TY - JOUR
T1 - Investigation on the transformations in grinding affected layer of ZTC
AU - Wang, Xi Bin
AU - Shi, Han Min
AU - Ren, Jing Xin
PY - 2000/1
Y1 - 2000/1
N2 - A complex transformation may be induced in the grinding affected layer of zirconia-toughened ceramics (ZTC). To explore the characteristics of transformation such as direction, magnitude and depth-dependent distribution under the ground surface of ZTC, Mg-PSZ, Y-PSZ and Si3N4+ZrO2 etc., four kinds of ceramics have been ground using an orthogonal design test. By means of grinding forces, XRD analysis and SEM observation the main causes and mechanism of transformation are discussed for the conventional grinding processes. It is shown that: the ZTC phase would change either from t to m or from m to t, depending on the composition and heat-treatment of the ceramic materials: Transformation due to grinding is noticeable and influenced by the grinding parameters (Vs, ap, Vw) strongly; The thickness of transformation layer is larger than the depth of wheel cut.
AB - A complex transformation may be induced in the grinding affected layer of zirconia-toughened ceramics (ZTC). To explore the characteristics of transformation such as direction, magnitude and depth-dependent distribution under the ground surface of ZTC, Mg-PSZ, Y-PSZ and Si3N4+ZrO2 etc., four kinds of ceramics have been ground using an orthogonal design test. By means of grinding forces, XRD analysis and SEM observation the main causes and mechanism of transformation are discussed for the conventional grinding processes. It is shown that: the ZTC phase would change either from t to m or from m to t, depending on the composition and heat-treatment of the ceramic materials: Transformation due to grinding is noticeable and influenced by the grinding parameters (Vs, ap, Vw) strongly; The thickness of transformation layer is larger than the depth of wheel cut.
UR - http://www.scopus.com/inward/record.url?scp=0033889636&partnerID=8YFLogxK
U2 - 10.1016/S0890-6955(99)00064-4
DO - 10.1016/S0890-6955(99)00064-4
M3 - Article
AN - SCOPUS:0033889636
SN - 0890-6955
VL - 40
SP - 165
EP - 172
JO - International Journal of Machine Tools and Manufacture
JF - International Journal of Machine Tools and Manufacture
IS - 2
ER -