Initiating explosive package maker

By designing a detonator with mounting sleeve and emulsified buffer, the long-distance positioning and angle adjustment of the detonator is realized, which solves the safety hazards during the detonator installation process and improves the operational safety and stability.

CN223243482UActive Publication Date: 2025-08-19SHANXI JIANGYANG ENG BLASTING CO LTD
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Patent Information

Application Number
CN202422754008.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-12
Publication Date
2025-08-19
Estimated Expiration
2034-11-12

AI Technical Summary

Technical Problem

The existing detonator package manufacturer has safety hazards caused by operating errors during the detonator installation process, and the operators are vulnerable to explosion accidents.

Method used

A detonator package maker is designed, using a mounting sleeve and emulsified buffer to limit the position of the detonator, and the angle and position of the mounting sleeve are controlled from a long distance, and the detonator is positioned and installed in combination with the wire rope system to avoid direct contact and excessive pressure.

Benefits of technology

It improves the safety and stability of detonator installation, reduces the safety risks of operators, and ensures long-distance control and angle adjustment of the detonator installation process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of initiating explosive package production devices, and discloses an initiating explosive package maker which comprises a control handle, the front end of the control handle is movably sleeved with an installation sleeve, a push rod is movably sleeved with the control handle, the front end of the push rod is movably sleeved with an inclined rod, and the top end of the inclined rod is movably sleeved with a limiting sleeve. The front end of the limiting sleeve is movably sleeved with a piston, and a first circular steel wire rope and a second circular steel wire rope are movably sleeved with the mounting sleeve. According to the initiating explosive package maker, a limiting sleeve is installed at one end of a piston, one end of the limiting sleeve is installed at the front end, arranged at a push rod, of an inclined rod, meanwhile, the position of the push rod is pushed, the inclination angle of the installation sleeve can be adjusted, meanwhile, an operator can remotely control the installation sleeve to install a detonator, and the installation angle can be adjusted; in the detonator installation process, long-distance installation can be ensured, and the safety in the detonator installation process of the initiating explosive package is improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of explosive package production devices, in particular to an explosive package maker. Background Art

[0002] Explosive packs (also called explosive rolls) are used to detonate industrial explosives with low detonation sensitivity. They are detonated by detonating cords or detonators. When used with explosive packs, the packs are pre-installed in a specific area, and blast holes are opened inside the packs. Detonators are installed inside the blast holes, and the detonators generate detonation energy to detonate various explosives.

[0003] During the installation of detonators, workers need to open blast holes inside the explosive bag and place the detonators inside the explosive bag one by one. However, during the installation of detonators, if the operation is wrong, the detonator installation force will be too large, which will cause the detonator to be directly detonated, thus causing a safety hazard. In addition, since workers need to manually control the installation of the detonator inside the explosive bag during the installation of the detonator, the hazard of explosion accidents to operators will increase. Therefore, we have proposed an explosive bag maker. Utility Model Content

[0004] In response to the shortcomings of existing explosive charge makers, the utility model provides an explosive charge maker, which has the advantages of limiting the position of the detonator with the assistance of an installation sleeve, reducing the triggering of the detonator by using an emulsified buffer, and remotely installing the detonator inside the charge to reduce safety accidents, thereby solving the problems raised in the above-mentioned background technology.

[0005] The utility model provides the following technical solution: an explosive charge maker, comprising a control handle, the front end of the control handle being movably sleeved with a mounting sleeve, the inside of the control handle being movably sleeved with a push rod, the front end of the push rod being movably sleeved with an inclined rod, the top end of the inclined rod being movably sleeved with a limiting sleeve, the front end of the limiting sleeve being movably sleeved with a piston, the inside of the mounting sleeve being movably sleeved with a first circular steel wire rope and a second circular steel wire rope, the sides of the first circular steel wire rope and the second circular steel wire rope are fixedly connected with circular jackets, and the other sides of the first circular steel wire rope and the second circular steel wire rope are fixedly connected with a first tension member.

[0006] Preferably, the rear end of the push rod extends to the interior of the control handle, and an opening is provided at the upper portion of the front end of the control handle.

[0007] Preferably, the piston is movably sleeved inside the mounting sleeve, and an emulsifying buffer is provided at the front end of the piston, and the emulsifying buffer is installed in the middle of the control handle.

[0008] Preferably, a buffer pad is installed at the front end of the mounting sleeve, a detonator passes through the front end of the mounting sleeve, the buffer pad is sleeved on the front end of the detonator, and the rear end of the detonator is in contact with the emulsified buffer component.

[0009] Preferably, the first round steel wire rope and the second round steel wire rope are both round, and the round jacket installed on the side of the first round steel wire rope is sleeved on the outside of the second round steel wire rope, and the round jacket installed on the side of the second round steel wire rope is sleeved on the outside of the first round steel wire rope.

[0010] Preferably, a mounting plate is fixedly connected to a side surface of the control handle, and a second stretch is fixedly connected to the other side of the two groups of first stretches, and the second stretch extends to the rear end of the control handle.

[0011] Compared with the existing detonating charge maker, the utility model has the following beneficial effects:

[0012] 1. The explosive charge maker is through-connected at both ends of the mounting sleeve, and the piston drives the emulsified buffer to extend to the inside of one side of the mounting sleeve. At the same time, the front end of the mounting sleeve can be installed with a detonator, and the rear end of the detonator extends to the inside of the emulsified buffer, that is, the emulsified buffer limits the position of the detonator and avoids the detonator from being triggered during installation. At the same time, after the mounting sleeve is controlled to move to the inside of the explosive blasthole, the first circular steel wire rope and the second circular steel wire rope are controlled to separate the emulsified buffer, driving the mounting sleeve and the detonator to be installed. For the installation of the detonator, direct contact between the operator and the explosive charge is avoided, thereby improving the safety during installation.

[0013] 2. The detonator charge maker is equipped with a limiting sleeve at one end of the piston, and one end of the limiting sleeve is installed at the front end of the push rod. By pushing the push rod at the same time, the inclination angle of the installation sleeve can be adjusted. At the same time, the operator can remotely control the installation sleeve to install the detonator, and the installation angle can be adjusted to ensure that the detonator can be installed at a distance during installation, thereby improving the safety of the detonator charge during installation. BRIEF DESCRIPTION OF THE DRAWINGS

[0014] Figure 1 This is a schematic diagram of the main structure of the utility model;

[0015] Figure 2 This is a side view of the structure of the utility model;

[0016] Figure 3 This is a schematic diagram of the cross-sectional structure of the main body of the utility model;

[0017] Figure 4 The utility model lacks a schematic diagram of the bracket structure;

[0018] Figure 5 This is a schematic diagram of the structure of the cleaning equipment of the utility model;

[0019] Figure 6 This is an enlarged structural diagram of point A of the present invention.

[0020] In the figure: 1. Control handle; 2. Mounting sleeve; 3. Push rod; 4. Inclined rod; 5. Limit sleeve; 6. Piston; 7. Emulsification buffer; 8. Buffer pad; 9. First circular steel wire rope; 10. Second circular steel wire rope; 11. Circular jacket; 12. First stretch; 13. Mounting plate; 14. Second stretch. DETAILED DESCRIPTION

[0021] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0022] See also Figure 1 、 Figure 2 、 Figure 3 、 Figure 4 、 Figure 5 and Figure 6 The explosive charge maker includes a control handle 1. The front end of the control handle 1 is movably sleeved with a mounting sleeve 2. The mounting sleeve 2 drives the detonator to be limited. At the same time, the other end is filled with an emulsified buffer 7, which is used to bond and fix the position of the detonator and avoid excessive pressure on the detonator during installation, which may cause the detonator to be triggered. The internal movable sleeve of the control handle 1 is connected to a push rod 3. The front end of the push rod 3 is movably sleeved with an oblique rod 4. The push rod 3 is pushed toward the front end, and the push rod 3 pushes the oblique rod 4 to adjust its position outside the control handle 1. At this point, the mounting sleeve 2 can be adjusted at the front end angle of the control handle 1. The top movable sleeve of the oblique rod 4 A limiting sleeve 5 is connected, and the front end of the limiting sleeve 5 is movably sleeved with a piston 6, which pushes the position of the emulsification buffer 7 to move. The internal movably sleeve of the mounting sleeve 2 is connected with a first circular steel wire rope 9 and a second circular steel wire rope 10. The sides of the first circular steel wire rope 9 and the second circular steel wire rope 10 are fixedly connected with a circular jacket 11, and the other sides of the first circular steel wire rope 9 and the second circular steel wire rope 10 are fixedly connected with a first stretching member 12. By pulling the first stretching member 12, the first circular steel wire rope 9 and the second circular steel wire rope 10 are driven to contract, so that the emulsification buffer 7 can be cut and the emulsification buffer 7 can be scraped off.

[0023] See also Figure 3The rear end of the push rod 3 extends to the interior of the control handle 1. At the same time, an opening is provided at the upper part of the front end of the control handle 1. The push rod 3 is movably sleeved inside the control handle 1, that is, the push rod 3 can move back and forth inside the control handle 1. At the same time, an opening is formed at the front end of the control handle 1. In the process of pushing the push rod 3 to move, a moving trajectory is provided for the oblique rod 4. At the same time, with the assistance of the control handle 1, the processing personnel can install the detonator at a farther distance, thereby improving the safety of the detonator installation.

[0024] See also Figure 3 The piston 6 is movably sleeved inside the mounting sleeve 2. An emulsification buffer 7 is provided at the front end of the piston 6. The emulsification buffer 7 can be specifically made of rubber and can prevent static electricity. The emulsification buffer 7 is installed in the middle of the control handle 1 and is sleeved inside the rear end of the mounting sleeve 2 through the piston 6. At the same time, the piston 6 drives the emulsification buffer 7 to be installed inside the control handle 1. According to the length of the detonator, the piston 6 is rotated. During the process of extending inward, the piston 6 pushes the emulsification buffer 7 to move and adjust its position inside the mounting sleeve 2 to improve the convenience of detonator installation and positioning.

[0025] See also Figure 1 A buffer pad 8 is installed at the front end of the mounting sleeve 2, and a detonator is passed through the front end of the mounting sleeve 2. The buffer pad 8 is sleeved on the front end of the detonator, and the rear end of the detonator contacts the emulsified buffer 7. The buffer pad 8 is installed at the front end of the mounting sleeve 2, and the buffer pad 8 assists in contacting the detonator, thereby improving the stability of the detonator during positioning. At the same time, the rear end of the detonator contacts the emulsified buffer 7, and the emulsified buffer 7 buffers and limits the triggering position of the detonator to avoid excessive pushing force on the detonator during installation, which causes the detonator to be triggered. Thus, the stability of the detonator during installation is improved.

[0026] See also Figure 5 The first round steel wire rope 9 and the second round steel wire rope 10 are both round. At the same time, the round jacket 11 installed on the side of the first round steel wire rope 9 is sleeved on the outside of the second round steel wire rope 10, and the round jacket 11 installed on the side of the second round steel wire rope 10 is sleeved on the outside of the first round steel wire rope 9. Through the round jacket 11, they are respectively sleeved on the outside of the other side of the first round steel wire rope 9 and the second round steel wire rope 10. At the same time, the first stretching 12 is pulled sideways, that is, the first round steel wire rope 9 and the second round steel wire rope 10 drive the two ends to move inward, that is, the opening formed inside the first round steel wire rope 9 and the second round steel wire rope 10 is partially contracted. At the same time, after the detonator is installed and positioned, the first round steel wire rope 9 and the second round steel wire rope 10 can scrape off the emulsified buffer 7 adhering to the rear end of the detonator.

[0027] See also Figure 1The side of the control handle 1 is fixedly connected to a mounting plate 13, and the other side of the two groups of first stretches 12 is fixedly connected to a second stretch 14. The second stretch 14 extends to the rear end of the control handle 1 and is installed on the side of the control handle 1 through the mounting plate 13. At the same time, the first stretch 12 passes through the inside of the mounting plate 13, thereby ensuring the stability of the device during positioning.

[0028] Working principle: When in use, the emulsified buffer 7 is installed inside the rear end of the mounting sleeve 2. According to the size of the detonator, the piston 6 is rotated, and the piston 6 pushes the emulsified buffer 7 to move to the front end, that is, to ensure that the buffer pad 8 can limit the position of the detonator. At the same time, the detonator is controlled to be installed inside the mounting sleeve 2 to avoid direct contact with the explosive during installation, which may cause safety hazards. The push rod 3 is rotated, that is, the push rod 3 drives the inclined rod 4 to move to the rear end, until the angle of the mounting sleeve 2 at the top of the control handle 1 can be adjusted, that is, the equipment can drive the detonator to be installed on explosives at different heights. After the installation is completed, the push rod 3 is pulled toward the rear end, and the second stretching 14 is pulled at the same time, that is, the first circular steel wire rope 9 and the second circular steel wire rope 10 are driven to contract. At the same time, the first circular steel wire rope 9 and the second circular steel wire rope 10 can scrape off the emulsified buffer 7 adhering to the outside of the detonator.

[0029] Although the embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and variations may be made to these embodiments without departing from the principles and spirit of the present invention, and the scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A detonating charge maker, comprising a control handle (1), a front end of the control handle (1) being movably sleeved with a mounting sleeve (2), and an inner portion of the control handle (1) being movably sleeved with a push rod (3), characterized in that: The front end of the push rod (3) is movably connected to the inclined rod (4), the top end of the inclined rod (4) is movably connected to the limiting sleeve (5), the front end of the limiting sleeve (5) is movably connected to the piston (6), the interior of the mounting sleeve (2) is movably connected to the first circular steel wire rope (9) and the second circular steel wire rope (10), the sides of the first circular steel wire rope (9) and the second circular steel wire rope (10) are fixedly connected to the circular jacket (11), and the other sides of the first circular steel wire rope (9) and the second circular steel wire rope (10) are fixedly connected to the first stretching (12).

2. The explosive charge making device according to claim 1, characterized in that: The rear end of the push rod (3) extends to the interior of the control handle (1), and an opening is provided at the upper portion of the front end of the control handle (1).

3. The explosive charge making device according to claim 1, characterized in that: The piston (6) is movably sleeved inside the mounting sleeve (2), and an emulsification buffer (7) is provided at the front end of the piston (6). The emulsification buffer (7) is installed in the middle of the control handle (1).

4. The explosive charge making device according to claim 1, characterized in that: A buffer pad (8) is installed at the front end of the installation sleeve (2), a detonator passes through the front end of the installation sleeve (2), the buffer pad (8) is sleeved on the front end of the detonator, and the rear end of the detonator is in contact with the emulsified buffer member (7).

5. The explosive charge making device according to claim 1, characterized in that: The first circular steel wire rope (9) and the second circular steel wire rope (10) are both circular, and the circular jacket (11) installed on the side of the first circular steel wire rope (9) is sleeved on the outside of the second circular steel wire rope (10), and the circular jacket (11) installed on the side of the second circular steel wire rope (10) is sleeved on the outside of the first circular steel wire rope (9).

6. The explosive charge making device according to claim 1, characterized in that: A mounting plate (13) is fixedly connected to the side of the control handle (1), and a second stretch (14) is fixedly connected to the other side of the two groups of first stretches (12), and the second stretch (14) extends to the rear end of the control handle (1).