Aspherical Precision Molding Machine Market Report: the global market size is projected to grow from USD 86 million in 2024 to USD 178 million by 2030,

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Published: 2024-05-10

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According to the new market research report "Aspherical Precision Molding Machine- Global Market Share and Ranking, Overall Sales and Demand Forecast 2024-2030", published by QYResearch, the global Aspherical Precision Molding Machine market size is projected to grow from USD 86 million in 2024 to USD 178 million by 2030, at a CAGR of 13% during the forecast period (2024-2030).

 

 Aspherical Precision Molding Machine

 

Source: QYResearch, "Aspherical Precision Molding Machine- Global Market Share and Ranking, Overall Sales and Demand Forecast 2024-2030”

 

 

  • Global Aspherical Precision Molding Machine Top 6Players Rankingand Market Share (Ranking is based on the revenue of 2023, continually updated)

 Aspherical Precision Molding Machine

Source: QYResearch, "Aspherical Precision Molding Machine- Global Market Share and Ranking, Overall Sales and Demand Forecast 2024-2030”

 

 

This report profiles key players of Aspherical Precision Molding Machine such as Guangdong Kingding Optical Technology, Aachen technology (shenzhen), Shibaura Machine, SYS, Daeho Technology Korea and Shenzhen Sen Di Source of Pneumatic Equipment Manufacturing, etc.

According to QYResearch Top Players Research Center, the global key manufacturers of Aspherical Precision Molding Machine include Guangdong Kingding Optical Technology, Aachen technology (shenzhen), etc. In 2022, the global top three players had a share approximately 72.0% in terms of revenue.

 

  • Aspherical Precision Molding Machine, Global Market Size, Split by Product Segment

 Aspherical Precision Molding Machine

Source: QYResearch, "Aspherical Precision Molding Machine- Global Market Share and Ranking, Overall Sales and Demand Forecast 2024-2030”

 

 

 

In terms of product type, currently Multi-station Molding Machine is the largest segment, hold a share of 91.1%.


  • Aspherical Precision Molding Machine, Global Market Size, Split by Application Segment

 Aspherical Precision Molding Machine

Source: QYResearch, "Aspherical Precision Molding Machine- Global Market Share and Ranking, Overall Sales and Demand Forecast 2024-2030”

 

 

 

In terms of product application, currently Security is the largest segment, hold a share of 45.6%.

 

  • Aspherical Precision Molding Machine, Global Market Size, Split by Region

 Aspherical Precision Molding Machine

 Aspherical Precision Molding Machine

Source: QYResearch, "Aspherical Precision Molding Machine- Global Market Share and Ranking, Overall Sales and Demand Forecast 2024-2030”

 


Market Drivers:

D1: With the rapid development of the global automotive industry, aspheric glass lenses can more accurately match the high-quality requirements of on-board cameras under the intelligent trend. Optical components, as an important entrance for information collection at the perception layer such as vehicle lenses and lidar, will benefit from the development of the smart driving market. As the aspheric glass lens market continues to expand, as an important production equipment for moulding aspheric glass lenses, aspheric moulding machines will also benefit and have broad room for development.

D2: Aspheric glass lenses are widely used in optical communications, fiber lasers, automotive optics, security and other fields with their unique advantages such as wear resistance, high temperature resistance, low distortion rate, and high stability. In the future, with the development of markets in emerging application fields such as biomedicine, aspheric glass lens application scenarios will become more abundant, and the market space for aspheric moulding machines will further open up.

D3: In recent years, the country has continuously introduced relevant policies to promote the development of the modern information industry. The optical component manufacturing industry, as a product of the combination of traditional optical manufacturing and modern information technology, has also been supported and encouraged by relevant policies. The policy promotes the development of the optical component manufacturing industry from both the technical and application levels, and also drives the development of aspherical molding machines.

 

 

Challenge:

C1: The rapid development of optical glass molding technology has significantly reduced the cost of aspheric lenses, and the supply has also increased significantly, and more and more optical systems have begun to adopt them. For example, thin and light zoom lenses are widely used in mobile phones. With the development of optical components towards small, thin, low-cost and efficient processing, the rapid development of aspherical molding machines has been further driven.

C2: Optical system technology in manned spaceflight, laser weapons, optical fiber communication components, optical integrated circuits and other industries has put forward new requirements for the accuracy of ultra-precision optical glass, and its processing accuracy has even reached the nanometer level. Traditional optical element manufacturing methods cannot be used. These ultra-precision optical elements must be manufactured through optical glass processing equipment and ultra-precision processing technology. Therefore, aspheric molding machines will also develop in the direction of ultra-precision processing.

C3: With the further expansion of downstream application fields and strong market demand, aspheric molding machines will benefit from increased supply and reduced costs in the future, and their prices will gradually decrease.

C4: At present, the transition temperature of low-melting point glass is mostly 300~700°C, and the requirements for the heat resistance of materials such as molds are still very high. The development of high-performance low melting point glass is also one of the future trends. In terms of mold materials, they mainly rely on hard materials such as tungsten carbide and silicon carbide that are difficult to process. Therefore, developing new mold materials or modifying existing mold materials to improve mold performance is also a trend in the industry.

 


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