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CN-224224572-U - Hand tool for thermally conductive gaskets

CN224224572UCN 224224572 UCN224224572 UCN 224224572UCN-224224572-U

Abstract

Embodiments of the present disclosure disclose a hand tool for thermally conductive gaskets. The handheld tool comprises a handheld area arranged on the outer surface of the handheld part, a cutter part and an pushing-out part, wherein the first end of the cutter part is fixedly connected with the handheld part, the second end of the cutter part is provided with an annular cutting edge with a set shape and is used for cutting out a heat-conducting gasket with a required size on the whole heat-conducting gasket, the inside of the cutter part is of a hollow structure, a clamping groove matched with the set shape is formed in the inside of the second end of the cutter part and is used for accommodating the cut-out heat-conducting gasket, the pushing-out part comprises a control part and an executing part, the control part is arranged outside the handheld tool and is used for controlling the movement of the executing part, and the executing part moves in the handheld tool along the length direction and is used for pushing out the cut-out heat-conducting gasket from the cutter part to be stuck on an installation position. The punching and mounting of the heat conducting gasket, especially the small-size heat conducting gasket, can be realized through the handheld tool. Therefore, the overall production efficiency can be improved, and the defects generated in the mounting process of the heat conduction gasket can be effectively reduced.

Inventors

  • REN MINGGUO
  • JI ZHIZHENG
  • WANG AIHONG
  • XU CHUANHUI

Assignees

  • 诺兰特新材料(北京)有限公司
  • 诺兰特移动通信配件(北京)有限公司
  • 络派模切(北京)有限公司

Dates

Publication Date
20260512
Application Date
20250519

Claims (6)

  1. 1. A hand tool for thermally conductive gaskets, comprising: A hand-held part, the outer surface of which is provided with a hand-held area for manual grasping; The cutter component is fixedly connected with the handheld component at the first end, an annular cutting edge with a set shape is arranged at the second end, and the cutter component is used for cutting off the heat-conducting gasket with a required size on the whole heat-conducting gasket, wherein the inside of the cutter component is of a hollow structure, and a clamping groove matched with the set shape is formed in the inside of the second end and is used for accommodating the cut-off heat-conducting gasket; The pushing-out part comprises a control part and an executing part, wherein the control part is arranged outside the handheld tool and used for controlling the executing part to move, and the executing part moves in the handheld tool along the length direction and is used for pushing out the cut heat conduction gasket from the cutter part to be stuck on the installation position.
  2. 2. The hand tool for a thermally conductive pad of claim 1, wherein the push-out member further comprises an air pump in communication with the hand member through an air pipe, wherein an air passage in communication with the cutter member is formed inside the hand member; The control piece comprises a first control switch which is electrically connected with the air pump and used for controlling the air pump to blow out air; And the executing piece pushes out the heat conduction gasket in the cutter component under the blowing action of the air pump.
  3. 3. The hand tool for a thermally conductive gasket of claim 2 wherein said control further comprises a second control switch electrically connected to said air pump for controlling said air pump to draw air; In the process that the cutter component cuts the heat-conducting gasket, the execution piece adsorbs the cut heat-conducting gasket in the cutter component under the suction action of the air pump.
  4. 4. The hand tool for thermally conductive gaskets of claim 2, wherein said control is a foot switch or said control is a switch button disposed on the exterior of said hand piece.
  5. 5. The hand tool for thermally conductive gaskets of any of claims 1-4, further comprising a plurality of cutter members of shape and/or size, said cutter members being removably connected to said hand tool members; The cutter component is provided with a first clamping piece in the first end, and the handheld component is provided with a second clamping piece outside the end connected with the cutter component; The clamping structure of the first clamping piece and the second clamping piece comprises an internal and external thread screwing or a clamping groove and a clamping piece embedding.
  6. 6. The hand tool for a thermally conductive pad of claim 5, wherein the hand member is further provided with a light emitting member at an end portion of one end connected to the cutter member, and a power source electrically connected to the light emitting member is provided inside the hand member, and a power switch is provided outside the hand member, wherein the light emitting member can generate a light source of at least one color; When the light-emitting component is started, a light source of the light-emitting component irradiates on the whole heat-conducting gasket through the second end of the cutter component, and forms a light shadow of the set shape.

Description

Hand tool for thermally conductive gaskets Technical Field Embodiments of the present disclosure relate to the field of manufacturing technology, and in particular to a hand tool for thermally conductive gaskets. Background For small-sized heat-conducting pad products required by customers, a plurality of products with required sizes are usually punched on the whole heat-conducting pad. And then removing the excessive leftover materials to obtain the full-page product shown in figure 1. Whereby the product is shipped to the customer in the manner of fig. 1. However, the inventors have found that after receiving the products, the customer needs to remove individual products to affix them to the desired mounting location. Because the product is small in size and sticky, and lacks corresponding tools, the production efficiency is greatly affected. In addition, in the mounting process, the bad heat conduction gasket is easy to be caused due to improper taking. Disclosure of utility model The disclosure is in part intended to introduce concepts in a simplified form that are further described below in the detailed description. The disclosure is not intended to identify key features or essential features of the claimed subject matter, nor is it intended to be used to limit the scope of the claimed subject matter. Some embodiments of the present disclosure propose a hand tool for a thermally conductive pad to address one or more of the technical problems mentioned in the background section above. Some embodiments of the disclosure provide a hand tool for a heat conducting pad, which comprises a hand part, a cutter part and an pushing-out part, wherein the outer surface of the hand part is provided with a hand-held area for manual grasping, the first end of the cutter part is fixedly connected with the hand part, the second end of the cutter part is provided with an annular cutting edge with a set shape and is used for cutting out the heat conducting pad with a required size on the whole heat conducting pad, the cutter part is of a hollow structure, a clamping groove matched with the set shape is formed in the second end of the cutter part and is used for accommodating the cut heat conducting pad, the pushing-out part comprises a control part and an executing part, the control part is arranged outside the hand tool and is used for controlling the movement of the executing part, and the executing part moves in the length direction in the hand tool and is used for pushing the cut heat conducting pad out of the cutter part to be stuck on an installation position. In some embodiments, the pushing-out part further comprises an air pump, the air pump is communicated with the handheld part through an air pipe, an air passage communicated with the cutter part is formed in the handheld part, the control part comprises a first control switch which is electrically connected with the air pump and used for controlling the air pump to blow out air, and the execution part pushes out the heat conduction gasket in the cutter part under the blowing action of the air pump. In some embodiments, the control member further comprises a second control switch electrically connected with the air pump for controlling the air pump to suck air, and the execution member adsorbs the cut heat-conducting gasket inside the cutter member under the suction action of the air pump in the process of cutting the heat-conducting gasket by the cutter member. In some embodiments, the control is a foot switch, or the control is a switch button disposed on the exterior of the hand piece. In some embodiments, the handheld tool further comprises a plurality of cutter members with shapes and/or sizes, the cutter members are detachably connected with the handheld members, the cutter members are provided with first clamping pieces at the inner parts of the first ends, the handheld members are provided with second clamping pieces at the outer parts of the ends connected with the cutter members, and the clamping structures of the first clamping pieces and the second clamping pieces comprise internal and external screw threads in a screwing mode or clamping grooves are embedded with the clamping pieces. In some embodiments, the hand-held part is further provided with a light-emitting part at the end part of one end connected with the cutter part, a power supply electrically connected with the light-emitting part is arranged inside the hand-held part, and a power switch is arranged outside the hand-held part, wherein the light-emitting part can generate at least one color of light source, and when the light-emitting part is started, the light source of the light-emitting part irradiates on the whole heat-conducting gasket through the second end of the cutter part and forms a light shadow with a set shape. The above-described various embodiments of the present disclosure have the advantage that the hand tool for a thermally conductive pad of some embodiments of the pres