Simulator dynamic seat
A technology of dynamic seats and simulators, applied in the fields of game dynamic seats and film and television, can solve problems such as difficulty in ensuring seat safety, twisting and breaking, and inability to accurately time timing.
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Embodiment 1
[0067] Such as figure 1 A simulated motorized seat, comprising a seat 1, a seat fixing frame 2, a gimbal 3, a cross shaft coupling 33, an underframe 5 and a lifting cylinder 6, and there are four lifting cylinders in the dynamic seat of this embodiment lift cylinder.
[0068] The front and rear width of the seat 1 should ensure that the shank of the person on the seat does not sag, and a backrest safety belt 11 and a leg safety belt 12 are installed to prevent the person on the seat from falling out of the seat or being squeezed by the lifting cylinder 6 to the feet.
[0069] The seat fixing frame 2 is a square metal frame whose strength can meet the requirements of a dynamic seat. There are handles 21 and safety belt fixing bolt holes 22 on the upper plane, and the seat 1 is fixed on the seat fixing frame by four bolts. 2 In the middle of the upper plane, the left and right midlines of the upper plane of the seat holder 2 coincide with the left and right centerlines of the...
Embodiment 2
[0086] The balancing frame in embodiment 1 is improved as follows.
[0087] Such as Figure 10 The small channel steel 311 shown is used as the sliding block, and the notch of the large channel steel 321 is welded with two angle steels 322 as the chute.
[0088] A thin steel wire rope 324 is bolted to the bottom of the small channel steel 311, and a fixed pulley 323 is installed on the top of the angle steel 322. The thin steel wire rope 324 bypasses the fixed pulley 323 upwards, and a heavy hammer 325 is bolted. The weight of the heavy hammer 325 is less than that of the small channel steel 311 Weight, can improve the up and down flexibility of small channel steel 311 like this;
Embodiment 3
[0090] When the dynamic seat system in Embodiment 1 has only three universal lifting cylinders 6, the installation positions of the lifting cylinders 6 on the chassis 5 are as shown in Figure 11, one 601 on the left front of the gimbal 3 and one 602 on the right front , a 603 at the left rear, and a gravity offset device 701 installed at the right rear, and connected with the chassis and the seat fixed frame through a universal coupling, keeping a certain distance from the balance frame 3, the balance frame 3 is made of metal beams or metal plates 35 Fixed on the left, right, rear.
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