-
Aerosol Jet Printing Technology
Ultrasonic Atomization Powder-Production Technology
Electronics Materials and Energy Storage MORE >JACS: Micrometer-Level Precision—Aerosol Jet Printing Enables Controlled Patterning and Compositing of COF Thin Films “Adv. Funct. Mater.”: MXene Microsupercapacitors Fabricated via Aerosol Jet Printing for Flexible, Washable Textile Energy Storage “Small”: MXene 3D-AJP—Realizing a Three-Dimensional, Oriented, Free-Form Network of Two-Dimensional MXene Nanosheets via Aerosol 3D PrintingSensor and Internet of Things Field MORE >Small Methods: High-Performance MXene Microsupercapacitor Fabrication Technology Based on Aerosol Jet Printing Small Methods: A Low Environmental Footprint, Non-Sensitive Disposable Humidity and Temperature Sensor Fabricated via Aerosol Jet Printing on Cellulose Substrates npj Advanced Manufacturing: Aerosol Jet Printing Empowers All-Bio-Based Humidity Sensors to Tackle the Challenge of Electronic Waste
Achievements
Achievement
In recent years, driven by the surging global demand for clean energy, high-efficiency energy-storage technologies have emerged as a research hotspot in the energy sector. Among these, latent-heat thermal energy storage (LHTES) has garnered significant attention due to its high energy density and excellent thermal stability. Recently, a joint team from the Norwegian University of Science and Technology and Warsaw University of Technology in Poland, among other institutions, published a groundbreaking study in the journal Results in Engineering: for the first time, they have successfully developed ultra-high-temperature phase-change material (PCM) microcapsules based on a silicon–iron eutectic alloy, with an operating temperature exceeding 1,200°C and an energy-storage density far surpassing that of existing technologies. This article will provide an overview of this cutting-edge advancement, covering its background, underlying technical principles, experimental results, and potential future applications.
With the rapid advancement of 3D printing (additive manufacturing) technology, the demand for high-performance metal powders is steadily increasing, particularly in industries such as aerospace, automotive, and medical. As a next-generation metal powder, titanium-based composite powder has emerged as a research hotspot due to its outstanding properties, including low density, high strength, and excellent corrosion resistance. However, conventional powder-production methods suffer from issues such as non-uniform particle size, severe agglomeration, and compositional heterogeneity, which limit their practical applications. Recently, an innovative ultrasonic atomization technique has offered a new solution to these challenges. This paper provides an in-depth exploration of the “Preparation and Performance Study of Multi-Scale Reinforced Titanium-Based Composite Powders via Ultrasonic Atomization,” proposed by Professor Dong Fuyu and his team at Shenyang University of Technology. It examines the process flow, microstructure, mechanical and functional performance, and future application prospects of this material.
With the continuous advancement of materials science, the demand for high-performance alloys with superior corrosion resistance and wear resistance is steadily increasing. This is particularly true in industries such as aerospace, energy, and electronics, where the performance requirements for coating materials are constantly rising. Traditional powder-production methods, including powder metallurgy and mechanical milling, are increasingly unable to meet the need for precise control and functionalization of complex materials. Against this backdrop, ultrasonic atomization—a green and highly efficient new powder-production technology—has gradually emerged as a focal point in the research and development of advanced materials.
Beijing Yunshang Intelligent Manufacturing Technology Co., Ltd.
Hotline(24 hours a day)
Headquarters Address: Room 708, Building 2, HICOOL Industrial Park, Nanfaxin, Shunyi District, Beijing
Follow
Customer service WeChat
WeChat Official Account
COOKIES
Our website uses cookies and similar technologies to personalize the advertising shown to you and to help you get the best experience on our website. For more information, see our Privacy & Cookie Policy
COOKIES
Our website uses cookies and similar technologies to personalize the advertising shown to you and to help you get the best experience on our website. For more information, see our Privacy & Cookie Policy
These cookies are necessary for basic functions such as payment. Standard cookies cannot be turned off and do not store any of your information.
These cookies collect information, such as how many people are using our site or which pages are popular, to help us improve the customer experience. Turning these cookies off will mean we can't collect information to improve your experience.
These cookies enable the website to provide enhanced functionality and personalization. They may be set by us or by third-party providers whose services we have added to our pages. If you do not allow these cookies, some or all of these services may not function properly.
These cookies help us understand what you are interested in so that we can show you relevant advertising on other websites. Turning these cookies off will mean we are unable to show you any personalized advertising.
COPYRIGHT 2026 Beijing Yunshang Intelligent Manufacturing Technology Co., Ltd.
Powered by 300.cn Privacy Policy
YUNS-123456
Smart Customer Service
WhatsApp:864009005667
Company email:support@chinayuns.com
Telephone:400 900 5667
Sorry,当前栏目暂无内容!
您可以查看其他栏目或返回 首页
Sorry,The current column has no content!
You can view other columns or return Home