繁体中文

It is said that laser additive manufacturing is good, but what is the advantage?

186
2023-11-08 14:06:49
查看翻譯

When it comes to additive manufacturing, some people may not have heard of it, but when it comes to its other name: 3D printing, no one is unaware.

In fact, the name 'additive manufacturing' better illustrates the essence of this processing method. From ancient times to the present, humans have put in great effort to achieve the goal of processing 'raw materials into the shapes we need'. From the Stone Age when cutting wood into spears and splitting stones into axes, to later turning, milling, drilling, chamfering, and then to electrochemical, chemical, and high-temperature processing, although the technology has improved, the idea is still continuous, which is to peel off or decompose a certain part of the processed material in various ways.

The reason why additive manufacturing is called a groundbreaking technology is because it is more like the process of building blocks, using powdered materials as raw materials to construct the objects we need through layer by layer printing. If traditional processing technology is "subtraction", then additive manufacturing can be said to be "addition". One is' from being to being 'and the other is' from being to being', which is a revolutionary change in industrial production thinking.

The flexibility and variability of lasers and the high degree of freedom in additive manufacturing can be said to be a perfect match. In the Selective Laser Melting Deposition (SLM) process, laser can become a high-power and high-quality heat source for additive manufacturing. Materials such as metals, plastics, ceramics, etc. can be melted and stacked layer by layer to form the desired 3D structure. Another type of photocuring molding technology (Stereo lithography Apparatus, SLA) is the use of ultraviolet or laser beams to irradiate and solidify liquid photosensitive resins. From point to line, from line to surface, form the required three-dimensional structure.

Image source: pixabay

Laser additive manufacturing parts have a fine structure and excellent performance, and are commonly used in industries such as aerospace, automobiles, ships, medical and health that require high precision and performance of products. This is because laser additive manufacturing has the following advantages compared to traditional processing modes:

01 Precision and meticulous effect
Due to the fact that additive manufacturing is built by stacking layers, the required geometric shapes can be designed in advance in the software. During processing, the idea of "subtracting" may not be effective for the detailed structure inside the workpiece or cavity (although there is currently laser engraving technology, it is usually only applicable to transparent materials and has limitations). However, for additive manufacturing, even the most delicate structure can start from micro particles and achieve processing effects.

02 is both personalized and versatile
Additive manufacturing technology itself has extremely high flexibility, allowing customized products to be made according to needs to meet special needs. For example, in medical scenarios, dental patients need to customize a denture, and in cases where universal products cannot perfectly fit, relevant products can be customized. For large-scale equipment, Northwestern Polytechnical University also uses laser additive manufacturing technology to produce TC4 alloy wing ribs with a length of over 3 meters for COMAC C919. With the assistance of software, additive manufacturing data can achieve perfect reproduction of the geometric shape, size, and structure of objects under controlled processing conditions.

03 High material utilization rate
Additive processing is truly a "lossless processing". In the traditional sense of processing, the process of "subtracting" means that cutting, turning, and carving will inevitably generate a certain amount of waste. Additive manufacturing technology directly processes materials as needed, theoretically enabling the preparation of as many materials as needed, reducing the generation of waste. Although the current cost of additive processing cannot be ignored, "non-destructive processing" will be the future development trend.

Image source: pixabay

The top three industries with the highest proportion of additive manufacturing usage in 2022 are aerospace, medical, and automotive industries. It can be seen that in terms of cost, the current additive manufacturing still has some limitations and is not suitable for promotion in industries with low profit margins. Rather than being a new processing method, additive processing provides a valuable "way of thinking" for the manufacturing industry. The perfect integration of laser technology and additive processing will not only be limited to current processing processes such as SLM and SLA, but also have the potential to explore more process models on the path of "addition".

Source: OFweek

相關推薦
  • Personnel changes at Optimax, a precision optical manufacturer

    On November 25th, Optimax, the largest precision optics manufacturer in the United States, announced the appointment of Joseph Spilman as CEO and Pete Kupinski as President. After developing a comprehensive succession plan, Optimax CEO Rick Plympton will retire along with President and Founder Mike Mandina.Mandina stepped down in 2021 and passed on the title of CEO to Spilman, strategically appo...

    2024-11-28
    查看翻譯
  • Hamamatsu Photonics completes construction of new factory area

    Recently, Hamamatsu Photonics in Japan completed the construction of a new building at Miyakoda Manufacturing Co., Ltd. in Hamami ku, Hamamatsu City. The completion ceremony was held on July 29th, and the factory will start full production in November 2024, increasing overall production capacity by 2.5 times.Source: Hamamatsu PhotonicsIt is reported that Hamamatsu Photonics focuses on the developm...

    2024-08-01
    查看翻譯
  • Chip based comb laser illumination and unlocking of new applications

    Researchers have shown that dissipative Kerr solitons (DKS) can be used to create chip based optical frequency combs with sufficient output power for optical atomic clocks and other practical applications. This progress may lead to chip based instruments being able to perform precise measurements that were previously only possible in a few specialized laboratories.Gr é gory Moille from the ...

    2023-08-30
    查看翻譯
  • Significant breakthrough in intelligent spectral environment perception research at Xi'an Institute of Optics and Fine Mechanics

    Recently, the Xi'an Institute of Optics and Fine Mechanics of the Chinese Academy of Sciences has made significant progress in the field of intelligent spectral environmental perception. Relevant research results have been published in the top journal in the field of environmental science, Environmental Science&Technology (Nature Index, 5-Year IF: 11.7), and have been selected as cover papers....

    03-20
    查看翻譯
  • Shanghai Institute of Optics and Fine Mechanics has made progress in the research of interferometer wavefront calibration methods

    Recently, the research team of the High end Optoelectronic Equipment Department at the Shanghai Institute of Optics and Fine Mechanics, Chinese Academy of Sciences, has made progress in the study of wavefront calibration methods for interferometer testing. The relevant research results were published in Optics Express under the title of "High precision wavefront correction method ininterometer tes...

    2024-07-23
    查看翻譯