The sapphire cutting machine makes life more brilliant and colorful.
Time:
2019-11-13
The market demand of the industry determines the direction of industrial development. Jiangsu Tianjing Intelligent Equipment Co., Ltd. has seen sapphire significantly promote the development of the laser industry in the 3C consumer electronics sector. This trend predicts that sapphire will open a brand new Silk Road for the laser industry. Based on the current technological advancements and research, there are still some minor challenges with sapphire as a screen, but this does not hinder the development of sapphire screen technology in the laser field.
Starting from Apple's initial use of sapphire material as the casing material for the new generation of iPhones, sapphire cutting machines have begun to stir within the laser industry. The reason why sapphire laser cutting machines have not been developed until now is not only due to sapphire being a low-yield material but also because of the structural components of sapphire that deter many. It is a material that is harder than any other natural material except diamond. This beautiful "gem" of sapphire has prompted domestic laser companies to strive to seize market opportunities.
Sapphire, being wear-resistant and scratch-resistant, has also gained significant attention from manufacturers in various sectors such as smartwatches, smart wearables, cover manufacturers, mobile manufacturers, LED manufacturers, watch manufacturers, and the optoelectronics industry. This material is now widely applied in the 3C consumer electronics industry, with applications like sapphire home keys and cover keys already being very mature. This means that sapphire cutting machines have largely solved the tricky problem of the difficulty in cutting sapphire and the complexity of the processing technology. Due to the fragility of sapphire during processing, the cost-effectiveness of sapphire flat screens has been established, with costs exceeding ten times that of tempered glass. The complexity of the processing technology and the issue of breakage have previously hindered the application of sapphire in the 3C industry.
With the expansion of the sapphire glass market in recent years, the issues of low sapphire yield and production costs have been partially resolved. It is reported that the investment enthusiasm for sapphire in the industry has surged: according to incomplete statistics, there are currently dozens of listed companies involved in the sapphire industry chain in the A-share market, and there are also a considerable number of companies planning to go public that are investing in sapphire. Approximately 150 companies globally are involved in sapphire, with 74 located in China. This has greatly satisfied the demand for the application of sapphire materials and has significantly addressed the laser industry's need for sapphire material expansion. In the future, using sapphire as a mobile screen in the 3C consumer electronics industry will no longer be a pipe dream.
Currently, this material is about to be widely applied in the 3C consumer electronics industry. Protection glass and home keys for smartphones from Apple, Samsung, LG, Huawei, and others are using or will soon use sapphire. Its superior characteristics, such as high precision, high dielectric constant, and high thermal conductivity, are also highly anticipated for applications in optics and technology. This means that sapphire laser cutting machines have largely solved the tricky problem of the difficulty in cutting sapphire and the complexity of the processing technology.
The market demand of the industry determines the direction of industrial development. Sapphire has significantly promoted the development of the laser industry in the 3C consumer electronics sector. This trend predicts that sapphire will open a brand new Silk Road for the laser industry. Based on the current technological advancements and research, there are still some minor challenges with sapphire as a screen, but this does not hinder the development of sapphire screen technology in the laser field.
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