Seismic exploration type electronic detonator

By designing the installation and protection components, the problem of inconvenient side protection during the use of electronic detonators for seismic exploration has been solved, enabling convenient removal and preventing damage, thus extending the service life of electronic detonators.

CN224066029UActive Publication Date: 2026-03-31XINDONGYUAN (GUANGZHOU) TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-05-20
Publication Date
2026-03-31

AI Technical Summary

Technical Problem

When using electronic detonators for seismic exploration, they need to be pushed out from the bottom of the protective cover, which makes side protection inconvenient and prone to damage.

Method used

An electronic detonator comprising mounting components, protective components, and fixing components has been designed. Through the cooperation of the mounting base, rotating bar, protective sleeve, guide bar, limiting bar, and fixing components, the detonator is protected and easily removed, avoiding side impacts.

Benefits of technology

It effectively protects the sides of the electronic detonator, preventing damage, extending its service life, and saving costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of electronic detonator equipment, in particular to a seismic exploration type electronic detonator which comprises a detonator body, a mounting assembly, a protection assembly and a fixing assembly, the mounting assembly comprises a mounting seat, a rotating strip, a protective sleeve, guide strips, a limiting strip and a mounting plate, the mounting seat is detachably connected with the detonator body, the rotating strip is fixedly connected with the mounting seat, the protective sleeve is in threaded connection with the mounting seat, and the multiple guide strips are fixedly connected with the mounting seat and located at the top of the mounting seat; the plurality of limiting strips are respectively and fixedly connected with the mounting seat, the mounting plate is fixedly connected with the guide strip and is positioned at the top of the guide strip, the protection assembly is connected with the protection sleeve, and the fixing assembly is positioned at the top of the detonator body. The side surface of the electronic detonator is inconvenient to protect, and the electronic detonator is easy to damage.
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Description

TECHNICAL FIELD

[0001] The utility model relates to electronic detonator equipment technical field especially relates to a seismic exploration type electronic detonator. BACKGROUND

[0002] Electronic detonator, also called digital electronic detonator, digital detonator or industrial digital electronic detonator, is an electric detonator that uses an electronic control module to control the detonation process. In order to remove the electronic detonator by pulling out the antenna or foot line, the antenna or foot line is easily disconnected or directly damaged under the gravity of the electronic detonator.

[0003] The existing publication No. CN214792817U discloses an electronic detonator for seismic exploration, which comprises an electronic detonator, an anti-interference protective cover arranged outside the electronic detonator, an anti-interference metal plate arranged in the middle of the inside of the anti-interference protective cover, a movable anti-interference protective cover arranged on one side of the anti-interference protective cover, and a movable anti-interference metal plate arranged in the middle of the inside of the movable anti-interference protective cover. The electronic detonator is pushed upward from the bottom by the mutual cooperation between the push plate, the push rod one, the push rod two, the stop block, the clamping plate, the protective plate, the sliding groove, the clamping block, the limiting hole, and the limiting block, so as to facilitate the removal of the electronic detonator from the anti-interference protective cover, move the electronic detonator to the outside of the anti-interference protective cover, avoid damage caused by pulling out the antenna or foot line to remove the electronic detonator, prolong the service life, and save the investment cost.

[0004] However, the above-mentioned electronic detonator for seismic exploration needs to be pushed out of the protective cover from the bottom of the protective cover, which is not convenient for protecting the side surface of the electronic detonator and is easy to cause damage to the electronic detonator. UTILITY MODEL CONTENTS

[0005] The utility model aims to provide a seismic exploration type electronic detonator, which solves the problem that the electronic detonator for seismic exploration needs to be pushed out of the protective cover from the bottom of the protective cover, which is not convenient for protecting the side surface of the electronic detonator and is easy to cause damage to the electronic detonator.

[0006] The utility model provides a kind of electronic detonator of seismic exploration, including detonator body, installation component, protection component and fixed component;The installation component includes mounting seat, rotating strip, protective sleeve, guide strip, limit strip and mounting plate, the mounting seat is detachably connected with the detonator body, and is located at the bottom of the detonator body, the rotating strip is fixedly connected with the mounting seat, and is located at the bottom of the mounting seat, the protective sleeve is threadedly connected with the mounting seat, and is located at the outside of the mounting seat, the number of guide strips is multiple, multiple guide strips are fixedly connected with the mounting seat respectively, and are located at the top of the mounting seat respectively, the number of limit strips is multiple, multiple limit strips are fixedly connected with the mounting seat respectively, and are located at the outside of the guide strip respectively, the mounting plate is fixedly connected with the guide strip, and is located at the top of the guide strip, the protection component is connected with the protective sleeve, and the fixed component is located at the top of the detonator body.

[0007] Among them, the installation component further includes sealing plate, pull rod and mounting bolt, the sealing plate is fixedly connected with the mounting plate, and is located at the top of the mounting plate, the pull rod is fixedly connected with the sealing plate, and is located at the top of the sealing plate, the number of mounting bolts is multiple, multiple mounting bolts are threadedly connected with the sealing plate respectively, and pass through the sealing plate respectively.

[0008] Among them, the protection component includes shell and protective sleeve, the shell is detachably connected with the protective sleeve, and is located at the outside of the protective sleeve, the protective sleeve is fixedly connected with the shell, and is located between the shell and the limit strip.

[0009] Among them, the middle of the protective sleeve is provided with an installation groove, the inner wall surface of the installation groove is provided with multiple limit grooves, and the top of the protective sleeve is provided with multiple mounting holes.

[0010] Among them, the fixed component includes fixed seat, fixed spring and fixed plate, the fixed seat is fixedly connected with the mounting plate, and is located at the bottom of the mounting plate, the fixed spring is fixedly connected with the fixed seat, and is located at the bottom of the fixed seat, and the fixed plate is fixedly connected with the fixed spring, and is located at the bottom of the fixed spring.

[0011] The utility model discloses an earthquake exploration type electronic detonator, the mounting seat is used for protecting the bottom of detonator body, the rotation strip is used for controlling the mounting seat, and the mounting seat is installed in the inside of the protective sleeve, the protective sleeve is used for fixing the mounting seat, and the detonator body is provided with the protection effect, the guide strip provides the guiding effect for the fixed component, and the detonator body is provided with the protection effect, the limiting strip provides the guiding effect for the protective sleeve, and the protective sleeve is installed in the protective cover, and the device is installed and fixed, the mounting plate provides the supporting effect for the guide strip and the limiting strip, when the detonator body is taken out from the protective cover, the mounting bolt is twisted down, the sealing plate is driven the whole mounting assembly and the detonator body in its inside along the limiting strip and the limiting groove and is taken out from the protective cover through the pull rod, and the mounting seat is rotated down through the rotation strip, and the detonator body can be taken out from the mounting seat and the protective sleeve at this moment, and the detonator body is taken, when the detonator body is located in the protective cover, and the side of detonator body can also be supported and protected through the guide strip and the limiting strip, avoids the knock, solves the problem that the electronic detonator is pushed out from the bottom of protective cover and is inconvenient to protect the side of electronic detonator when the earthquake exploration electronic detonator is used, and the electronic detonator is damaged. BRIEF DESCRIPTION OF DRAWINGS

[0012] In order to make the technical scheme of the embodiments of the present application or the prior art clearer, the attached drawings needed to be used in the embodiments or prior art description will be briefly introduced.

[0013] Figure 1 It is the whole structure schematic diagram of earthquake exploration type electronic detonator of the first embodiment of the utility model.

[0014] Figure 2 It is the structure schematic diagram of mounting assembly of the first embodiment of the utility model.

[0015] Figure 3 It is the structure schematic diagram of protection assembly of the first embodiment of the utility model.

[0016] Figure 4 It is the structure schematic diagram of fixed component of the first embodiment of the utility model.

[0017] In the figure: 101 - detonator body, 102 - mounting seat, 103 - rotating strip, 104 - protective sleeve, 105 - guide strip, 106 - limiting strip, 107 - mounting plate, 108 - sealing plate, 109 - pull rod, 110 - mounting bolt, 111 - shell, 112 - protective sleeve, 113 - mounting groove, 114 - limiting groove, 115 - mounting hole, 116 - fixing seat, 117 - fixing spring, 118 - fixing plate. DETAILED DESCRIPTION

[0018] The embodiments of the present application are described in detail below, examples of which are shown in the accompanying drawings. The embodiments described below by referring to the accompanying drawings are exemplary and are intended to explain the present application, and cannot be understood as a limitation of the present application.

[0019] The first embodiment of the present application is:

[0020] Please refer to Figures 1 to 4 , wherein, Figure 1 is the overall structure diagram of the seismic exploration type electronic detonator of the first embodiment of the present application, Figure 2 is the structure diagram of the mounting assembly of the first embodiment of the present application, Figure 3 is the structure diagram of the protection assembly of the first embodiment of the present application, Figure 4 is the structure diagram of the fixing assembly of the first embodiment of the present application, the present application provides a seismic exploration type electronic detonator, which comprises a detonator body 101, a mounting assembly, a protection assembly and a fixing assembly, the mounting assembly comprises a mounting seat 102, a rotating strip 103, a protective sleeve 104, a guide strip 105, a limiting strip 106, a mounting plate 107, a sealing plate 108, a pull rod 109 and a mounting bolt 110, the protection assembly comprises a shell 111 and a protective sleeve 112, and the fixing assembly comprises a fixing seat 116, a fixing spring 117 and a fixing plate 118; the foregoing scheme solves the problem that the electronic detonator for seismic exploration needs to be pushed out of the protective cover from the bottom of the protective cover when in use, which is inconvenient for protecting the side surface of the electronic detonator and is easy to cause damage to the electronic detonator.

[0021] For this specific embodiment, the mounting base 102 is detachably connected with the detonator body 101 and located at the bottom of the detonator body 101, the rotating strip 103 is fixedly connected with the mounting base 102 and located at the bottom of the mounting base 102, the protective sleeve 104 is threadedly connected with the mounting base 102 and located outside the mounting base 102, the number of the guide strips 105 is multiple, the multiple guide strips 105 are respectively fixedly connected with the mounting base 102 and respectively located at the top of the mounting base 102, the number of the limiting strips 106 is multiple, the multiple limiting strips 106 are respectively fixedly connected with the mounting base 102 and respectively located outside the guide strips 105, the mounting plate 107 is fixedly connected with the guide strips 105 and located at the top of the guide strips 105, the protective assembly is connected with the protective sleeve 104, the fixing assembly is located at the top of the detonator body 101, the mounting base 102 is used for protecting the bottom of the detonator body 101, the rotating strip 103 is used for controlling the mounting base 102, facilitating the mounting of the mounting base 102 into the inside of the protective sleeve 104, the protective sleeve 104 is used for fixing the mounting base 102 and providing a protection function for the detonator body 101, the guide strips 105 provide a guiding function for the fixing assembly and provide a protection function for the detonator body 101, the limiting strips 106 provide a guiding function for the protective sleeve 104, facilitating the mounting of the protective sleeve 104 into the protective sleeve 112, facilitating the mounting and fixing of the device, the mounting plate 107 provides a supporting function for the guide strips 105 and the limiting strips 106, when the detonator body 101 is taken out of the protective sleeve 112, the mounting bolt 110 is unscrewed, the sealing plate 108 and the entire mounting assembly and the detonator body 101 inside the mounting assembly are taken out of the protective sleeve 112 along the limiting strips 106 and the limiting grooves 114 through the pull rod 109, then the mounting base 102 is unscrewed through the rotating strip 103, at this time, the detonator body 101 can be taken out of the mounting base 102 and the protective sleeve 104, facilitating the taking of the detonator body 101, when the detonator body 101 is located inside the protective sleeve 112, the side surface of the detonator body 101 can also be supported and protected through the guide strips 105 and the limiting strips 106, avoiding collision.

[0022] The sealing plate 108 is fixedly connected with the mounting plate 107 and located at the top of the mounting plate 107, the pull rod 109 is fixedly connected with the sealing plate 108 and located at the top of the sealing plate 108, the number of the mounting bolts 110 is plural, the plurality of mounting bolts 110 are respectively in threaded connection with the sealing plate 108 and respectively pass through the sealing plate 108, the sealing plate 108 is used for sealing the top of the shell 111, the sealing plate 108 is controlled through the pull rod 109, and the mounting bolts 110 are used for fixing the sealing plate 108 at the top of the protective sleeve 112 and the shell 111.

[0023] Secondly, the shell 111 is detachably connected with the protective sleeve 104 and located outside the protective sleeve 104, the protective sleeve 112 is fixedly connected with the shell 111 and located between the shell 111 and the limiting strip 106, the shell 111 is used for providing support and protection for the whole device, and the protective sleeve 112 is used for shielding signals to avoid that external signals affect the detonator body 101 which is not enabled in the shell 111.

[0024] Thirdly, the middle of the protective sleeve 112 is provided with a mounting groove 113, the inner wall surface of the mounting groove 113 is provided with a plurality of limiting grooves 114, and the top of the protective sleeve 112 is provided with a plurality of mounting holes 115, the mounting groove 113 is used for limiting the protective sleeve 104, the limiting grooves 114 are matched with the limiting strip 106 and used for guiding the protective sleeve 104, and the mounting holes 115 are matched with the mounting bolts 110 and used for mounting and fixing the sealing plate 108.

[0025] Finally, the fixing seat 116 is fixedly connected with the mounting plate 107 and located at the bottom of the mounting plate 107, the fixed spring 117 is fixedly connected with the fixing seat 116 and located at the bottom of the fixing seat 116, and the fixed plate 118 is fixedly connected with the fixed spring 117 and located at the bottom of the fixed spring 117, the fixing seat 116 provides support for the fixed spring 117, the fixed spring 117 provides elastic force for the fixed plate 118, and the fixed plate 118 is used for fixing the top of the detonator body 101, when the detonator body 101 is installed, the fixed plate 118 is pressed downward by the elastic force provided by the fixed spring 117, the detonator body 101 is pressed between the fixed plate 118 and the mounting seat 102, and the detonator body 101 is fixed.

[0026] The mounting seat 102 is used for protecting the bottom of the electronic detonator body 101, the rotating strip 103 is used for controlling the mounting seat 102, facilitating the mounting seat 102 to be mounted into the protective sleeve 104, the protective sleeve 104 is used for fixing the mounting seat 102 and providing protection for the electronic detonator body 101, the guide strip 105 provides a guide for the fixing assembly and provides protection for the electronic detonator body 101, the limiting strip 106 provides a guide for the protective sleeve 104, facilitating the protective sleeve 104 to be mounted into the protective cover 112, facilitating the device to be mounted and fixed, the mounting plate 107 provides support for the guide strip 105 and the limiting strip 106, when the electronic detonator body 101 is taken out of the protective cover 112, the mounting bolt 110 is unscrewed, the sealing plate 108 drives the whole mounting assembly and the electronic detonator body 101 in the mounting assembly to be taken out of the protective cover 112 along the limiting strip 106 and the limiting groove 114 through the pull rod 109, and then the mounting seat 102 is unscrewed through the rotating strip 103, at this time, the electronic detonator body 101 can be taken out of the mounting seat 102 and the protective sleeve 104, facilitating the electronic detonator body 101 to be taken, when the electronic detonator body 101 is located in the protective cover 112, the side of the electronic detonator body 101 can also be supported and protected through the guide strip 105 and the limiting strip 106, avoiding collision, solving the problem that the electronic detonator needs to be pushed out of the bottom of the protective cover when the electronic detonator is used for seismic exploration, the side of the electronic detonator is not convenient to protect, and the electronic detonator is prone to be damaged.

[0027] The above disclosure is only one or more preferred embodiments of the present application, which cannot limit the scope of the present application. Those skilled in the art can understand that the above-mentioned embodiments can be implemented in whole or in part, and equivalent changes made according to the claims of the present application still belong to the scope covered by the present application.

Claims

1. A seismic exploration electronic detonator, comprising a detonator body, characterized in that, It also includes a mounting assembly, a protection assembly and a fixing assembly; The mounting assembly comprises a mounting seat, a rotating bar, a protective sleeve, a guide bar, a limiting bar and a mounting plate, the mounting seat is detachably connected with the detonator body and located at the bottom of the detonator body, the rotating bar is fixedly connected with the mounting seat and located at the bottom of the mounting seat, the protective sleeve is threadedly connected with the mounting seat and located outside the mounting seat, the guide bar is provided in plurality, the plurality of guide bars are fixedly connected with the mounting seat respectively and located at the top of the mounting seat, the limiting bar is provided in plurality, the plurality of limiting bars are fixedly connected with the mounting seat respectively and located outside the guide bar, the mounting plate is fixedly connected with the guide bar and located at the top of the guide bar, the protection assembly is connected with the protective sleeve, and the fixing assembly is located at the top of the detonator body.

2. The seismic exploration electronic detonator according to claim 1, characterized in that, The mounting assembly further comprises a sealing plate, a pull rod and a mounting bolt, the sealing plate is fixedly connected with the mounting plate and located at the top of the mounting plate, the pull rod is fixedly connected with the sealing plate and located at the top of the sealing plate, and the mounting bolt is provided in plurality, the plurality of mounting bolts are threadedly connected with the sealing plate respectively and pass through the sealing plate respectively.

3. The seismic exploration electronic detonator according to claim 1, characterized in that, The protection assembly comprises a shell and a protective sleeve, the shell is detachably connected with the protective sleeve and located outside the protective sleeve, and the protective sleeve is fixedly connected with the shell and located between the shell and the limiting bar.

4. The seismic exploration electronic detonator according to claim 3, characterized in that, An installation groove is arranged in the middle of the protective sleeve, a plurality of limiting grooves are arranged on the inner wall surface of the installation groove, and a plurality of installation holes are arranged at the top of the protective sleeve.

5. The seismic exploration electronic detonator according to claim 1, characterized in that, The fixing assembly comprises a fixing seat, a fixing spring and a fixing plate, the fixing seat is fixedly connected with the mounting plate and located at the bottom of the mounting plate, the fixing spring is fixedly connected with the fixing seat and located at the bottom of the fixing seat, and the fixing plate is fixedly connected with the fixing spring and located at the bottom of the fixing spring.