Sichuan Shunuo Innovative Technology Co., Ltd.
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Your Professional & Reliable Partner.
Company ProfileEstablished in June 2021, Sichuan Shunuo Innovative Technology Co., Ltd. is located in Deyang City, Sichuan Province, China. The company is a professional manufacturer integrating R&D, design, production, sales and service.The company's main products are superhard materials (diamond, CBN) wear-resistant tools (including diamond grinding paste, diamond saw blades, diamond files, diamond grinding wheels, diamond grinding heads, diamond hole drills, CBN grinding wheels, bronze ...
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Year Established

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Million+
Employees

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Million+
Annual Sales
China Sichuan Shunuo Innovative Technology Co., Ltd. High quality
Trust Seal, Credit Check, RoSH and Supplier Capability Assessment. company has strictly quality control system and professional test lab.
China Sichuan Shunuo Innovative Technology Co., Ltd. DEVELOPMENT
Internal professional design team and advanced machinery workshop. We can cooperate to develop the products you need.
China Sichuan Shunuo Innovative Technology Co., Ltd. MANUFACTURING
Advanced automatic machines, strictly process control system. We can manufacture all the Electrical terminals beyond your demand.
China Sichuan Shunuo Innovative Technology Co., Ltd. 100% SERVICE
Bulk and customized small packaging, FOB, CIF, DDU and DDP. Let us help you find the best solution for all your concerns.

Quality Diamond/CBN Wear-resistant Tools & Twin Screw Extruder Parts Manufacturer

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Analysis of China’s export data of superhard materials and their products from January to April 2024
Analysis of China’s export data of superhard materials and their products from January to April 2024   From January to April 2024, China exported 51,200 tons of superhard products, up 8.33% year-on-year; the export value was US$504 million; the export unit price was US$9.83/kg, down 4.43% year-on-year. Looking at April alone, China exported 13,200 tons of superhard products, up 0.47% year-on-year; the export value was US$132 million, down 2.42% year-on-year; the export unit price was US$9.99/kg, down 2.88% year-on-year. Against the backdrop of a weak global recovery and weakening external demand, superhard products have shown strong resilience, especially the export volume and unit price of turning tools, boring reamers, and stone grinding mills have increased significantly.   At the perspective of export regions, export destinations are highly concentrated. From January to April, the top ten destinations accounted for 52.49% of the total export volume and 62.22% of the total export value. Among them, India is still the largest export destination, with export volume and export value accounting for 22.05% and 12.97% respectively. In terms of export volume, the export volume of destinations such as Hong Kong, Vietnam, the United Arab Emirates, and Japan increased significantly year-on-year; in terms of export value, Vietnam and South Korea increased significantly year-on-year.   At the perspective of customs export statistics, the export volume of superhard materials from January to April still showed a trend of increasing volume and decreasing price. The unit price of processed diamonds decreased significantly year-on-year, and the overall industry competition was still relatively fierce. The export volume and price of superhard products increased year-on-year, while the unit price of exports decreased year-on-year. The decline in the unit price of exports shows that the overseas superhard products market is also becoming increasingly fierce. But overall, the overseas market demand and market size for superhard products are still increasing.
Encyclopedia of cutting blades: How many types of cutting blades do you know?
Encyclopedia of cutting blades: How many types of cutting blades do you know?   Each cutting blade has its specific uses and advantages. Choosing the right cutting blade depends on the type of material being cut and the required cutting effect.   Resin cutting blade: This cutting blade is made of resin as a binder, combined with glass fiber mesh and other materials, and is suitable for cutting difficult-to-cut materials such as alloy steel and stainless steel. It has high tensile, impact and bending strength, and is suitable for cutting ordinary steel, stainless steel metal and non-metallic materials.   Diamond cutting blade: This cutting blade is mainly composed of diamond particles and a metal matrix, and is suitable for cutting hard and brittle materials such as stone, concrete, prefabricated panels, new and old roads, ceramics, etc. Diamond, as the hardest substance at present, can play a cutting role during use.   Ceramic cutting blade: This cutting blade is suitable for cutting ceramics, glass, limestone, marble and other materials, with high hardness and high brittleness.   Cut-off car cutting blade: Suitable for cutting metals, plastics, rubber and other materials, usually with a large thickness and high roughness.   Tungsten steel cutting blade: suitable for cutting various metals, with high hardness and wear resistance.   There are various types of cutting blades, which can be distinguished by materials such as resin, diamond, etc., or by shapes such as round and special shapes. In addition, different cutting blades are suitable for different materials such as metal and stone, and have characteristics such as high speed and wear resistance. In short, there are many types of cutting blades to meet various cutting needs.

2024

07/24

Professor Wang Chengyong's team at Guangdong University of Technology successfully developed a new type of diamond grinding wheel
Professor Wang Chengyong's team at Guangdong University of Technology successfully developed a new type of diamond grinding wheel   Diamond grinding wheels are considered to be ideal tools for processing hard and brittle materials such as ceramics, glass and sapphire due to their high sharpness, mechanical properties and grinding efficiency. However, traditional diamond grinding wheel manufacturing processes, such as electroplating, sintering and brazing processes, have defects such as low manufacturing efficiency, high cost and serious pollution in the manufacturing process; and the interface adhesion between diamond abrasives and the matrix is ​​low, the grinding wheel has a short service life and low processing efficiency.   Recently, Professor Wang Chengyong's team at Guangdong University of Technology proposed a new type of single-layer diamond grinding wheel using zirconium-based amorphous alloy as a binder and diamond particles as abrasives. The proposed new method utilizes the plastic behavior of zirconium-based amorphous alloys in the supercooled liquid phase, and realizes the efficient and controllable manufacturing of single-layer diamond grinding wheels through rapid heating and pressurization. The focus was on studying the rheological behavior of amorphous alloys in the supercooled liquid phase under rapid heating and pressurization; using Ti-coated diamond particles as abrasives, the interface structure and composition of titanium-coated diamond-zirconium-based amorphous alloys were explored, revealing their interface bonding mode and bonding strength; the main failure modes and surface integrity in the grinding process were identified, and the grinding performance of the manufactured single-layer diamond grinding wheel was compared with that of commercial electroplated and brazed grinding wheels, providing new strategies for the design and manufacture of high-performance single-layer diamond grinding wheels for processing hard and brittle materials.

2024

07/24

Diamond semiconductors, the future of the US power grid?
Diamond semiconductors, the future of the US power grid?   Diamond may be the super semiconductor that the US power grid needs, helping the grid and electric vehicles manage large amounts of electricity more efficiently.   Power outages cost the United States more than $150 billion a year, and the grid also faces challenges such as aging infrastructure and increasingly severe weather events. The United States aims to achieve carbon neutrality by 2050, so increasing grid capacity and integrating more renewable energy are critical. Diamond semiconductors can greatly improve the energy efficiency of artificial intelligence data centers, electric vehicles, and small consumer electronics. Therefore, the US government has increased its investment to develop new diamond-based power electronics technology.   Last November, the US Department of Energy announced a $42 million grant to 15 projects to develop next-generation semiconductor technologies to improve grid reliability, resilience, and flexibility. Some of these include: developing diamond semiconductor transistors for grid control infrastructure to accommodate more distributed generation and fluctuating loads; developing ultra-wide bandgap light-triggered devices to meet the needs of fast protection of solid-state transformers; developing photoconductive semiconductor switching devices using advanced ultra-wide bandgap materials to improve control of the grid; developing ultra-wide bandgap switching devices with voltages and speeds exceeding the current most advanced technology, thereby providing more complex control methods for the grid; developing light-triggered diamond semiconductor switching devices to achieve a revolutionary breakthrough in grid protection technology, etc.   In addition, the University of Illinois has also received millions of dollars in funding from the Department of Energy for projects such as developing light-triggered diamond semiconductor switching devices and creating high-power diamond optoelectronic devices.

2024

07/23