Electronic detonator detonation control device storage seat and portable box comprising same
By designing a suitable storage base and using elastic materials to store the electronic detonator detonation control device, the problem of damage to the device during transportation was solved, achieving safe and reliable carrying and quick device location.
Patent Information
- Application Number
- CN202520681687.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-11
- Publication Date
- 2026-02-27
- Estimated Expiration
- 2035-04-11
AI Technical Summary
In the existing technology, the detonation control device of electronic detonator is easily damaged during carrying and transportation, and is difficult to store effectively, which affects the smooth progress of blasting missions.
A storage holder for an electronic detonator initiation control device has been designed, comprising a storage cavity for the initiation driver, a storage cavity for the initiation controller, and a storage cavity for the scanner and input device. The device is stored using an adapted inner wall structure and elastic material, ensuring both safety and convenience.
It improves the transport safety and portability of detonation control devices, reduces collision damage between devices, and improves the efficiency of detonation preparation operations.
Smart Images

Figure CN223954783U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the field of initiating explosive device networking and detonation equipment, especially to an electronic detonator detonation control device storage seat and a portable box containing the same. BACKGROUND
[0002] Currently, electronic detonators are widely used in open-pit mines, mine rock separation, cofferdam demolition, tunnels, town foundations, mountain reconstruction and danger-removal demolition blasting, etc. In the blasting process, all electronic detonators need to be connected in parallel through two control buses at the port of an electronic detonator detonation controller. Due to the load capacity limitation of a single electronic detonator detonation controller, the number of detonators that can be carried by each electronic detonator detonation controller has an upper limit, and the load capacity of a single electronic detonator detonation controller is usually no more than 500 shots within 1000 meters.
[0003] To meet the detonation operation needs of a large number of electronic detonators exceeding 500 shots, the R&D personnel of the applicant proposed a new scheme of using an electronic detonator detonation driver to control multiple pairs of control buses. Specifically, no more than 500 electronic detonators are connected on each pair of control buses arranged in pairs, and a multi-shot electronic detonator scanning collector is used to scan and collect electronic detonator identity information, and the electronic detonator detonation driver of the electronic detonator detonation controller is used to realize communication, networking and detonation control of the multi-shot electronic detonators connected on each pair of control bus interfaces, so as to realize networking and detonation control of electronic detonators exceeding 500 shots and meet the detonation operation needs of a large number of electronic detonators.
[0004] However, when the blasting personnel need to reach the designated location to perform the blasting task, they need to carry many tools, and the electronic detonator detonation control device including the electronic detonator detonation controller, the electronic detonator detonation driver and the scanning collector is transported together with other tools that need to be carried, which is easy to cause damage to one or more of the electronic detonator detonation controller, the electronic detonator detonation driver and the scanning collector, causing inconvenience to the blasting task. In addition, the key to carrying the electronic detonator detonation control device including the electronic detonator detonation controller, the electronic detonator detonation driver and the scanning collector lies in its reasonable storage. Therefore, there is an urgent need for a storage structure that is conducive to reliably storing the electronic detonator detonation control device. SUMMARY
[0005] The utility model aims at overcoming at least one of the above-mentioned prior art deficiencies, providing an electronic detonator detonation control device storage seat that is conducive to reliably storing the electronic detonator detonation control device, and further providing an electronic detonator detonation control device portable box.
[0006] The technical solution of the utility model to solve the above technical problems is as follows:
[0007] According to an aspect of the present application, an electronic detonator initiation control device receiving seat is provided, comprising:
[0008] A receiving body is provided with a side-opened initiation driver receiving cavity for placing and receiving an initiation driver for initiating and driving a plurality of electronic detonators electrically connected with the control bus;
[0009] The receiving body is also provided with a side-opened initiation controller receiving cavity for placing and receiving an initiation controller, and the initiation controller can be in communication connection with the initiation driver and send initiation control instructions to the initiation driver.
[0010] The receiving body is also provided with a side-opened scanning and inputting device receiving cavity for placing and receiving a scanning and inputting device for scanning and obtaining the identity information of a plurality of electronic detonators electrically connected with the initiation driver through the control bus, and the scanning and inputting device can be in communication connection with the initiation controller.
[0011] The beneficial effects of the present application are that the receiving body in the embodiment is provided with an initiation driver receiving cavity, an initiation controller receiving cavity and a scanning and inputting device receiving cavity, so that the initiation driver can be placed and received in the initiation driver receiving cavity, the initiation controller can be placed and received in the initiation controller receiving cavity, and the scanning and inputting device can be placed and received in the scanning and inputting device receiving cavity, thereby facilitating the reliable receiving and protection of the initiation driver, the initiation controller and the scanning and inputting device through the receiving body, and improving the safety of transporting the initiation driver, the initiation controller and the scanning and inputting device. In addition, the receiving of the initiation driver, the initiation controller and the scanning and inputting device through the receiving body facilitates the quick finding of any one or more of the initiation driver, the initiation controller and the scanning and inputting device when needed, and improves the initiation preparation operation efficiency.
[0012] In addition, on the basis of the above technical solutions, the present application can also be improved as follows, and can have the following additional technical features.
[0013] According to an embodiment of the present application, the initiation driver receiving cavity is side-opened, the inner side wall profile of the initiation driver receiving cavity is matched with the outer side profile of the initiation driver, the initiation driver is matched and placed in the initiation driver receiving cavity, and the outer side wall of the initiation driver opposite to the inner side wall of the initiation driver receiving cavity is matched with the inner side wall of the initiation driver receiving cavity.
[0014] The inner side wall profile of the detonation driver accommodating cavity in the embodiment is matched with the outer side profile of the detonation driver, which is conducive to placing the detonation driver in the detonation driver accommodating cavity, and can make the outer side wall of the detonation driver opposite to the inner side wall of the detonation driver accommodating cavity respectively adhere to the inner side wall of the detonation driver accommodating cavity, reduce the gap formed between the outer side wall of the detonation driver and the inner side wall of the detonation driver accommodating cavity, and is conducive to reducing or avoiding the collision between the detonation driver and the inner side wall of the detonation driver accommodating cavity during transportation, thereby being conducive to improving the safety and reliability of transporting the detonation driver. Further, the upper side of the detonation driver accommodating cavity is open, which is convenient for placing the detonation driver in the detonation driver accommodating cavity and also convenient for taking out the detonation driver from the detonation driver accommodating cavity.
[0015] According to one embodiment of the present application, the accommodating body is further provided with a side-opened charging device accommodating cavity, which is used for placing and accommodating charging devices, and is communicated with the detonation driver accommodating cavity.
[0016] In the embodiment, the charging device accommodating cavity is provided on the accommodating body, which is convenient for placing and accommodating charging devices in the charging device accommodating cavity, thereby being conducive to reliably accommodating and protecting the charging devices by the accommodating body and improving the safety of transporting the charging devices. Further, the charging devices are accommodated by the accommodating body, which is conducive to quickly finding the charging devices when needed and improving the efficiency of detonation preparation operation. In addition, the charging device accommodating cavity is communicated with the detonation driver accommodating cavity, which is convenient for opening the charging device accommodating cavity in the inner side of the detonation driver accommodating cavity with a larger size and placing the charging devices together with the detonation driver with a larger size.
[0017] According to one embodiment of the present application, the charging device accommodating cavity includes a charging plug accommodating cavity, a charging wire accommodating cavity and a mobile power supply accommodating cavity, and the charging device includes a charging plug, a charging wire and a mobile power supply. The charging plug accommodating cavity is used for placing the charging plug, the charging wire accommodating cavity is used for placing the charging wire, and the mobile power supply accommodating cavity is used for placing the mobile power supply, and the charging plug accommodating cavity, the charging wire accommodating cavity and the mobile power supply accommodating cavity are respectively communicated with the detonation driver accommodating cavity.
[0018] The charging device accommodating cavity in the embodiment includes a charging plug accommodating cavity, a charging wire accommodating cavity and a mobile power supply accommodating cavity, which is convenient for placing and accommodating the charging plug in the charging plug accommodating cavity, placing and accommodating the charging wire in the charging wire accommodating cavity and placing and accommodating the mobile power supply in the mobile power supply accommodating cavity, thereby being conducive to reliably accommodating and protecting the charging plug, the charging wire and the mobile power supply by the accommodating body and improving the safety of transporting the charging plug, the charging wire and the mobile power supply.
[0019] According to one embodiment of the present application, the upper side of the detonation controller receiving cavity is open, the inner side wall profile of the detonation controller receiving cavity is matched with the outer side profile of the detonation controller, the detonation controller is placed in the detonation controller receiving cavity, and the outer side wall of the detonation controller facing the inner side wall of the detonation controller receiving cavity respectively matches the inner side wall of the detonation controller receiving cavity.
[0020] The inner side wall profile of the detonation controller receiving cavity in the embodiment is matched with the outer side profile of the detonation controller, which is beneficial to place the detonation controller in the detonation controller receiving cavity, can make the outer side wall of the detonation controller facing the inner side wall of the detonation controller receiving cavity respectively match the inner side wall of the detonation controller receiving cavity, reduce the gap formed between the outer side wall of the detonation controller and the inner side wall of the detonation controller receiving cavity, is beneficial to reduce or avoid the collision between the detonation controller and the inner side wall of the detonation controller receiving cavity during transportation, thereby is beneficial to improve the safety and reliability of transporting the detonation controller; further, the upper side of the detonation controller receiving cavity is open, which is convenient for placing the detonation controller into the detonation controller receiving cavity and also convenient for taking out the detonation controller from the detonation controller receiving cavity.
[0021] According to one embodiment of the present application, the upper side of the scanning inputter receiving cavity is open, the inner side wall profile of the scanning inputter receiving cavity is matched with the outer side profile of the scanning inputter, the scanning inputter is placed in the scanning inputter receiving cavity, and the outer side wall of the scanning inputter facing the inner side wall of the scanning inputter receiving cavity respectively matches the inner side wall of the scanning inputter receiving cavity.
[0022] The inner side wall profile of the scanning inputter receiving cavity in the embodiment is matched with the outer side profile of the scanning inputter, which is beneficial to place the scanning inputter in the detonation controller receiving cavity, can make the outer side wall of the scanning inputter facing the inner side wall of the scanning inputter receiving cavity respectively match the inner side wall of the scanning inputter receiving cavity, reduce the gap formed between the outer side wall of the scanning inputter and the inner side wall of the scanning inputter receiving cavity, is beneficial to reduce or avoid the collision between the scanning inputter and the inner side wall of the scanning inputter receiving cavity during transportation, thereby is beneficial to improve the safety and reliability of transporting the scanning inputter; further, the upper side of the scanning inputter receiving cavity is open, which is convenient for placing the scanning inputter into the scanning inputter receiving cavity and also convenient for taking out the scanning inputter from the scanning inputter receiving cavity.
[0023] According to one embodiment of the present application, the material of the receiving body is elastic material, the detonation driver is placed in the detonation driver receiving cavity, and the outer side wall of the detonation driver facing the inner side wall of the detonation driver receiving cavity respectively elastically extrudes the inner side wall of the detonation driver receiving cavity.
[0024] The detonation controller is placed in the detonation controller receiving cavity, and the outer side wall of the detonation controller opposite to the inner side wall of the detonation controller receiving cavity is elastically extruded by the inner side wall of the detonation controller receiving cavity, respectively.
[0025] The scanning input device is placed in the scanning input device receiving cavity, and the outer side wall of the scanning input device opposite to the inner side wall of the scanning input device receiving cavity is elastically extruded by the inner side wall of the scanning input device receiving cavity, respectively.
[0026] The material of the receiving body in the embodiment is an elastic material, the outer side wall of the detonation driver opposite to the inner side wall of the detonation driver receiving cavity is elastically extruded by the inner side wall of the detonation driver receiving cavity, respectively, the inner side wall of the detonation driver receiving cavity can elastically extrude the outer side wall of the detonation driver, so that the detonation driver can be limited and clamped by the elastic extrusion force formed, thereby avoiding the detonation driver from falling out of the detonation driver receiving cavity under non-human operation; similarly, the outer side wall of the detonation controller opposite to the inner side wall of the detonation controller receiving cavity is elastically extruded by the inner side wall of the detonation controller receiving cavity, respectively, the inner side wall of the detonation controller receiving cavity can elastically extrude the outer side wall of the detonation controller, so that the detonation controller can be limited and clamped by the elastic extrusion force formed, thereby avoiding the detonation controller from falling out of the detonation controller receiving cavity under non-human operation; further, the outer side wall of the scanning input device opposite to the inner side wall of the scanning input device receiving cavity is elastically extruded by the inner side wall of the scanning input device receiving cavity, respectively, the inner side wall of the scanning input device receiving cavity can elastically extrude the outer side wall of the scanning input device, so that the scanning input device can be limited and clamped by the elastic extrusion force formed, thereby avoiding the scanning input device from falling out of the scanning input device receiving cavity under non-human operation; thus, the receiving body in the embodiment can further improve the safety and reliability of transporting the detonation driver, the detonation controller and the scanning input device.
[0027] According to one embodiment of the present application, the material of the receiving body is an elastic material, and a plurality of elastic deformation avoidance grooves are arranged on the circumferential outer wall of the receiving body in the horizontal direction.
[0028] The plurality of elastic deformation avoidance grooves are arranged on the circumferential outer wall of the receiving body in the horizontal direction in the embodiment, which is beneficial to the elastic deformation of the receiving body when it is extruded in the circumferential direction, and facilitates the placement of the receiving body in the box body and the elastic extrusion with the inner side wall of the box body to achieve limiting.
[0029] According to another aspect of the present application, a portable box of an electronic detonator initiation control device is provided, which comprises:
[0030] The box body is provided with a one-side open placement receiving cavity.
[0031] A movable cover is arranged on the box body and can have an open position and a closed position relative to the box body.
[0032] The electronic detonator initiation control device storage seat described above, the storage body is placed in the placement storage cavity and located between the movable cover and the box body.
[0033] The electronic detonator initiation control device portable box in this embodiment includes the electronic detonator initiation control device storage seat described above, the storage body is provided with an initiation driver storage cavity, an initiation controller storage cavity and a scanning input device storage cavity, so as to facilitate the placement and storage of the initiation driver in the initiation driver storage cavity, the placement and storage of the initiation controller in the initiation controller storage cavity, and the placement and storage of the scanning input device in the scanning input device storage cavity, thereby facilitating the reliable storage and protection of the initiation driver, the initiation controller and the scanning input device through the storage body; further, the storage body can be placed in the placement storage cavity, the storage body is protected by the box body, and the initiation driver, the initiation controller and the scanning input device are limited between the movable cover and the box body, thereby facilitating the transportation and carrying of the initiation driver, the initiation controller and the scanning input device through the electronic detonator initiation control device portable box in this embodiment.
[0034] According to one embodiment of the present application, the inner side wall of the box body is spaced apart in the vertical direction and provided with a plurality of limiting protrusions, the plurality of limiting protrusions protrude towards the inner side of the placement storage cavity and vertically extend in the vertical direction, and the circumferential outer wall of the storage body in the horizontal direction is provided with a plurality of limiting through grooves one by one opposite to the plurality of limiting protrusions, the plurality of limiting through grooves vertically pass through the storage body in the vertical direction, and the limiting protrusions arranged opposite to each other extend into the limiting through grooves.
[0035] The inner side wall of the box body in this embodiment is spaced apart in the vertical direction and provided with a plurality of limiting protrusions, the circumferential outer wall of the storage body in the horizontal direction is provided with a plurality of limiting through grooves one by one opposite to the plurality of limiting protrusions, and the limiting protrusions arranged opposite to each other extend into the limiting through grooves, thereby limiting the storage body placed in the placement storage cavity, avoiding the circumferential outer wall of the storage body in the horizontal direction colliding with the inner side wall of the electronic detonator initiation control device portable box during transportation of the electronic detonator initiation control device portable box, and causing the initiation driver, the initiation controller and the scanning input device to fall off.
[0036] According to one embodiment of the present application, the electronic detonator initiation control device portable box further includes:
[0037] An elastic pad is arranged on the inner side wall of the movable cover body opposite to the receiving body, and when the movable cover body is in the closed position, the elastic pad is pressed between the inner side wall of the movable cover body and the receiving body and is elastically deformed.
[0038] In the embodiment, the elastic pad is arranged between the inner side wall of the movable cover body and the receiving body, and when the movable cover body is in the closed position, the elastic pad is pressed between the inner side wall of the movable cover body and the receiving body, which is beneficial to providing elastic pressing force to the detonation driver placed on the receiving body through the elastic pad and achieving limiting during transportation of the portable box of the electronic detonator initiation control device, and further improves the safety and reliability of the transportation of the detonation driver. BRIEF DESCRIPTION OF DRAWINGS
[0039] In order to more clearly illustrate the technical solutions in the present application, the drawings needed in the embodiment description will be briefly introduced. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can be obtained by those skilled in the art without creative labor.
[0040] Figure 1 FIG. 1 is a structural schematic view of the electronic detonator initiation control device receiving seat in the present application;
[0041] Figure 2 FIG. 2 is a structural schematic view of the electronic detonator initiation control device receiving seat in the present application; Figure 1
[0042] FIG. 3 is a top view of the electronic detonator initiation control device receiving seat in the present application after being adjusted; Figure 3 Figure 1 FIG. 4 is a structural schematic view of the portable box of the electronic detonator initiation control device in the present application;
[0043] Figure 4 FIG. 5 is a top view of the portable box of the electronic detonator initiation control device in the present application after being adjusted;
[0044] Figure 5 Figure 4 FIG. 6 is a structural schematic view of the portable box of the electronic detonator initiation control device in the present application after the movable cover body is removed;
[0045] Figure 6 FIG. 7 is a top view of the portable box of the electronic detonator initiation control device in the present application after the movable cover body is removed; Figure 4 DETAILED DESCRIPTION
[0046] In order to make the purpose, technical solutions and advantages of the present application more clear, the following will further describe the embodiments of the present application in combination with the drawings.
[0047] In order to enable the above-mentioned purposes, features and advantages of the present application to be more clearly understood, the present application will be further described in detail below with reference to the drawings and specific embodiments. It should be noted that the embodiments of the present application and the features in the embodiments can be combined with each other without conflict.
[0048] In the following description, many specific details are set forth in order to provide a thorough understanding of the present application, but the present application can also be practiced without other different ways from those described herein, therefore, the protection scope of the present application is not limited by the specific embodiments disclosed below.
[0049] In one aspect of the present application, a kind of electronic detonator initiation control device receiving seat is provided, as shown in Figures 1 to 3 As shown in the figure, it comprises:
[0050] The receiving body 1 is provided with a one-side open initiation driver receiving cavity 10, the initiation driver receiving cavity 10 is used to place and receive the initiation driver 2, and the initiation driver 2 is used to initiate the drive of multiple electronic detonators electrically connected with the control bus;
[0051] The receiving body 1 is also provided with a one-side open initiation controller receiving cavity 11, the initiation controller receiving cavity 11 is used to place and receive the initiation controller 3, and the initiation controller 3 can be connected with the initiation driver 2 and can send initiation control instructions to the initiation driver 2;
[0052] The receiving body 1 is also provided with a one-side open scanning inputter receiving cavity 12, the scanning inputter receiving cavity 12 is used to place and receive the scanning inputter 4, and the scanning inputter 4 is used to scan and obtain the identity information of multiple electronic detonators electrically connected with the initiation driver 2 through the control bus, and the scanning inputter 4 can be connected with the initiation controller 3.
[0053] In the embodiment, as shown in the figure, Figures 1 to 3 The receiving body 1 in the embodiment is provided with the initiation driver receiving cavity 10, the initiation controller receiving cavity 11 and the scanning inputter receiving cavity 12, so as to facilitate the placement and reception of the initiation driver 2 in the initiation driver receiving cavity 10, the placement and reception of the initiation controller 3 in the initiation controller receiving cavity 11, and the placement and reception of the scanning inputter 4 in the scanning inputter receiving cavity 12, thereby facilitating the reliable reception and protection of the initiation driver 2, the initiation controller 3 and the scanning inputter 4 through the receiving body 1, and improving the safety of transportation of the initiation driver 2, the initiation controller 3 and the scanning inputter 4. In addition, the initiation driver 2, the initiation controller 3 and the scanning inputter 4 are received by the receiving body 1, which is conducive to quickly finding any one or more of the initiation driver 2, the initiation controller 3 and the scanning inputter 4 when needed, and improving the efficiency of initiation preparation operation.
[0054] In the embodiment, as shown in Figures 1 to 3 The storage body 1 in the embodiment is approximately cuboid structure, the detonation driver storage cavity 10 in the embodiment is arranged at the front of the storage body 1, the detonation driver storage cavity 10 is approximately hollow cuboid cavity, the upper end of the detonation driver storage cavity 10 is open; further, the detonation driver 2 in the embodiment is provided with an integrated antenna seat 20, an emergency stop button 21 and bus connection posts outwardly protruding, the bus connection posts are provided with five pairs; specifically, the bus connection posts include bus connection post one 22 and bus connection post two 23, the bus connection post one 22 shown in the embodiment is provided with four pairs, the four pairs of bus connection post one 22 are arranged and installed on the left end of the detonation driver 2, one pair of bus connection post two 23 is arranged and installed on the left end of the detonation driver 2, the bus connection post two 23 shown in the embodiment is different from the structure of the bus connection post one 22, the bus connection post two 23 can also be arranged in the same structure as the bus connection post one 22, which is convenient for installing the bus; the integrated antenna seat 20 and the emergency stop button 21 in the embodiment are installed on the right end of the detonation driver 2; further, the storage body 1 in the embodiment is provided with five bus connection post storage grooves 102 at intervals, the five bus connection post storage grooves 102 are arranged on the left side of the detonation driver storage cavity 10 and respectively communicate with the detonation driver storage cavity 10, when the detonation driver 2 is placed and stored in the detonation driver storage cavity 10, the protruding parts of the four pairs of bus connection post one 22 and the one pair of bus connection post two 23 are stored in the bus connection post storage grooves 102.
[0055] Further, as shown in Figure 1 and Figure 2 The storage body 1 in the embodiment is provided with an integrated antenna seat storage groove 103 and an emergency stop button storage groove 104, the integrated antenna seat storage groove 103 and the emergency stop button storage groove 104 are arranged on the right side of the detonation driver storage cavity 10 and respectively communicate with the detonation driver storage cavity 10, when the detonation driver 2 is placed and stored in the detonation driver storage cavity 10, the protruding part of the integrated antenna seat 20 is stored in the integrated antenna seat storage groove 103, the protruding part of the emergency stop button 21 is stored in the emergency stop button storage groove 104.
[0056] Further, as shown in Figure 1 and Figure 2 The front side of the detonation driver 2 in the embodiment is provided with a handle one 24, the handle one 24 protrudes to the front side of the detonation driver 2; the front of the storage body 1 opposite to the handle one 24 is provided with a handle storage cavity for storing the handle one 24, the handle storage cavity communicates with the detonation driver storage cavity 10; when the detonation driver 2 is placed and stored in the detonation driver storage cavity 10, the protruding part of the handle one 24 is stored in the handle storage cavity.
[0057] Further, as shown in Figures 1 to 3 In order to facilitate the placement of the detonation driver 2 in the detonation driver storage cavity 10 and facilitate the removal of the detonation driver 2 from the detonation driver storage cavity 10, a taking and placing avoidance groove 101 is provided on the front of the storage body 1, the taking and placing avoidance groove 101 is communicated with the detonation driver storage cavity 10, and the taking and placing avoidance groove 101 is opposite to the handle storage cavity. When the detonation driver 2 is taken and placed, the operator can hold the handle 24 through the taking and placing avoidance groove 101 to operate the taking and placing of the detonation driver 2, so as to facilitate the placement of the detonation driver 2 in the detonation driver storage cavity 10 and facilitate the removal of the detonation driver 2 from the detonation driver storage cavity 10.
[0058] It should be noted that the detonation driver 2 in the embodiment is used to be connected with multiple electronic detonators through a bus, the detonation driver 2 is used to drive the electronic detonators connected therewith, and the networking and detonation control of the multiple electronic detonators connected therewith are realized. In addition, the structure of the detonation driver 2 is not the focus of the present application, and other structures and internal structures of the detonation driver 2 will not be described in detail herein.
[0059] An embodiment of the present application, as shown in Figures 1 to 3 The detonation driver storage cavity 10 is open on the upper side, the inner side wall profile of the detonation driver storage cavity 10 is matched with the outer side profile of the detonation driver 2, the detonation driver 2 is matched and placed in the detonation driver storage cavity 10, and the outer side wall of the detonation driver 2 opposite to the inner side wall of the detonation driver storage cavity 10 is respectively matched with the inner side wall of the detonation driver storage cavity 10.
[0060] In the embodiment, as shown in Figures 1 to 3 The inner side wall profile of the detonation driver storage cavity 10 in the embodiment is matched with the outer side profile of the detonation driver 2, which is beneficial to the placement of the detonation driver 2 in the detonation driver storage cavity 10, can make the outer side wall of the detonation driver 2 opposite to the inner side wall of the detonation driver storage cavity 10 respectively matched with the inner side wall of the detonation driver storage cavity 10, reduce the gap formed between the outer side wall of the detonation driver 2 and the inner side wall of the detonation driver storage cavity 10, and is beneficial to reducing or avoiding the collision between the detonation driver 2 and the inner side wall of the detonation driver storage cavity 10 during transportation, thereby improving the safety and reliability of the transportation of the detonation driver 2. Further, the detonation driver storage cavity 10 is open on the upper side, which is convenient for placing the detonation driver 2 into the detonation driver storage cavity 10 and convenient for removing the detonation driver 2 from the detonation driver storage cavity 10.
[0061] In the embodiment, as shown in Figures 1 to 3As shown, the initiating drive 2 in the embodiment is approximately cuboid in structure, the initiating drive receiving cavity 10 is approximately cuboid in cavity, the inner side wall profile of the initiating drive receiving cavity 10 is adapted to the outer side profile of the initiating drive 2; further, the initiating drive 2 in the embodiment can also be provided in other structures, and correspondingly, the inner side wall profile of the initiating drive receiving cavity 10 in the embodiment can also be appropriately adjusted according to the outer side profile of the initiating drive 2.
[0062] As shown in the embodiment of the present application, Figure 2 and Figure 3 As shown, the receiving body 1 is further provided with a side-opened charging device receiving cavity, the charging device receiving cavity is used for placing and receiving charging devices, and the charging device receiving cavity is in communication with the initiating drive receiving cavity 10.
[0063] In the embodiment, as shown in Figure 2 and Figure 3 In the embodiment, by providing the charging device receiving cavity on the receiving body 1, the charging devices can be placed and received in the charging device receiving cavity, so that the receiving body 1 can reliably receive and protect the charging devices and improve the safety of transporting the charging devices; further, by receiving the charging devices through the receiving body 1, the charging devices can be quickly found when needed, improving the efficiency of initiating preparation work; in addition, the charging device receiving cavity is in communication with the initiating drive receiving cavity 10, so that the charging devices can be placed together with the initiating drive 2 of larger size by opening the charging device receiving cavity in the inner side of the initiating drive receiving cavity 10 of larger size.
[0064] As shown in the embodiment of the present application, Figure 2 and Figure 3 As shown, the charging device receiving cavity includes a charging plug receiving cavity 14, a charging wire receiving cavity 15 and a mobile power supply receiving cavity 13, the charging device includes a charging plug, a charging wire and a mobile power supply; the charging plug receiving cavity 14 is used for placing the charging plug, the charging wire receiving cavity 15 is used for placing the charging wire, and the mobile power supply receiving cavity 13 is used for placing the mobile power supply, and the charging plug receiving cavity 14, the charging wire receiving cavity 15 and the mobile power supply receiving cavity 13 are respectively in communication with the initiating drive receiving cavity 10.
[0065] In the embodiment, as shown in Figure 2 and Figure 3As shown, the charging device receiving cavity in the embodiment includes a charging plug receiving cavity 14, a charging wire receiving cavity 15, and a mobile power supply receiving cavity 13, facilitating the placement and storage of the charging plug in the charging plug receiving cavity 14, the charging wire in the charging wire receiving cavity 15, and the mobile power supply in the mobile power supply receiving cavity 13, thereby facilitating the reliable storage and protection of the charging plug, the charging wire, and the mobile power supply by the receiving body 1, and improving the safety of transporting the charging plug, the charging wire, and the mobile power supply.
[0066] In the embodiment, as shown in Figure 2 and Figure 3 the charging plug receiving cavity 14, the charging wire receiving cavity 15, and the mobile power supply receiving cavity 13 in the embodiment are arranged at the front of the receiving body 1, and the charging plug receiving cavity 14, the charging wire receiving cavity 15, and the mobile power supply receiving cavity 13 are arranged in communication with the detonation controller receiving cavity 11; further, in the embodiment, the charging plug can be placed in the charging plug receiving cavity 14, the charging wire can be placed in the charging wire receiving cavity 15, and the mobile power supply can be placed in the mobile power supply receiving cavity 13, and then the detonation controller 3 is placed in the detonation driver receiving cavity 10, the detonation controller 3 can cover the upper end of the charging plug placed in the charging plug receiving cavity 14, the charging wire placed in the charging wire receiving cavity 15, and the mobile power supply placed in the mobile power supply receiving cavity 13, and realize the limiting of the charging plug placed in the charging plug receiving cavity 14, the charging wire placed in the charging wire receiving cavity 15, and the mobile power supply placed in the mobile power supply receiving cavity 13 in the vertical direction; further, the structure of the charging device receiving cavity in the embodiment can also be adjusted according to the types of charging devices to be placed. It should be noted that the charging plug, the charging wire, and the mobile power supply are not illustrated in the embodiment.
[0067] An embodiment of the present application, as shown in Figures 1 to 3 the upper side of the detonation controller receiving cavity 11 is open, the inner side wall profile of the detonation controller receiving cavity 11 is adapted to the outer profile of the detonation controller 3, the detonation controller 3 is adapted to be placed in the detonation controller receiving cavity 11, and the outer side wall of the detonation controller 3 opposite to the inner side wall of the detonation controller receiving cavity 11 respectively fits the inner side wall of the detonation controller receiving cavity 11.
[0068] In the embodiment, as shown in Figures 1 to 3As shown, the inner side wall profile of the detonation controller accommodating cavity 11 in the embodiment is matched with the outer side profile of the detonation controller 3, which is conducive to placing the detonation controller 3 in the detonation controller accommodating cavity 11, and can make the outer side wall of the detonation controller 3 opposite to the inner side wall of the detonation controller accommodating cavity 11 respectively fit the inner side wall of the detonation controller accommodating cavity 11, reduce the gap formed between the outer side wall of the detonation controller 3 and the inner side wall of the detonation controller accommodating cavity 11, and is conducive to reducing or avoiding the collision between the detonation controller 3 and the inner side wall of the detonation controller accommodating cavity 11 during transportation, thereby being conducive to improving the safety and reliability of transporting the detonation controller 3. Further, the upper side of the detonation controller accommodating cavity 11 is open, which is convenient for placing the detonation controller 3 in the detonation controller accommodating cavity 11 and also convenient for taking out the detonation controller 3 from the detonation controller accommodating cavity 11.
[0069] In the embodiment, as shown in Figures 1 to 3 The detonation controller 3 in the embodiment is approximately in a cuboid structure, the detonation controller accommodating cavity 11 is approximately in a cuboid cavity, and the inner side wall profile of the detonation controller accommodating cavity 11 is matched with the outer side profile of the detonation controller 3. Further, the detonation controller 3 in the embodiment can also be provided in other structures, and correspondingly, the inner side wall profile of the detonation controller accommodating cavity 11 in the embodiment can also be adjusted according to the outer side profile of the detonation controller 3. It should be noted that the specific structure of the detonation controller 3 in the embodiment and the use method thereof can refer to the prior art in the field, and will not be described here.
[0070] One embodiment of the present application, as shown in Figures 1 to 3 The upper side of the scanning inputter accommodating cavity 12 is open, the inner side wall profile of the scanning inputter accommodating cavity 12 is matched with the outer side profile of the scanning inputter 4, the scanning inputter 4 is placed in the scanning inputter accommodating cavity 12, and the outer side wall of the scanning inputter 4 opposite to the inner side wall of the scanning inputter accommodating cavity 12 respectively fits the inner side wall of the scanning inputter accommodating cavity 12.
[0071] In the embodiment, as shown in Figures 1 to 3As shown, the inner side wall profile of the scanning inputter receiving cavity 12 in the embodiment is matched with the outer side profile of the scanning inputter 4, which is conducive to placing the scanning inputter 4 in the detonation controller receiving cavity 11, and can make the outer side wall of the scanning inputter 4 opposite to the inner side wall of the scanning inputter receiving cavity 12 respectively abut the inner side wall of the scanning inputter receiving cavity 12, so as to reduce the gap formed between the outer side wall of the scanning inputter 4 and the inner side wall of the scanning inputter receiving cavity 12, which is conducive to reducing or avoiding the collision between the scanning inputter 4 and the inner side wall of the scanning inputter receiving cavity 12 during transportation, thereby improving the safety and reliability of transporting the scanning inputter 4. Further, the upper side of the scanning inputter receiving cavity 12 is open, which is convenient for placing the scanning inputter 4 in the scanning inputter receiving cavity 12 and also convenient for taking out the scanning inputter 4 from the scanning inputter receiving cavity 12.
[0072] In the embodiment, as shown, Figures 1 to 3 the scanning inputter 4 in the embodiment is approximately in a cuboid structure, the scanning inputter receiving cavity 12 is approximately in a cuboid cavity, and the inner side wall profile of the scanning inputter receiving cavity 12 is matched with the outer side profile of the scanning inputter 4; further, the scanning inputter 4 in the embodiment can also be provided in other structures, and correspondingly, the inner side wall profile of the scanning inputter receiving cavity 12 in the embodiment can also be adjusted appropriately according to the outer side profile of the scanning inputter 4; it should be noted that the specific structure of the scanning inputter 4 in the embodiment and the use method thereof can refer to the existing technology in the field, which will not be described here.
[0073] Further, as shown, Figures 1 to 3 in order to facilitate the taking and placing of the scanning inputter 4, a taking and placing avoiding groove two 121 is arranged at the rear part of the receiving body 1, the taking and placing avoiding groove two 121 is communicated with the scanning inputter receiving cavity 12, which is convenient for the operator to place the scanning inputter 4 in the scanning inputter receiving cavity 12 through the taking and placing avoiding groove two 121, and also convenient for the operator to take out the scanning inputter 4 from the scanning inputter receiving cavity 12 through the taking and placing avoiding groove two 121.
[0074] In an embodiment of the present application, as shown in Figure 1 and Figure 2 the material of the receiving body 1 is an elastic material, the detonation driver 2 is placed in the detonation driver receiving cavity 10, and the outer side wall of the detonation driver 2 opposite to the inner side wall of the detonation driver receiving cavity 10 respectively elastically extrudes the inner side wall of the detonation driver receiving cavity 10;
[0075] the detonation controller 3 is placed in the detonation controller receiving cavity 11, and the outer side wall of the detonation controller 3 opposite to the inner side wall of the detonation controller receiving cavity 11 respectively elastically extrudes the inner side wall of the detonation controller receiving cavity 11;
[0076] The scanning input device 4 is placed in the scanning input device receiving cavity 12, and the outer side walls of the scanning input device 4 facing the inner side walls of the scanning input device receiving cavity 12 are elastically pressed against the inner side walls of the scanning input device receiving cavity 12, respectively.
[0077] In the embodiment, as shown in Figure 1 and Figure 2 , the material of the receiving body 1 is an elastic material, the outer side walls of the initiating drive 2 facing the inner side walls of the initiating drive receiving cavity 10 are elastically pressed against the inner side walls of the initiating drive receiving cavity 10, respectively, and the inner side walls of the initiating drive receiving cavity 10 can elastically press against the outer side walls of the initiating drive 2, so that the initiating drive 2 can be limited and clamped by the elastic pressing force formed, thereby avoiding the initiating drive 2 from falling out of the initiating drive receiving cavity 10 under non-human operation. Similarly, the outer side walls of the initiating controller 3 facing the inner side walls of the initiating controller receiving cavity 11 are elastically pressed against the inner side walls of the initiating controller receiving cavity 11, respectively, and the inner side walls of the initiating controller receiving cavity 11 can elastically press against the outer side walls of the initiating controller 3, so that the initiating controller 3 can be limited and clamped by the elastic pressing force formed, thereby avoiding the initiating controller 3 from falling out of the initiating controller receiving cavity 11 under non-human operation. Further, the outer side walls of the scanning input device 4 facing the inner side walls of the scanning input device receiving cavity 12 are elastically pressed against the inner side walls of the scanning input device receiving cavity 12, respectively, and the inner side walls of the scanning input device receiving cavity 12 can elastically press against the outer side walls of the scanning input device 4, so that the scanning input device 4 can be limited and clamped by the elastic pressing force formed, thereby avoiding the scanning input device 4 from falling out of the scanning input device receiving cavity 12 under non-human operation. Thus, the receiving body 1 in the embodiment can further improve the safety and reliability of transporting the initiating drive 2, the initiating controller 3 and the scanning input device 4.
[0078] In one embodiment of the present application, as shown in Figures 1 to 3 , the material of the receiving body 1 is an elastic material, and a plurality of elastic deformation avoiding grooves 16 are arranged on the circumferential outer wall of the receiving body 1 in the horizontal direction.
[0079] In the embodiment, as shown in Figures 1 to 3 , a plurality of elastic deformation avoiding grooves 16 are arranged on the circumferential outer wall of the receiving body 1 in the horizontal direction, which is beneficial to the elastic deformation of the receiving body 1 when it is pressed in the circumferential direction, and facilitates the placement of the receiving body 1 in the box and the elastic pressing against the inner side walls of the box to achieve limiting.
[0080] In the embodiment, as shown in Figures 1 to 3As shown, in this embodiment, multiple elastic deformation clearance grooves 16 are vertically arranged, and the elastic deformation clearance grooves 16 are recessed towards the receiving body 1; in addition, the arrangement of the elastic deformation clearance grooves 16 can also be varied.
[0081] Another aspect of this application provides a portable case 5 for an electronic detonator initiation control device, such as... Figures 4 to 6 As shown, it includes:
[0082] The main body of the box 50 has a storage cavity with an open side.
[0083] The movable cover 51 is mounted on the box body 50, and the movable cover 51 can have an open position and a closed position relative to the box body 50.
[0084] The aforementioned electronic detonator detonation control device storage base has its storage body 1 placed inside the storage cavity and located between the movable cover 51 and the box body 50.
[0085] In this embodiment, as Figures 4 to 6 As shown, the portable case 5 for the electronic detonator detonation control device in this embodiment includes the aforementioned electronic detonator detonation control device storage base. The storage body 1 is provided with a detonation driver storage cavity 10, a detonation controller storage cavity 11, and a scanner storage cavity 12, thereby facilitating the placement and storage of the detonation driver 2 in the detonation driver storage cavity 10, the detonation controller 3 in the detonation controller storage cavity 11, and the scanner storage cavity 12. This facilitates the placement and storage of the device through the storage body. The housing 1 reliably houses and protects the detonator driver 2, the detonator controller 3, and the scanner 4. Furthermore, the housing 1 can be placed inside the storage cavity, and the housing 1 is protected by the box body 50. The detonator driver 2, the detonator controller 3, and the scanner 4 are confined between the movable cover 51 and the box body 50, thereby facilitating the transportation and carrying of the detonator driver 2, the detonator controller 3, and the scanner 4 through the portable case 5 of the electronic detonator detonation control device in this embodiment.
[0086] In this embodiment, as Figures 4 to 6 As shown, the main body 50 of the box is approximately rectangular in shape, and the storage cavity is also approximately rectangular in shape. The upper end of the main body 50 is provided with a first closed edge 501, which surrounds the upper surface contour of the main body 50. The lower end of the movable cover 51 is provided with a second closed edge 511, which surrounds the lower surface contour of the movable cover 51. When the movable cover 51 is placed on the main body 50, the second closed edge 511 abuts against the first closed edge 501.
[0087] In this embodiment, asFigures 4 to 6 As shown in the drawings, the front side plate of the box body 50 in the embodiment is connected with two hinged support seats 502, and the front side plate of the movable cover 51 in the embodiment is connected with two hinged connecting seats 512 corresponding to the two hinged support seats 502, and the two hinged connecting seats 512 are hinged with the two hinged support seats 502 respectively.
[0088] Further, as shown in the drawings, Figure 5 and Figure 6 the rear side plate of the box body 50 in the embodiment is installed with two movable lock buckles 504, the movable lock buckles 504 are provided with movable locking parts, the movable locking parts can buckle and lock the closing flange one 501 and the closing flange two 511, so as to lock the movable cover 51 on the box body 50; further, the rear side plate of the box body 50 is also connected with a handle two 505 and a locking knob 506, the handle two 505 and the locking knob 506 are located between the two movable lock buckles 504, and the locking knob 506 is used to lock and lock the movable cover 51 on the box body 50; further, the rear side plate of the box body 50 is also connected with two reinforcing ribs 503, and the two reinforcing ribs 503 are connected to the rear side plate of the box body 50 respectively near the two movable lock buckles 504. It should be noted that the movable lock buckle 504 and the locking knob 506 in the embodiment can refer to the prior art, and will not be described here. In addition, the box body 50 and the movable cover 51 in the embodiment can also be provided with other structures.
[0089] As shown in the drawings, Figure 6 the inner side wall of the box body 50 is provided with a plurality of limiting protrusions in the vertical direction, the plurality of limiting protrusions protrude towards the inner side of the placement and storage cavity and extend vertically in the vertical direction, and the outer wall of the storage body 1 in the horizontal direction is provided with a plurality of limiting through grooves corresponding to the plurality of limiting protrusions, the limiting protrusions are inserted into the limiting through grooves.
[0090] In the embodiment, as shown in the drawings, Figure 6 the inner side wall of the box body 50 in the embodiment is provided with a plurality of limiting protrusions in the vertical direction, and the outer wall of the storage body 1 in the horizontal direction is provided with a plurality of limiting through grooves corresponding to the plurality of limiting protrusions, and the limiting protrusions are inserted into the limiting through grooves, so as to limit the storage body 1 placed in the placement and storage cavity, and avoid the outer wall of the storage body 1 in the horizontal direction from colliding with the inner side wall of the electronic detonator initiation control device portable box 5 during transportation of the electronic detonator initiation control device portable box 5, so as to avoid the initiation driver 2, the initiation control device 3 and the scanning input device 4 from falling off.
[0091] In the embodiment, asFigures 1 to 3 、 Figure 6 As shown in FIG. 17 and FIG. 18, the limiting through slot includes limiting through slot one 17 and limiting through slot two 18. In this embodiment, one limiting through slot one 17 is arranged on the front side wall of the storage body 1, and the limiting through slot one 17 is arranged near the middle of the front side wall of the storage body 1. The limiting through slot one 17 vertically penetrates the front side wall of the storage body 1. Further, in this embodiment, four limiting through slot two 18 are arranged at the four corner positions of the storage body 1. Further, the number and arrangement position of the limiting through slot one 17 and the limiting through slot two 18 in this embodiment can also have many kinds.
[0092] In this embodiment, as shown in FIG. 19 and FIG. 20, the limiting protrusion in this embodiment is in a columnar structure. The lower end of the limiting protrusion is connected to the bottom plate of the box body 50 and vertically extends upward. When the storage body 1 is placed in the placement storage cavity, the limiting protrusion extends into the limiting through slot. Figures 1 to 3 、 Figure 6 Specifically, the limiting protrusion in this embodiment includes limiting column one 6 and limiting column two 7. One limiting column one 6 is arranged opposite to the limiting through slot two 18, and four limiting column two 7 are arranged opposite to the limiting through slot one 17. When the storage body 1 is placed in the placement storage cavity, the limiting column one 6 is inserted into the limiting through slot two 18, and the limiting column two 7 is respectively inserted into the limiting through slot one 17. In this way, the storage body 1 placed in the placement storage cavity is limited, so that the horizontal side wall of the storage body 1 does not collide with the inner side wall of the electronic detonator initiation control device portable box 5 during transportation of the electronic detonator initiation control device portable box 5, thereby preventing the initiation driver 2, the initiation control device 3 and the scanning input device 4 from falling off.
[0093] In one embodiment of the present application, the electronic detonator initiation control device portable box 5 further comprises:
[0094] The elastic pad is arranged on the inner side wall of the movable cover 51 opposite to the storage body 1. When the movable cover 51 is in the closed position, the elastic pad is pressed between the inner side wall of the movable cover 51 and the storage body 1 and elastically deforms.
[0095] In this embodiment, the elastic pad is arranged between the inner side wall of the movable cover 51 and the storage body 1. When the movable cover 51 is in the closed position, the elastic pad is pressed between the inner side wall of the movable cover 51 and the storage body 1, which is beneficial to providing elastic pressing force to the initiation driver 2 placed on the storage body 1 during transportation of the electronic detonator initiation control device portable box 5 and limiting the initiation driver 2, thereby further improving the safety and reliability of transportation of the initiation driver 2.
[0096] Further, the elastic pad in the embodiment has a pad plate structure, the elastic pad is detachable, the placement position of the elastic pad can be flexibly adjusted, so that when the movable cover body 51 is located at the closed position, the elastic pad is pressed between the inner side wall of the movable cover body 51 and the storage body 1 and generates elastic deformation; in addition, the elastic pad in the embodiment can also be connected to the inner side top of the movable cover body 51. It should be noted that the elastic pad is not illustrated in the embodiment.
[0097] In addition, in addition to the technical solutions disclosed in the embodiment, other structures of the detonation driver 2, the detonation controller 3, the scanning inputter 4, and the portable box 5 of the electronic detonator detonation control device can refer to the conventional technical solutions in the technical field, and these conventional technical solutions are not the focus of the utility model, and the utility model will not be described in detail here.
[0098] In the utility model, the term "a plurality of" refers to two or more than two, unless otherwise explicitly limited. The terms "mounting", "connection", "connection", "fixing" and the like should be understood in a broad sense, for example, "connection" can be fixed connection, or detachable connection, or integrally connected; "connection" can be directly connected, or indirectly connected through an intermediate medium. For ordinary skilled in the art, the specific meaning of the above terms in the utility model can be understood according to the specific circumstances.
[0099] In the description of the utility model, it should be understood that the terms "upper", "lower", "front", "rear" and the like indicate the orientation or positional relationship shown in the drawing, and are only for the convenience of describing the present application and simplifying the description, and do not indicate or imply that the device or unit referred to must have a particular direction, be constructed and operated in a particular orientation, therefore, it cannot be understood as a limitation on the present application.
[0100] In the description of the present application, the description of the terms "one embodiment", "some embodiments", "a specific embodiment" and the like means that the specific features, structures, materials or characteristics described in conjunction with the embodiment or example are included in at least one embodiment or example of the present application. In the present application, the illustrative description of the above terms does not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or examples in a suitable manner.
[0101] The above is only the preferred embodiment of the present application and is not used to limit the present application. For those skilled in the art, the present application can have various modifications and changes. Any modification, equivalent replacement, improvement, etc. made within the spirit and principles of the present application shall be included in the protection scope of the present application.
Claims
1. An electronic detonator initiation control device receptacle, characterized by, The application relates to a charging device for multiple electronic detonators, and relates to a charging device for multiple electronic detonators. The charging device comprises a receiving body, a side-opened detonation driver receiving cavity on the receiving body, a detonation driver placed and received in the detonation driver receiving cavity, and a detonation driver used for detonation driving of multiple electronic detonators electrically connected with the control bus. The receiving body is further provided with a side-opened detonation controller receiving cavity used for placing and receiving a detonation controller, the detonation controller is communicatively connected with the detonation driver and can send detonation control instructions to the detonation driver. The receiving body is further provided with a side-opened scanning inputter receiving cavity used for placing and receiving a scanning inputter, the scanning inputter is used for scanning multiple electronic detonators electrically connected with the detonation driver through the control bus and obtaining the identity information of the multiple electronic detonators, and the scanning inputter is communicatively connected with the detonation controller.
2. The electronic detonator initiation control device receptacle of claim 1, wherein, The upper side of the detonation driver receiving cavity is open, the inner side wall profile of the detonation driver receiving cavity is matched with the outer side profile of the detonation driver, the detonation driver is placed in the detonation driver receiving cavity, and the outer side wall of the detonation driver opposite to the inner side wall of the detonation driver receiving cavity is matched with the inner side wall of the detonation driver receiving cavity.
3. The electronic detonator initiation control device receptacle of claim 2, wherein, The receiving body is further provided with a side-opened charging device receiving cavity used for placing and receiving a charging device, and the charging device receiving cavity is in communication with the detonation driver receiving cavity.
4. The electronic detonator initiation control device receptacle of claim 3, wherein, The charging device receiving cavity comprises a charging plug receiving cavity, a charging wire receiving cavity and a mobile power supply receiving cavity, the charging device comprises a charging plug, a charging wire and a mobile power supply, the charging plug receiving cavity is used for placing the charging plug, the charging wire receiving cavity is used for placing the charging wire, the mobile power supply receiving cavity is used for placing the mobile power supply, and the charging plug receiving cavity, the charging wire receiving cavity and the mobile power supply receiving cavity are respectively in communication with the detonation driver receiving cavity.
5. The electronic detonator initiation control device receptacle of claim 1, wherein, The upper side of the detonation controller receiving cavity is open, the inner side wall profile of the detonation controller receiving cavity is matched with the outer side profile of the detonation controller, the detonation controller is placed in the detonation controller receiving cavity, and the outer side wall of the detonation controller opposite to the inner side wall of the detonation controller receiving cavity is matched with the inner side wall of the detonation controller receiving cavity.
6. The electronic detonator initiation control device receptacle of claim 1, wherein, The upper side of the scanning inputter receiving cavity is open, the inner side wall profile of the scanning inputter receiving cavity is matched with the outer side profile of the scanning inputter, the scanning inputter is placed in the scanning inputter receiving cavity, and the outer side wall of the scanning inputter opposite to the inner side wall of the scanning inputter receiving cavity is matched with the inner side wall of the scanning inputter receiving cavity.
7. The electronic detonator initiation control device receptacle according to any one of claims 1 to 6, characterized in that, The material of the receiving body is an elastic material, the detonation driver is placed in the detonation driver receiving cavity, and the outer side wall of the detonation driver opposite to the inner side wall of the detonation driver receiving cavity is elastically extruded with the inner side wall of the detonation driver receiving cavity. The initiation controller is placed in the initiation controller receiving cavity, and the outer side wall of the initiation controller opposite to the inner side wall of the initiation controller receiving cavity is elastically extruded with the inner side wall of the initiation controller receiving cavity. The scanning input device is placed in the scanning input device receiving cavity, and the outer side wall of the scanning input device opposite to the inner side wall of the scanning input device receiving cavity is elastically extruded with the inner side wall of the scanning input device receiving cavity.
8. The electronic detonator initiation control device receptacle according to any one of claims 1 to 6, characterized in that, The material of the receiving body is an elastic material, and a plurality of elastic deformation avoiding grooves are arranged on the horizontal direction of the outer wall of the receiving body.
9. An electronic detonator initiation control device portable case, characterized in that, The application further relates to a box body for placing and receiving an electronic detonator initiation controller device, comprising the following parts: The box body is provided with a one-side-opened placing and receiving cavity; The movable cover is arranged on the box body, and the movable cover can have an opening position and a closing position relative to the box body; The application further relates to a box body for placing and receiving an electronic detonator initiation controller device, comprising the following parts:
10. The electronic detonator initiation control device carrying case of claim 9, wherein, The inner side wall of the box body is provided with a plurality of limiting protrusions in the vertical direction, the limiting protrusions protrude towards the inner side of the placing and receiving cavity and vertically extend in the vertical direction, and the outer wall of the receiving body in the horizontal direction is provided with a plurality of limiting through grooves opposite to the limiting protrusions, the limiting through grooves vertically pass through the receiving body in the vertical direction, and the limiting protrusions opposite to the limiting protrusions extend into the limiting through grooves.
11. The electronic detonator initiation control device carrying case of claim 9, wherein, The application further relates to a box body for placing and receiving an electronic detonator initiation controller device, comprising the following parts: The elastic pad is arranged on the inner side wall of the movable cover opposite to the receiving body, and when the movable cover is in the closing position, the elastic pad is extruded between the inner side wall of the movable cover and the receiving body and elastically deformed.