Quartz rod cutting process

A cutting process and quartz rod technology, applied in the field of quartz rods, can solve the problems of waste of raw materials, broken quartz rods, affecting the size and specifications of quartz rods, etc., and achieve the effect of convenient use and good viscosity

Active Publication Date: 2019-05-24
扬州美和光电科技有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Benefits of technology

This patented technology involves wrapping an elastic material called silica glass around certain parts of a sapphire crystal or other similar materials for better stability during machining operations. By fixing these components together through glue on their surfaces, they are securely attached without shaking them loose over time due to gravity or external forces like impacting objects. Additionally, this process allows for easy separation after processing if needed.

Problems solved by technology

The technical problem addressed in this patented text relates to how to prevent any tilts or deviations from being made while cutting crystal rods with an oscillating saw blade on their way through machining processes like those described earlier without causing damage to them.

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0043] The preparation method of the adhesive is as follows: 70 parts of urethane acrylate and 5 parts of polyamide resin are placed in a mixing tank, and then heated while stirring, and then 10 parts of rosin, 40 parts of paraffin, and 1 part of triphenol-based For methane triglycidyl ether epoxy resin, add 2 parts of BHT at the end, heat the mixture to 90-100°C, mix and stir for 30-40min to obtain the adhesive and set aside.

Embodiment 2

[0045] The preparation method of the adhesive is as follows: 60 parts of urethane acrylate and 3 parts of polyamide resin are placed in a mixing tank, and then heated while stirring, and then 15 parts of rosin, 70 parts of paraffin, and 1 part of triphenol-based For methane triglycidyl ether epoxy resin, add 3 parts of BHT at the end, heat the mixture to 90-100°C, mix and stir for 30-40min to obtain the adhesive and set aside.

Embodiment 3

[0047] The preparation method of the adhesive is as follows: 100 parts of polyurethane acrylate and 5 parts of polyamide resin are placed in a mixing tank, and then heated while stirring, and then 15 parts of rosin, 75 parts of paraffin, and 2 parts of triphenol-based For methane triglycidyl ether epoxy resin, add 5 parts of BHT at the end, heat the mixture to 90-100°C, mix and stir for 30-40min to obtain an adhesive, and set aside.

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PUM

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Abstract

The invention discloses a quartz rod cutting process. The quartz rod cutting process includes the following steps that firstly, pretreatment is conducted, specifically, a quartz rod is soaked in hydrofluoric acid with the concentration being 5% and then taken out to be rinsed through pure water; secondly, a swelling binder is coated on a surface layer of the quartz rod; thirdly, the quartz rod isplaced in a wax sticking groove, an adhesion agent is poured into the wax sticking groove, and the adhesion agent wraps the quartz rod; fourthly, the quartz rod wrapped with the adhesion agent is subjected to still standing, solidification and forming at the room temperature; fifthly, the solidified and formed adhesion agent and quartz rod are taken out, and the adhesion agent and the quartz rod are integrally cut through a cutting machine; and sixthly, the cut adhesion agent and quartz rod are placed in a boiling pot to be subjected to boiling andadhesion agent removal treatment, and the cutquartz rod is obtained. According to the quartz rod cutting process, the adhesion agent wraps the quartz rod, the quartz rod is integrally fixed through the solidified and formed adhesion agent, the adhesion agent and the quartz rod are integrally cut through the cutting machine, and thus the quartz rod cannot deform after being cut.

Description

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Claims

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Application Information

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Owner 扬州美和光电科技有限公司
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