Method for assembling reference train unit collision model
An assembly method and collision model technology, applied in the direction of measuring devices, railway vehicle testing, machine/structural component testing, etc., can solve the problem of not being able to investigate the influence of frictional momentum and energy, not being able to truly simulate the complete response, and not being able to simulate train derailment Failure and other problems, to achieve the effect of shortening the research and development cycle, improving precision and improving reliability
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Embodiment 1
[0069] This embodiment provides the assembly method of the reference train unit crash test model, and its steps are:
[0070] The first step is to assemble the test model of the reference head car: the reference head car consists of a rigid underframe (1) (meaning that no obvious deformation will occur during the collision), a bogie (2), a semi-automatic coupler mounting support (3), The anti-climber is composed of the front end energy-absorbing structure (4), the semi-automatic coupler (5) and the semi-permanent coupler installation support (6). Prepare relevant parts and assemblies. Refer to the assembly process of the head car as follows: figure 1 As shown, the assembly sequence is:
[0071] (a) Install the rigid underframe (1) on the bogie (2) according to the actual design or installation method and installation position to obtain the structural module (A);
[0072] (b) Install the semi-automatic coupler installation support (3) on the anti-climber and the front energy-a...
Embodiment 2
[0084] This embodiment provides the assembly method of the reference train unit collision simulation model, and its steps are:
[0085]The first step is to assemble the simulation model of the reference head car: the reference head car consists of a rigid underframe (1) (meaning that no obvious deformation will occur during the collision, and rigid body simulation is used in the simulation model), a bogie (2), a semi-automatic Coupler mounting support (3), anti-climbing device and front end energy-absorbing structure (4), semi-automatic coupler (5) and semi-permanent coupler mounting support (6). Part of the finite element model, wherein the finite element model requiring the semi-automatic coupler (5) has been calibrated, that is, its mechanical properties are basically consistent with those of the test or design, and the assembly process of the head car is the same as in embodiment 1, as figure 1 As shown, the assembly sequence is:
[0086] (a) Equivalent to the actual desi...
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