A method for assembling and using a dual position switching chip

CN116365334BActive Publication Date: 2026-08-28CHENGDU RELIANCE ELECTRIC
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Patent Information

Application Number
CN202310584117.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-05-23
Publication Date
2026-08-28
Estimated Expiration
2043-05-23

AI Technical Summary

Technical Problem

[0005]基于此,针对上述问题,需要使用到一种双工位切换片,本发明提出了一种双工位切换片的装配及使用方法,解决了目前存在没有合适的双工位切换片的装配及使用方法的问题

Benefits of technology

[0031] When in use, the dual-station switching plate can be assembled according to the assembly method described in this invention, and can be used according to the usage method of the dual-station switching plate described in this invention, which solves the problem that there is currently no suitable assembly and usage method for dual-station switching plates.

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Abstract

The application discloses an assembling and using method of a double-station switching sheet, and relates to an assembling method of a double-station switching sheet and a using method of the double-station switching sheet.
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Description

Technical Field

[0001] This invention relates to the field of electrical connection terminal technology, and in particular to a method for assembling and using a dual-position switching plate. Background Technology

[0002] The main function of a switching plate is to protect and adjust electrical equipment. Switching plates are used when two wires need to be connected and disconnected for switching. They are commonly used in high-voltage and low-voltage electrical applications. There are many types of switching plates available, with the plug-in type being the most common.

[0003] The switching plates in the existing technology are usually single-station switching plates, which can only connect or disconnect the two wires of one line. When it is necessary to control four wires of two lines at the same time, they are insufficient and cannot quickly disconnect or connect the two lines at the same time.

[0004] A spring-loaded switching plate terminal is disclosed in utility model application number 202022112364.2 and publication number CN212991387U. However, this technology still has the problem of not being able to quickly cut off or connect two lines at the same time. Therefore, a dual-station switching plate is needed, but there is currently no suitable assembly and usage method for dual-station switching plates. Summary of the Invention

[0005] Based on this, and to address the aforementioned problems, a dual-station switching plate is needed. This invention proposes an assembly and usage method for a dual-station switching plate, solving the current problem of the lack of a suitable assembly and usage method for dual-station switching plates.

[0006] The technical solution of this invention is:

[0007] 1. An assembly method for a dual-station switching plate, comprising the following steps:

[0008] A: Pre-installed plug-in components;

[0009] B: Pre-installed socket assembly;

[0010] C: Insert the plug rod and conductive rod in the plug assembly into the plug hole and conductive hole in the socket assembly, respectively;

[0011] D: Insert the spring into the plug rod, and then insert the plug rod through the limit block to complete the installation between the plug assembly and the plug sleeve assembly;

[0012] E: Install the plug-in sleeve, lock nut and combination screw onto the plug-in assembly in sequence;

[0013] F: Install the protective cover onto the socket assembly.

[0014] Preferably, step A specifically includes:

[0015] The conductive rods are installed at both ends of the connecting piece to form conductive units. Then, the conductive units are installed on both sides of the bottom of the connector, and the plug rod is set in the middle of the bottom of the connector.

[0016] Preferably, step B specifically includes:

[0017] Align the square protrusions on the bottom of the mounting base with the limiting grooves in the mounting slot, insert the mounting base into the mounting slot, and make the mounting base and the fixed base form a whole through the cooperation of the square protrusions and the limiting grooves.

[0018] Preferably, step C specifically includes:

[0019] Align the plug rod and conductive rod on the connector with the plug hole on the fixed base and the conductive hole on the mounting base, respectively. Then, insert the U-shaped track groove on the plug rod through to the end of the bottom face of the plug rod, aligning it with the right side of the arc groove on the inner wall of the bottom of the hollow tube without the rotating groove, so that the plug rod and conductive rod are inserted into the plug hole and the conductive hole, respectively.

[0020] Preferably, step D specifically includes:

[0021] Insert the spring into the plug-in rod, align the cylindrical protrusion on the limit block with the right end of the arc groove on the inner wall of the bottom of the hollow tube that does not have a rotating groove, insert the track slider on the limit block into the bottom of the U-shaped track groove, and then rotate the limit block towards the left end of the arc groove on the inner wall of the bottom of the hollow tube that has a rotating groove until the U-shaped track groove is closed. Release the spring, and the preload of the spring will push the limit block into the closed end of the U-shaped track groove, completing the installation between the plug-in assembly and the fixing seat and mounting seat.

[0022] Preferably, step E specifically includes:

[0023] Align the hexagonal limiting part on the plug sleeve with the hexagonal insertion slot inside the sleeve, insert the adjustable end of the plug sleeve into the sleeve, then connect the locking nut to the sleeve through the external thread to fix the plug sleeve, and then connect the combination screw to the plug sleeve through the threaded hole.

[0024] Preferably, step F specifically includes:

[0025] Align the insertion slots and snap-fit ​​slots on the protective cover with the hollow tube and central rib on the mounting base, respectively. Then align the fan-shaped rib in the insertion slot with the fan-shaped slot on the outer side of the bottom of the hollow tube. Snap the protective cover in, so that the semi-circular rib in the U-shaped groove snaps into the semi-circular slot on the central rib, thus completing the installation of the protective cover.

[0026] A method for using a dual-station switching plate assembled using the assembly method described in the preceding claims includes the following steps:

[0027] a: Place the structure installed in step D above the mounting panel. After making holes for the sleeve, hollow tube and central rib on the mounting panel, insert the structure installed above into the mounting panel. Then, proceed with steps E and F in sequence to complete the installation of the dual-station switching plate. Then, connect the unpowered line at the combination screw. After completing the line connection, power on the line.

[0028] b: When disconnection is required, pinch the connector and lift it upwards to pull out the connector assembly, so that the conductive rod is completely separated from the conductive hole. Rotate the connector to insert the conductive rod into the clearance hole.

[0029] c: When closure is required, pinch the connector and lift it upwards to pull out the connector assembly, so that the conductive rod is completely separated from the conductive hole. Rotate the connector in the opposite direction to insert the conductive rod into the conductive hole, and press the connector to insert the conductive rod into the connector sleeve.

[0030] Compared with the prior art, the beneficial effects of the present invention are:

[0031] When in use, the dual-station switching plate can be assembled according to the assembly method described in this invention, and can be used according to the usage method of the dual-station switching plate described in this invention, which solves the problem that there is currently no suitable assembly and usage method for dual-station switching plates. Attached Figure Description

[0032] Figure 1 This is an exploded structural diagram of a dual-station switching plate as described in an embodiment of the present invention;

[0033] Figure 2 This is a schematic diagram of the structure of a dual-station switching plate as described in an embodiment of the present invention;

[0034] Figure 3 This is a schematic diagram of the connector and plug rod described in the embodiments of the present invention;

[0035] Figure 4 This is a schematic diagram of the structure of the fixing base described in the embodiment of the present invention. Figure 1 ;

[0036] Figure 5 This is a schematic diagram of the structure of the fixing base described in the embodiment of the present invention. Figure 2 ;

[0037] Figure 6 This is a schematic diagram of the structure of the mounting base described in the embodiment of the present invention. Figure 1 ;

[0038] Figure 7 This is a schematic diagram of the structure of the mounting base described in the embodiment of the present invention. Figure 2 ;

[0039] Figure 8 This is a schematic diagram of the structure of the plug sleeve described in the embodiment of the present invention;

[0040] Figure 9 This is a schematic diagram of the structure of the limiting block described in the embodiment of the present invention;

[0041] Figure 10 This is a schematic diagram of the structure of the protective cover described in the embodiment of the present invention;

[0042] Figure 11 This is a schematic diagram of the assembly of the limiting block described in the embodiment of the present invention. Figure 1 ;

[0043] Figure 12 This is a schematic diagram of the assembly of the limiting block described in the embodiment of the present invention. Figure 2 ;

[0044] Figure 13 This is a schematic diagram of the closed state as described in an embodiment of the present invention;

[0045] Figure 14 This is a schematic diagram of the disconnected state as described in an embodiment of the present invention;

[0046] Explanation of reference numerals in the attached figures:

[0047] 10-Plug-in assembly, 100-Plug-in connector, 101-Plug-in track groove, 102-Protective cover, 103-Circuit diagram marking, 110-Plug-in rod, 111-U-shaped track groove, 120-Conductive unit, 121-Connecting piece, 122-Conductive rod, 20-Plug-in assembly, 200-Fixing base, 201-Mounting groove, 202-Plug-in hole, 203-Limiting groove, 204-U-shaped groove, 205-Arc-shaped concave surface, 206-OFF marking, 210-Mounting base, 211-Conductive hole, 212-Square rib, 213-U-shaped window, 220-Sleeve, 221-External thread, 222- Hexagonal insertion slot, 230-insertion sleeve, 231-hexagonal limiting part, 232-crown spring, 233-adjustable end, 234-threaded hole, 240-locking nut, 250-combination screw, 260-hollow tube, 261-spring, 262-fan-shaped slot, 263-arc-shaped slot, 264-rotating slot, 270-limiting block, 271-track slider, 272-cylindrical rib, 280-center rib, 281-semi-circular slot, 290-avoiding hole, 30-protective cover, 300-insertion slot, 301-fan-shaped rib, 310-snap slot, 320-U-shaped slot, 321-semi-circular rib. Detailed Implementation

[0048] The embodiments of the present invention will now be described in detail with reference to the accompanying drawings.

[0049] Example 1:

[0050] like Figures 1 to 10 As shown, this embodiment discloses a specific structure of a dual-station switching plate that is suitable for assembly by the assembly method of the present invention. It includes a plug-in assembly 10 and a plug sleeve assembly 20. The plug-in assembly 10 includes a plug connector 100, a plug rod 110 disposed at the bottom center of the plug connector 100, and conductive units 120 disposed on both sides of the bottom of the plug connector 100. The conductive units 120 are located on both sides of the plug rod 110. The conductive units 120 include a connecting piece 121 and conductive rods 122 disposed at both ends of the connecting piece 121.

[0051] The plug assembly 20 includes a fixed base 200 and mounting bases 210 inserted into both sides of the fixed base 200. The fixed base 200 is provided with a mounting groove 201 that mates with the mounting base 210 for insertion. The fixed base 200 has an insertion hole 202 in the middle for mates with the insertion rod 110. The mounting base 210 has conductive holes 211 on both sides for mates with the conductive rod 122.

[0052] The mounting base 210 has a sleeve 220 at its bottom, which is configured to cooperate with the conductive hole 211. A plug sleeve 230 is inserted into the sleeve 220. A locking nut 240 is provided at the bottom of the sleeve 220. The sleeve 220 has an external thread 221 that cooperates with the locking nut 240. One end of the plug sleeve 230 is movably connected to the conductive rod 122, and the other end is detachably connected to a combination screw 250.

[0053] The combination screw 250 is a standard screw structure, consisting of a screw and two washers fitted onto the screw.

[0054] In use, two conductive units 120 can be set up to simultaneously connect four wires of two lines. The operator can lift the plug assembly 10 upwards by hand, so that the four conductive rods 122 on the plug 100 are disengaged from the plug sleeve 230, thus disconnecting the two lines at the same time. The operator can press the plug assembly 10 down by hand, so that the four conductive rods 122 on the plug 100 are inserted into the plug sleeve 230, thus connecting the two lines at the same time. This solves the problem that the current single-station switching plate cannot quickly disconnect or connect two lines at the same time.

[0055] To facilitate wiring, in this embodiment, two O-shaped access terminals are connected to the combination screw 250.

[0056] To ensure that the connector 100 has a certain degree of resilience after being lifted, this embodiment is further preferred in that, unlike the above embodiment, the bottom of the fixing base 200 is provided with a hollow tube 260, which is configured to cooperate with the insertion hole 202. A spring 261 is provided inside the hollow tube 260, and the spring 261 is sleeved on the insertion rod 110. The bottom of the insertion rod 110 is detachably connected to a limiting block 270. One end of the spring 261 abuts against the fixing base 200, and the other end abuts against the limiting block 270.

[0057] To better prevent accidental contact between the two lines, this embodiment is further preferred. Unlike the above embodiment, the hollow tube 260 is provided with central ribs 280 on both sides. The central ribs 280 pass through the fixing base 200 respectively and separate the sleeves 220 corresponding to the conductive holes 211 on the two mounting bases 210. The sleeves 220 on the same side of the central rib 280 form two connection points of the same circuit, and the sleeves 220 on both sides of the central rib 280 form two connection points of two independent circuits respectively.

[0058] When in use, the two wires are connected to the combination screws 250 that are fitted on the two sleeves 220 on both sides of the central rib 280, forming two independent circuits. This ensures that the two wires will not make contact after wiring, thus avoiding accidental contact between the wires and preventing circuit failure.

[0059] To prevent workers from accidentally touching the assembly screw 250 and causing a safety accident, this embodiment is further preferred. Unlike the previous embodiment, the fixing base 200 has a detachable protective cover 30 at its bottom. The protective cover 30 has an insertion groove 300 for inserting the hollow tube 260 and a snap-fit ​​groove 310 for inserting the central protrusion 280. The insertion groove 300 and the snap-fit ​​groove 310 are connected. One end of the snap-fit ​​groove 310 has a U-shaped groove 320, and a semi-circular protrusion 321 is provided inside the U-shaped groove 320. One end of the central protrusion 280 has a part that mates with the semi-circular protrusion 321. The protective cover 30 is detachably connected to the fixing base 200 through the cooperation of the hollow tube 260 with the insertion groove 300, the central rib 280 with the locking groove 310, and the semi-circular rib 321 with the semi-circular locking groove 281. This structure allows for faster and more accurate installation of the protective cover 30. To prevent misinsertion of the protective cover 30, the insertion groove 300 is provided with a fan-shaped rib 301, and the bottom outer side of the hollow tube 260 is provided with a fan-shaped slot 262 that cooperates with the fan-shaped rib 301. The protective cover 30 can only be inserted when the fan-shaped rib 301 corresponds to the fan-shaped slot 262, thus preventing misinsertion of the protective cover 30.

[0060] To prevent misalignment between the plug-in assembly 10 and the fixed base 200 and the mounting base 210, and between the limiting block 270 and the plug-in rod 110, this embodiment is further preferred in that, unlike the above embodiment, the plug-in rod 110 has two sets of U-shaped track grooves 111 on both sides of its bottom. One end of the U-shaped track groove 111 extends through to the bottom end face of the plug-in rod 110, while the other end remains closed. The inner wall of the limiting block 270 has a track slider 271 that mates with the U-shaped track groove 111. The outer surface of the limiting block 270 has a cylindrical protrusion 272. The inner wall of the bottom of the hollow tube 260 has an arc-shaped groove 263 that mates with the cylindrical protrusion 272. The inner wall of the hollow tube 260 has a rotating groove 264 that mates with the cylindrical protrusion 272. The rotating groove 264 is located on the left side below the arc-shaped groove 263 and communicates with the arc-shaped groove 263.

[0061] During installation, the plug rod 110 and conductive rod 122 on the plug connector 100 must correspond to the plug hole 202 on the fixing base 200 and the conductive hole 211 on the mounting base 210, respectively. The U-shaped track groove 111 on the plug rod 110 must extend to the bottom end face of the plug rod 110, corresponding to the right side of the arc groove 263 on the inner bottom wall of the hollow tube 260 without the rotating groove 264. Similarly, the cylindrical protrusion 272 on the limiting block 270 must correspond to the right side of the arc groove 263 on the inner bottom wall of the hollow tube 260 without the rotating groove 264. Only then can the limiting block 270 be properly positioned. The upper track slider 271 is fitted into the bottom of the U-shaped track groove 111. The limiting block 270 is rotated to the end with the rotating groove 264 on the left side of the arc groove 263 on the inner side wall of the bottom of the hollow tube 260 until the U-shaped track groove 111 is closed. After that, it is released. The preload of the spring 261 will push the limiting block 270 into the closed end of the U-shaped track groove 111, completing the installation between the plug-in component 10 and the fixed seat 200 and the mounting seat 210. This can prevent mis-insertion between the plug-in component 10 and the fixed seat 200 and the mounting seat 210, and mis-insertion between the limiting block 270 and the plug-in rod 110.

[0062] To prevent misinsertion of the plug sleeve 230 and facilitate the insertion of the conductive rod 122 into the plug sleeve 230, this embodiment is further preferred in that, unlike the above embodiment, the sleeve 220 is provided with a hexagonal insertion groove 222, the plug sleeve 230 is provided with a hexagonal limiting part 231 that cooperates with the hexagonal insertion groove 222, a crown spring 232 is inserted into one end of the plug sleeve 230, the crown spring 232 and the plug sleeve 230 are combined to form an adjustable end 233 for cooperating with the insertion of the plug rod 110, and the other end of the plug sleeve 230 is provided with a threaded hole 234, the combined screw 250 is connected to the plug sleeve 230 through the threaded hole 234.

[0063] During installation, the adjustable end 233 of the plug sleeve 230 can only be inserted into the sleeve 220 when the hexagonal limiting part 231 on the plug sleeve 230 is aligned with the hexagonal insertion slot 222 inside the sleeve 220. The adjustable end 233 formed by the crown spring 232 and the plug sleeve 230 facilitates the insertion of the conductive rod 122, and the elasticity of the plug sleeve 230 is provided by the crown spring 232.

[0064] To prevent misinsertion of the mounting base 210, this embodiment is further preferred in that, unlike the above embodiment, the bottom of the mounting base 210 is provided with a square protrusion 212 on the side near the insertion hole 202, the mounting groove 201 is provided with a limiting groove 203 that cooperates with the square protrusion 212, and the bottom corner of the square protrusion 212 is chamfered.

[0065] During installation, the mounting base 210 can only be inserted into the fixing base 200 and fixed by aligning the square protrusion 212 on the side of the bottom of the mounting base 210 near the insertion hole 202 with the limiting groove 203 in the mounting groove 201. The chamfered corners at the bottom of the square protrusion 212 facilitate the insertion of the mounting base 210 into the fixing base 200.

[0066] To facilitate the use of a test pen to check whether the circuit is energized, this embodiment is further optimized in that, unlike the above embodiment, the top of the mounting base 210 is provided with a U-shaped window 213 on the side opposite to the square protrusion 212. The U-shaped window 213 is located at the end away from the plug hole 202. The fixing base 200 is provided with a U-shaped slot 204 that cooperates with the U-shaped window 213. In use, the operator can use a test pen to extend into the conductive rod 122 through the U-shaped window 213 and the U-shaped slot 204 to test whether the circuit is energized.

[0067] To better position the connector 100 when disconnected and prevent the connector 100 from slipping back and causing the conductive rod 122 to insert into the conductive hole 211, thus preventing a safety accident, this embodiment is further preferred. The difference from the above embodiment is that the fixed base 200 and the mounting base 210 are also provided with a clearance hole 290. The clearance hole 290 is used so that the conductive rod 122 can be inserted into the clearance hole 290 when the connector 100 is rotated. The clearance hole 290 is set to match the rotation angle of the connector 100.

[0068] To better match the conductive rod 122 on the connector 100 with the clearance hole 290, this embodiment is further preferred. The difference from the above embodiment is that the rotation angle of the connector 100 is limited to a counterclockwise rotation of 45 degrees. That is, the sliding distance of the track slider 271 on the limiting block 270 in the U-shaped track groove 111 is matched with the sliding distance of the cylindrical protrusion 272 on the limiting block 270 in the arc groove 263. The sliding angle of the cylindrical protrusion 272 on the limiting block 270 in the arc groove 263 is limited to 90 degrees, and the rotation angle in the rotating groove 264 is limited to 45 degrees.

[0069] When disconnection is required, the plug assembly 10 can be pulled out and rotated 45 degrees counterclockwise so that the conductive rod 122 can be inserted into the clearance hole 290 that matches the rotation angle of the plug 100, thereby disconnecting the circuit. When closure is required, the plug assembly 10 can be pulled out and rotated 45 degrees in the opposite direction (i.e., 45 degrees clockwise) so that the conductive rod 122 can be inserted into the conductive hole 211. Pressing the plug assembly 10 will close the circuit again.

[0070] To reduce damage and contamination of the signage, this embodiment is further preferred in that, unlike the above embodiment, the top of the connector 100 is provided with a connector track groove 101, and a transparent protective cover 102 can be inserted into the connector track groove 101.

[0071] When in use, the protective cover 102 is made of transparent material. A programmable paper sign is inserted into the protective cover 102 and then installed into the corresponding insertion track groove 101 at the top of the connector 100 to reduce damage and contamination of the sign.

[0072] To facilitate the lifting of the connector assembly 10 by the staff, this embodiment is further preferred in that, unlike the above embodiment, the fixing base 200 has arc-shaped concave surfaces 205 on both sides, so that the connector 100 forms a relative protrusion at the arc-shaped concave surface 205, which makes it easier to lift.

[0073] To better remind staff whether the circuit is disconnected, this embodiment is further preferred in that, unlike the above embodiment, four OFF signs 206 are provided at the four corners of the top of the fixing base 200, which can indicate to staff that the circuit is in the disconnected state.

[0074] To prevent wiring errors caused by staff not knowing how to wire, this embodiment is further preferred in that, unlike the above embodiment, the top of the connector 100 is provided with a circuit diagram mark 103 corresponding to the conductive unit 120, which can avoid wiring errors by staff.

[0075] Working principle:

[0076] In use, two conductive units 120 can be set up to simultaneously connect four wires of two lines. The operator can lift the plug assembly 10 upwards by hand, so that the four conductive rods 122 on the plug 100 are disengaged from the plug sleeve 230, thus disconnecting the two lines at the same time. The operator can press the plug assembly 10 down by hand, so that the four conductive rods 122 on the plug 100 are inserted into the plug sleeve 230, thus connecting the two lines at the same time. This solves the problem that the current single-station switching plate cannot quickly disconnect or connect two lines at the same time.

[0077] Example 2:

[0078] like Figures 1 to 12 As shown, this embodiment discloses an assembly method for a dual-station switching plate, including the following steps:

[0079] A: Pre-installed plug-in assembly 10;

[0080] Step A is as follows:

[0081] Conductive rods 122 are installed at both ends of connecting piece 121 to form conductive units 120. Then, conductive units 120 are installed on both sides of the bottom of connector 100. Connecting rod 110 is located at the middle of the bottom of connector 100.

[0082] B: Pre-installed socket assembly 20;

[0083] Step B specifically involves:

[0084] Align the square protrusion 212 at the bottom of the mounting base 210 with the limiting groove 203 in the mounting groove 201, insert the mounting base 210 into the mounting groove 201, and make the mounting base 210 and the fixing base 200 form a whole through the cooperation of the square protrusion 212 and the limiting groove 203.

[0085] C: Insert the plug rod 110 and the conductive rod 122 in the plug assembly 10 into the plug hole 202 and the conductive hole 211 in the plug sleeve assembly 20, respectively;

[0086] Step C specifically involves:

[0087] Align the plug rod 110 and conductive rod 122 on the plug connector 100 with the plug hole 202 on the fixing base 200 and the conductive hole 211 on the mounting base 210, respectively. Then, insert the plug rod 110 through the U-shaped track groove 111 to the end of the bottom end face of the plug rod 110, which is aligned with the end of the arc groove 263 on the inner side wall of the bottom of the hollow tube 260 without the rotating groove 264, so that the plug rod 110 and conductive rod 122 are inserted into the plug hole 202 and the conductive hole 211, respectively.

[0088] D: Insert the spring 261 into the plug rod 110, and then insert the limiting block 270 into the plug rod 110 to complete the installation between the plug assembly 10 and the plug sleeve assembly 20;

[0089] Step D specifically involves:

[0090] Insert the spring 261 into the plug rod 110, align the cylindrical protrusion 272 on the limiting block 270 with the right end of the arc groove 263 on the inner wall of the bottom of the hollow tube 260 without the rotating groove 264, insert the track slider 271 on the limiting block 270 into the bottom of the U-shaped track groove 111, and then rotate the limiting block 270 towards the left end of the arc groove 263 on the inner wall of the bottom of the hollow tube 260 with the rotating groove 264 until the U-shaped track groove 111 is closed. Release the spring 261, and the preload of the spring 261 will push the limiting block 270 into the closed end of the U-shaped track groove 111, thus completing the installation between the plug assembly 10 and the fixing seat 200 and the mounting seat 210.

[0091] E: Install the plug-in sleeve 230, the locking nut 240 and the combination screw 250 onto the plug-in assembly 20 in sequence;

[0092] Step E specifically involves:

[0093] Align the hexagonal limiting part 231 on the plug sleeve 230 with the hexagonal insertion groove 222 in the sleeve 220, insert the adjustable end 233 of the plug sleeve 230 into the sleeve 220, then connect the locking nut 240 to the sleeve 220 through the external thread 221 to fix the plug sleeve 230, and then connect the combination screw 250 to the plug sleeve 230 through the threaded hole 234.

[0094] F: Install the protective cover 30 onto the insert assembly 20.

[0095] Step F specifically includes:

[0096] Align the insertion slots 300 and snap-fit ​​slots 310 on the protective cover 30 with the hollow tube 260 and central rib 280 on the fixing base 200 respectively. Then align the fan-shaped rib 301 in the insertion slot 300 with the fan-shaped slot 262 on the outer side of the bottom of the hollow tube 260, and snap the protective cover 30 into place. This will allow the semi-circular rib 321 in the U-shaped groove 320 to snap into the semi-circular slot 281 on the central rib 280, thus completing the installation of the protective cover 30.

[0097] To reduce damage and contamination of the signage, this embodiment is further preferred, differing from the above embodiments in that the assembly method further includes:

[0098] G: Insert a programmable paper label into the protective cover 102, and then insert the protective cover 102 along the insertion track groove 101 to the top of the connector 100 to complete the installation of the protective cover 102.

[0099] The assembly of a dual-station switching plate described in the above embodiments can be completed by following the steps described in this method.

[0100] Example 3:

[0101] like Figures 1 to 14 As shown, this embodiment discloses a method for using a dual-station switching plate assembled based on the assembly method described in the above claims, including the following steps:

[0102] a: Place the structure installed in step D above the mounting panel. After making holes corresponding to the sleeve 220, hollow tube 260 and central rib 280 on the mounting panel, insert the structure installed above into the mounting panel. Then, proceed with steps E and F in sequence to complete the installation of the dual-station switching plate. Then, connect the unpowered line at the combination screw 250. After completing the line connection, power on the line.

[0103] b: When disconnection is required, pinch the connector 100 with your hand and lift it upwards to pull out the connector assembly 10, so that the conductive rod 122 is completely disengaged from the conductive hole 211. Rotate the connector 100 to insert the conductive rod 122 into the clearance hole 290.

[0104] c: When closure is required, pinch the connector 100 with your hand and lift it upwards to pull out the connector assembly 10, so that the conductive rod 122 is completely disengaged from the conductive hole 211. Rotate the connector 100 in the opposite direction to insert the conductive rod 122 into the conductive hole 211. Press the connector 100 to insert the conductive rod 122 into the connector sleeve 230.

[0105] To ensure a better fit between the conductive rod 122 on the connector 100 and the clearance hole 290, this embodiment is further preferred in that, unlike the previous embodiment, the steps in this method are as follows:

[0106] b: When disconnection is required, pinch the connector 100 with your hand and lift it upwards to pull out the connector assembly 10, so that the conductive rod 122 is completely separated from the conductive hole 211. Rotate the connector 100 counterclockwise by 45 degrees so that the conductive rod 122 is inserted into the clearance hole 290, thereby completing the disconnection of the line.

[0107] c: When closure is required, pinch the connector 100 with your hand and lift it upwards to pull out the connector assembly 10, so that the conductive rod 122 is completely separated from the conductive hole 211. Rotate the connector 100 in the opposite direction by 45 degrees (i.e., rotate it clockwise by 45 degrees) to insert the conductive rod 122 into the conductive hole 211. Press the connector 100 to insert the conductive rod 122 into the connector sleeve 230 to complete the closed circuit.

[0108] This method describes a way of using a dual-station switching plate in the above embodiments.

[0109] Based on the above embodiments, when in use, the assembly of the dual-station switching plate can be completed according to the assembly method described in this invention, and the use of the dual-station switching plate can be carried out according to the usage method described in this invention, thus solving the problem that there is currently no suitable assembly and usage method for the dual-station switching plate.

[0110] The embodiments described above are merely illustrative of specific implementations of the present invention, and while the descriptions are detailed, they should not be construed as limiting the scope of the present invention. It should be noted that those skilled in the art can make various modifications and improvements without departing from the concept of the present invention, and these modifications and improvements all fall within the scope of protection of the present invention.

Claims

1. A method for assembling a dual-station switching plate, characterized in that, Includes the following steps: A: Pre-installed plug-in components (10); B: Pre-installed socket assembly (20); C: Insert the plug rod (110) and conductive rod (122) in the plug assembly (10) into the plug hole (202) and conductive hole (211) in the socket assembly (20), respectively. D: Insert the spring (261) into the plug rod (110), and insert the limiting block (270) into the plug rod (110) to complete the installation between the plug assembly (10) and the plug sleeve assembly (20); Step D specifically involves: Insert the spring (261) into the plug rod (110), align the cylindrical protrusion (272) on the limiting block (270) with the end of the arc groove (263) on the inner wall of the bottom of the hollow tube (260) without the rotating groove (264), insert the track slider (271) on the limiting block (270) into the bottom of the U-shaped track groove (111), and then rotate the limiting block (270) to the end of the arc groove (263) on the inner wall of the bottom of the hollow tube (260) with the rotating groove (264) on the left until the U-shaped track groove (111) is closed. Release the spring (261) and the preload will push the limiting block (270) into the closed end of the U-shaped track groove (111), thus completing the installation between the plug assembly (10) and the fixed seat (200) and the mounting seat (210). E: Install the plug sleeve (230), lock nut (240) and combination screw (250) onto the plug sleeve assembly (20) in sequence; F: Install the protective cover (30) onto the socket assembly (20).

2. The assembly method of a dual-station switching plate according to claim 1, characterized in that, Step A is as follows: The conductive rods (122) are respectively installed at both ends of the connecting piece (121) to form conductive units (120), and then the conductive units (120) are respectively installed on both sides of the bottom of the connector (100), and the plug rod (110) is set in the middle of the bottom of the connector (100).

3. The assembly method of a dual-station switching plate according to claim 1, characterized in that, Step B specifically involves: Align the square protrusion (212) at the bottom of the mounting base (210) with the limiting groove (203) in the mounting groove (201), insert the mounting base (210) into the mounting groove (201), and make the mounting base (210) and the fixing base (200) form a whole through the cooperation of the square protrusion (212) and the limiting groove (203).

4. The assembly method of a dual-station switching plate according to claim 1, characterized in that, Step C specifically involves: The plug rod (110) and conductive rod (122) on the plug connector (100) are respectively aligned with the plug hole (202) on the fixed base (200) and the conductive hole (211) on the mounting base (210). Then, the U-shaped track groove (111) on the plug rod (110) is inserted through to the end of the bottom end face of the plug rod (110) corresponding to the end of the arc groove (263) on the inner side wall of the bottom of the hollow tube (260) without the rotating groove (264), so that the plug rod (110) and conductive rod (122) are respectively inserted into the plug hole (202) and the conductive hole (211).

5. The assembly method of a dual-station switching plate according to claim 1, characterized in that, Step E specifically involves: Align the hexagonal limiting part (231) on the plug sleeve (230) with the hexagonal insertion groove (222) in the sleeve (220), insert the adjustable end (233) of the plug sleeve (230) into the sleeve (220), then connect the locking nut (240) to the sleeve (220) through the external thread (221) to fix the plug sleeve (230), and then connect the combination screw (250) to the plug sleeve (230) through the threaded hole (234).

6. The assembly method of a dual-station switching plate according to claim 1, characterized in that, Step F specifically includes: Align the insertion slot (300) and snap-fit ​​slot (310) on the protective cover (30) with the hollow tube (260) and central rib (280) on the fixing base (200) respectively. Then align the fan-shaped rib (301) in the insertion slot (300) with the fan-shaped slot (262) on the outer side of the bottom of the hollow tube (260), and snap the protective cover (30) into place so that the semi-circular rib (321) in the U-shaped groove (320) snaps into the semi-circular slot (281) on the central rib (280), thereby completing the installation of the protective cover (30).

7. A method of using a dual-station switching plate assembled based on the assembly method of any one of claims 1-6, characterized in that, Includes the following steps: a: Place the structure installed in step D above the mounting panel. After opening the corresponding holes for the sleeve (220), hollow tube (260) and central rib (280) on the mounting panel, insert the structure installed above into the mounting panel. Then proceed with steps E and F in sequence to complete the installation of the dual-station switching plate. Then connect the unpowered line at the combination screw (250). After completing the line connection, power on the line. b: When disconnection is required, pinch the connector (100) with your hand and lift it upwards to pull out the connector assembly (10), so that the conductive rod (122) is completely separated from the conductive hole (211). Rotate the connector (100) to insert the conductive rod (122) into the clearance hole (290). c: When closure is required, pinch the connector (100) with your hand and lift it upwards to pull out the connector assembly (10), so that the conductive rod (122) is completely separated from the conductive hole (211). Rotate the connector (100) in the opposite direction to insert the conductive rod (122) into the conductive hole (211). Press the connector (100) to insert the conductive rod (122) into the connector sleeve (230).

Citation Information

Patent Citations

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