Special networking clamping tool

By designing a dedicated networking clamping fixture and using probes instead of networking cables, rapid and stable testing of electronic detonator modules was achieved, solving the problems of inconvenient testing and high labor intensity in existing technologies, and improving testing efficiency and quality.

CN223519491UActive Publication Date: 2025-11-07CHONGQING MCLOUD TECH CO LTD
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Patent Information

Application Number
CN202422746235.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-11
Publication Date
2025-11-07
Estimated Expiration
2034-11-11

AI Technical Summary

Technical Problem

The existing electronic detonator module networking testing process requires a large space and a lot of manual operation, which makes the testing inconvenient and labor-intensive.

Method used

Design a dedicated networking clamping fixture, including a base, a housing component, a lifting component, a locking component, and a detection component. By replacing the networking cable with a probe, batch testing and rapid electrical connection can be achieved.

Benefits of technology

The testing process has been simplified, the cost of manpower and materials has been reduced, the testing efficiency and quality have been improved, and rapid and stable testing of electronic detonators has been achieved.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a special networking clamping tool. The special networking clamping tool comprises a base; the accommodating assembly is arranged on the base, and an accommodating groove for accommodating the electronic detonator is formed in the upper surface of the accommodating assembly; the lower part of the lifting assembly is arranged on the accommodating assembly; the upper assembly is slidably arranged on the upper portion of the lifting assembly and right faces the base; the locking assemblies are arranged on the base and located on the two sides of the lifting assembly, and when the upper assembly descends to a preset position along with the lifting assembly, the upper assembly is fixed by the locking assemblies; the detection assembly is arranged on the upper assembly and right faces the containing groove of the containing assembly. According to the utility model, the electronic detonator detection efficiency is improved, and the labor intensity of detection personnel is reduced.
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Description

TECHNICAL FIELD

[0001] The utility model relates to electronic detonator production field, concretely relates to a special networking clamping tool. BACKGROUND

[0002] Electronic detonator, also called digital electronic detonator, is an electric tube controlled by electronic control module during detonation process. The electronic control module is a special circuit module placed in the digital electronic detonator, which has detonator delay time control, detonation energy control function, built-in detonator identity information code and detonation password, can test its function, performance and electric performance of detonator ignition element, and can communicate with detonation controller and other external control equipment. It is one of the core components of the detonator and plays a very important role.

[0003] The core control of electronic detonator is mainly electronic control module (hereinafter referred to as module), which is mainly composed of firing device, PCB control circuit, energy storage capacitor, foot line connection terminal and injection molding packaging parts. Since the application environment of detonator is relatively complex, such as open air, mine, deep water and underground, different environments have different quality requirements for detonator. In order to meet the different application requirements, the module should be considered from multiple angles in design, so as to ensure the product quality.

[0004] Module networking detection is one of the most important links in the production process. Only the comprehensive detection of its electric performance and the conformity of various parameters to technical requirements can the production be fully introduced. In the networking detection of electronic module, the existing detection method needs to increase networking line for each module, needs to arrange site, needs larger space and more manual supporting test, which is very inconvenient to operate. UTILITY MODEL CONTENT

[0005] In view of the above defects of prior art, the purpose of the utility model is to provide a special networking clamping tool, which improves the detection efficiency of electronic detonator and reduces the labor intensity of detection personnel.

[0006] The purpose of the utility model is realized through the technical scheme:

[0007] A special networking clamping tool, comprising:

[0008] A base;

[0009] A containing assembly is arranged on the base, and the upper surface is provided with a containing groove containing the electronic detonator;

[0010] A lifting assembly is arranged on the lower part of the containing assembly;

[0011] An upper assembly is slidably arranged on the upper part of the lifting assembly and faces the base;

[0012] Locking assembly arranged on the base and located on both sides of the lifting assembly, which fixes the upper assembly when the upper assembly is lowered to a predetermined position along with the lifting assembly;

[0013] Detection assembly arranged on the upper assembly and facing the accommodating groove of the accommodating assembly.

[0014] Further, the base is provided with at least two vertical positioning members, and the upper end surface of the positioning member is rounded with the cylindrical surface;

[0015] The accommodating assembly comprises:

[0016] The accommodating plate is provided with a positioning hole matched with the positioning member and is limited on the base;

[0017] A plurality of sets of clamping fixing members are arranged on the upper surface of the accommodating plate in sequence and are uniformly spaced and staggered; the clamping fixing member comprises two oppositely arranged clamping plates; the opposite surfaces of the two clamping plates are provided with concave arc-shaped grooves; the upper end surface and the inner surface of the clamping plate are provided with a chamfered surface; the area of the accommodating plate opposite the two clamping plates is provided with a concave arc-shaped notch; the arc-shaped notch and the two clamping plates form an accommodating groove for accommodating the electronic detonator member;

[0018] The positioning plate is arranged on the accommodating plate and faces the clamping fixing member, and the positioning plate is provided with a U-shaped notch for the wire connector of the electronic detonator member to pass through.

[0019] Further, the base is provided with a groove matched with the accommodating assembly, and the positioning member is vertically arranged in the groove; and the accommodating plate is accommodated in the groove;

[0020] The base is provided with a plurality of lower notch grooves and placement grooves; each set of lower notch grooves faces the tail part of each set of clamping fixing members and accommodates the pipe body of the electronic detonator member; and each set of placement grooves faces the head part of each set of clamping fixing members and accommodates the wire connector of the electronic detonator member.

[0021] Further, a strip-shaped groove is arranged between the two clamping plates of each set of clamping fixing members on the accommodating plate, and the size of the strip-shaped groove is greater than that of the protrusion of the pipe body of the electronic detonator member; the positioning member is fixedly connected with the accommodating plate, the lower part of the positioning member is inserted into the base plate, and the inner diameter of the lower part of the positioning member is not greater than the inner diameter of the positioning hole.

[0022] Further, the upper assembly comprises:

[0023] The upper plate is sleeved on the lifting assembly and faces the base; and the detection assembly is arranged on the upper plate;

[0024] The working plate is provided with a plurality of upper notch grooves on the lower surface; each set of upper notch grooves faces the lower notch groove; and when the working plate is relatively close to the base, the working plate and the base clamp and fix the pipe body of the electronic detonator member located in the clamping fixing member.

[0025] Further, the lifting assembly comprises two lifting units arranged on the base and located outside the two ends of the accommodating plate; the lifting unit comprises:

[0026] a guide column arranged vertically on the base, and the upper plate is sleeved on the guide column;

[0027] a limiting piece arranged on the top of the guide column and having an outer contour larger than that of the guide column;

[0028] a lifting spring sleeved on the guide column and having two ends abutting against the upper surface of the base and the lower surface of the upper plate respectively; when the upper plate is lowered to a predetermined position, the locking assembly is fixed.

[0029] Further, the locking assembly comprises two locking units arranged on the base and located outside the two lifting units respectively; the locking unit comprises:

[0030] two locking seats arranged oppositely on the base;

[0031] a shaft rod penetrating through the two locking seats and arranged at the front ends of the two locking seats;

[0032] a baffle arranged on the side of the upper part of the two locking seats and facing the upper space of the accommodating plate to close the side of the upper part of the two locking seats;

[0033] a locking block located between the two locking seats, having a head sleeved on the shaft rod, a middle part abutting against the baffle, an upper head end provided with a locking convex, and a tail end provided with a locking handle, wherein the locking convex is located directly below the upper plate, the side surface and the upper surface of the locking convex are provided with inclined upper guide surfaces, and the lower surface and the outer side surface of the upper plate are also provided with inclined lower guide surfaces;

[0034] a locking spring having two ends abutting against the base and the lower part of the locking block respectively to control the middle part of the locking block to press against the baffle; when the upper plate is lowered to a predetermined height, the upper surface of the upper plate abuts against the lower surface of the locking convex to be fixed by the limiting.

[0035] Further, the detection assembly comprises:

[0036] a fixing frame arranged on the upper plate;

[0037] a PCB board arranged in the fixing frame;

[0038] a plurality of elastic probes penetrating through the upper plate and the working plate, each probe facing each placing groove, and the upper end of each probe being fixed and electrically connected to the PCB board.

[0039] Further, the fixing frame comprises:

[0040] a plurality of fixing columns having lower ends fixed to the upper plate;

[0041] A top plate, a lower surface of which is fixed to upper ends of a plurality of fixing columns; the top plate is parallel to the upper plate;

[0042] The fixing columns comprise:

[0043] Lower columns, lower ends of which are threadedly connected to the upper plate, and upper ends of which are provided with internal threaded holes;

[0044] Upper columns, lower ends of which are provided with threaded columns matched with the internal threaded holes of the lower columns, and upper ends of which are provided with internal threaded holes; the PCB board is sleeved on the threaded columns;

[0045] Screws, which are threadedly connected to upper ends of the upper columns through the top plate.

[0046] Further, an external connecting unit is further included, and the external connecting unit comprises:

[0047] A wiring fixing plate, which is arranged on the upper plate;

[0048] Two bus wiring columns, which are arranged on the wiring fixing plate, lower ends of which are electrically connected to the PCB board, and upper ends of which are provided with wire quick connectors.

[0049] Due to the adoption of the above technical scheme, the utility model has the following advantages:

[0050] 1. The probe is used to replace the networking cable, and the operation is simple, direct and convenient, so that the manpower, material resources and financial resources are reduced, the detection time is shortened, and the networking detection quality is improved.

[0051] 2. The detection assembly and the containing assembly are relatively close by controlling the lifting assembly, so that the electronic detonator parts in the containing assembly are batch detected by the detection assembly, and the detection process does not need to be separately aligned and electrically connected and detected, so that rapid detection is realized.

[0052] Other advantages, objects and features of the utility model will be described in the subsequent description to some extent, and to some extent, it will be obvious to those skilled in the art based on the study of the following text or can be taught from the practice of the utility model. BRIEF DESCRIPTION OF DRAWINGS

[0053] The drawings of the utility model are as follows:

[0054] Figure 1 It is a front view structural schematic diagram of a special networking clamping tool in the embodiment.

[0055] Figure 2 It is a Figure 1 Enlarged structural schematic diagram of A in the middle.

[0056] Figure 3 It is a Figure 1 B-B section structural schematic diagram in the middle.

[0057] Figure 4 for Figure 1 schematic diagram of the cross section at C-C.

[0058] Figure 5 for Figure 4 schematic diagram of the enlarged structure at D.

[0059] Figure 6 for Figure 4 schematic diagram of the cross section at E-E.

[0060] Figure 7 for Figure 6 schematic diagram of the enlarged structure at F.

[0061] Figure 8 for Figure 4 schematic diagram of the cross section at G-G.

[0062] Figure 9 for Figure 8 schematic diagram of the enlarged structure at H.

[0063] Figure 10 for Figure 1 schematic diagram of the structure from the bottom.

[0064] Figure 11 for Figure 10 schematic diagram of the enlarged structure at J.

[0065] Figure 12 for schematic diagram of the structure of the special networking clamping tool in this embodiment.

[0066] Figure 13 Figure 12 for schematic diagram of the enlarged structure at K.

[0067] In the figure: 1. base; 11. groove; 12. positioning piece; 13. lower notch groove; 14. placing groove; 21. accommodating plate; 211. positioning hole; 212. arc-shaped notch; 213. strip-shaped groove; 22. clamping plate; 221. arc-shaped groove; 23. positioning plate; 231. U-shaped notch; 31. guide column; 32. limiting piece; 33. lifting spring; 34. guide sleeve; 41. upper plate; 42. working plate; 421. upper notch groove; 51. locking seat; 52. shaft rod; 53. baffle; 541. lock convex; 542. lock handle; 55. locking spring; 6. detection assembly; 6111. lower column; 6112. upper column; 6113. screw; 612. top plate; 62. PCB board; 63. elastic probe; 7. external unit; 71. wiring fixing plate; 72. bus wiring column; 721. wire quick connector; 8. electronic detonator piece; 81. protrusion. DETAILED DESCRIPTION

[0068] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0069] Example:

[0070] like Figures 1 to 13 As shown, a dedicated networking clamping fixture includes:

[0071] Base 1;

[0072] The receiving assembly is mounted on the base 1, and the upper surface is provided with a receiving groove for receiving the electronic detonator 8;

[0073] The lifting assembly is mounted on the receiving assembly at its lower part.

[0074] The upper component is slidably mounted on the upper part of the lifting component, directly opposite the base 1;

[0075] The locking component is set on the base 1 and located on both sides of the lifting component. When the upper component descends to the predetermined position with the lifting component, it is fixed by the locking component.

[0076] The detection component is mounted on the upper component, directly opposite the receiving slot of the receiving component.

[0077] In this embodiment, the base 1 is provided with at least two vertical positioning members 12, and the upper end face of the positioning member 12 and the cylindrical surface are rounded.

[0078] The accommodating component includes:

[0079] The receiving plate 21 is provided with a positioning hole 211 that matches the positioning member 12 and is limited on the base 1;

[0080] Several sets of snap-fit ​​fasteners are arranged sequentially and evenly at staggered intervals on the upper surface of the receiving plate 21; each snap-fit ​​fastener includes two opposing snap plates 22; the opposing surfaces of the two snap plates 22 are provided with concave arc-shaped grooves 221; the upper end surface and inner surface of the snap plates 22 are provided with chamfered surfaces; the area on the receiving plate 21 directly opposite the two snap plates 22 is provided with a concave arc-shaped notch 212; the arc-shaped notch 212 and the two snap plates 22 form a receiving groove for accommodating the electronic detonator component 8;

[0081] Positioning plate 23 is set on receiving plate 21, facing the snap-fit ​​fastener. Positioning plate 23 is provided with U-shaped notch 231 for the wire head of electronic detonator 8 to pass through.

[0082] The receiving plate 21 is made of plastic. The clamping plate 22 will deform under force, so that the electronic detonator 8 can be pressed down and embedded between the two clamping plates 22 and fixed by the arc groove 221. The front end of the electronic detonator 8 abuts against the positioning plate 23 to realize the positioning and limiting of the electronic detonator 8.

[0083] In the embodiment, the base 1 is provided with a groove 11 matched with the accommodating assembly, and the positioning member 12 is vertically arranged in the groove 11; the accommodating plate 21 is accommodated in the groove 11;

[0084] The base 1 is provided with a plurality of lower notched grooves 13 and placing grooves 14; each group of the lower notched grooves 13 is opposite to the tail of each group of the clamping fixing members, and accommodates the tube body of the electronic detonator member 8; each group of the placing grooves 14 is opposite to the head of each group of the clamping fixing members, and accommodates the wire head of the electronic detonator member 8.

[0085] The groove 11 can limit the accommodating plate 21, so as to ensure the stability of the detection process; the placing groove 14 and the U-shaped notch 231 on the positioning plate 23 can limit the rotating state of the electronic detonator, so that the probe can just contact the corresponding pin on the electronic detonator member 8.

[0086] The strip-shaped groove 213 is arranged between the two clamping plates 22 of each group of the clamping fixing members on the accommodating plate 21, and the size of the strip-shaped groove 213 is greater than that of the protrusion 81 of the electronic detonator member 8; the positioning member 12 is fixedly connected with the accommodating plate 21, and the lower part of the positioning member 12 is inserted into the bottom plate; the inner diameter of the lower part of the positioning member 12 is not greater than that of the positioning hole 211.

[0087] The above design enables the plurality of accommodating plates 21 to be stacked up and down, and the strip-shaped groove 213 can accommodate the protrusion 81 on the electronic detonator member 8 in the next layer of the accommodating plate 21, so that the electronic detonator member 8 is not damaged when the plurality of accommodating plates 21 are stacked, and thus the electronic detonator member 8 accommodated in the accommodating plate 21 only needs to be placed on the base 1 for detection, and after the detection is completed, the accommodating plate 21 is separated from the base 1, and a new accommodating plate 21 is placed, so that the detection mode can greatly improve the detection efficiency, and the orderly stacking of the electronic detonators is completed at the same time, and the work load of subsequent packaging and transferring is greatly reduced.

[0088] In the embodiment, the upper assembly comprises:

[0089] The upper plate 41 is sleeved on the lifting assembly and opposite to the base 1; the detection assembly is arranged on the upper plate 41;

[0090] The working plate 42 is provided with a plurality of upper notched grooves 421 on the lower surface; each group of the upper notched grooves 421 is opposite to the lower notched groove 13; when the working plate 42 is relatively close to the base 1, the working plate 42 and the base 1 clamp and fix the tube body of the electronic detonator member 8 located in the clamping fixing member.

[0091] The cooperation of the upper notched groove 421 and the lower notched groove 13 can ensure that the electronic detonator member 8 remains stable during detection.

[0092] The lifting assembly in the embodiment comprises two lifting units arranged on the base 1 and located outside the two ends of the accommodating plate 21. The lifting unit comprises:

[0093] The guide column 31 is vertically arranged on the base 1, and the upper plate 41 is sleeved on the guide column 31 through the guide sleeve 34.

[0094] The limiting member 32 is arranged on the top of the guide column 31 and has an outer contour larger than that of the guide column 31.

[0095] The lifting spring 33 is sleeved on the guide column 31 and abuts against the upper surface of the base 1 and the lower surface of the upper plate 41 at two ends, respectively. When the upper plate 41 is lowered to a predetermined position, the locking assembly is fixed.

[0096] The lifting spring 33 can be reset after detecting each group of the accommodating plate 21, facilitating the taking out of the detected accommodating plate 21.

[0097] The locking assembly in the embodiment comprises two locking units arranged on the base 1 and located outside the two lifting units, respectively. The locking unit comprises:

[0098] The two locking seats 51 are oppositely and spacedly arranged on the base 1.

[0099] The shaft rod 52 passes through the two locking seats 51 and is arranged at the front ends of the two locking seats 51.

[0100] The baffle 53 is arranged on the side surface of the upper part of the two locking seats 51 and faces the upper space of the accommodating plate 21, so as to close the side surface of the upper part of the two locking seats 51.

[0101] The lock block is located between the two locking seats 51, the head of the lock block is sleeved on the shaft rod 52, the middle part of the lock block abuts against the baffle 53, the upper head of the lock block is provided with the lock convex 541, the tail end of the lock block is provided with the lock handle 542, the lock convex 541 is located directly below the upper plate 41, the side surface and the upper surface of the lock convex 541 are provided with inclined upper guide surfaces, and the lower surface and the outer side surface of the upper plate 41 are also provided with inclined lower guide surfaces.

[0102] The locking spring 55 abuts against the base 1 and the lower part of the lock block at two ends, respectively, so as to control the middle part of the lock block to press against the baffle 53. The locking spring 55 is arranged in the notch of the base and is hidden, as shown in FIG. 12. Figure 10 、 11 When the upper plate 41 is lowered to a predetermined height, the upper surface of the upper plate 41 abuts against the lower surface of the lock convex 541 and is fixed by the limiting.

[0103] The initial state of the locking block is ensured by the locking spring 55, and the excessive rotation of the locking block towards the detection area is avoided by the baffle 53. When the upper plate 41 is pressed downwards, the upper guide surface of the upper plate 41 and the lower guide surface of the locking convex 541 are in contact, which forces the locking convex 541 of the locking block to rotate away from the detection area, so that the upper plate 41 can be smoothly lowered until the upper guide surface of the upper plate 41 and the lower guide surface of the locking convex 541 are separated, at which time the locking convex 541 is rotated under the action of the locking spring 55 to lock the lower plate.

[0104] In the embodiment, the detection assembly comprises:

[0105] The fixed frame is arranged on the upper plate 41.

[0106] The PCB board 62 is arranged in the fixed frame.

[0107] The plurality of elastic probes 63 pass through the upper plate 41 and the working plate 42 at the lower ends, each probe is opposite to each placement slot 14, and the upper end is fixed and electrically connected with the PCB board 62.

[0108] The elastic probe 63 is a probe structure with a sleeve, and the needle part at the lower end can slide in the sleeve to avoid damage caused by excessive extrusion of the probe by a hard object.

[0109] The PCB board 62 is used to realize the signal output and reception of the plurality of elastic probes 63.

[0110] In the embodiment, the fixed frame comprises:

[0111] The plurality of fixed columns are fixedly connected with the upper plate 41 at the lower ends.

[0112] The top plate 62 is fixedly connected with the upper ends of the plurality of fixed columns at the lower surface, and the top plate 62 is parallel to the upper plate 41.

[0113] The fixed column comprises:

[0114] The lower column 6111 is threadedly connected with the upper plate 41 at the lower end, and is provided with an internally-threaded hole at the upper end.

[0115] The upper column 6112 is threadedly connected with the lower column 6111 at the lower end and is provided with an internally-threaded hole at the upper end, and the PCB board 62 is sleeved on the stud.

[0116] The screw 6113 is threadedly connected with the upper end of the upper column 6112 through the top plate 62.

[0117] In the embodiment, the external unit is further included, and the external unit comprises:

[0118] The wiring fixing plate 71 is arranged on the upper plate 41.

[0119] Two bus terminals 72 are arranged on the terminal fixing plate 71, and the lower end is electrically connected with the PCB 62, and the upper end is provided with a wire quick connector 721.

[0120] The two bus terminals 72 can be electrically connected with the remote control initiator, and the test signal is output to the PCB 62 through the remote control initiator, the test signal is distributed to each probe one by one, and the result signal output by the electronic detonator 8 is received, and the detection result is displayed on the remote control initiator. The wire quick connector 721 is a spring compression head structure, which facilitates quick electrical connection and separation with the remote control initiator.

[0121] The special networking clamping tool of the embodiment is used as follows: first, the wire of the remote control initiator is electrically connected with the two bus terminals 72, then the electronic detonator 8 to be tested is placed in the containing plate 21 one by one, and then the containing plate 21 is placed in the base 1.

[0122] The top plate 62 is pressed to force the lower plate to move downward until the lower guide surface of the locking convex 541 and the upper guide surface of the upper plate 41 are pressed against each other, so that the locking block rotates, and finally the lower guide surface of the locking convex 541 and the upper guide surface of the upper plate 41 are separated, and the upper plate 41 is moved into position. At this time, the locking convex 541 is reset under the action of the locking spring 55, and the upper plate 41 surface is pressed, so as to fix the upper plate 41. At this time, the lower end of the probe is also pressed and electrically connected with the pin of the electronic detonator 8.

[0123] The test signal is output in the remote control initiator, the test signal enters the PCB 62 through the bus terminal 72, and finally is distributed to each probe, and then interacts with each electronic detonator 8 signal processing, and finally the electronic detonator 8 sends the test result signal to the remote control initiator one by one, and the remote control initiator displays the detection result on the screen, so as to complete the detection.

[0124] Then control the two locking handles 542 to rotate, so that the locking convex 541 releases the restriction of the upper plate 41, and the upper plate 41 moves upward under the action of the lifting spring 33 and resets, releasing the restriction of all electronic detonators 8. At this time, the unqualified electronic detonator 8 is taken out of the containing plate 21, and the detection and quality classification of all electronic detonators 8 on the containing plate 21 are completed.

[0125] Finally, it should be pointed out that the above embodiments are only used to illustrate the technical solutions of the present application and are not limited. Although the present application has been described in detail with reference to the preferred embodiments, it should be understood by those skilled in the art that the technical solutions of the present application can be modified or replaced equivalently without departing from the purpose and scope of the present application, and they should be covered in the scope of the claims of the present application.

Claims

1. A dedicated networking clamping tool, characterized by, The utility model relates to an electronic detonator storage device, including: Base; Accommodation component is set up on the base, and the upper surface is equipped with the accommodation groove of accommodating electronic detonator spare; Lifting component, lower part is set up on the accommodation component; Upper component, sliding's setting in the lifting component upper part, opposite base; Locking component, set up on the base, be located lifting component both sides, when upper component with lifting component drop to predetermined position after, be fixed by locking component; Detection component, set up on the upper component, opposite the accommodation groove of accommodation component; The base is equipped with at least two vertical positioning members, and the upper end surface of the positioning member is rounded with a cylindrical surface; The accommodation component includes: Accommodation plate, be equipped with with the positioning hole of positioning member matching, limit in the base; Several groups of card embedding fixing spare, several groups of card embedding fixing spare are set up in the upper surface of accommodation plate even interval staggered in proper order; The card embedding fixing spare includes two opposite setting cardboards; The opposite surface of two The cardboard is equipped with recessed arc slot; The upper end surface of card plate and inner side face set chamfer surface; The area of accommodation plate opposite two cardboards between is equipped with recessed arc notch; The arc notch and two cardboards form the accommodation groove of accommodating electronic detonator spare; Positioning plate, set up on the accommodation plate, opposite card embedding fixing spare, the positioning plate is equipped with U-shaped gap for the wire head of electronic detonator spare to pass through.

2. The specialized netting clamp tool of claim 1, wherein, The base is equipped with the groove matched with the accommodation component, and the positioning member is vertically arranged in the groove; The accommodation plate is accommodated in the groove; The base is equipped with several lower notch grooves and placing grooves; Each group of lower notch grooves is opposite to the tail of each group of card embedding fixing spares, and the body of the electronic detonator spare is accommodated; Each group of placing grooves is opposite to the head of each group of card embedding fixing spares, and the wire head of the electronic detonator spare is accommodated.

3. The dedicated netting clamp tool of claim 1 or 2, wherein, The strip-shaped groove is provided between the two cardboards of each group of card embedding fixing spares on the accommodation plate, the size of the strip-shaped groove is greater than the protrusion of the body of the electronic detonator spare; The positioning member is fixedly connected with the accommodation plate, the lower part of the positioning member is inserted into the bottom plate; The inner diameter of the lower part of the positioning member is not greater than the inner diameter of the positioning hole.

4. The specialized netting clamp tool of claim 2, wherein, The upper component includes: Upper plate, outer sleeve in the lifting component, opposite base; The detection component is arranged on the upper plate; Work plate, the lower surface is equipped with several upper notch grooves; Each group of upper notch grooves is opposite to the lower notch groove; When the work plate is relatively close to the base, the work plate and the base clamp and fix the body of the electronic detonator spare located in the card embedding fixing spare.

5. The specialized netting clamp tool of claim 4, wherein, The lifting component includes two lifting units, which are arranged on the base and located at the outer sides of the two ends of the accommodation plate; The lifting unit includes: Guide column, vertically set up on the base, the upper plate is sleeved on the guide main through the guide sleeve; Limiting member, set up on the top of guide column, the outer contour is greater than the guide column; Lifting spring, outer sleeve in the guide column, both ends are respectively with the upper surface of base and the lower surface of upper plate abut; When the upper plate drops to predetermined position, be fixed by locking component.

6. The specialized netting clamp tool of claim 5, wherein, The locking component includes two locking units, which are arranged on the base and located at the outer sides of the two lifting units; The locking unit includes: Two locking seats, opposite interval's setting in the base; Shaft, pass through two locking seats, set up in two locking seat front end; A baffle is arranged on the side of the upper part of the two locking seats, opposite to the upper space of the containing plate, and closes the side of the upper part of the two locking seats; A lock block is located between the two locking seats, the head part of which is sleeved on the shaft rod, the middle part of which is opposite to the baffle, the upper head end of which is provided with a lock convex, and the tail end of which is provided with a lock handle, the lock convex is located directly below the upper plate, the side surface and the upper surface of the lock convex are provided with inclined upper guide surfaces, and the lower surface and the outer side surface of the upper plate are also provided with inclined lower guide surfaces; A locking spring is arranged, the two ends of which are respectively abutted with the base and the lower part of the lock block, and the middle part of the lock block is controlled to be pressed to the baffle, when the upper plate is lowered to a predetermined height, the upper surface of the upper plate is abutted with the lower surface of the lock convex, and is fixed and limited.

7. The dedicated netting clamp tool of any one of claims 4-6, wherein, The detection assembly comprises: A fixing frame is arranged on the upper plate; A PCB is arranged in the fixing frame; A plurality of elastic probes are arranged, the lower end of each probe is arranged to pass through the upper plate and the working plate, the lower end of each probe is opposite to each placing groove, and the upper end of each probe is fixed and electrically connected with the PCB.

8. The specialized netting clamp tool of claim 7, wherein, The fixing frame comprises: A plurality of fixing columns are fixedly connected with the upper plate at the lower end; A top plate is fixedly connected with the upper end of the plurality of fixing columns at the lower surface; the top plate is parallel to the upper plate; The fixing column comprises: A lower column is threadedly connected with the upper plate at the lower end, and an internally-threaded hole is arranged at the upper end of the lower column; An upper column is threadedly connected with the lower column at the lower end, and an internally-threaded hole is arranged at the upper end of the upper column; the PCB is sleeved on the stud; A screw is threadedly connected with the upper end of the upper column through the top plate.

9. The specialized netting clamp tool of claim 8, wherein, Further comprising an external unit, the external unit comprises: A wiring fixing plate is arranged on the upper plate; Two bus wiring columns are arranged on the wiring fixing plate, and the lower end of each bus wiring column is electrically connected with the PCB, and the upper end of each bus wiring column is provided with a wire quick connector.