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Efficient damping and buffering sighting telescope connecting mechanism

A connecting mechanism and sight technology, applied in weapon accessories, offensive equipment, etc., can solve the problems of reduced shock absorption effect, reduced shooting accuracy, and susceptibility to high temperature, so as to improve zero position stability, increase service life, reduce The effect of matrix beating

Pending Publication Date: 2018-02-02
江苏北方湖光光电有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Wherein the prior art has the following disadvantages: 1. Conventional rubber damping is easily affected by high temperature, which causes the rubber pad to soften and reduce the damping effect; 2. The parallelogram metal damping mechanism has low damping efficiency and is not suitable for strong Impact the weapon platform; 3. The zero position stability of the conventional shock absorbing mechanism is not high, which will easily lead to a decrease in shooting accuracy

Method used

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  • Efficient damping and buffering sighting telescope connecting mechanism

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Embodiment Construction

[0025] Preferred embodiments of the present invention will be described in detail below in conjunction with the accompanying drawings.

[0026] In order to achieve the purpose of the present invention, as figure 1 As shown, in one of the embodiments of the present invention, a high-efficiency shock-absorbing buffer sight connection mechanism is provided, including a base body 5, a pickup locking mechanism 4, a buffer pad 1, a spring 2 and two guide shafts 3, and the base body 5 is used for On the carrying scope, the axes of the two guide shafts 3 are arranged parallel to each other. The two guide shafts 3 pass through the pickup locking mechanism 4 and their axial ends are respectively connected to the base 5. The buffer pad 1 is arranged between the guide shaft 3 and the On the inner side of the joint of the base body 5 , the spring 2 is sleeved on the guide shaft 3 and its two ends are pressed on the buffer pad 1 .

[0027] Compared with the existing technology, this embodi...

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Abstract

The invention discloses an efficient damping and buffering sighting telescope connecting mechanism which comprises a base body, a picatinny rail locking mechanism, buffering cushions, a spring and twoguiding shafts. The base body is used for bearing a sighting telescope. The axes of the two guiding shafts are arranged in parallel. The two guiding shafts penetrate in the picatinny rail locking mechanism, and the axial two ends of the two guiding shafts are connected to the base body. The buffering cushions are arranged on the inner sides of the connecting positions of the guiding shafts and the base body. The spring is arranged on the guiding shafts in a sleeving manner, and the two ends of the spring are pressed on the buffering cushions. By means of the efficient damping and buffering sighting telescope connecting mechanism, the damping and buffering effect is improved to 80% from the original 50%; the service life of a core device in the product is prolonged; limitation of the installation position of a weapon platform is avoided, and a good damping effect can be achieved under the 100 DEG C high-temperature condition; and uniqueness of the movement direction of the base body ismaintained through the double guiding shafts, jumping of the base body is reduced, and zero stability of the sighting telescope is improved.

Description

technical field [0001] The invention belongs to a scope connecting mechanism, in particular to a high-efficiency shock-absorbing and buffering scope connecting mechanism. Background technique [0002] With the development of new high-precision sniper systems, the development of tandem sights, and the application of shock-absorbing buffer technology are important ways to improve the reliability of sights on powerful weapon platforms. Since the front-facing mirror of the tandem sight is generally close to the exit position of the weapon, the surrounding temperature of the sniper system is above 100°C when the sniper system is working, and the commonly used rubber damping and shock-absorbing mechanism is prone to softening, resulting in a decrease in the shock-absorbing efficiency; due to the parallelogram And the shock absorption efficiency of the reed shock absorption mechanism only reaches 50%. The impact acceleration of the new sniper system reaches 1500g, while the impact ...

Claims

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Application Information

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IPC IPC(8): F41G11/00
CPCF41G11/00Y02T10/40
Inventor 徐爱东徐晟刘昊微杨海金周智慧费程波郝芳高赫
Owner 江苏北方湖光光电有限公司
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