Invention Grant
- Patent Title: High-toughness zeta-phase carbides
- Patent Title (中): 高韧性ζ相碳化物
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Application No.: US13000737Application Date: 2009-06-23
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Publication No.: US08685874B2Publication Date: 2014-04-01
- Inventor: Dinesh K. Shetty , Raymond A. Cutler , Kenneth Hackett , Shane Verhoef
- Applicant: Dinesh K. Shetty , Raymond A. Cutler , Kenneth Hackett , Shane Verhoef
- Applicant Address: US UT Salt Lake City
- Assignee: University of Utah Research Foundation
- Current Assignee: University of Utah Research Foundation
- Current Assignee Address: US UT Salt Lake City
- Agency: Thorpe North & Western LLP
- International Application: PCT/US2009/048283 WO 20090623
- International Announcement: WO2010/008839 WO 20100121
- Main IPC: C04B35/52
- IPC: C04B35/52 ; C04B35/56

Abstract:
A ceramic material having a high toughness can include carbon and a transition metal. The transition metal can have an elemental body centered cubic structure at room temperature. A substantial amount of the ceramic can be of a rhombohedral ζ phase of the transition metal and carbon. These materials can have a high thermal shock resistance, high fracture toughness, and good high temperature performance. A particulate mixture of a carbon source and a transition metal source can be assembled (12) and reacted (14) under high pressure and high temperature. The transition metal source can include a transition metal of a metal which has an elemental BCC structure at room temperature. The particulate mixture carbon to transition metal ratio is chosen so as to achieve a zeta phase carbide and processing is affected in order to retain the zeta phase at a substantial weight percent of the material (i.e. greater than about 5 wt %). The carbide ceramic can be cooled (16) and depressurized (18) to acquire the ceramic material.
Public/Granted literature
- US20110287923A1 HIGH-TOUGHNESS ZETA-PHASE CARBIDES Public/Granted day:2011-11-24
Information query
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