Buffer structure for simulating percussion impact
By designing a buffer structure in a simulated recoilless rifle and utilizing highly elastic buffer rubber to absorb impact force, the problems of wear and vibration during firing are solved, thereby improving the reliability and safety of the product.
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
In the process of simulating recoilless rifle firing, collisions can cause wear and vibration, affecting product reliability and safety.
A buffer structure simulating firing impact is designed, consisting of a switch base, buffer rubber, and firing pin. The buffer rubber has high elasticity and high wear resistance, and is used to absorb impact force and reduce vibration.
This improves the reliability and safety of the simulated recoilless rifle and reduces the risk of the product becoming loose due to vibration.
Smart Images

Figure CN121916722A_ABST
Abstract
Description
Technical Field
[0001] This invention belongs to the field of simulated recoilless rifles, and is a buffer structure for simulating firing impact. It is a buffer structure for simulating the hard collision of the internal mechanism of a recoilless rifle during firing action, and can be used in the firing safety mechanism of a simulated recoilless rifle. Background Technology
[0002] In simulating recoilless rifle firing, to provide users with a more realistic experience, collisions will occur during firing. Repeated use will cause wear and tear, generating unnecessary vibrations, which may loosen the screws on the product itself, reduce reliability, and affect the performance of the weapon. Therefore, it is necessary to design a structure that can cushion the impact.
[0003] Therefore, in view of the above situation, a buffer structure was designed to simulate the impact of a recoilless gun firing. Summary of the Invention
[0004] The purpose of this invention is to design a buffer structure that functions during simulated firing impacts. The buffer structure is characterized by comprising a switch base (1), buffer rubber (2), and firing pin (3). The core component of this structure is the buffer rubber (2), whose external structure provides a fixing function, ensuring that the switch base (1), buffer rubber (2), and firing pin (3) form a unified whole that is not easily loosened. The buffer rubber (2) possesses high elasticity, high wear resistance, and aging resistance, fully meeting the product's service life requirements and preventing deformation. Its main function is to buffer during simulated firing impacts, absorbing external impact forces and reducing the impact of vibration on the product's reliability.
[0005] This buffer structure is simple and efficient, improving the reliability and safety of the product. Attached Figure Description
[0006] This invention has one accompanying drawing.
[0007] Figure 1 This is a schematic diagram of a buffer structure simulating an impact.
[0008] Diagram description: 1-Switch base; 2-Buffer rubber; 3-Sounding hammer. Detailed Implementation
[0009] This invention provides a buffer structure to simulate the impact of firing, such as Figure 1As shown, the core component of this structure is the buffer rubber (2), whose shape can play a fixing role, so that the switch base (1) is a fixed part in the whole product and does not generate relative movement. When the external object hits and strikes the rattle (3), the material properties of the buffer rubber (2) have high elasticity, high wear resistance, and aging resistance, which can fully meet the product service life. The buffer rubber (2) has a buffering effect between the two parts, reduces the vibration diffusion range, and improves the product reliability.
Claims
1. A buffer structure simulating a firing impact, characterized in that: It consists of a switch base (1), a buffer rubber (2), and a firing pin (3); the switch base (1), the buffer rubber (2), and the firing pin (3) form a whole that is not easy to loosen. The buffer rubber (2) plays a buffering role when simulating firing impact and absorbs external impact force.