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Rubber block temperature field analogue simulation method considering cord thread

A simulation method and rubber block technology, applied in the field of simulation simulation, can solve problems such as component performance degradation, time damage, and rubber block components, and achieve significant scientific research value and economic benefits.

Active Publication Date: 2015-07-22
UNIV OF SHANGHAI FOR SCI & TECH
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, the good damping performance of the rubber block makes it convert the energy generated by the dynamic torque into a large amount of heat power consumption during work. If the heat cannot be transferred to the environment in time and fully, it will cause different degrees of damage to the rubber block components Impact
If it is light, it will degrade the performance of the component, and if it is heavy, it will cause time damage

Method used

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  • Rubber block temperature field analogue simulation method considering cord thread
  • Rubber block temperature field analogue simulation method considering cord thread
  • Rubber block temperature field analogue simulation method considering cord thread

Examples

Experimental program
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Embodiment Construction

[0023] The simulation method for the temperature field of the rubber block of the cord provided by the present invention will be described in detail below in conjunction with the accompanying drawings.

[0024]

[0025] figure 1 It is a calculation flow chart of the simulation simulation method of the rubber block temperature field considering the cord.

[0026] Such as figure 1 As shown, the simulation method of the rubber block temperature field considering the cord includes the following steps:

[0027] Step S-1, establishing a three-dimensional geometric model of the rubber block.

[0028] figure 2 It is a schematic diagram of the structure of the rubber block coupling.

[0029] Use Pro / E software to establish such as figure 2 The 3D geometric model of the rubber block shown.

[0030] Step S-2, establishing a grid model.

[0031] image 3 is the mesh model diagram of the rubber block coupling.

[0032] Import the 3D geometric model established in step S-1 into...

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Abstract

The invention provides a rubber block temperature field analogue simulation method considering a cord thread. The method is characterized by comprising the following steps that 1, a three-dimensional geometric model of a rubber block is built; 2, a mesh model is built; 3, a rubber block mesh model with the cord thread is built; 4, the unit strain energy density of the rubber block is extracted; 5, the strain energy density of rubber block joints is computed accurately; 6, the joint heat generation rate is computed; 7, temperature field analysis is carried out on the rubber block. The rubber block temperature field analogue simulation method considering the cord thread carries out temperature field computation and analysis on the rubber block model with the joints as the foundation, so that an accurate analogue simulation result is obtained, and a theoretical guidance is provided for actual application of the rubber block.

Description

technical field [0001] The invention relates to the field of simulation, in particular to a simulation method for a heat generation and heat transfer model of a rubber block. Background technique [0002] The rubber block part is an ideal material for the coupling because of its damping performance and elastic performance to meet the performance requirements of the coupling. However, the good damping performance of the rubber block makes it convert the energy generated by the dynamic torque into a large amount of heat power consumption during work. Impact. If it is light, it will degrade the performance of the component, and if it is heavy, it will cause time damage. Therefore, the thermal properties of rubber block components have great research value. [0003] The mechanism of heat generation of rubber block parts during work currently only has a relatively general thermal power consumption, that is, the energy conversion equation for converting kinetic energy into inte...

Claims

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Application Information

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IPC IPC(8): G06F17/50
Inventor 汪中厚万品雷马永明曾林锡刘欣荣李刚
Owner UNIV OF SHANGHAI FOR SCI & TECH
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