The present invention relates to a crimping tool, and more particularly to a crimping tool capable of reducing a required space during application.
Coaxial cables are extensively used in purposes of wired signal transmission. In general, in addition to a center copper wire, a coaxial cable further includes two outer layers cladding the outside of the center copper wire. Thus, when one end the coaxial cable is to be electrically connected to an electromechanical apparatus, the outer layers need to be stripped off and a special connector needs to be added, and operating staff at this point requires the use of a crimping tool.
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A crimping tool 90 of the prior art includes a base 91, a moving member 92 and an operating member 93. The base 91 includes a fixing location 911 for fixing a conductive line. The moving member 92 has a crimping element 921. When the operating member 93 rotates towards a first direction F1, the moving member 92 is driven to move towards the first direction F1, so as to enable the crimping element 921 to press fit and fix the conductive line with a connector thereof. However, in the prior art, the operating member 93 and the moving member 92 face the same direction, and so the operating member 93 needs to be reserved with a sufficient space for application, otherwise a small space would disfavor an operation required.
Therefore, it is necessary to invent a new crimping tool to mitigate and/or obviate the aforementioned problems.
It is a primary object of the present invention to provide a crimping tool capable of reducing a required space during application.
According to an embodiment of the present invention, a crimping tool of the present invention is used for press fitting a connector of a wire. The crimping tool includes a base, an operating member and a moving member. The base includes a pivot location, a sliding groove, a first fixing location and a second fixing location. The pivot location is located at a center of the sliding groove. The first fixing location and the second fixing location are respectively located on two ends of the sliding groove, and are for fixing the connector of the wire. The operating member includes a holding portion, a pivotal hole and a gear. The pivotal hole is pivotally connected to a pivot location of the base through a pivotal shaft. The moving member is provided in the sliding groove so as to move in the sliding groove, and includes a rack, a first crimping element and a second crimping element. The first crimping element and the second crimping element are respectively located on two ends of the rack, and the rack is engaged with the gear of the operating member. Thus, when the operating member rotates, the gear drives the rack to enable the moving member to move simultaneously. When the holding portion of the operating member rotates towards a first direction, the moving member moves towards a second direction to enable the second crimping element to press fit the connector of the wire placed at the second fixing location. When the holding portion of the operating member rotates towards the second direction, the moving member moves towards the first direction to enable the first crimping element to press fit the connector of the wire placed at the first fixing location.
To enable the Examiner to better understand technical contents of the present invention, preferred embodiments are described in detail below.
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A crimping tool 1 of the present invention is used for press fitting a connector 81 of a wire 80 (as shown in
The operating member 20 includes a holding portion 21, a pivot hole 22 and a gear 23. The holding portion 21 is for a user to operate. The pivot hole 22 is pivotally connected to the pivot location 11 of the base 10 through a pivot shaft 50, allowing the operating member 20 to rotate. The moving member 30 is provided in the sliding groove 12 to move in the sliding groove 12. The moving member 30 includes a rack 31, a first crimping element 32 and a second crimping element 33. The gear 31 is engaged with the gear 23 of the operating member 20, and the first crimping element 32 and the second crimping element 33 are respectively provided on two ends of the gear 31, wherein the first crimping element 32 and the second crimping element 33 match the specification of the connector 81. Thus, when the gear 23 of the operating member 20 rotates, the gear 31 is driven to enable the moving member 30 to move simultaneously. The base 10 further includes an extension rod 15, and the moving member 30 includes an elongated slot 34 which matches the extension rod 15, allowing the moving member 30 to move within a predetermined range.
The fixing member 40 of the crimping tool 1 is fixedly connected to the base 10 by a protrusion element 41, such that the fixing member 40 kept immobile. A position at which the fixing member 40 is provided is in the moving member 30, and the fixing member 40 is simultaneously pivotally connected to the pivot hole 22 of the operating member 20 and the pivot location 11 of the base 10 by the pivot shaft 50. A first spring 42 and a second spring 43 are provided on two opposite sides of the fixing member 40, and are also provided in the moving member 30 and are in contact with two ends of the moving member 30. Thus, when the moving member 30 moves towards a first direction F1 or a second direction F2, the first spring 42 and the second spring 43 provide a restoring elastic force, allowing the moving member 30 to return to an original state, and the operating member 20 also simultaneously returns to an original state, i.e., a state in which the holding portion 21 is perpendicular to the base 10. In one embodiment of the present invention, the first direction F1 and the second direction F2 are opposite directions; however, the present invention is not limited to the above example.
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The operating member 20 is initially in the original state, and the holding portion 21 and the base 10 are perpendicular at this point. The connector 81 of the wire 80 can first be fixed at the second fixing location 14. When the holding portion 21 of the operating member 20 rotates towards the first direction F1, i.e., rotating towards a counterclockwise direction in
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At this point, the connector 81 of the wire 80 is first fixed at the first fixing location 13. When the holding portion 21 of the operating member 20 rotates towards the second direction F2, i.e., rotating towards the clockwise direction in
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The extension rod 15 further includes a fitting element 151, which has a diameter exceeding a diameter of the original extension rod 15. The elongated slot 34 further includes a fitting location 341. In one embodiment of the present invention, the fitting location 341 is provided on each of both ends or on only one end of the elongated slot 34; however, the present invention is not limited to the above examples. Taking
Using the above crimping tool 1, an operation space needed during application is significantly reduced.
Moreover, the embodiments merely described preferred embodiments of the present invention, and the present invention is not to be construed as being limited by these embodiments. To avoid redundant description, not all possible variations and combination are recited in detail. However, a person skilled in the art could understand that not all of the modules or components above are necessary. In addition, other detailed conventional modules or components may be included in order to implement the present invention. The modules and components can be omitted or modified according to requirements, and other modules or components can possibly exist between any two modules. Forms that do not depart from the fundamental architecture of the present invention are to be regarded within the claimed scope of the present invention, and the claimed scope should be accorded with the appended claims.
Number | Date | Country | Kind |
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108201904 | Feb 2019 | TW | national |
Number | Name | Date | Kind |
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8875387 | Youtsey | Nov 2014 | B2 |
20110047790 | Peng | Mar 2011 | A1 |
Number | Date | Country | |
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20200254504 A1 | Aug 2020 | US |