A tire installation structure with the function of anti-steering tire blowout
A technology for installing structures and tires, applied in tire parts, hubs, transportation and packaging, etc., can solve the problems of no technical solution, tire blowout, etc., and achieve the effect of easy popularization, lower use cost, and avoid damage
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specific Embodiment 1
[0027] The tire mounting structure with the tire blowout anti-steering function of the present embodiment, the structural diagram is as follows figure 1 shown. The tire mounting structure includes a transmission shaft 1 and a hub 2 bolted to the transmission shaft 1;
[0028] The transmission shaft 1 is provided with a stepped blind hole along the axial direction, and the bottom step part of the stepped blind hole is provided with a plurality of blind grooves uniformly arranged in the circumferential direction, and a circular through hole in the middle is installed in the blind groove. Multi-catch structure 3, the claws of the multi-catch structure 3 are installed in the blind groove, the circular through hole in the middle of the multi-catch structure 3 is in interference fit with the outer ring of the bearing 4; the inner wall of the top step part of the stepped blind hole The threaded ring 5 is screwed to the bottom of the top step part by threads, and the multi-catch stru...
specific Embodiment 2
[0033] On the basis of the specific embodiment 1, the tire installation structure with the function of anti-steering against tire blowout in this embodiment further defines the inner surface of the groove connection part and is also equipped with a rubber layer.
[0034] Under the limitation of this structure, even if the nails are not shot at the tire, they will be absorbed by the rubber layer, avoiding direct shooting at the side wall of the wheel hub, effectively protecting the wheel hub and increasing the service life of the wheel hub.
specific Embodiment 3
[0035] The tire mounting structure with the tire blowout anti-steering function of the present embodiment, on the basis of the specific embodiment 1, further defines the structural schematic view of the air nail gun 7 as follows Figure 4 As shown, the air nail gun 7 includes a staple chamber 71, a pin 72 fixed in the staple chamber 71 by an elastic material 76, and a compressed air cavity 74 of an electronic valve 73 is arranged behind the pin 72, and the electronic valve 73 is controlled by the control signal of the wireless receiving module 75; after the wireless receiving module 75 receives the control signal of detonating the tire, the control electronic valve 73 is opened, and the compressed air in the compressed air chamber 74 will be released instantaneously, so that the pin 72 is shot towards the tire .
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