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Mechanical properties of AISI 1045 ceramic coated materials by nano indentation and crack opening displacement method 被引量:1
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作者 王燕荣 王一奇 惠志鹏 《Journal of Central South University》 SCIE EI CAS 2012年第11期3023-3027,共5页
Abstract: An effective approach was conducted for estimating fracture toughness using the crack opening displacement (COD) method for plasma enhanced chemical vapor deposition (PECVD) coating materials. For this ... Abstract: An effective approach was conducted for estimating fracture toughness using the crack opening displacement (COD) method for plasma enhanced chemical vapor deposition (PECVD) coating materials. For this evaluation, an elastoplastic analysis was used to estimate critical COD values for single edge notched bending (SENB) specimens. The relationship between fracture toughness (Kic) and critical COD for SENB specimens was obtained. Microstructure of the interface between AleO3-TiO2 composite ceramic coatings and AISI 1045 steel substrates was studied by using scanning electron microscope (SEM). Chemical compositions were clarified by energy-dispersive X-ray spectroscopy (EDS). The results show that the interface between of Al203-TiO2 and substrate has mechanical combining. The nanohardness of the coatings can reach 1 200 GPa examined by nanoindentation. The Klc was calculated according to this relationship from critical COD. The bending process produces a significant relationship of COD independent of the axial force applied. Fractographic analysis was conducted to determine the crack length. From the physical analysis of nanoindentation curves, the elastic modulus of 1045/AI2O3-TiO2 is 180 GPa for the 50 μm film. The highest value of fracture toughness for 1045/A1203-TiO2-250 μm is 348 MPa·mv2. 展开更多
关键词 crack opening displacement (COD) single edge notched bending (SENB) plasma enhanced chemical vapor deposition(PECVD) fracture toughness NANOINDENTATION
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酚醛泡沫增韧改性研究进展 被引量:6
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作者 江国梁 闫作为 米垚 《材料开发与应用》 CAS 2015年第6期94-98,共5页
综述了酚醛泡沫的两种增韧途径,一种是通过添加改性剂的物理共混增韧方式,改性剂包含柔性聚合物、纳米粒子、纤维等;另一种是通过化学键链的增韧方式,将柔性链段通过共价键与树脂基体相连,并简要介绍了通过改善发泡工艺或者采用可聚合... 综述了酚醛泡沫的两种增韧途径,一种是通过添加改性剂的物理共混增韧方式,改性剂包含柔性聚合物、纳米粒子、纤维等;另一种是通过化学键链的增韧方式,将柔性链段通过共价键与树脂基体相连,并简要介绍了通过改善发泡工艺或者采用可聚合固化剂等方式制备低酸性酚醛泡沫的方法。 展开更多
关键词 酚醛泡沫 物理共混增韧 化学增韧 低酸性
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