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Featured researches published by Fu Yucan.


Chinese Journal of Aeronautics | 2010

Grindability and Surface Integrity of Cast Nickel-based Superalloy in Creep Feed Grinding with Brazed CBN Abrasive Wheels

Ding Wenfeng; Xu Jiuhua; Chen Zhenzhen; Su Honghua; Fu Yucan

The technique of creep feed grinding is most suitable for geometrical shaping, and therefore has been expected to improve effectively material removal rate and surface quality of components with complex profile. This article studies experimentally the effects of process parameters (i.e. wheel speed, workpiece speed and depth of cut) on the grindability and surface integrity of cast nickel-based superalloys, i.e. K424, during creep feed grinding with brazed cubic boron nitride (CBN) abrasive wheels. Some important factors, such as grinding force and temperature, specific grinding energy, size stability, surface topography, microhardness and microstructure alteration of the sub-surface, residual stresses, are investigated in detail. The results show that during creep feed grinding with brazed CBN wheels, low grinding temperature at about 100 °C is obtained though the specific grinding energy of nickel-based superalloys is high up to 200-300 J/mm3. A combination of wheel speed 22.5 m/s, workpiece speed 0.1 m/min, depth of cut 0.2 mm accomplishes the straight grooves with the expected dimensional accuracy. Moreover, the compressive residual stresses are formed in the burn-free and crack-free ground surface.


Chinese Journal of Aeronautics | 2012

Tool Life and Surface Integrity in High-speed Milling of Titanium Alloy TA15 with PCD/PCBN Tools

Su Honghua; Peng Liu; Fu Yucan; Xu Jiuhua

Abstract Titanium alloys are widely used in aeronautics that demand a good combination of high strength, good corrosion resistance and low mass. The mechanical properties lead to challenges in machining operations such as high process temperature as well as rapidly increasing tool wear. The conventional tool materials are not able to maintain their hardness and other mechanical properties at higher cutting temperatures encountered in high speed machining. In this work, the new material tools, which are polycrystalline diamond (PCD) and polycrystalline cubic boron nitride (PCBN) tools, are used in high-speed milling of Ti-6.5Al-2Zr-1Mo-1V (TA15) alloy. The performance and wear mechanism of the tools are investigated. Compared to PCBN tool, PCD tool has a much longer tool life, especially at higher cutting speeds. Analyses based on the SEM and EDX suggest that attrition, adhesion and diffusion are the main wear mechanisms of PCD and PCBN tools in high-speed milling of TA15. Oxidation wear is also observed at PCBN tool/workpiece interface. Roughness, defects, micro-hardness and microstructure of the machined surface are investigated. The recorded surface roughness values with PCD/PCBN tools are bellow 0.3 μm at initial and steady cutting stage. Micro-hardness analysis shows that the machined surface hardening depth with PCD and PCBN tools is small. There is no evidence of sub-surface defects with PCD and PCBN tools. It is concluded that for TA15 alloy, high-speed milling can be carried out with PCD/PCBN tools.


Chinese Journal of Aeronautics | 2010

Dimension Accuracy and Surface Integrity of Creep Feed Ground Titanium Alloy with Monolayer Brazed CBN Shaped Wheels

Yang Changyong; Xu Jiuhua; Ding Wenfeng; Chen Zhenzhen; Fu Yucan

Titanium alloy tenon is creep feed ground with monolayer brazed cubic boron nitride (CBN) shaped wheels. The dimension accuracy of the tenon is assessed and the results indicate that it completely meets the requirement of blade tenon of aero-engine. Residual stresses, surface roughness, microstructure and microhardness are measured on ground surfaces of the specimen, which are all compared with that ground with vitrified CBN wheels. Under all the circumstances, compressive residual stress is obtained and the depth of the machining affected zone is found to be less than 40 μm. No phase transformation is observed at depths of up to 100 μm below the surface, though plastic deformation is visible in the process of grain refinement. The residual stress and microhardness of specimens ground with brazed CBN wheels are observed to be lower than those ground with vitrified ones. The arithmetic mean roughness (Ra) values obtained are all below 0.8 μm.


Science China-technological Sciences | 2002

Fundamental studies on enhancing heat transfer in contact zone during high efficiency grinding

Hongjun Xu; Fu Yucan; Sun Fanghong; Xu Xipeng


Archive | 2013

Method and device for forming high-pressure and low-temperature jet flow by cutting coolant

Xu Jiuhua; Ding Wenfeng; Lv Dongsheng; Fu Yucan; Ma Xiaodi; Yang Changyong


Archive | 2015

Cubic boron nitride grinding wheel with abrasive particles distributed sequentially in three dimensions and manufacturing method thereof

Ding Wenfeng; Xu Jiuhua; Chen Zhenzhen; Yang Changyong; Su Honghua; Fu Yucan; Miao Qing


Archive | 2015

Heat pipe grinding wheel for dry cutting for difficult-to-machined materials and method for manufacturing heat pipe grinding wheel

Fu Yucan; Chen Jiajia; He Qingshan; Chen Chen; Zhang Wei


Archive | 2013

Device and method for realizing three-dimensional coordinated and ordered arrangement of grinding materials and hollow balls

Ding Wenfeng; Xu Jiuhua; Chen Zhenzhen; Ma Changyu; Song Chengjie; Yang Changyong; Fu Yucan; Su Honghua


Archive | 2013

Super-speed grinding experiment method for single abrasive grain

Fu Yucan; Tian Lin; Xu Jiuhua; Xu Hongjun; Ding Wenfeng


Archive | 2014

Compression type milling and grinding cutter used for composite material processing

Chen Yan; Fu Yucan; Han Shengchao; Zhou Jingwen; Xu Jiuhua; Yang Changyong; Su Honghua; Ding Wenfeng

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Xu Jiuhua

Nanjing University of Aeronautics and Astronautics

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Su Honghua

Nanjing University of Aeronautics and Astronautics

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Ding Wenfeng

Nanjing University of Aeronautics and Astronautics

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Yang Changyong

Nanjing University of Aeronautics and Astronautics

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Chen Zhenzhen

Nanjing University of Aeronautics and Astronautics

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Chen Wei

Huazhong University of Science and Technology

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Ge Yingfei

Nanjing Institute of Technology

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Ma Changyu

Nanjing University of Aeronautics and Astronautics

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Zhu Yejun

Nanjing University of Aeronautics and Astronautics

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Hongjun Xu

Nanjing University of Aeronautics and Astronautics

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