TY - GEN
T1 - Innovative technology investigation into cryogenic cooling green grinding using liquid nitrogen jet
AU - Li, C. H.
AU - Lu, B. H.
AU - Ding, Y. C.
AU - Cai, G. Q.
PY - 2009
Y1 - 2009
N2 - Grinding processes are mainly technique employed widely as a finishing process in a variety of materials, such as metals, hardness and brittleness and ductile materials machining to achieve good dimensional and form accuracy of the product with acceptable surface integrity.However, grinding is associated with high specific energy requirements which may be an order higher than that required in other conventional machining processes such as turning, planing, milling etc. Therefore, in grinding process, high grinding zone temperature may lead to thermal damage to the work surface, induces micro-cracks and tensile residual stresses at the ground surfaces, which deteriorate surface quality and integrality of the ground surface. Therefore, grinding fluids are applied in different forms to control such high temperature, but they are ineffective, especially under high speed grinding conditions where the energy of the fluid is not sufficient to penetrate the boundary layer of air surrounding the wheel. Moreover, the conventional flood supply system demands more resources for operation, maintenance, and disposal, and results in higher environmental and health problems. Therefore, there are critical needs to reduce the use of cutting fluid in grinding process, and cryogenic cooling grinding is a promising solution.The work presented in this paper aims at evaluating the grindability and surface integrity of the nickel base superalloy resulting from the application of cryogenic cooling.
AB - Grinding processes are mainly technique employed widely as a finishing process in a variety of materials, such as metals, hardness and brittleness and ductile materials machining to achieve good dimensional and form accuracy of the product with acceptable surface integrity.However, grinding is associated with high specific energy requirements which may be an order higher than that required in other conventional machining processes such as turning, planing, milling etc. Therefore, in grinding process, high grinding zone temperature may lead to thermal damage to the work surface, induces micro-cracks and tensile residual stresses at the ground surfaces, which deteriorate surface quality and integrality of the ground surface. Therefore, grinding fluids are applied in different forms to control such high temperature, but they are ineffective, especially under high speed grinding conditions where the energy of the fluid is not sufficient to penetrate the boundary layer of air surrounding the wheel. Moreover, the conventional flood supply system demands more resources for operation, maintenance, and disposal, and results in higher environmental and health problems. Therefore, there are critical needs to reduce the use of cutting fluid in grinding process, and cryogenic cooling grinding is a promising solution.The work presented in this paper aims at evaluating the grindability and surface integrity of the nickel base superalloy resulting from the application of cryogenic cooling.
KW - Cryogenic cooling
KW - Grinding
KW - Innovative technology
KW - Surface integrity
UR - https://www.scopus.com/pages/publications/73849109002
U2 - 10.1109/ICMSS.2009.5302527
DO - 10.1109/ICMSS.2009.5302527
M3 - 会议稿件
AN - SCOPUS:73849109002
SN - 9781424446391
T3 - Proceedings - International Conference on Management and Service Science, MASS 2009
BT - Proceedings - International Conference on Management and Service Science, MASS 2009
T2 - International Conference on Management and Service Science, MASS 2009
Y2 - 20 September 2009 through 22 September 2009
ER -