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Robot grinding system of titanium alloy support

A technology of titanium alloy and robot, which is applied in the field of automatic processing system of medical prosthetics, can solve problems such as threats to cardiopulmonary function

Inactive Publication Date: 2018-06-29
余成付
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] Human prosthetics with a high finish can be obtained through the grinding process, but the grinding process poses a huge threat to the cardiopulmonary function of the human body

Method used

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  • Robot grinding system of titanium alloy support
  • Robot grinding system of titanium alloy support
  • Robot grinding system of titanium alloy support

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Embodiment Construction

[0025] The present invention will be further described in detail below in conjunction with the accompanying drawings, but does not constitute any limitation to the present invention. Similar component numbers in the accompanying drawings represent similar components. As mentioned above, the present invention provides a robot grinding system for titanium alloy brackets. In the high-precision manufacturing process of titanium alloy brackets, the automatic feeding of titanium alloy brackets is realized by using the workbench, and the grinding of titanium alloy brackets is realized by industrial robots. The automatic clamping, handling, and polishing mechanism are used to realize high-quality polishing operations on titanium alloy brackets; the robot grinding system for titanium alloy brackets of the present invention realizes fully automatic unmanned polishing operations on titanium alloy brackets, which is beneficial to obtain titanium alloy brackets. High finish and high consist...

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PUM

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Abstract

The invention relates to medical automation equipment, in particular to an automatic processing system for medical prosthetic limbs. A robot grinding system of a titanium alloy support comprises a machine frame, a workbench used for conveying the titanium alloy support to the position near the robot, the robot used for clamping the titanium alloy support and polishing mechanisms used for polishingand grinding the titanium alloy support, wherein the two polishing mechanisms are arranged, and comprise a polishing machine I and a polishing machine II; the workbench and the robot are fixedly connected to a standard platform of the machine frame, the polishing machine I and the polishing machine II is fixedly connected to an auxiliary platform of the machine frame, and a funnel area is arranged at the lower part of the auxiliary platform; and the workbench, the polishing machine I and the polishing machine II are located in the working range of the robot. According to the robot grinding system of the titanium alloy support, full-automatic unmanned polishing operation of the titanium alloy support is realized, so that the high finish degree and height consistency of the titanium alloy support can be easily obtained.

Description

technical field [0001] The invention relates to medical automation equipment, more specifically, to an automatic processing system for medical artificial limbs. Background technique [0002] Human prostheses have the characteristics of high precision and high quality. There is a possibility of contamination of human prostheses by manual handling, so it is necessary to use industrial robots for handling. [0003] High-gloss prosthetics can be obtained through the grinding process, but the grinding process poses a huge threat to the cardiopulmonary function of the human body. Contents of the invention [0004] The purpose of the present invention is to provide a robot grinding system for titanium alloy brackets. In the high-precision manufacturing process of titanium alloy brackets, the automatic feeding of titanium alloy brackets is realized by using the workbench, and the grinding of titanium alloy brackets is realized by industrial robots. Automatic clamping, handling, a...

Claims

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Application Information

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IPC IPC(8): B24B41/00B24B41/02B24B41/06B24B21/00B24B21/18B24B21/20
CPCB24B41/005B24B21/006B24B21/008B24B21/18B24B21/20B24B41/02B24B41/06
Inventor 余成付
Owner 余成付
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