A detection device for an electronic detonator
By combining components such as a flip motor and an air pump, the problems of wire misalignment and inconvenient loading and unloading in electronic detonator testing equipment have been solved, achieving stable contact and synchronous operation, and improving testing accuracy and efficiency.
Patent Information
- Application Number
- CN202520042750.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-09
- Publication Date
- 2025-11-21
- Estimated Expiration
- 2035-01-09
AI Technical Summary
Existing electronic detonator testing equipment is prone to misalignment when in contact with the detonator wire, resulting in inaccurate testing alignment. Furthermore, loading and unloading cannot be performed simultaneously, increasing the testing waiting time.
A flipping motor drives the flipping operating frame to rotate, and a moving electric slide rail drives the operating frame to move. An air pump and a tube extraction rack fix the detonator. The detonator is clamped by a pressing electric push rod and an alignment electric push rod to achieve stable contact detection. Loading and unloading are carried out synchronously through the pick-and-place assembly.
This ensures a secure contact between the detonator wires and the detonator, preventing deviation and improving detection accuracy. It also enables synchronized loading and unloading, reducing waiting time and increasing detection efficiency.
Smart Images

Figure CN223580807U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to detonator detection technical field, concretely is a kind of detection device for electronic detonator. BACKGROUND
[0002] Electronic detonator is also called digital electronic detonator, digital detonator or industrial digital electronic detonator, that is, electronic control module is used to control the detonation process Electric detonator, electronic detonator needs to be detected after production, before use and during use, to ensure its safety and reliability, now electronic detonator detection generally utilizes detonator detector to detect and process.
[0003] But now detonator production detection, because detection equipment is in contact with the wire of detonator, wire is easy to be touched and deviated by clamping component, and detonator is also easy to deviate and change position due to contact, resulting in inaccurate detection alignment, affect detection result, and in detonator detection, feeding and discharging cannot be realized simultaneously, greatly increase detection waiting time. UTILITY MODEL CONTENT
[0004] The utility model provides a kind of detection device for electronic detonator, can effectively solve the problem that the above background technique proposes now detonator production detection, because detection equipment is in contact with the wire of detonator, wire is easy to be touched and deviated by clamping component, and detonator is also easy to deviate and change position due to contact, resulting in inaccurate detection alignment, affect detection result, and in detonator detection, feeding and discharging cannot be realized simultaneously, greatly increase detection waiting time.
[0005] To achieve the above object, the utility model provides the following technical scheme: a kind of detection device for electronic detonator, including fixed support frame, the fixed support frame top is provided with operating assembly, and the operating assembly includes mobile electric slide rail;
[0006] The fixed support frame top one side is symmetrically connected with mobile electric slide rail, and the top of the two mobile electric slide rails is connected with mobile operating frame through slide rail seat, one end of the mobile operating frame is installed with turnover motor through motor seat, and the output shaft one end of the turnover motor is connected with turnover operating frame;
[0007] The top and bottom of the turnover operating frame are both fixed with alignment electric slide rail, and one end of the two alignment electric slide rails is connected with sliding operating frame through slide rail seat, and the top and bottom of the sliding operating frame are both symmetrically connected with a plurality of compression electric push rods with equal distance with the top of fixed support frame, one end of the plurality of compression electric push rods is fixed with compression recessed plate, and one end of the two compression recessed plates is installed with air pump through motor seat, and one end of the air pump is connected with extraction pipe frame through adapter head.
[0008] Another said pressing groove plate top and fixed support frame bottom is equidistantly fixed with a plurality of alignment electric push rod, one end of the alignment electric push rod is provided with a contact detection sheet, one end of the contact detection sheet is connected with a processing wire, one side of the top of the fixed support frame is fixed with a detonator detector at the position corresponding to the processing wire.
[0009] According to the technical scheme, the turnover operation frame is rotatably sleeved on the inside of the moving operation frame, and the extraction pipe frame is rotatably sleeved on the inside of the pressing groove plate.
[0010] According to the technical scheme, a plurality of the pressing groove plates are slidably installed on the inside of the fixed support frame and the sliding operation frame, and the contact detection sheet is slidably sleeved on the inside of the pressing groove plate.
[0011] According to the technical scheme, one end of the processing wire is connected with one end of the detonator detector.
[0012] The input ends of the moving electric slide rail, the turnover motor, the alignment electric slide rail, the pressing electric push rod, the air pump, the alignment electric push rod and the detonator detector are electrically connected with the output end of the external power supply.
[0013] According to the technical scheme, the top of the fixed support frame is provided with a taking and placing assembly, and the taking and placing assembly comprises a processing electric slide rail.
[0014] One side of the top of the fixed support frame is fixed with a processing electric slide rail, a processing fixing frame is installed on the top of the processing electric slide rail through a slide rail seat, a linkage motor is installed on one end of the processing fixing frame through a motor seat, and a rotating operation frame is clamped on one end of the output shaft of the linkage motor at the position corresponding to the processing fixing frame.
[0015] One end of the rotating operation frame is fixed with a switching electric slide rail, a linkage taking and placing frame is connected to one end of the switching electric slide rail through a slide rail seat, clamping electric slide rails are fixed on both ends of the inside of the linkage taking and placing frame, and groove clamping blocks are connected to one end of a plurality of the clamping electric slide rails through slide rail seats.
[0016] According to the technical scheme, the linkage taking and placing frame is slidably installed on the side end of the processing fixing frame.
[0017] The input ends of the processing electric slide rail, the linkage motor, the switching electric slide rail and the clamping electric slide rail are electrically connected with the output end of the external power supply.
[0018] Compared with the prior art, the utility model has the advantages that the structure is scientific and reasonable, and the use is safe and convenient.
[0019] 1、Set up operation subassembly, by the turnover motor drives the turnover operation frame to rotate, the mobile electric slide rail takes the point and moves the operation frame and the turnover operation frame, the air pump and the extraction pipe frame adsorb and fix the detonator, by the alignment electric slide rail drives the sliding operation frame to move, realizes the detonator alignment restriction, cooperation pressure electric push rod drives the pressure groove board to clamp and fix the detonator and fixed support frame, alignment electric push rod drives the contact detection piece side end and detonator wire contact, utilize flat clamping alignment and side end limit alignment mutual cooperation, avoid the detonator swing in the detection process, and through up and down alignment clamping, its wire is steadily fixed, avoid the wire misplacement deviation detection position, guarantee the accuracy of detection, and through the replacement of detonator, realize the feeding and discharging simultaneously, reduce the waiting time required when the detonator detects the replacement of detonator, improve the efficiency of work.
[0020] 2、Set up take and place subassembly, by the processing electric slide rail drives the processing fixed frame, linkage motor drives the rotary operation frame, switch electric slide rail drives linkage take and place frame, cooperation clamping electric slide rail drives the groove clamping block to clamp and fix the detonator, through the cooperation of lifting and rotating, realize accurate alignment clamping, and through the independent clamping operation of each detonator, guarantee its each clamping position is the best position, avoid the detonator deviation and fall off, and through the telescopic position difference, realize the separation of detonator qualified product and unqualified product, so that the products can be classified while feeding and discharging, reduce the time waiting of taking and placing material, improve the efficiency of operation. BRIEF DESCRIPTION OF DRAWINGS
[0021] The accompanying drawings are included to provide a further understanding of the present application, and constitute a part of the specification, together with the embodiments of the present application, to explain the present application, and do not constitute the limitation of the present application.
[0022] In the drawings:
[0023] Figure 1 It is the three-dimensional structure schematic diagram of the present application;
[0024] Figure 2 It is the structure schematic diagram of operation subassembly of the present application;
[0025] Figure 3 It is the installation structure schematic diagram of alignment electric push rod of the present application;
[0026] Figure 4 It is the structure schematic diagram of take and place subassembly of the present application;
[0027] Marked number in the drawing: 1, fixed support frame;
[0028] 2. Operating components; 201. Moving electric slide rail; 202. Moving operating frame; 203. Tilting motor; 204. Tilting operating frame; 205. Alignment electric slide rail; 206. Sliding operating frame; 207. Pressing electric push rod; 208. Pressing groove plate; 209. Air pump; 210. Extraction tube rack; 211. Alignment electric push rod; 212. Contact detection plate; 213. Processing wire; 214. Detonator detector;
[0029] 3. Pick-up and drop-off assembly; 301. Handling electric slide rail; 302. Handling fixing frame; 303. Linkage motor; 304. Rotating operating frame; 305. Switching electric slide rail; 306. Linkage pick-up and drop-off frame; 307. Clamping electric slide rail; 308. Groove clamping block. Detailed Implementation
[0030] The preferred embodiments of the present invention will be described below with reference to the accompanying drawings. It should be understood that the preferred embodiments described herein are for illustration and explanation only and are not intended to limit the present invention.
[0031] Example: Figures 1-4 As shown, this utility model provides a technical solution: a detection device for electronic detonators, including a fixed support frame 1. The top of the fixed support frame 1 is provided with an operation component 2. The operation component 2 includes a movable electric slide rail 201, a movable operation frame 202, a flipping motor 203, a flipping operation frame 204, an alignment electric slide rail 205, a sliding operation frame 206, a pressing electric push rod 207, a pressing groove plate 208, an air pump 209, an extraction tube rack 210, an alignment electric push rod 211, a contact detection piece 212, a processing wire 213, and a detonator detector 214.
[0032] The top of the fixed support frame 1 is symmetrically attached to one side of the movable electric slide rail 201. The top of the two movable electric slide rails 201 is connected to the movable operating frame 202 through the slide rail seat. One end of the movable operating frame 202 is equipped with a flip motor 203 through the motor seat. One end of the output shaft of the flip motor 203 is attached to the flip operating frame 204. The flip operating frame 204 is rotatably sleeved on the inside of the movable operating frame 202 to achieve steady flipping and ensure steady operation of the position switching linkage.
[0033] The top end and the bottom end of the turnover operation frame 204 are fixed with alignment electric slide rails 205, one end of the two alignment electric slide rails 205 is connected with a sliding operation frame 206 through a slide rail seat, the top end and the bottom end of the sliding operation frame 206 are symmetrically clamped with a plurality of press-fit electric push rods 207 at equal distances from the top end of the fixed support frame 1, one end of the plurality of press-fit electric push rods 207 is fixed with a press-fit groove plate 208, the plurality of press-fit groove plates 208 are respectively slidably installed on the inner sides of the fixed support frame 1 and the sliding operation frame 206, realizing stable lifting alignment support and guaranteeing stable cooperation of transposition support limitation, wherein one end of the two press-fit groove plates 208 is installed with an air pump 209 through a motor seat, one end of the air pump 209 is connected with a suction pipe frame 210 through an adapter, the suction pipe frame 210 penetrates through the inside of the press-fit groove plate 208, realizing stable positioning clamping and fitting limitation.
[0034] One end of the alignment electric push rod 211 is installed with a contact detection sheet 212, the contact detection sheet 212 is slidably sleeved on the inside of the press-fit groove plate 208, realizing stable contact detection, one end of the contact detection sheet 212 is connected with a processing wire 213, the top end of the fixed support frame 1 is fixed with a detonator detector 214 on the side corresponding to the position of the processing wire 213, one end of the processing wire 213 is connected with one end of the detonator detector 214, realizing stable detection processing.
[0035] In order to realize stable operation of the equipment, the input ends of the mobile electric slide rail 201, the turnover motor 203, the alignment electric slide rail 205, the press-fit electric push rod 207, the air pump 209, the alignment electric push rod 211 and the detonator detector 214 are electrically connected with the output end of the external power supply.
[0036] The top end of the fixed support frame 1 is provided with a taking and placing assembly 3, the taking and placing assembly 3 comprises a processing electric slide rail 301, a processing fixed frame 302, a linkage motor 303, a rotating operation frame 304, a switching electric slide rail 305, a linkage taking and placing frame 306, a clamping electric slide rail 307 and a groove clamping block 308.
[0037] The top end of the fixed support frame 1 is fixed with a processing electric slide rail 301, the top end of the processing electric slide rail 301 is installed with a processing fixed frame 302 through a slide rail seat, one end of the processing fixed frame 302 is installed with a linkage motor 303 through a motor seat, one end of the output shaft of the linkage motor 303 is clamped with a rotating operation frame 304 corresponding to the position of the processing fixed frame 302.
[0038] The rotating operation frame 304 is fixed with a switching electric slide rail 305 at one end, the switching electric slide rail 305 is connected with a linkage taking and placing frame 306 through a slide rail seat at one end, the linkage taking and placing frame 306 is slidingly installed at the side end of the processing fixed frame 302, stable position changing processing is realized, the linkage taking and placing frame 306 is fixed with clamping electric slide rails 307 at the two inner sides, a plurality of clamping electric slide rails 307 are connected with groove clamping blocks 308 through slide rail seats at one end;
[0039] In order to realize stable operation of the equipment, the input ends of the processing electric slide rail 301, the linkage motor 303, the switching electric slide rail 305 and the clamping electric slide rail 307 are electrically connected with the output end of the external power supply.
[0040] The working principle and use process of the utility model are as follows: when resistance detection is carried out on the finished detonator, the equipment is powered by the external power supply, the detonator is placed vertically at the taking position by the external carrying equipment, the processing fixed frame 302 is driven to move to the taking position by the processing electric slide rail 301, the rotating operation frame 304 is rotated by the linkage motor 303, the linkage taking and placing frame 306 is moved by the switching electric slide rail 305, the groove clamping blocks 308 are moved oppositely by the clamping electric slide rail 307 to clamp and fix the detonator, the detonator is moved to the turnover operation frame 204 position again by the linkage motor 303, the processing electric slide rail 301 and the switching electric slide rail 305, the detonator is clamped and fixed by the pressing groove plate 208 driven by the pressing electric push rod 207, at this time, the detonator is released by the groove clamping blocks 308 driven by the clamping electric slide rail 307, stable feeding and discharging processing is realized, and the detonator after detection can be taken by reverse operation, and the classification between the qualified and unqualified detonators is realized through length misplacement;
[0041] The rotating operation frame 304 is fixed with a switching electric slide rail 305 at one end, the switching electric slide rail 305 is connected with a linkage taking and placing frame 306 through a slide rail seat at one end, the linkage taking and placing frame 306 is slidingly installed at the side end of the processing fixed frame 302, stable position changing processing is realized, the linkage taking and placing frame 306 is fixed with clamping electric slide rails 307 at the two inner sides, a plurality of clamping electric slide rails 307 are connected with groove clamping blocks 308 through slide rail seats at one end;
[0042] Finally, it should be noted that: the above is only the preferred examples of the present application, and is not intended to limit the present application, although the foregoing embodiments of the present application are described in detail, for those skilled in the art, it still can be modified, or part of the technical features of the equivalent replacement. Any modification, equivalent replacement, improvement, etc. made within the spirit and principles of the present application, shall be included within the scope of the present application.
Claims
1. A testing device for electronic detonators, comprising a fixed support frame (1), characterized in that: The fixed support frame (1) is provided with an operating component (2) at its top, and the operating component (2) includes a movable electric slide rail (201); The fixed support frame (1) has a movable electric slide rail (201) symmetrically attached to one side of its top end. The top ends of the two movable electric slide rails (201) are connected to a movable operating frame (202) via a slide rail seat. A flip motor (203) is mounted on one end of the movable operating frame (202) via a motor seat. A flip operating frame (204) is attached to one end of the output shaft of the flip motor (203). The top and bottom of the flipping operation frame (204) are fixed with alignment electric slide rails (205). One end of the two alignment electric slide rails (205) is connected to the sliding operation frame (206) through the slide rail seat. The top and bottom of the sliding operation frame (206) are symmetrically and equidistantly connected with the top of the fixed support frame (1) with several pressing electric push rods (207). One end of the multiple pressing electric push rods (207) is fixed with a pressing groove plate (208). One end of the two pressing groove plates (208) is equipped with an air pump (209) through a motor seat. One end of the air pump (209) is connected to the extraction tube rack (210) through an adapter. One of the pressing groove plates (208) has several alignment electric push rods (211) fixed at equal intervals at the top and bottom of the fixed support frame (1). One end of the alignment electric push rod (211) is equipped with a contact detection piece (212), and one end of the contact detection piece (212) is connected to a processing wire (213). A detonator detector (214) is fixed on one side of the top of the fixed support frame (1) at the position corresponding to the processing wire (213).
2. The detection device for electronic detonators according to claim 1, characterized in that, The flipping operation frame (204) is rotatably sleeved on the inside of the moving operation frame (202), and the extraction tube frame (210) is sleeved through the inside of the pressing groove plate (208).
3. The detection device for electronic detonators according to claim 1, characterized in that, Multiple pressing groove plates (208) are slidably installed on the inner side of the fixed support frame (1) and the sliding operation frame (206), and the contact detection piece (212) is slidably sleeved on the inner side of the pressing groove plate (208).
4. The detection device for electronic detonators according to claim 1, characterized in that, One end of the processing wire (213) is connected to one end of the detonator detector (214); The input terminals of the moving electric slide rail (201), the flipping motor (203), the alignment electric slide rail (205), the pressing electric push rod (207), the air pump (209), the alignment electric push rod (211), and the detonator detector (214) are all electrically connected to the output terminal of an external power supply.
5. A detection device for electronic detonators according to claim 4, characterized in that, The fixed support frame (1) is provided with a pick-and-place assembly (3) at its top, and the pick-and-place assembly (3) includes a processing electric slide rail (301); The fixed support frame (1) has a processing electric slide rail (301) fixed on one side of its top end. The processing electric slide rail (301) has a processing fixed frame (302) installed on its top end via a slide rail seat. One end of the processing fixed frame (302) has a linkage motor (303) installed via a motor seat. One end of the output shaft of the linkage motor (303) is engaged with a rotating operating frame (304) at the position corresponding to the processing fixed frame (302). One end of the rotating operating frame (304) is fixed with a switching electric slide rail (305), and one end of the switching electric slide rail (305) is connected to a linkage pick-and-place frame (306) through a slide rail seat. Both ends of the linkage pick-and-place frame (306) are fixed with clamping electric slide rails (307), and one end of the plurality of clamping electric slide rails (307) is connected to a groove clamping block (308) through a slide rail seat.
6. The detection device for an electronic detonator according to claim 5, characterized in that, The linkage pick-and-place rack (306) is slidably installed on the side of the processing fixing rack (302); The input terminals of the processing electric slide rail (301), the linkage motor (303), the switching electric slide rail (305), and the clamping electric slide rail (307) are all electrically connected to the output terminal of an external power supply.