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A design implementation method of a punching module

An implementation method and punching technology, applied in the field of intelligent mold design and manufacturing, to achieve the effect of improving design efficiency, eliminating repetitive labor, and improving design efficiency and rationality

Pending Publication Date: 2019-05-07
成都数模码科技有限公司
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AI Technical Summary

Problems solved by technology

At present, the most advanced mold design technology only makes some scattered parametric models for some knowledge points. For the randomness of the input and the complexity of the environment (compared to a certain part) brought about by it, There is no application of mathematical models to solve the problem; the final result can only be obtained through manual judgment and manual cycle trial and error

Method used

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  • A design implementation method of a punching module

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Embodiment Construction

[0027] The method of the present invention will be further described in detail below in conjunction with the accompanying drawings and embodiments of the present invention.

[0028] figure 1 It is a schematic flowchart of the design and implementation method of the punching module according to the embodiment of the present invention. like figure 1 As shown, the design and implementation method of the punching module mainly includes the following steps:

[0029] Step 101: Input graphic elements and related parameters. The input graphic elements and related parameters include process information (WPName), working profile (SW), drawing profile (SD), process product (SP), presser split curve (CSUP), stroke (ST ), part material thickness (PT), punching contour set (PS) and punching coordinate system set.

[0030] Step 102: Perform feature extraction to obtain a feature recognition result, that is, obtain a set of relevant parameters and a set of coordinates.

[0031] Here, the...

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Abstract

The invention discloses a design implementation method of a punching module. The design implementation method comprises the steps that A, graphic elements and relevant parameters are input; B, performing feature extraction to obtain a feature recognition result, namely obtaining a relevant parameter set and a coordinate set; C, carrying out model selection calculation according to the parameter set, and carrying out substitution calculation to obtain a fixed seat and a female die sleeve outline set; D, performing correlation interaction calculation to obtain a graph set meeting conditions; E,judging whether the mutual logic and form-position relationship between the parts meet the standard or not; F, shape and position calculation is carried out, parameters, features and a graph set needed by the punching module are instantiated, and the parameters, the features and the graph set meeting the instantiation requirement are obtained; G, performing instantiation processing to obtain a visual punching scheme and an assembly result; And H, carrying out instantiation and then carrying out interactive processing to obtain a final punching scheme and related characteristics, graphs, bodiesand tree graph leaf nodes thereof.

Description

technical field [0001] The invention relates to intelligent mold design and manufacturing technology, in particular to a design and realization method of a punching module. Background technique [0002] In the existing mold design technology, for the design of the punching module, it is generally used to manually judge the size parameters of some punching elements, by calling the standard part model library or a single parameterized part, but when to use these parts , the shape, size and relationship between these parts need to be manually calculated and determined by the designer. At present, the most advanced mold design technology only makes some scattered parametric models for some knowledge points. For the randomness of the input and the complexity of the environment (compared to a certain part) brought about by it, No mathematical model has been applied to solve it; still, the final result can only be obtained through manual judgment and manual cycle trial and error. ...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G06F17/50
Inventor 宋和立李恒许号全张福其他发明人请求不公开姓名
Owner 成都数模码科技有限公司
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