EXPLOSIVE CARTRIDGE DELIVERY TUBE
20250314472 ยท 2025-10-09
Assignee
Inventors
- Feng CHEN (Changzhi, CN)
- Junjie CUI (Changzhi, CN)
- Feng LIANG (Changzhi, CN)
- Jiquan QU (Changzhi, CN)
- Zhiqiang YAN (Changzhi, CN)
- Xuejun JI (Changzhi, CN)
- Minjuan XIE (Changzhi, CN)
- Lianzhen JIA (Changzhi, CN)
- Keke FENG (Changzhi, CN)
- Zitao YANG (Changzhi, CN)
- Qiang WANG (Changzhi, CN)
Cpc classification
F42D1/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
An explosive cartridge delivery tube is provided and includes an explosive delivery tube body, wherein the explosive delivery tube body has a length greater than a depth of a blast hole, an explosive delivery chamber is formed inside the explosive delivery tube body, the explosive delivery chamber is arranged in a length direction of the explosive delivery tube body in a running-through manner, and an internal diameter of the explosive delivery chamber is greater than a diameter of an explosive cartridge.
Claims
1. An explosive cartridge delivery tube comprising an explosive delivery tube body (1), wherein the explosive delivery tube body (1) has a length greater than a depth of a blast hole, an explosive delivery chamber (101) is formed inside the explosive delivery tube body (1) and arranged in a length direction of the explosive delivery tube body (1) in a running-through manner, and an internal diameter of the explosive delivery chamber (101) is greater than a diameter of an explosive cartridge.
2. The explosive cartridge delivery tube according to claim 1, wherein an inner wall of the explosive delivery chamber (101) is covered with a conductive film (11) being grounded.
3. The explosive cartridge delivery tube according to claim 1, wherein an air delivery channel (103) is formed on an inner wall of the explosive delivery chamber (101) and extends in a length direction of the explosive delivery chamber (101), and an internal diameter of the air delivery channel (103) is less than the internal diameter of the explosive delivery chamber (101).
4. The explosive cartridge delivery tube according to claim 3, wherein the air delivery channel (103) comprises a plurality of air delivery channels (103) uniformly distributed circumferentially around an axis of the explosive delivery chamber (101).
5. The explosive cartridge delivery tube according to claim 1, wherein an outer surface of the explosive delivery tube body (1) is smooth, and the explosive delivery tube body (1) is elastic.
6. The explosive cartridge delivery tube according to claim 5, wherein the explosive delivery tube body (1) is made of plastic.
7. The explosive cartridge delivery tube according to claim 1, wherein a wire slot (102) is formed on an outer surface of the explosive delivery tube body (1), configured to receive a detonator wire or a detonating cord, located at an end of the explosive delivery tube body (1), and in communication with the explosive delivery chamber (101).
8. The explosive cartridge delivery tube according to claim 1, further comprising a pneumatic withdrawal assembly (2) configured for pneumatically driving the explosive delivery tube body (1) to withdraw from the blast hole.
9. The explosive cartridge delivery tube according to claim 8, wherein the pneumatic withdrawal assembly (2) comprises a reaction force base plate (21), a withdrawal cylinder (22) and an explosive delivery tube fixing member, one end of the withdrawal cylinder (22) is mounted on the reaction force base plate (21), and the explosive delivery tube fixing member is configured to fix and mount the explosive delivery tube body (1) at an other end of the withdrawal cylinder (22).
10. The explosive cartridge delivery tube according to claim 9, wherein a movable plate (221) is mounted at one end of the withdrawal cylinder (22), the explosive delivery tube fixing member comprises a first fixing block (23) and a second fixing block (24), the first fixing block (23) is in sliding fit with one side of the movable plate (221) and provided with a first fixing hole; and the second fixing block (24) is in sliding fit with the other side of the movable plate (221), provided with a second fixing hole, detachably mounted on the first fixing block (23), and in communication with the first fixing hole to form an explosive delivery tube fixing hole (201) when the second fixing block (24) is mounted on the first fixing block (23).
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0034]
[0035]
[0036]
[0037]
[0038]
[0039] List of reference signs: 1. Explosive delivery tube body; 101. Explosive delivery chamber; 102. Wire slot; 103. Air delivery channel; 11. Conductive film; 2. Pneumatic withdrawal assembly; 201. Explosive delivery tube fixing hole; 21. Reaction force base plate; 22. Withdrawal cylinder; 221. Movable plate; 23. First fixing block; 231. First slide bar; 232. First rubber pad; 24. Second fixing block; 241. Second slide bar; 242. Second rubber pad; 3. Connecting end cap; 31. Nozzle joint; 32. Grounded pole piece; 4. Explosive delivery valve; 5. Air compressor.
DETAILED DESCRIPTION OF THE EMBODIMENTS
[0040] The present disclosure will be further described in detail with reference to
Embodiment 1
[0041] The embodiment of the present disclosure discloses an explosive cartridge delivery tube. Referring to
[0042] Referring to
[0043] Referring to
[0044] Referring to
[0045] The implementation principle of the explosive cartridge delivery tube according to Embodiment 1 of the present disclosure is as follows: [0046] S1, a blast hole is formed; [0047] S2, the detonator or the detonating cord is embedded in the explosive cartridge for detonation; [0048] S3, the explosive cartridge embedded with the detonator or the detonating cord is placed at the tail end of the explosive delivery chamber 101, i.e., the end of the explosive delivery tube body 1 provided with the wire slot 102, and then a detonator wire or the detonating cord passes through the wire slot 102; [0049] S4, the tail end of the explosive delivery tube body 1 is inserted into the blast hole, and the detonator wire or the detonating cord is guided out of the blast hole during the insertion; [0050] S5, the front end of the explosive delivery chamber 101, i.e., the end of the explosive delivery tube body 1 away from the wire slot 102, is in communication with an air compressor or other compressed air generating devices; [0051] S6, the compressed air is delivered to the explosive delivery chamber 101 by the air compressor or other compressed air generating devices, and during the delivery of the compressed air, the explosive delivery tube body 1 is withdrew from the blast hole by a length greater than or equal to the length of the explosive cartridge until the explosive cartridge slides from the tail end of the explosive delivery chamber 101 to the bottom of the blast hole; [0052] S7, another explosive cartridge is placed at the front end of the explosive delivery chamber 101; [0053] S8, the compressed air is delivered to the explosive delivery chamber 101 by the air compressor or other compressed air generating devices, and during the delivery of the compressed air, the explosive delivery tube body 1 is withdrew from the blast hole by a length greater than or equal to the length of the explosive cartridge until the explosive cartridge slides from the tail end of the explosive delivery chamber 101 to the bottom of the blast hole; [0054] S9, S7 and S8 are repeated until all remaining explosive cartridges are delivered into the blast hole; and [0055] S10, the explosive delivery tube body 1 is completely withdrew from the blast hole.
[0056] By the above implementation mode, the explosive cartridges are pushed into the blast hole using the compressed air, such that an operator does not need to insert or withdraw a gun roller several times, thereby reducing the work intensity of the operator in the process of mine blasting.
Embodiment 2
[0057] The main differences between the present disclosure and Embodiment 1 are as follows: [0058] 1. the explosive cartridge delivery tube further includes a pneumatic withdrawal assembly 2; and [0059] 2. the front end of the explosive delivery tube body 1 is specifically set differently.
Difference 1 of Embodiment 2
[0060] Referring to
[0061] Referring to
[0062] Referring to
[0063] Referring to
[0064] Referring to
Difference 2 of Embodiment 2
[0065] Referring to
[0066] Referring to
[0067] The implementation principle of Embodiment 2 of the present disclosure is as follows: [0068] S1, a blast hole is formed; [0069] S2, the detonator or the detonating cord is embedded in the explosive cartridge for detonation; [0070] S3, the explosive cartridge embedded with the detonator or the detonating cord is placed at the tail end of the explosive delivery chamber 101, i.e., the end of the explosive delivery tube body 1 provided with the wire slot 102, and then a detonator wire or the detonating cord passes through the wire slot 102; [0071] S4, the tail end of the explosive delivery tube body 1 is inserted into the blast hole, and the detonator wire or the detonating cord is guided out of the blast hole during the insertion; [0072] S5, the front end of the explosive delivery chamber 101, i.e., the end of the explosive delivery tube body 1 away from the wire slot 102, passes through the first through hole of the reaction force base plate 21 and the second through hole of the movable plate 221, and the reaction force base plate 21 is in close fit with an mineral deposit; [0073] S6, the connecting end cap 3 is in threaded fit with the front end of the explosive delivery tube body 1, and the grounded pole piece 32 is in close fit with the conductive film 11; [0074] S7, the input end of the explosive delivery valve 4 is connected to the air compressor 5, then the explosive delivery valve 4 is opened until the explosive cartridge slides from the tail end of the explosive delivery chamber 101 to the bottom of the blast hole, and subsequently, the explosive delivery valve 4 is closed; specifically, the piston rod of the withdrawal cylinder 22 extends after the explosive delivery valve 4 is opened, such that the reaction force base plate 21 is in close fit with the mineral deposit, which in turn the piston rod of the withdrawal cylinder 22 drives the explosive delivery tube body 1 away from the blast hole; [0075] S8, the connecting end cap 3 is detached from the front end of the explosive delivery tube body 1 by turning the connecting end cap 3; [0076] S9, another explosive cartridge is placed at the front end of the explosive delivery chamber 101; [0077] S10, the connecting end cap 3 is in threaded fit with the front end of the explosive delivery tube body 1, and the grounded pole piece 32 is in close fit with the conductive film 11; [0078] S11, the input end of the explosive delivery valve 4 is connected to the air compressor 5, then the explosive delivery valve 4 is opened until the explosive cartridge slides from the tail end of the explosive delivery chamber 101 to the bottom of the blast hole, and subsequently, the explosive delivery valve 4 is closed; [0079] S12, S8 and S11 are repeated until all remaining explosive cartridges are delivered into the blast hole; and [0080] S13, the explosive delivery tube body 1 is completely withdrew from the blast hole, and the pneumatic withdrawal assembly 2 is withdrew from the mineral deposit.
[0081] By the above implementation mode, the explosive cartridges are pushed into the blast hole using the compressed air, and the explosive delivery tube body 1 is pneumatically withdrawn from the blast hole by means of the withdrawal cylinder 22, such that the operator neither needs to insert or withdraw a gun roller several times nor needs to manually withdraw the explosive delivery tube 1, thereby reducing the work intensity of the operator in the process of mine blasting.
[0082] The above are preferred embodiments of the present disclosure, and are not intended to limit the scope of protection of the present disclosure accordingly. Therefore, all equivalent changes made in accordance with the structure, shape and principle of the present disclosure shall be included in the scope of protection of the present disclosure.