Method of preventing elastomer from rebounding after buffering through flywheel, and anti-collision buffer device
A buffer device and elastic body technology, which is applied in the direction of spring/shock absorber, shock absorber, shock absorber, etc., can solve the problems of impact carrier rebound damage, etc., and achieve the effect of solving secondary damage and ensuring safety
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Embodiment 1
[0036] Embodiment 1 A kind of method that utilizes flywheel to prevent elastic body from rebounding after buffering
[0037] The method of using a flywheel to prevent elastic bodies from rebounding after buffering includes the following steps: S1) setting the buffer stroke of the elastic body so that the elastic body can only work within the set stroke and apply force to the force carrier after being stressed. Buffering; S2) Setting the rotation direction of the flywheel so that the flywheel can only rotate in one direction on the buffer stroke of the elastic body, and prevent the elastic body from rebounding after effectively buffering the force-applying carrier. The elastic body described in the above method can be an extension spring, a clip spring, a rubber spring, a metal spring, etc.; the buffer stroke and the set stroke of the elastic body refer to the point where the spring begins to buffer and deform when it is stressed, as the starting point, to the point where the sp...
Embodiment 2
[0039] Embodiment 2 A kind of anti-collision buffer device
[0040] Such as Figures 1 to 10 As shown, the anti-collision buffer device of the present invention includes a positioning part 1 for fixed connection with the protected foundation, a protective part 2 for receiving impact, and an elastic body 3 arranged between the positioning part 1 and the protective part 2 , also includes a locking mechanism for locking the position of the elastic body 3 to prevent the protective part 2 from rebounding after being hit, the locking mechanism includes a flywheel 4 and a rack 5 that is matched with the flywheel transmission, and the flywheel 4 is connected to the positioning part 1, The rack 5 is connected to the protection component 2 , or the flywheel 4 is connected to the protection component 2 , and the rack 5 is connected to the positioning component 1 .
[0041] The positioning part 1 is used to fixedly connect the anti-collision buffer device to the protected foundation or c...
Embodiment 3
[0051] Embodiment 3 A kind of anti-collision buffer device
[0052] As an alternative to the above technical solutions, such as Figure 11 with 12 As shown, the flywheel in the anti-collision buffer device of the present invention includes an outer cover 4a', a core 4b' and a jack 4c', the outer cover 4a' is fixedly connected to the guide rod 6, and the core 4b' is fixed to the central axis 7 A gear 10 is coaxially fixed on the central shaft 7, and the gear 10 and the rack 5 mesh with each other. The benefits of the above-mentioned structural arrangement, especially in the case of irregular spaces, can enhance the synchronization and coordination of the locking mechanism and the flexibility of use design, because the flywheel is the safety component of the present invention, and its bearing load should be much greater than the elastic support of the elastic body Force, increasing the number of flywheels While using a combination of multiple flywheels to meet the load-bearing...
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