Wiring structure for sitting force-free cannon

By designing the wiring structure of the recoilless rifle, using modified reinforced nylon material and T-type connections, the problem of exposed and easily damaged cables was solved, achieving cable protection and spatial arrangement, and improving the reliability and aesthetics of the fixation.

CN121923023APending Publication Date: 2026-04-24HEBEI YANXING MACHINERY
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
HEBEI YANXING MACHINERY
Filing Date
2024-10-22
Publication Date
2026-04-24

AI Technical Summary

Technical Problem

The cables on recoilless rifles are exposed and easily damaged, and are not securely fixed, affecting their reliability and aesthetics, and making them inconvenient to carry.

Method used

Design a cabling structure including a mounting base, a mounting block, a cable guard, and a cable holder, using modified reinforced nylon material, combined with a T-connection and a card slot structure to achieve cable protection and spatial arrangement.

Benefits of technology

It effectively protects cables, prevents damage, improves fixation reliability, and enhances aesthetics and portability.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention belongs to the field of non-sitting force guns, and relates to a wiring structure for a non-sitting force gun, in particular to a wiring protection and arrangement structure for cables on the non-sitting force gun, which is used for arrangement and protection of individual weapon cables. Along with intelligent and informatization upgrading of domestic non-sitting force gun weapons, multiple positions of the non-sitting force gun need to be connected through cables to achieve information conduction and transmission. At present, cables on weapons without sitting force are mostly arranged in a manner that the cables are exposed and wound on a barrel body and are tightened and fixed by a disposable rolling belt, and in the using process, once the cables are collided, the whole cables are easily damaged and fail; one-time belt rolling is poor in reliability, easy to disengage and incapable of effectively fixing the cable; the cable is exposed and wound on the barrel body, so that the overall aesthetic property of the non-sitting force gun and the carrying of soldiers are influenced; aiming at the conditions, the wiring structure for the non-sitting force gun is designed.
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Description

Technical Field

[0001] This invention belongs to the field of recoilless rifles and is a protection and arrangement structure for cable wiring on recoilless rifles. It can be used for the arrangement and protection of cables for individual weapons. Background Technology

[0002] With the rapid development of weaponry and the intelligent and information-based upgrades of domestic recoilless rifles, many parts of the recoilless rifle require cable connections for information conduction and transmission. However, currently, the cables on recoilless rifles are mostly exposed and coiled around the barrel, secured with disposable cable ties. During troop training and combat use, the cables are easily damaged and rendered ineffective if bumped or knocked, affecting the use of the recoilless rifle. Furthermore, the disposable cable ties are unreliable, easily coming undone and failing to effectively secure the cables. The exposed cables coiled around the barrel also affect the overall aesthetics of the recoilless rifle and its portability for soldiers.

[0003] Therefore, in view of the above situation, a wiring structure for recoilless rifles was designed. Summary of the Invention

[0004] The purpose of this invention is to design a structure that can effectively protect recoilless rifle cables and realize the spatial arrangement of cables. Its features include: the wiring structure consists of a fixing base (1), a fixing block (2), a cable guard (3), a cable protection seat (4), and a cable holder (5).

[0005] The cable guard (3) is divided into a horizontal section and an arc section. The horizontal section is attached to the outer wall along the axis of the barrel, and the arc section is attached to the outer wall around the barrel. This allows the cable to be connected at different spatial angles. The cable guard is designed with a central arc groove and two arc wings. The arc groove is used to bury the cable, and the two arc wings can enhance its structural strength. T-shaped protrusions are designed at the corners of the horizontal and arc sections for fixing the cable guard. The cable guard is made of modified reinforced nylon material, which has high toughness and light weight while ensuring sufficient strength. The cable holder (4) is designed with a T-shaped groove structure to achieve quick connection with the cable guard. The fixing block and the fixing seat are also designed with a T-shaped connection structure, and the lower section of the fixing block has a cable groove. The fixing block and the cable holder together fix the cable guard in the axial direction. The cable holder (5) fixes the arc section of the cable guard by snapping on the top and bottom and controls the change of the cable arrangement direction.

[0006] This wiring structure not only protects the cables but also allows for the spatial arrangement of the cables within the casing. Attached Figure Description

[0008] Figure 1 Schematic diagram of the wiring structure of a recoilless rifle. Detailed Implementation

[0010] This invention provides a wiring structure for a recoilless rifle. Figure 1 In the wiring structure diagram shown, the cable protector, fixing seat, and cable clamp are fixed to the outer wall of the recoilless gun barrel. The cable protector and fixing seat are on the same horizontal plane along the barrel axis, while the cable clamp and cable protector are on the same cross section along the barrel circumference, with an included angle of 135°. During installation, the cable is first embedded in the cable protector groove, then the T-shaped boss end of the cable protector is inserted into the T-shaped groove of the cable protector, and the arc end of the cable protector is fastened onto the cable clamp. Finally, the fixing block is inserted into the fixing seat from back to front, realizing the change of the cable's spatial position along the barrel wall and effectively protecting the cable.

Claims

1. A wiring structure for a recoilless rifle, characterized in that: The wiring structure consists of a fixing seat (1), a fixing block (2), a cable guard (3), a cable guard seat (4), and a cable clip seat (5). The cable guard (3) is divided into a horizontal section and an arc section. The horizontal section is attached to the outer wall along the axis of the barrel, and the arc section is attached to the outer wall around the barrel. The two ends of the cable are connected at different spatial angles. The cross-section of the cable guard is an arc-shaped groove in the middle and an arc-shaped wing structure on both sides. The arc-shaped groove is used to bury the cable. T-shaped bosses are designed at the corners of the horizontal section and the arc section for fixing the cable guard. The cable guard seat (4) is a T-shaped groove structure connected to the cable guard. The fixing block and the fixing seat are T-shaped connection structures. The lower section of the fixing block has a cable groove. The fixing block and the cable guard seat together fix the cable guard in the axial direction. The cable clip seat (5) fixes the arc section of the cable guard by snapping on the top and bottom and controls the change of the cable arrangement direction.

2. The wiring structure for a recoilless rifle according to claim 1, characterized in that: The cable guard, the fixing seat, and the cable clamp are fixed on the outer wall of the recoilless gun barrel. The cable guard and the fixing seat are on the same horizontal plane along the axis of the gun barrel, and the cable clamp and the cable guard are on the same cross section along the circumference of the gun barrel, with an included angle of 135°.