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Innovative Applications of Additive Manufacturing Technology in the Aerospace Field
With the continuous advancement of technology, additive manufacturing technology, also known as 3D printing technology, has become a revolutionary technology in the aerospace field. This technology allows for the manufacturing of complex-shaped parts by adding materials layer by layer, greatly promoting the development of the aerospace industry.
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2024
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What types of additive manufacturing technologies are there?
Additive manufacturing technology uses computer-aided design and digital manufacturing techniques to create actual objects by stacking materials layer by layer, unrestricted by traditional processing methods. Common technologies include SLA, SLS, and FDM. Additive manufacturing technology is gradually being applied across various industries, offering advantages such as rapid production of complex objects, customized manufacturing, material savings, and reduced environmental pollution. It faces challenges in manufacturing precision and surface quality control, but with technological advancements, it is believed that these challenges will gradually be overcome.
Standardization in additive manufacturing supports high-quality development in the industry.
Compared to traditional manufacturing with "subtractive manufacturing technology," 3D printing's "additive manufacturing technology" features low costs and short production cycles. It can directly generate products from computer drawings without the need for any molds, allowing for quick production in small batches and customization, as well as the ability to print shapes that traditional manufacturing techniques cannot produce.
In the wave of the digital economy, the optoelectronic device industry is rising strongly.
Optoelectronic devices can be divided into bulk optoelectronic devices, forward and reverse junction optoelectronic devices, heterojunctions, and multi-junction optoelectronic devices. Based on their functional purposes, they are mainly categorized into optical communication devices and display lighting devices. As functional devices based on the photoelectric conversion effect, their capabilities encompass a diverse range of functions including the generation, modulation, detection, connection, energy distribution and adjustment, signal amplification, and photoelectric and electro-optic conversion of optical signals.
The competitiveness of the optoelectronic device industry is continuously improving, and future development trends.
The biggest advantage of silicon photonics technology lies in its extremely high transmission rates, allowing data transfer speeds between processor cores to be up to 100 times faster or even more than current speeds. As a new generation of communication technology, the core idea of silicon photonics is 'using light instead of electricity,' which is also where its disruptive nature comes from. Currently, the development of integrated circuits has approached the limits set by Moore's Law, and silicon photonics technology is one of the directions for research beyond Moore's Law. Therefore, with the strong push from many international giants, the maturity of related technologies is just around the corner, and it will undoubtedly play a more important role in future communications.
Warm congratulations on the launch of the official website of Jiangsu Jicui Laser Technology Co., Ltd!
Jiangsu Jicui Laser Technology Co., Ltd. (referred to as 'Jicui Laser') was established in 2022. It is a mixed-ownership enterprise co-founded by the Shanghai Institute of Optics and Fine Mechanics of the Chinese Academy of Sciences, Jiangsu Provincial Industrial Technology Research Institute, and Nanjing Zhongke Shenguang Technology Co., Ltd. It is a high-tech enterprise in the field of lasers and optoelectronics, with a core team holding the majority of shares and state-owned enterprises holding minority shares.
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2023
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