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Small Autoclave for Wind Power Generation

Durability testing of CFRP composite materials. Compact design for easy transportation.

In the wind power generation industry, the durability of components used in harsh environments, such as wind turbine blades, is crucial. In particular, the quality of composite materials like CFRP (carbon fiber reinforced plastic), which can withstand strong winds and temperature changes, significantly affects product lifespan. Proper curing and molding are essential to maximize the performance of these materials. The small autoclave "DANDELION" series efficiently conducts testing and research on CFRP, contributing to the reliability improvement of wind power generation equipment. 【Application Scenarios】 - Prototype production of CFRP wind turbine blades - Durability evaluation tests for composite materials - Examination of material curing conditions 【Effects of Introduction】 - Improvement in the quality of CFRP materials - Extension of product lifespan - Increased efficiency in research and development

Related Link - https://www.hanyuda.co.jp/products/dandelion/

basic information

【Features】 - Compact design for testing and research facilities - Easy to move with casters - Supports 5-step temperature increase, enabling various curing test patterns - MAX temperature 200℃, MAX pressure 0.98MPa (DANDELION) - MAX temperature 380℃, MAX pressure 1.8MPa, equipped with cooling unit (DANDELION Forte) 【Our Strengths】 We leverage the technology cultivated in boiler manufacturing to design and manufacture pressure vessels. We have a proven track record in the production of autoclaves for CFRP curing molding and provide products tailored to our customers' needs.

Price range

Delivery Time

Applications/Examples of results

【Applications】 ■Evaluation tests ■Manufacturing and prototyping of small parts 【Examples of Achievements】 ■Delivered as equipment for prototyping and evaluation tests at industrial technology centers 〈Delivery Locations〉  Hiroshima Prefectural Western Industrial Technology Center  Chiba Prefectural Industrial Support Technology Research Institute  Ehime Prefectural Industrial Technology Research Institute  Tokyo Metropolitan Industrial Technology Research Center  Tokushima Prefectural Industrial Technology Center ■Delivered as teaching equipment for universities, vocational schools, and high schools 〈Delivery Locations〉  Shinshu University  Tsukuba University  The University of Tokyo  Nagoya University  Tokyo Institute of Technology  Nagano Prefectural Minami-Shinshu Technical College  Gifu University  Akita Prefectural Yuri Technical High School  Aichi Prefectural Komaki Technical High School ■Delivered as equipment for research and development, prototyping, and manufacturing of small CFRP products for private companies 〈Main Industries〉  Automotive parts manufacturing  Aircraft parts manufacturing  Medical device manufacturing  IC and electronic components manufacturing  Rubber products manufacturing  Glass and film components manufacturing  Industrial materials and industrial materials manufacturing *For more details, please refer to the catalog or website, or feel free to contact us.

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We have leveraged the technology we have cultivated through boiler manufacturing to aim to become Japan's leading "clutch door" manufacturer, focusing on the production and sales of round and square clutch door-type pressure vessels. As pressure vessels for production equipment, their applications have diversified alongside the development of various industries and advancements in production technology. We consistently manufacture everything from various steel plates to industrial machinery at our factory, and we also handle OEM for various processing equipment, including our own brand of mushroom culture sterilization devices and autoclaves. By newly establishing a research and development department, we aim to enhance our technological capabilities to respond to the high added value of production equipment, while further refining our "blacksmithing skills" to continue creating valuable products in the future.