push type cable butt joint equipment

文档序号:1711020 发布日期:2019-12-13 浏览:29次 中文

阅读说明:本技术 一种按压式的电缆对接设备 (push type cable butt joint equipment ) 是由 王丰收 于 2019-08-02 设计创作,主要内容包括:本发明是一种按压式的电缆对接设备,包括设备框架、按压板组件、支撑连接板组件、绝缘底板和电缆中心室,所述的设备框架的长度方向一侧表面分别开有正极进孔和负极进孔,所述的设备框架的长度方向另一侧表面分别开有正极出孔和负极处孔,所述的设备框架底部表面固定连接有绝缘底板,绝缘底板上部表面分别固定连接有四部支撑连接板组件,支撑连接板组件上部设置有按压板组件,所述的按压板组件包括按压板Ⅰ、按压板Ⅱ、支撑块Ⅰ、支撑块Ⅱ、支撑块Ⅲ、支撑块Ⅳ、四部弹性连接片和四部滑扣片组成,所述的按压板Ⅰ通过滚轴活动连接在设备框架表面,按压板Ⅰ底部表面一侧固定连接支撑块Ⅰ。(The invention relates to a push type cable butt joint device, which comprises a device frame, a push plate component, a supporting connecting plate component, an insulating bottom plate and a cable center chamber, the surface of one side of the length direction of the equipment frame is respectively provided with a positive pole inlet hole and a negative pole inlet hole, the surface of the other side of the length direction of the equipment frame is respectively provided with a positive pole outlet hole and a negative pole position hole, the bottom surface of the equipment frame is fixedly connected with an insulating bottom plate, the upper surface of the insulating bottom plate is respectively and fixedly connected with four supporting connecting plate assemblies, the upper parts of the supporting connecting plate assemblies are provided with pressing plate assemblies, the pressing plate component comprises a pressing plate I, a pressing plate II, a supporting block I, a supporting block II, a supporting block III, a supporting block IV, four elastic connecting sheets and four slide buckle sheets, according to pressure board I pass through roller bearing swing joint on equipment frame surface, press I bottom surface one side fixed connection supporting shoe I of board.)

1. The utility model provides a cable butt-joint equipment of push type, includes equipment frame (1), presses platen assembly (2), supports connecting plate subassembly (3), insulating bottom plate (4) and cable center chamber (5), its characterized in that, the length direction side surface of equipment frame (1) open respectively and have anodal hole (6) and negative pole to advance hole (7), the length direction opposite side surface of equipment frame (1) open respectively and have anodal hole (8) and negative pole department hole (9), equipment frame (1) bottom fixed surface be connected with insulating bottom plate (4), insulating bottom plate (4) upper portion surface be fixed connection respectively four support connecting plate subassembly (3), support connecting plate subassembly (3) upper portion and be provided with and press platen assembly (2), press platen assembly (2) including pressing platen I (21), press platen II (22), The supporting block I (23), the supporting block II (24), the supporting block III (25), the supporting block IV (26), four elastic connecting sheets (27) and four slide buckle sheets (28) are arranged, the pressing plate I (21) is movably connected to the surface of the equipment frame (1) through a rolling shaft, one side of the bottom surface of the pressing plate I (21) is fixedly connected with the supporting block I (23), the other side of the bottom surface of the pressing plate I (21) is fixedly connected with the supporting block II (24), the bottom surface of the supporting block I (23) is fixedly connected with the elastic connecting sheet (27), the bottom surface of the supporting block II (24) is fixedly connected with the supporting block III (24), the other side of the bottom surface of the pressing plate II (22) is fixedly connected with the supporting block IV (26), the supporting block III (25) and the bottom surface of the supporting block IV (26) are respectively and fixedly connected with the elastic connecting sheets (27), the end of the elastic connecting piece (27) is fixedly connected with a slide buckle piece (28).

2. The push type cable butting equipment according to claim 1, wherein a cable center chamber (5) is arranged in the equipment frame (1), first sliding grooves (10) are respectively formed in two transverse ends of one side surface of the cable center chamber (5), second sliding grooves (11) are respectively formed in two transverse ends of the other side surface of the cable center chamber (5), the first sliding grooves (10) are connected with the surfaces of the sliding buckle pieces (28) connected with the supporting blocks I (23) and II (24) in a buckling mode, and the second sliding grooves (11) are connected with the surfaces of the sliding buckle pieces (28) connected with the supporting blocks III (25) and IV (26) in a buckling mode.

3. A push type cable butting device according to claim 1, wherein the supporting connecting plate assembly (3) comprises a fixing block (31), a pressure spring I (32), a pressure spring II (33) and a contact connecting plate (34), the fixing block (31) is connected to the upper surface of the insulating base plate (4) in an embedded mode, one end of the upper surface of the fixing block (31) is fixedly connected to the pressure spring I (32), the other end of the upper surface of the fixing block (31) is fixedly connected to the pressure spring II (33), the pressure spring I (32) is fixedly connected to one end of the bottom surface of the contact connecting plate (34), the other end of the bottom surface of the contact connecting plate (34) is fixedly connected to the pressure spring II (33), and the upper surface of the contact connecting plate (34) is connected to the bottom surface of the elastic connecting plate (27) in a tightly-attached.

4. The push type cable butting equipment as claimed in claim 1, wherein one ends, away from the cable central chamber (5), of the elastic connecting sheets (27) respectively connected with the supporting block I (23) and the supporting block II (24) are tightly attached to the surfaces of the positive electrode inlet hole (6) and the negative electrode inlet hole (7), and one ends, away from the cable central chamber (5), of the elastic connecting sheets (27) respectively connected with the supporting block III (25) and the supporting block IV (26) are tightly attached to the surfaces of the positive electrode outlet hole (8) and the negative electrode position hole (9).

Technical Field

The invention relates to pressing type cable butt joint equipment, and belongs to the technical field of cable butt joint equipment.

Background

Cable butt joint equipment, the effect lies in can be fast complete the required connecting wire of connection, can play the assurance that has safety protection in butt joint connecting wire, it is direct bayonet jointing equipment to use at present stage cable butt joint equipment, fracture easily in the use, or play the danger of striking sparks, it is direct embedded connected mode to use on connecting the line ball, it can't connect in place to cause partial wire rod easily, cause the process at transmission power to cause the unstable electrically conductive problem of low pressure, it directly presses the process to use to press the process, it plays the buffering and presses the effect to not set up elastomeric element, cause the fracture of pressing and the danger of electric leakage easily.

disclosure of Invention

In order to solve the problems in the prior art, the invention provides a pressing type cable butt joint device which uses a multi-pressing technology structure, uses movable connection of a roller component on the pressing device of the cable butt joint device, and is provided with a spring component with a buffering effect on a supporting connecting plate component, so that the buffering effect of the pressing force in the pressing process is effectively realized, the effect of safe and long-term use is effectively ensured, the close connection mode of the pressing plate component and the supporting connecting plate component is effectively ensured under the effect of a connecting contact plate, the complete connection of cables in the connection process is effectively ensured, and the stable voltage conduction between the cables is realized.

In order to achieve the purpose, the invention is realized by the following technical scheme: a push type cable butt joint device comprises a device frame, a press plate component, a supporting connecting plate component, an insulating bottom plate and a cable center chamber, wherein a positive electrode inlet hole and a negative electrode inlet hole are respectively formed in one side surface of the device frame in the length direction, a positive electrode outlet hole and a negative electrode outlet hole are respectively formed in the other side surface of the device frame in the length direction, the insulating bottom plate is fixedly connected to the bottom surface of the device frame, four supporting connecting plate components are respectively and fixedly connected to the upper surface of the insulating bottom plate, the press plate component is arranged on the upper portion of the supporting connecting plate component and comprises a press plate I, a press plate II, a support block I, a support block II, a support block III, a support block IV, four elastic connecting sheets and four sliding buckle sheets, the press plate I is movably connected to the surface of the device frame through a rolling shaft, the support block I is fixedly connected to one side, according to I bottom surface opposite side fixed connection supporting shoe II of supporting shoe, I bottom surface fixed connection elastic connection piece of supporting shoe, II bottom surface fixed connection elastic connection pieces of supporting shoe, according to II bottom surface one side fixed connection supporting shoe III of supporting shoe, according to II bottom surface opposite side fixed connection supporting shoe IV of supporting shoe, supporting shoe III and supporting shoe IV bottom surface respectively fixedly connected with elastic connection piece, elastic connection piece end department fixedly connected with thread slipping piece.

The equipment frame is internally provided with a cable center chamber, the two transverse ends of the surface of one side of the cable center chamber are respectively provided with a first sliding groove, the two transverse ends of the surface of the other side of the cable center chamber are respectively provided with a second sliding groove, the first sliding grooves are buckled with the surfaces of the sliding buckle pieces connected with the supporting blocks I and II, and the second sliding grooves are buckled with the surfaces of the sliding buckle pieces connected with the supporting blocks III and IV.

Support connecting plate subassembly include fixed block, pressure spring I, pressure spring II and contact connection board and constitute, the embedded upper portion surface of connecting at insulating bottom plate of fixed block, the upper portion surface one end fixed connection of fixed block is at pressure spring I, the upper portion surface other end fixed connection of fixed block is at pressure spring II, I fixed connection of pressure spring is in the bottom surface one end of contact connection board, the bottom surface other end fixed connection of contact connection board is on pressure spring II, contact connection board upper portion surface is hugged closely and is connected elastic connection piece bottom surface.

the end, far away from the cable central chamber, of each elastic connecting piece connected with the supporting block I and the supporting block II is tightly attached to the surfaces of the positive electrode inlet hole and the negative electrode inlet hole, and the end, far away from the cable central chamber, of each elastic connecting piece connected with the supporting block III and the supporting block IV is tightly attached to the surfaces of the positive electrode outlet hole and the negative electrode outlet hole.

In summary, the present invention provides a push-type cable docking device, which uses a multi-part push technology structure, uses a movable connection of a roller component on the push setting of the cable docking device, and a spring component with a buffering effect on the supporting connection board component, thereby effectively realizing the buffering effect of the push force in the push process, effectively ensuring the effect of safety and long-term use, and effectively ensuring the complete connection of cables in the connection process and the stable conduction of voltage between cables due to the close connection of the push board component and the supporting connection board component under the effect of the connection contact board.

Drawings

FIG. 1 is a schematic structural view of the present invention;

FIG. 2 is a schematic view of the pressing plate assembly and the supporting connection plate assembly shown in FIG. 1;

FIG. 3 is a schematic diagram of the cable center compartment configuration of FIG. 1;

In the figure: 1. the equipment frame, 2, pressing plate subassembly, 21, pressing plate I, 22, pressing plate II, 23, supporting shoe I, 24, supporting shoe II, 25, supporting shoe III, 26, supporting shoe IV, 27, elastic connecting piece, 28, slide fastener piece, 3, supporting connecting plate subassembly, 31, fixed block, 32, compression spring I, 33, compression spring II, 34, contact connecting plate, 4, insulating bottom plate, 5, cable center chamber, 6, positive pole inlet hole, 7, negative pole inlet hole, 8, positive pole outlet hole, 9, negative pole department hole, 10, first sliding tray, 11, second sliding tray.

Detailed Description

The invention is further described below with reference to the accompanying drawings.

As shown in fig. 1 to 3, the present invention is a press type cable docking apparatus, including an apparatus frame 1, a press plate assembly 2, a support connection plate assembly 3, an insulation bottom plate 4 and a cable central chamber 5, wherein one side surface of the apparatus frame 1 in the length direction is respectively provided with an anode inlet hole 6 and a cathode inlet hole 7, the other side surface of the apparatus frame 1 in the length direction is respectively provided with an anode outlet hole 8 and a cathode outlet hole 9, the bottom surface of the apparatus frame 1 is fixedly connected with the insulation bottom plate 4, the upper surface of the insulation bottom plate 4 is respectively fixedly connected with four support connection plate assemblies 3, the upper portion of the support connection plate assembly 3 is provided with a press plate assembly 2, the press plate assembly 2 includes a press plate i 21, a press plate ii 22, a support block i 23, a support block ii 24, a support block iii 25, a support block iv 26, four elastic connection plates 27 and four slide fastener pieces 28, according to I21 of pressing panel pass through roller bearing swing joint on 1 surface of equipment frame, press I21 bottom surface one side fixed connection supporting shoe I23 of pressing panel, press II 21 bottom surface opposite side fixed connection supporting shoe II 24 of pressing panel, supporting shoe I23 bottom fixed surface is connected with elastic connection piece 27, II 24 bottom fixed surface of supporting shoe is connected with elastic connection piece 27, press II 22 bottom surface one side fixed connection supporting shoe III 24 of pressing panel, press II 22 bottom surface opposite side fixed connection supporting shoe IV 26 of pressing panel, supporting shoe III 25 and supporting shoe IV 26 bottom surface respectively fixedly connected with elastic connection piece 27, elastic connection piece 27 end department fixedly connected with thread slipping piece 28.

The equipment frame 1 is internally provided with a cable center chamber 5, the two transverse ends of one side surface of the cable center chamber 5 are respectively provided with a first sliding groove 10, the two transverse ends of the other side surface of the cable center chamber 5 are respectively provided with a second sliding groove 10, the first sliding grooves 10 are connected with the surfaces of the sliding buckle pieces 28 connected with the supporting blocks I23 and II 24 in a buckling mode, and the second sliding grooves 10 are connected with the surfaces of the sliding buckle pieces 28 connected with the supporting blocks III 25 and IV 26 in a buckling mode.

Support connection board subassembly 3 include fixed block 31, pressure spring I32, pressure spring II 33 and contact connection board 34 are constituteed, fixed block 31 embedded connection on the upper portion surface of insulating bottom plate 4, the upper portion surface one end fixed connection of fixed block 31 is at pressure spring I32, the upper portion surface other end fixed connection of fixed block 31 is at pressure spring II 33, pressure spring I32 fixed connection is in the bottom surface one end of contact connection board 34, the bottom surface other end fixed connection of contact connection board 34 is on pressure spring II 33, the connection elastic connection piece 27 bottom surface is hugged closely to contact connection board 34 upper portion surface.

One ends of the elastic connecting sheets 27 respectively connected with the supporting block I23 and the supporting block II 24, which are far away from the cable central chamber 5, are tightly attached to the surfaces of the positive electrode inlet hole 6 and the negative electrode inlet hole 7, and one ends of the elastic connecting sheets 27 respectively connected with the supporting block III 25 and the supporting block IV 26, which are far away from the cable central chamber 5, are tightly attached to the surfaces of the positive electrode outlet hole 8 and the negative electrode outlet hole 9.

In summary, the present invention provides a push-type cable docking device, which uses a multi-portion push-type structure, uses a movable connection of a roller component on the push-type device, and a spring component with a buffering effect on the supporting connection board component, so as to effectively achieve the buffering effect of the push-type device during the push-type process, effectively ensure the effect of safety and long-term use, and effectively ensure the complete connection of cables during the connection process and the stable conduction of voltage between cables due to the close connection of the push-type device and the supporting connection board component under the effect of the connection contact board.

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