High-end chip drawing surface sus430 steel strip

The high-end chip steel strip, designed with splicing blocks and multi-layer materials, solves the problems of inconvenient maintenance and fixed size of integral steel strips, enabling partial replacement and flexible adaptation, and meeting the stability and precision requirements of high-end chip production.

CN224479513UActive Publication Date: 2026-07-10NINGBO XIN ZHAO PRECISION STAINLESS STEEL CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
NINGBO XIN ZHAO PRECISION STAINLESS STEEL CO LTD
Filing Date
2025-09-16
Publication Date
2026-07-10

AI Technical Summary

Technical Problem

Existing high-end chip steel strips have an integral structure, and partial damage requires replacement of the entire strip, increasing repair time and costs. In addition, the fixed size results in poor adaptability and flexibility.

Method used

The design employs splicing blocks, edge banding strips, and screws. The splicing blocks are connected by engaging and locking the slots, the edge banding strips are engaged and sealed with the splicing blocks, and the screws provide reinforcement. The surface of the splicing blocks is covered with multiple layers of materials to improve performance, including a graphene thermal conductive layer, a polyimide insulating layer, a modified fluororubber buffer layer, and a titanium alloy reinforcing layer.

Benefits of technology

It enables the replacement of only the splicing block when there is partial damage, reducing maintenance time and cost. It is compatible with different sized bearing platforms, improving applicability and flexibility. Furthermore, it enhances the stability, safety, and durability of the steel strip through multi-layered materials.

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Abstract

The utility model relates to high -end chip manufacturing auxiliary material technical field discloses a high -end chip is with the surface SUS430 steel band of wire drawing, including a plurality of splicing blocks, edge strip and screw, four sides of splicing block all are fixedly connected with the block one, and the adjacent side edge is provided with the mortise one of adaptation with the block one, and the connection between splicing block is realized through the clamping of block one and mortise one, the inside of edge strip is provided with the mortise two and block two of adaptation with the peripheral splicing block after splicing is completed, and the edge package is realized through the clamping of mortise two, block two and peripheral splicing block, and screw is used for reinforcing edge strip and splicing block, and splicing block whole adopts SUS430 stainless steel material quality, and the cooperation gap of block one and mortise one is controllable. In the utility model, the steel band is combined by a plurality of splicing blocks, and a single block can be replaced individually when damaged, reducing maintenance time and cost, and can be flexibly adapted to different size bearing tables, improving scene applicability and flexibility.
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