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Influence of Surface Roughness on Mechanical Properties of Two Computer-aided Design/Computer-aided Manufacturing (CAD/CAM) Ceramic Materials

机译:表面粗糙度对两种计算机辅助设计/计算机辅助制造(CAD / CAM)陶瓷材料的力学性能的影响

摘要

SUMMARY The aim of this study was to evaluate the influence of surface roughness on surface hardness (Vickers; VHN), elastic modulus (EM), and flexural strength (FLS) of two computer-aided design/computer-aided manufacturing (CAD/CAM) ceramic materials. One hundred sixty-two samples of VITABLOCS Mark II (VMII) and 162 samples of IPS Empress CAD (IPS) were ground according to six standardized protocols producing decreasing surface roughnesses (n=27/group): grinding with 1) silicon carbide (SiC) paper #80, 2) SiC paper #120, 3) SiC paper #220, 4) SiC paper #320, 5) SiC paper #500, and 6) SiC paper #1000. Surface roughness (Ra/Rz) was measured with a surface roughness meter, VHN and EM with a hardness indentation device, and FLS with a three-point bending test. To test for a correlation between surface roughness (Ra/Rz) and VHN, EM, or FLS, Spearman rank correlation coefficients were calculated. The decrease in surface roughness led to an increase in VHN from (VMII/IPS; medians) 263.7/256.5 VHN to 646.8/601.5 VHN, an increase in EM from 45.4/41.0 GPa to 66.8/58.4 GPa, and an increase in FLS from 49.5/44.3 MPa to 73.0/97.2 MPa. For both ceramic materials, Spearman rank correlation coefficients showed a strong negative correlation between surface roughness (Ra/Rz) and VHN or EM and a moderate negative correlation between Ra/Rz and FLS. In conclusion, a decrease in surface roughness generally improved the mechanical properties of the CAD/CAM ceramic materials tested. However, FLS was less influenced by surface roughness than expected.
机译:总结这项研究的目的是评估两种计算机辅助设计/计算机辅助制造(CAD / CAM)的表面粗糙度对表面硬度(Vickers; VHN),弹性模量(EM)和抗弯强度(FLS)的影响。 )陶瓷材料。根据六种标准规程研磨了162个VITABLOCS Mark II(VMII)样品和162个IPS Empress CAD(IPS)样品,产生了降低的表面粗糙度(n = 27 /组):用1)碳化硅(SiC)研磨)#80纸,2)SiC纸#120、3)SiC纸#220、4)SiC纸#320、5)SiC纸#500和6)SiC纸#1000。用表面粗糙度仪,VHN和EM用硬度压痕仪,FLS用三点弯曲试验测量表面粗糙度(Ra / Rz)。为了测试表面粗糙度(Ra / Rz)与VHN,EM或FLS之间的相关性,计算了Spearman等级相关系数。表面粗糙度的降低导致VHN从(VMII / IPS;中位数)263.7 / 256.5 VHN增加到646.8 / 601.5 VHN,EM从45.4 / 41.0 GPa增加到66.8 / 58.4 GPa,FLS从49.5 / 44.3兆帕至73.0 / 97.2兆帕。对于这两种陶瓷材料,Spearman等级相关系数都显示出表面粗糙度(Ra / Rz)与VHN或EM之间的负相关性很强,而Ra / Rz与FLS之间具有中等的负相关性。总之,表面粗糙度的降低通常会改善所测试的CAD / CAM陶瓷材料的机械性能。但是,FLS受表面粗糙度的影响小于预期。

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