A method for simulating rock bridge penetration based on batch insertion of cohesive elements
A cohesive, batch technology, applied in design optimization/simulation, special data processing applications, etc., can solve problems such as inability to do it, and achieve the effect of fast running speed, convenient operation and easy implementation.
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[0018] Attached below Figure 1-7 The implementation of the present invention is described in detail.
[0019] A method for simulating rock bridge penetration based on batch insertion of cohesive force elements, comprising the following steps:
[0020] 1. Establish a rock mass model including rock bridges;
[0021] In the Abaqus-Part module, establish and name the rock mass model including the rock bridge; in the Abaqus-Property module, establish two material properties for the rock mass and the cohesive force element to be inserted; in the Abaqus-Assembly module, follow the Assemble the rock mass and the rock block at the coordinate position; divide the rock mass model into a mesh in the Abaqus-Mesh module, and set a set name for the rock block at the same time;
[0022] 2. Open the GUI interface plug-in based on Abaqus-Python language, and according to the prompts of the plug-in interface, select the material and the collection area to be inserted to form a rock mass rock ...
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