A straddle-type monorail system that adapts to different slopes by adjusting the wheel-rail force
A wheel-rail force and straddle-type monorail technology, which is applied in the direction of monorail systems, railway derailment prevention, railway car body parts, etc., can solve the problems that it is difficult to apply to large-slope lines, achieve the limit of increasing wheel axle traction, reduce line investment, Effect of increasing line length
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Embodiment 1
[0049] A straddle-type monorail system adapted to different slopes by adjusting the wheel-rail force according to the present invention, comprising:
[0050] The bogie is located on the beam body. The bogie includes traveling wheels 11, guide wheels 12 and stabilizing wheels 13. The guide wheels 12 are arranged above the stabilizing wheels 13. Between the guiding wheels 12 and the stabilizing wheels 13 hinged connection between
[0051] Beam body, the beam body includes a running surface, a guiding surface and a stable surface, when the slope of the running surface of the beam body is greater than or equal to 100‰, the stable surface of the beam body is set inwardly from top to bottom;
[0052] A pressure adjustment device is connected to the beam body, and the pressure adjustment device can increase or decrease the pressure of the stable wheel 13 relative to the stable surface so that the running wheel 11 can move relative to the running surface pressure increases or decreas...
Embodiment 2
[0062] like Figure 11 As shown in the present invention, a straddle-type monorail system that adapts to different slopes by adjusting the force of the wheel and rail, its structure is roughly the same as that of Embodiment 1, the difference is that the bogie is provided with grooves For example, two snap rings are provided on the articulated arm of the guide wheel 12, the two snap rings are socketed with a gap between them, and the gap forms the groove. A sleeve 43 is provided between the pin 41 and the spring 42, and the sleeve 43 is adapted to be connected to the groove, and the sleeve can slide along the groove to facilitate positioning of the pin 41. It is further ensured that the pin 41 can be smoothly inserted into the slot. The side wall of the end cap of the pin 41 has a rolling bearing 44, and the rolling bearing 44 is used to roll and connect the positioning groove, changing sliding friction into rolling friction, making the pin 41 more likely to slide along the po...
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