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Hardness and slip systems of orthorhombic hen egg-white lysozyme crystals
Authors:Ryo Suzuki  Takeharu Kishi  Shiro Tsukashima  Kei Wako  Kenichi Kojima
Institution:1. Department of Materials System Science, Yokohama City University, Yokohama, Japan;2. Department of Education, Yokohama Soei University, Yokohama, Japan
Abstract:Hardness and slip systems by an indentation method were investigated on different habit planes of orthorhombic hen egg-white lysozyme (O-HEWL) crystals containing water. A dependence of the hardness on the water-evaporation time exhibits three stages as incubation, transition and saturated ones, as tetragonal (T)-HEWL crystals reported previously. The hardness values of (1 1 0), (0 1 0) and (0 1 1) habit planes of O-HEWL in the incubation stage or wet condition exhibits 6, 8 and 10 MPa, respectively. The hardness depends on indented planes but it is independent of the air-humidity and crystal volumes. These values correspond to the intrinsic hardness for O-HEWL crystals containing water. In the incubation stage, the slip traces are clearly observed around the indentation mark and the corresponding six kinds of slip systems are identified to be {0 1 1}<1 0 0>, {1 1 0}<1 1 0>, {0 1 1}<0 1 1>, {1 1 0}<0 0 1>, {1 0 0}<0 0 1> and {0 1 0}<0 0 1>.
Keywords:Plastic deformation  mechanical properties  dislocations  protein crystals  micro hardness
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