Intelligent rib plate layout design method for machine tool supports of high specific stiffness

A design method and support technology, applied in computing, special data processing applications, instruments, etc., can solve problems such as low design efficiency, single design form, and inability to meet design requirements, so as to meet design requirements, improve performance, and design output The result is a clearly identifiable effect

Active Publication Date: 2013-08-07
XI AN JIAOTONG UNIV
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Problems solved by technology

[0003] In the design process of the existing heavy-duty and super-heavy-duty manufacturing equipment load-bearing structures, most of them adopt the traditional arrangement of ribs, mainly in the form of well-shaped, rice-shaped, or a combination of the above forms. The design form is too single to obtain high-quality Specific stiffness design scheme
At the same time, the existing rib layout design methods mainly rely on classical mechanics and the experience of designers. After repeated revisions to obtain the final plan, the entire design process cannot be intelligent and automated, resulting in low design efficiency and cannot meet the needs of modern large-scale and complex equipment. design requirements

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  • Intelligent rib plate layout design method for machine tool supports of high specific stiffness
  • Intelligent rib plate layout design method for machine tool supports of high specific stiffness
  • Intelligent rib plate layout design method for machine tool supports of high specific stiffness

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Embodiment Construction

[0035] The present invention will be further described below in conjunction with accompanying drawings and examples.

[0036] According to the present invention, the intelligent design method for the rib plate layout of the machine tool supports with high specific stiffness is as follows: figure 1 As shown, it includes the following design stages and specific steps:

[0037] 1. Design stage 1: Construction of pseudo-3D generative space model

[0038] Firstly, the original solid structure of the machine tool support is simplified as a combination of internal ribs and peripheral panels. Next, the above-mentioned simplified combination is further abstracted into a pseudo-three-dimensional space model, which is composed of shell elements simulating the outer wall panels of the support and Matrix27 elements simulating the internal ribs of the support. According to the load-bearing relationship of the support, a peripheral wall plate is selected as the load-bearing surface, and a ...

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Abstract

The invention discloses an intelligent rib plate layout design method for machine tool supports of high specific stiffness. The method comprises the particular steps of pretreatment: building a pseudo three-dimensional generative space model of the machine tool supports; adaptive generation: obtaining an optimum layout projected by internal rib plates of the machine tool supports on a bearing plane; and after-treatment: drawing a projection configuration of the machine tool supports on the bearing plane along a specified direction to obtain an internal rib plate layout design scheme of the machine tool supports. According to the intelligent rib plate layout design method, adaptive generation standards of the bearing configuration are established, so that design of high specific stiffness of the machine tool supports is achieved, low-carbon material-saving requirements are met, and the method can be widely applied to optimization design of heavy and super-heavy manufacturing equipment bearing configurations.

Description

technical field [0001] The invention belongs to a method for optimizing the design of bearing parts of heavy-duty and super-heavy manufacturing equipment, in particular to an intelligent design method for the rib plate layout of machine tool supports facing high specific stiffness. Background technique [0002] The current low-carbon, environmentally friendly and efficient production methods have prompted people to continue to make in-depth thinking about how to better realize the "low-carbon turn" in the development process of heavy and super-heavy manufacturing equipment, and this thinking just vividly reflects People's comprehensive performance requirements for key structures such as CNC machine tool supports have undergone a profound change from the "high rigidity level" in the sense of deformation in the past to the "high rigidity ratio level" in the sense of low carbon in the future. [0003] In the design process of the existing heavy-duty and super-heavy-duty manufac...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G06F17/50
Inventor 李宝童洪军邱志惠王哲琳闫素娜张浩
Owner XI AN JIAOTONG UNIV
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