Invention Application
WO2006089414A1 SYSTEMS, METHODS AND APPARATUS FOR NON-DISRUPTIVE AND NON-DESTRUCTIVE INSPECTION OF METALLURGICAL FURNACES AND SIMILAR VESSELS
审中-公开
冶金炉和类似船只的非破坏性和非破坏性检查的系统,方法和装置
- Patent Title: SYSTEMS, METHODS AND APPARATUS FOR NON-DISRUPTIVE AND NON-DESTRUCTIVE INSPECTION OF METALLURGICAL FURNACES AND SIMILAR VESSELS
- Patent Title (中): 冶金炉和类似船只的非破坏性和非破坏性检查的系统,方法和装置
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Application No.: PCT/CA2006/000261Application Date: 2006-02-22
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Publication No.: WO2006089414A1Publication Date: 2006-08-31
- Inventor: SADRI, Afshin , WALTERS, Gary
- Applicant: HATCH LTD. , SADRI, Afshin , WALTERS, Gary
- Applicant Address: 2800 Speakman Drive, Sheridan Science and Technology Park, Mississauga, Ontario CA
- Assignee: HATCH LTD.,SADRI, Afshin,WALTERS, Gary
- Current Assignee: HATCH LTD.,SADRI, Afshin,WALTERS, Gary
- Current Assignee Address: 2800 Speakman Drive, Sheridan Science and Technology Park, Mississauga, Ontario CA
- Agency: BERESKIN & PARR
- Priority: US11/061,630 20050222; US60/721,977 20050930
- Main IPC: G01N3/30
- IPC: G01N3/30 ; G01N29/07 ; G01B17/02 ; G01B15/02 ; F27D21/00 ; F27D1/00
Abstract:
Some embodiments of the present invention provide systems, methods and apparatus for more accurately determining the thickness of a refractory lining included in an operating metallurgical furnace. Specifically, in some embodiments a transient propagated stress wave is used to determine the condition of a refractory lining, and additionally, provide a systematic way to include the affect that temperature has on the velocity of a compressive wave through a heated refractory material and/or accretions. As identified in aspects of the present invention, and contrary to the common understanding in the art, the velocity of a stress wave, at each frequency and in a refractory material, is not necessarily constant over a temperature range. In accordance with aspects of some specific embodiments of the invention, a scaling factor α can be calculated for each refractory material to adjust for the presumed velocity of the stress wave through each refractory material.
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