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Yangzhou Shunye Electric Co., Ltd
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Yangzhou Shunye Electric Co., Ltd

  • E-mail

    754974449@qq.com

  • Phone

    13952701310

  • Address

    Liubao Town Economic Development Zone, Baoying County, Yangzhou City

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Flexible mica board

NegotiableUpdate on 12/15
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Overview

Flexible mica board is processed using various CNC machining equipment and made into various insulation materials according to customer drawing requirements. Produce insulation components of different shapes, such as insulation cylinders, insulation rods, boxes, and V-rings

Product Details

Yangzhou Shunye Electric Co., Ltd. is a technology-based production enterprise established in 2015. The company is located in Baoying County, Liubao Industrial Concentration Zone, Jiangsu/Yangzhou, China.
Business scope: Yangzhou Shunye Electric Co., Ltd. specializes in producing insulation materials. The supplier code for China Aluminum Corporation is gys423102a. We provide high-quality products to many large domestic enterprise groups such as China Aluminum Corporation, China Aluminum Corporation, State Power Investment Corporation, Shanghai Electric Group, Pangang Group Co., Ltd., China Eastern Electric Group Co., Ltd., Southern Power Grid Corporation, Baoye Group, 22MCC, 7MCC, 17MCC, etc.

Flexible mica board We use various CNC machining equipment to produce products made of various insulation materials according to customer drawing requirements. Produce insulation components of different shapes, such as insulation cylinders, insulation rods, boxes, and V-rings.

Flexible mica board Attention should be paid to the following aspects during processing:

1、 Try to choose the design reference on the parts as the positioning reference. When formulating the machining plan for parts, the first step is to select a precision benchmark for machining center. This requires consideration of how to use rough benchmarks to machine the various surfaces of the precision benchmark during rough machining, that is, the positioning benchmarks used on the machining center should be processed in the previous ordinary machine tool or epoxy board machining center process. This is easy to ensure the accuracy relationship between the machining surfaces of each workstation. Moreover, when some surfaces need to be completed by multiple clamping or other machine tools, choosing the same benchmark positioning as the design benchmark can not only avoid positioning errors caused by non coincidence of benchmarks, ensure machining accuracy, but also simplify program programming.

Secondly, when it is not possible to simultaneously complete workstation machining, including the design reference, on a CNC machining center, efforts should be made to align the positioning reference with the design reference. At the same time, it is also necessary to consider that after using this benchmark for positioning, all key precision parts can be machined in one clamping operation. In order to avoid the deformation, collision, and scratching of precision machined parts due to multiple non critical dimensional processing and turnover, while considering completing as much machining content as possible at once (such as screw holes, free holes, chamfers, non critical surfaces, tool inspections, etc.), the processes completed on the machining center are generally arranged later.

Thirdly, when both the machining reference and the machining of each workstation are completed on the CNC machining center, the selection of the positioning reference should consider completing as much machining content as possible. For this reason, it is necessary to consider a positioning method that facilitates the machining of all surfaces, such as using a one side two pin positioning method for the box body, in order to facilitate the machining of other surfaces by the tool.

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