Suspended composite insulator string and method of using 3D printing composite insulator string
A composite insulator and 3D printing technology, applied in the direction of suspension/strain insulators, insulators, electrical components, etc., can solve problems such as wasting time, reducing construction efficiency, and unreliable connections, and achieve simplification of procedures, reduction of manpower and material resources, and economic benefits and significant social benefits
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Publication Date
- 2017-02-15
Smart Images

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Abstract
Description
technical field
[0001] The present invention relates to the field of electrical equipment processing, and in particular to a method for manufacturing and forming an integrated composite insulator string and a hanging composite insulator string based on droplet 3D printing technology and traditional manufacturing. Background technique
[0002] 3D printing (3D printing), also known as additive manufacturing technology, appeared in the mid-1990s. Its source can be traced back to rapid prototyping technology (Rapid Prototyping, RP). From the development of 3D computer-aided design (3D CAD), people hope to directly convert design into physical objects conveniently.
[0003] With the continuous progress of science and technology, 3D printing technology is becoming more and more mature, and 3D printing technology has become the core technology of high-tech manufacturing. The most cutting-edge and popular 3D printing "metal droplet deposition technology" in the world today does not...
Examples
specific Embodiment approach
[0030] Step 1: Take out the insulator string, cast the insulator string into shape, preheat the surface of the power fittings, use a ray stress tester to analyze the residual stress of the microstructure of the cladding layer, and obtain the performance of the power fittings, Internal structure parameters, draw the three-dimensional model of the ball head, ball socket, bowl head hanging plate, and ball head hanging ring in the computer, and generate the three-dimensional CAD model of the ball head, ball socket, bowl head hanging plate and ball head hanging ring in the computer After the 3D model is generated, the files converted into STL format are respectively imported into the 3D droplet printer.
[0031]Step 2: Use the 3D droplet printer to make the 3D CAD model of the part, then slice and layer the model according to a certain thickness, convert the 3D information of the part into a series of 2D contour information, and set the 3D industrial computer on the side of the drop...