caulk and crimp a U-shaped sheathed barrel 34 of the crimp terminal 30 to the insulating sheath 21 of the cable 20 such that the sheathed barrel 34 is wound around the insulating sheath 21, by narrowing a gap between the anvil 61 and the crimper 63A.
(39) The anvil 61 and the crimper 63B on the rear side of the movable upper die 63 caulk and crimp a U-shaped core wire barrel 33 of the crimp terminal 30 to the core wire 22 of the cable 20 such that the core wire barrel 33 is wound around the core wire 22 of the cable 20 by narrowing a gap between the anvil 61 and the crimper 63B.
(40) In crimping the end of the cable 20 to the crimping portion 32 of the crimp terminal 30, the insulating sheath 21 of the cable 20 is held between the cable setting table and the cable pressing body 68 and the terminal connection portion 31 of the crimp terminal 30 is held by the terminal connection portion pressing body 69.
(41) A lower surface side of the middle upper die 64 of the movable upper die 63 is recessed in an inverted U shape. In order to supply the anticorrosive agent 40 to a predetermined area around the crimping portion 32 of the crimp terminal 30, a hole-shaped anticorrosive supply portion 65 is provided on an upper side of the middle upper die 64. The anticorrosive supply portion 65 stores the anticorrosive agent 40 therein. An outlet 65a at a center of a lower end of the anticorrosive supply portion 65 is provided at a position facing the portion where the core wire 22 is exposed between the core wire barrel 33 and the sheathed barrel 34 of the crimping portion 32 of the crimp terminal 30 which is set on the anvil 61.
(42) The liquid anticorrosive agent 40 stored in the anticorrosive supply portion 65 is dropped and applied to the portion where the core wire 22 is exposed between the core wire barrel 33 and the sheathed barrel 34 of the crimp terminal 30 by a fixed amount through the outlet 65a of the anticorrosive supply portion 65.
(43) As illustrated in
(44) Next, the method of crimping a terminal 10 with a cable for crimping and connecting the crimping portion 32 of the crimp terminal 30 to the end of the cable 20 by the crimp die 60 of the terminal crimping apparatus 50 will be specifically described in order along
(45) First, as illustrated in
(46) Next, as illustrated in
(47) At the same time, the anticorrosive agent 40 starts to be dropped toward the portion where the core wire 22 is exposed between the core wire barrel 33 and the sheathed barrel 34 of the crimp terminal 30. At the time of starting the crimping, the liquid anticorrosive agent 40 may be transferred and applied to the portion where the core wire 22 is exposed between the core wire barrel 33 and the sheathed barrel 34 of the crimp terminal 30 by using the porous body 67 which is provided on the lower surface side of the middle upper die 64 of the movable upper die 63 and soaked with the liquid anticorrosive agent 40.
(48) As illustrated in
(49) As described above, since the anticorrosive agent 40 can be applied by the transfer or dripping during the crimping of the crimp terminal 30, that is, simultaneously with crimping the crimp terminal 30, the core wire 22 of the cable 20 exposed from the insulating sheath 21 within the terminal crimping apparatus 50 can be subjected to the anticorrosion treatment in a short time. Thereby, the improvement in productivity and the cost reduction of the terminal 10 with a cable which is subjected to the anticorrosion treatment can be achieved.
(50) A second embodiment will be described with reference to
(51) As illustrated in
(52) In the terminal crimping apparatus 50A, after bottom dead centers of the crimpers 63A and 63B on the front and rear sides which are a movable upper die 63 of the crimp die 60 are detected, a fixed amount of liquid anticorrosive agent 40 is accurately supplied from the dispenser 55. For this reason, anticorrosion treatment can be performed with higher accuracy, and a high-quality terminal 10 with a cable can be mass-produced. This can reduce the manufacturing cost.
(53) According to the first and second embodiments, the liquid anticorrosive agent is applied by being dropped or transferred to a portion where a core wire is exposed between a core wire barrel and a sheathed barrel of a crimping portion of a crimp terminal, but these embodiments are not limited thereto. For example, a liquid anticorrosive agent may be applied by being dropped or transferred to the portion or the like where the core wire is exposed between a terminal connection portion of the crimp terminal and the core wire barrel.
(54) In addition, the anticorrosive agent is applied by the dropping or transfer during the crimping of the crimp terminal, that is, simultaneously with the crimping of the crimp terminal, but the embodiment is not limited thereto. For example, the anticorrosive agent may be applied by the dropping or transfer after the crimping of the crimp terminal.
(55) In addition, the anticorrosive supply portion which stores or supplies the anticorrosive agent, is provided to the middle upper die positioned between the crimpers on the front and rear sides of the movable upper die, but this embodiment is not limited thereto. For example, the anticorrosive supply portion may be provided at another location of the movable upper die.