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The use of etching process in medical precision engineering
Release Date:2022-03-24

With the continuous improvement of China's medical system, the demand for medical imaging equipment continues to climb. China Business Industry Researcher predicts that in 2021, the global and China medical imaging equipment market size reached $44.5 billion and $17.2 billion respectively. Among China's imaging equipment product segments, CT equipment market accounts for 22%, MRI equipment accounts for 19% and ultrasound equipment accounts for 17%. According to IHS statistics and forecasts, in 2021 China, the market size of X-ray imaging equipment growth of about 1.622 billion U.S. dollars. China Business Industry Research Institute predicts that in 2021, the ownership of CT equipment can reach 40,411 units.

医疗电子元器件蚀刻

Based on the continuous development of the level of medical technology, in 2021 in the medical electronic components demand reached $22,459.9, the sensor market size of 295.3 billion yuan, electronic components are electronic components and small extremely, the components of the instrument, which itself consists of a number of parts, can be common in the same kind of products. Sensor is a detection device, can feel the measured information, and can feel the information, according to certain laws transformed into electrical signals or other required forms of information output to meet the requirements of information transmission, processing, storage, display, recording and control. Core components are the lifeblood of the medical upstream supply chain and determine the technical height of the industry. Among them, the flat panel detector is a precise and valuable device, which plays a decisive role in imaging. Familiarity with its performance indicators is beneficial to imaging quality and reducing the dose of X-ray radiation, thus requiring major Chinese medical manufacturers to continuously upgrade their technology and pursue high precision, miniaturization and high precision in research and development.

医疗电子元器件蚀刻

Such as in minimally invasive surgery and other precision engineering requires precision tiny implanted body parts, the demand for miniaturization and precision is rising, the prototype parts need to be low-cost and precision to ensure tolerance within microns. The traditional process of stamping produces scratches on the edges of the cut and local burrs, which is very time-consuming and costly, and the hardness is too large and too small, while laser cutting makes the products produce scratches and burrs, etc. The two processes do not meet the fineness in medical equipment, and the products produce relatively large defects, which is also a shortcoming in the process. Therefore, high-precision, miniaturized medical parts using modern etching process approach, that is, photochemical etching, the process can achieve processing less than 0.1mm wall thickness of the plate to do structural processing, the principle is through the plate exposure, after the development, the etched area of the protective film out, in the etching process so that the metal contact chemical solution, the use of two positive graphics through the chemical grinding from both sides to achieve the dissolution of corrosion effect, the formation of concave and hollow molding effect. Zollida etching process through the digital module, you can improve or change the design at any time, to avoid high tooling costs and reduce production costs. Zhuolida etching process with the United States CHEMCUT etching line, Israel's light painting machine, France AUTOMA automatic roll-to-roll exposure machine and other advanced production equipment, can solve the precision of medical equipment in the tolerance of micron level. In medical equipment metal precision components, grids for X-ray machines, special scalpel blades, blood and fluid filter components, precision implants, stents, pacemaker components, orthopedic pins, bone reconstruction components, blades, chassis parts, gaskets, fascia plate light, electric encoders, gaskets, spacers, orifice plates, battery covers, clock seconds, grids, molecular sieves, optical components, optics, reticles and other successful practice for Medical towards high-precision, micron-level tolerances to provide a boost.

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