CN212179707U - Second quantity detection device for electronic detonator - Google Patents

Second quantity detection device for electronic detonator Download PDF

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Publication number
CN212179707U
CN212179707U CN201922438534.3U CN201922438534U CN212179707U CN 212179707 U CN212179707 U CN 212179707U CN 201922438534 U CN201922438534 U CN 201922438534U CN 212179707 U CN212179707 U CN 212179707U
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electronic detonator
detonator
module
tester
explosion
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CN201922438534.3U
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Chinese (zh)
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张立明
马文祥
喻凭
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Nanjing Leixin Juli Electronic Technology Co ltd
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Nanjing Leixin Juli Electronic Technology Co ltd
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Abstract

The utility model discloses an electron detonator second volume detection device, which comprises a power supply, electron detonator second volume tester, the general tester of electron detonator, piezoelectric sensor, explosion-proof box, the electron detonator, detonator leg and communication generating line, the explosion-proof box is arranged in to the electron detonator, and the detonator leg of electron detonator passes through the communication generating line and is electric connection through the wire with the general tester of electron detonator second volume tester, the electron detonator second volume tester passes through the wire with the general tester of electron detonator and is electric connection, and piezoelectric sensor's probe end is fixed on explosion-proof box, the other end that piezoelectric sensor kept away from explosion-proof box is electric connection through wire and the general tester of electron detonator. The utility model can control the use of the detection device and prevent the detection device from being illegally used; the use safety of the electronic detonator in the detection process is greatly improved, and the accidental explosion of the detonator caused by unexpected factors can be prevented; the second measuring device of the electronic detonator has high measuring precision and can accurately detect the delay time of the electronic detonator.

Description

Second quantity detection device for electronic detonator
Technical Field
The utility model relates to a detonator second volume detects technical field, especially relates to an electron detonator second volume detection device.
Background
In the 20 th century, the electronic detonator technology was studied in the 80 th, japan, australia, sweden, south africa and other countries, and in the 90 th, the electronic detonator product began to enter the market of initiating devices, but is still in the research, development and application test stages of technology and product as a whole, and in the beginning of the 21 st century, the electronic detonator technology has been rapidly developed along with the development of microelectronic technology; the appearance of high-precision electronic detonators requires high-precision detection instruments, and the second quantity detection equipment and the method adopted by the traditional electronic detonators cannot be used for detecting the second quantity of the electronic detonators.
The traditional electric detonator delay is realized by burning a medicament, the delay precision is poor in the mode, the deviation is increased along with the increase of the nominal delay time, the delay precision required by blasting engineers cannot be achieved, and the problem of blasting precision is difficult to solve. Therefore, it is necessary to design a second detection device for an electronic detonator to solve the above problems.
SUMMERY OF THE UTILITY MODEL
The utility model aims at solving the defects existing in the prior art and providing an electronic detonator second quantity detection device.
In order to achieve the above purpose, the utility model adopts the following technical scheme:
the utility model provides an electron detonator second volume detection device, includes power, electron detonator second volume tester, the general tester of electron detonator, piezoelectric sensor, explosion-proof box, electron detonator, detonator leg and communication bus, the electron detonator is arranged in explosion-proof box, and the detonator leg of electron detonator passes through the communication bus and is electric connection through the wire with the general tester of electron detonator second volume, the general tester of electron detonator second volume tester and electron detonator is electric connection through the wire, and piezoelectric sensor's probe end is fixed on explosion-proof box, the other end that piezoelectric sensor kept away from explosion-proof box is electric connection through wire and the general tester of electron detonator.
Furthermore, the electronic detonator second measuring instrument comprises a control module, a control unit, a power supply module, a display module, an authorization key, a detonation double key, a signal sending module, a signal receiving module, a data exchange module and a synchronous signal sending module.
Furthermore, the control module is electrically connected with the power supply module, the display module, the authorization key, the detonation double key, the signal sending module, the signal receiving module, the data exchange module and the synchronous signal sending module through wires.
Furthermore, the control unit is electrically connected with the piezoelectric signal conditioning module, the display device, the power module, the data exchange module, the synchronous signal sending module and the control button through wires.
Furthermore, the top of the outer wall of the front face of the electronic detonator second measuring instrument is provided with a display screen, a key area is arranged on the outer wall of the electronic detonator second measuring instrument, which is close to the position right below the display screen, and joints are arranged on two sides of the outer wall of the top of the electronic detonator second measuring instrument.
The utility model has the advantages that:
1. the electronic detonator second measuring instrument has the same detonation function as the detonation device, authorization management is required, only a legal user can use the detection device, and only after identity authentication is passed, the next operation can be carried out, so that the detection device can be controlled to be used, and the detection device is prevented from being illegally used.
2. The electronic detonator is placed into the explosion-proof box and then is connected with the wire, mainly considering the operation safety, the initiation command is an initiation signal given by the initiation double-key, the precondition that the double-key is pressed down simultaneously instead of pressing down simultaneously at any time to send out the initiation signal, and the initiation double-key only works after delay time calibration, thus greatly improving the use safety of the electronic detonator in the detection process and preventing the detonator from being mistakenly exploded due to unexpected factors.
3. The electronic detonator can be delayed more accurately by charging before the initiation command is sent out, the electronic detonator second quantity detector sends a synchronous signal to the electronic detonator universal tester only when the electronic detonator receives the initiation command and starts to delay, and the electronic detonator universal tester starts to time, so that the timing is more accurate; the electronic detonator universal tester can accurately capture the piezoelectric signal sent by the piezoelectric sensor, and stops timing after capturing the signal sent by the electric sensor, wherein the timing time of the electronic detonator universal tester is the actual delay second quantity of the tested electronic detonator; the universal tester for the electronic detonator realizes accurate timing, the second measuring device for the electronic detonator has high measuring accuracy which can be accurate to 1 microsecond, and the delay time of the electronic detonator can be accurately detected.
Drawings
Fig. 1 is a schematic structural view of an electronic detonator second measurement instrument of the electronic detonator second measurement device provided by the utility model;
fig. 2 is a schematic structural view of the second amount detection device for the electronic detonator provided by the utility model;
fig. 3 is the utility model provides an electron detonator second volume detection device's principle structure schematic diagram.
In the figure: the system comprises an electronic detonator second measuring instrument 1, a display screen 2, a connector 3, a 4-key area, a power supply 5, a universal electronic detonator tester 6, a communication bus 7, a detonator leg wire 8, a piezoelectric sensor 9, an explosion-proof box 10, an electronic detonator 11, a control module 12, an authorization key 13, a signal transmitting module 14, a signal receiving module 15, a display module 16, a synchronous signal transmitting module 17, a data exchange module 18, a control unit 19, a piezoelectric signal conditioning module 20, a power supply module 21, a key 22, a detonation double key 23, a display device 24 and a control button 25.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
It will be understood that when an element is referred to as being "secured to" another element, it can be directly on the other element or intervening elements may also be present. When a component is referred to as being "connected" to another component, it can be directly connected to the other component or intervening components may also be present. When a component is referred to as being "disposed on" another component, it can be directly on the other component or intervening components may also be present. The terms "vertical," "horizontal," "left," "right," and the like as used herein are for illustrative purposes only.
Unless defined otherwise, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention belongs. The terminology used in the description of the invention herein is for the purpose of describing particular embodiments only and is not intended to be limiting of the invention. As used herein, the term "and/or" includes any and all combinations of one or more of the associated listed items.
Referring to fig. 1 to 3, an electronic detonator second amount detection device includes a power supply 5, an electronic detonator second amount detector 1, the electronic detonator second amount detector 1 is of type XB-1-DG, an electronic detonator universal tester 6, a piezoelectric sensor 9, an explosion-proof box 10, an electronic detonator 11, a detonator leg wire 8 and a communication bus 7, the electronic detonator 11 is disposed in the explosion-proof box 10, the detonator leg wire 8 of the electronic detonator 11 is electrically connected with the electronic detonator second amount detector 1 through the communication bus 7, the electronic detonator second amount detector 1 is electrically connected with the electronic detonator universal tester 6 through a wire, a probe end of the piezoelectric sensor 9 is fixed on the explosion-proof box 10, the other end of the piezoelectric sensor 9, which is far away from the explosion-proof box 10, is electrically connected with the electronic detonator universal tester 6 through a wire, and the electronic detonator second amount detector 1 mainly has a function of registering the electronic detonator 11, Calibrating delay time, detonating an electronic detonator, sending a delay time magnitude and a synchronous signal to the electronic detonator universal tester 6, providing a power supply for the electronic detonator universal tester 6, receiving and displaying a detection result of the electronic detonator universal tester 6, wherein the electronic detonator universal tester 6 mainly has the functions of starting timing after receiving the synchronous signal of the electronic detonator second tester 1, finishing timing after receiving a signal of the piezoelectric sensor 9 and feeding back the measurement result to the electronic detonator second tester 1; the function of the piezoelectric sensor 9 is to collect the piezoelectric signal generated by the piezoelectric device in the piezoelectric sensor 9 under the action of the shock wave formed by the explosion of the electronic detonator 11 and transmit the piezoelectric signal to the electronic detonator universal tester 6.
Further, the electronic detonator second measuring instrument 1 comprises a control module 12, a control unit 19, a power supply module 21, a display module 16, an authorization key 13, a key 22, a detonation double key 23, a signal sending module 14, a signal receiving module 15, a data exchange module 18 and a synchronous signal sending module 17, wherein the detonation double key 23 is used as a detonation signal sender, after a series of operations and a correct detonation time sequence, the detonation double key 23 is pressed simultaneously to send a detonation signal to the control module 12, after the control module 12 receives the detonation signal, a detonation instruction is sent, the electronic detonator 11 can detonate, the authorization key 13 has the function that the electronic detonator second measuring instrument 1 automatically judges the correctness of matching between an external insertion device and a stored password, the control module 12 is a core control component of the electronic detonator second measuring instrument 1 to judge the authorization key 13, the key 22 and the display module 16 are provided with voltage and controlled to work normally, signal transmission and signal receiving processing are controlled, registration, delay time calibration and detonation of the electronic detonator are completed, second magnitude and synchronous signals are transmitted to the electronic detonator universal tester 6, and data returned by the electronic detonator universal tester 6 are received.
Further, the control module 12 is electrically connected with the power module 21, the display module 16, the authorization key 13, the key 22, the detonation double key 23, the signal sending module 14, the signal receiving module 15, the data exchange module 18 and the synchronization signal sending module 17 through wires, the synchronization signal sending module 17 is used for sending a detonation synchronization signal of the electronic detonator 11 to the electronic detonator universal tester 6, the data exchange module 18 is used for realizing information transmission and data exchange between the electronic detonator second tester 1 and the electronic detonator universal tester 6, the signal receiving module 15 is used for receiving and processing data and information fed back by the electronic detonator 11 through the communication bus 7 and transmitting the data and the information to the control module 12, and the signal sending module 14 is used for sending the information and instructions sent by the control module 12 to the electronic detonator 11 through the communication bus 7.
Further, the control unit 19 is electrically connected with the piezoelectric signal conditioning module 20, the display device 24, the power module 21, the data exchange module 18, the synchronous signal sending module 17 and the control button 25 through wires, the control unit 19 is used for controlling the control button 25, the display device 24 and the piezoelectric signal conditioning module 20 to normally work, receiving the second quantity magnitude and the detonation synchronous signal sent by the electronic detonator 11, timing and feeding a detection result back to the electronic detonator second quantity detector 1, and the piezoelectric signal conditioning module 20 is used for receiving the piezoelectric signal sent by the piezoelectric sensor 9, conditioning the piezoelectric signal and converting the piezoelectric signal into a signal which can be identified by the control unit.
Further, the top of the outer wall of the front side of the electronic detonator second measuring instrument 1 is provided with a display screen 2, a key area 4 is arranged on the outer wall of the electronic detonator second measuring instrument 1, which is close to the position right below the display screen 2, and joints 3 are arranged on two sides of the outer wall of the top of the electronic detonator second measuring instrument 1.
The working principle is as follows: when the detector is used, the power module 21 mainly has the function of providing stable direct-current voltage for the whole detection device, the power module 21 has two paths of outputs, one path is used for providing power for the electronic detonator second measuring instrument 1, the other path is used for providing power for the electronic detonator universal tester 6, the power provided for the electronic detonator second measuring instrument 1 is divided into two paths, one path is used for providing power for the detector, and the other path is used for providing communication voltage and initiation energy for the electronic detonator 11; the electronic detonator second tester 1 mainly has the functions of registering an electronic detonator 11, calibrating delay time, detonating the electronic detonator 11, sending a delay time magnitude and a synchronous signal to the electronic detonator universal tester 6, providing a power supply for the electronic detonator universal tester 6, and receiving and displaying a detection result of the electronic detonator universal tester 6; the electronic detonator universal tester 6 has the main functions of starting timing after receiving a synchronous signal of the electronic detonator second tester 1, finishing timing after receiving a signal of the piezoelectric sensor 9 and feeding a measurement result back to the electronic detonator second tester 1; the piezoelectric sensor 9 is used for collecting a piezoelectric signal generated by a piezoelectric device in the piezoelectric sensor 9 under the action of shock waves formed by explosion of the electronic detonator 11 and transmitting the piezoelectric signal to the electronic detonator universal tester 6; the control module 12 is a core control component of the electronic detonator second tester 1, judges the authorization key 13, provides voltage for the key 22 and the display module 16, controls the normal work of the key, controls signal transmission and signal receiving processing, completes registration, delay time calibration and detonation of the electronic detonator 11, transmits a second magnitude and a synchronous signal to the electronic detonator universal tester 6, and receives data returned by the electronic detonator universal tester 6; the function of the authorization key 13 is to enable the electronic detonator second measuring instrument 1 to automatically judge the correctness of matching between the external plug-in equipment and the stored password; the key 22 can perform operations such as delay time setting, function selection and the like; the initiation double key 23 is used by an initiator of an initiation signal, after a series of operations and a correct initiation sequence, the initiation double key 23 is pressed down at the same time, an initiation signal is sent to the control module 12, the control module 12 sends an initiation instruction after receiving the initiation signal, and the electronic detonator 11 can only initiate; the signal sending module 14 is used for sending the information and the instruction sent by the control module 12 to the electronic detonator 11 through the communication bus 7; the signal receiving module 15 is used for receiving and processing data and information fed back by the electronic detonator 11 through the communication bus 7, and transmitting the data and the information to the control module 12; the data exchange module 18 is used for realizing information transmission and data exchange between the electronic detonator second tester 1 and the electronic detonator universal tester 6; the synchronous signal sending module 17 is used for sending an initiation synchronous signal of the electronic detonator 11 to the electronic detonator universal tester 6, and the display device 24 is used for displaying various operation data; the control button 25 mainly controls the power supply 5 and performs automatic/manual switching of the control state; the control unit 19 is used for controlling the control button 25, the display device 24 and the piezoelectric signal conditioning module 20 to normally work, receiving the second magnitude and the detonation synchronizing signal sent by the electronic detonator 11, timing and feeding back the detection result to the electronic detonator second measuring instrument 1; the piezoelectric signal conditioning module 20 is configured to receive the piezoelectric signal sent by the piezoelectric sensor 9, condition the piezoelectric signal, and convert the signal into a signal that can be recognized by the control unit 19.
The above, only be the concrete implementation of the preferred embodiment of the present invention, but the protection scope of the present invention is not limited thereto, and any person skilled in the art is in the technical scope of the present invention, according to the technical solution of the present invention and the utility model, the concept of which is equivalent to replace or change, should be covered within the protection scope of the present invention.

Claims (4)

1. An electronic detonator second detection device comprises a power supply (5), an electronic detonator second detector (1), an electronic detonator universal tester (6), a piezoelectric sensor (9), an explosion-proof box (10), an electronic detonator (11), a detonator leg wire (8) and a communication bus (7), it is characterized in that the electronic detonator (11) is arranged in the explosion-proof box (10), and the detonator leg wire (8) of the electronic detonator (11) is electrically connected with the electronic detonator second measuring instrument (1) through a lead wire by a communication bus (7), the electronic detonator second tester (1) is electrically connected with the electronic detonator universal tester (6) through a lead, the probe end of the piezoelectric sensor (9) is fixed on the explosion-proof box (10), and the other end of the piezoelectric sensor (9) far away from the explosion-proof box (10) is electrically connected with the electronic detonator universal tester (6) through a lead;
the top of the outer wall of the front face of the electronic detonator second measuring instrument (1) is provided with a display screen (2), a key area (4) is arranged on the outer wall, close to the position right below the display screen (2), of the electronic detonator second measuring instrument (1), and connectors (3) are arranged on two sides of the outer wall of the top of the electronic detonator second measuring instrument (1).
2. The electronic detonator second quantity detection device according to claim 1, wherein the electronic detonator second quantity measurement instrument (1) comprises a control module (12), a control unit (19), a power supply module (21), a display module (16), an authorization key (13), a key (22), a detonation double key (23), a signal sending module (14), a signal receiving module (15), a data exchange module (18) and a synchronous signal sending module (17).
3. The electronic detonator second quantity detection device according to claim 2, wherein the control module (12) is electrically connected with the power module (21), the display module (16), the authorization key (13), the key (22), the detonation double key (23), the signal transmission module (14), the signal receiving module (15), the data exchange module (18) and the synchronous signal transmission module (17) through leads.
4. The electronic detonator second quantity detection device according to claim 2, wherein the control unit (19) is electrically connected with the piezoelectric signal conditioning module (20), the display device (24), the power module (21), the data exchange module (18), the synchronous signal sending module (17) and the control button (25) through wires.
CN201922438534.3U 2019-12-30 2019-12-30 Second quantity detection device for electronic detonator Active CN212179707U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201922438534.3U CN212179707U (en) 2019-12-30 2019-12-30 Second quantity detection device for electronic detonator

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201922438534.3U CN212179707U (en) 2019-12-30 2019-12-30 Second quantity detection device for electronic detonator

Publications (1)

Publication Number Publication Date
CN212179707U true CN212179707U (en) 2020-12-18

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN201922438534.3U Active CN212179707U (en) 2019-12-30 2019-12-30 Second quantity detection device for electronic detonator

Country Status (1)

Country Link
CN (1) CN212179707U (en)

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