Chemically Activated Pressure Sintering of Oxides
Investigations into processing, manufacture, and testing of the MgO matrix have been made. Single crystal whiskers, fibers, and metallic wires have been incorporated into a magnesium oxide ceramic. The diametral strength of the composites is half the pure Magnesium oxide strength. The fracture mode...
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creator | Scala, E Schaeffer, N. C Penty, R. A |
description | Investigations into processing, manufacture, and testing of the MgO matrix have been made. Single crystal whiskers, fibers, and metallic wires have been incorporated into a magnesium oxide ceramic. The diametral strength of the composites is half the pure Magnesium oxide strength. The fracture mode is changed from intergranular with pure Magnesium oxide to a mixture of transgranular and intergranular on addition of fibers. Increasing the fiber content appears to increase the proportion of transgranular fracture. |
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Single crystal whiskers, fibers, and metallic wires have been incorporated into a magnesium oxide ceramic. The diametral strength of the composites is half the pure Magnesium oxide strength. The fracture mode is changed from intergranular with pure Magnesium oxide to a mixture of transgranular and intergranular on addition of fibers. Increasing the fiber content appears to increase the proportion of transgranular fracture.</description><language>eng</language><subject>Ceramics, Refractories and Glass ; COMPOSITE MATERIALS ; Elastomers and Rubber ; ELECTRON MICROSCOPY ; Fabrication Metallurgy ; FRACTOGRAPHY ; GRAPHITE ; HIGH TEMPERATURE ; Laminates and Composite Materials ; MAGNESIUM OXIDES ; MECHANICAL PROPERTIES ; MICROSTRUCTURE ; MIXTURES ; NICKEL ; PLATINUM ; REFRACTORY MATERIALS ; REINFORCING MATERIALS ; SINTERING ; SLURRY COATING ; STAINLESS STEEL ; WHISKERS(CRYSTALS) ; WIRE</subject><creationdate>1968</creationdate><rights>APPROVED FOR PUBLIC RELEASE</rights><oa>free_for_read</oa><woscitedreferencessubscribed>false</woscitedreferencessubscribed></display><links><openurl>$$Topenurl_article</openurl><openurlfulltext>$$Topenurlfull_article</openurlfulltext><thumbnail>$$Tsyndetics_thumb_exl</thumbnail><link.rule.ids>230,776,881,27544,27545</link.rule.ids><linktorsrc>$$Uhttps://apps.dtic.mil/sti/citations/AD0843107$$EView_record_in_DTIC$$FView_record_in_$$GDTIC$$Hfree_for_read</linktorsrc></links><search><creatorcontrib>Scala, E</creatorcontrib><creatorcontrib>Schaeffer, N. C</creatorcontrib><creatorcontrib>Penty, R. A</creatorcontrib><creatorcontrib>CORNELL UNIV ITHACA NY DEPT OF MATERIALS SCIENCE AND ENGINEERING</creatorcontrib><title>Chemically Activated Pressure Sintering of Oxides</title><description>Investigations into processing, manufacture, and testing of the MgO matrix have been made. Single crystal whiskers, fibers, and metallic wires have been incorporated into a magnesium oxide ceramic. The diametral strength of the composites is half the pure Magnesium oxide strength. The fracture mode is changed from intergranular with pure Magnesium oxide to a mixture of transgranular and intergranular on addition of fibers. Increasing the fiber content appears to increase the proportion of transgranular fracture.</description><subject>Ceramics, Refractories and Glass</subject><subject>COMPOSITE MATERIALS</subject><subject>Elastomers and Rubber</subject><subject>ELECTRON MICROSCOPY</subject><subject>Fabrication Metallurgy</subject><subject>FRACTOGRAPHY</subject><subject>GRAPHITE</subject><subject>HIGH TEMPERATURE</subject><subject>Laminates and Composite Materials</subject><subject>MAGNESIUM OXIDES</subject><subject>MECHANICAL PROPERTIES</subject><subject>MICROSTRUCTURE</subject><subject>MIXTURES</subject><subject>NICKEL</subject><subject>PLATINUM</subject><subject>REFRACTORY MATERIALS</subject><subject>REINFORCING MATERIALS</subject><subject>SINTERING</subject><subject>SLURRY COATING</subject><subject>STAINLESS STEEL</subject><subject>WHISKERS(CRYSTALS)</subject><subject>WIRE</subject><fulltext>true</fulltext><rsrctype>report</rsrctype><creationdate>1968</creationdate><recordtype>report</recordtype><sourceid>1RU</sourceid><recordid>eNrjZDB0zkjNzUxOzMmpVHBMLsksSyxJTVEIKEotLi4tSlUIzswrSS3KzEtXyE9T8K_ITEkt5mFgTUvMKU7lhdLcDDJuriHOHropJZnJ8cUlmXmpJfGOLgYWJsaGBubGBKQB25sonQ</recordid><startdate>196805</startdate><enddate>196805</enddate><creator>Scala, E</creator><creator>Schaeffer, N. C</creator><creator>Penty, R. A</creator><scope>1RU</scope><scope>BHM</scope></search><sort><creationdate>196805</creationdate><title>Chemically Activated Pressure Sintering of Oxides</title><author>Scala, E ; Schaeffer, N. C ; Penty, R. A</author></sort><facets><frbrtype>5</frbrtype><frbrgroupid>cdi_FETCH-dtic_stinet_AD08431073</frbrgroupid><rsrctype>reports</rsrctype><prefilter>reports</prefilter><language>eng</language><creationdate>1968</creationdate><topic>Ceramics, Refractories and Glass</topic><topic>COMPOSITE MATERIALS</topic><topic>Elastomers and Rubber</topic><topic>ELECTRON MICROSCOPY</topic><topic>Fabrication Metallurgy</topic><topic>FRACTOGRAPHY</topic><topic>GRAPHITE</topic><topic>HIGH TEMPERATURE</topic><topic>Laminates and Composite Materials</topic><topic>MAGNESIUM OXIDES</topic><topic>MECHANICAL PROPERTIES</topic><topic>MICROSTRUCTURE</topic><topic>MIXTURES</topic><topic>NICKEL</topic><topic>PLATINUM</topic><topic>REFRACTORY MATERIALS</topic><topic>REINFORCING MATERIALS</topic><topic>SINTERING</topic><topic>SLURRY COATING</topic><topic>STAINLESS STEEL</topic><topic>WHISKERS(CRYSTALS)</topic><topic>WIRE</topic><toplevel>online_resources</toplevel><creatorcontrib>Scala, E</creatorcontrib><creatorcontrib>Schaeffer, N. C</creatorcontrib><creatorcontrib>Penty, R. A</creatorcontrib><creatorcontrib>CORNELL UNIV ITHACA NY DEPT OF MATERIALS SCIENCE AND ENGINEERING</creatorcontrib><collection>DTIC Technical Reports</collection><collection>DTIC STINET</collection></facets><delivery><delcategory>Remote Search Resource</delcategory><fulltext>fulltext_linktorsrc</fulltext></delivery><addata><au>Scala, E</au><au>Schaeffer, N. C</au><au>Penty, R. A</au><aucorp>CORNELL UNIV ITHACA NY DEPT OF MATERIALS SCIENCE AND ENGINEERING</aucorp><format>book</format><genre>unknown</genre><ristype>RPRT</ristype><btitle>Chemically Activated Pressure Sintering of Oxides</btitle><date>1968-05</date><risdate>1968</risdate><abstract>Investigations into processing, manufacture, and testing of the MgO matrix have been made. Single crystal whiskers, fibers, and metallic wires have been incorporated into a magnesium oxide ceramic. The diametral strength of the composites is half the pure Magnesium oxide strength. The fracture mode is changed from intergranular with pure Magnesium oxide to a mixture of transgranular and intergranular on addition of fibers. Increasing the fiber content appears to increase the proportion of transgranular fracture.</abstract><oa>free_for_read</oa></addata></record> |
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source | DTIC Technical Reports |
subjects | Ceramics, Refractories and Glass COMPOSITE MATERIALS Elastomers and Rubber ELECTRON MICROSCOPY Fabrication Metallurgy FRACTOGRAPHY GRAPHITE HIGH TEMPERATURE Laminates and Composite Materials MAGNESIUM OXIDES MECHANICAL PROPERTIES MICROSTRUCTURE MIXTURES NICKEL PLATINUM REFRACTORY MATERIALS REINFORCING MATERIALS SINTERING SLURRY COATING STAINLESS STEEL WHISKERS(CRYSTALS) WIRE |
title | Chemically Activated Pressure Sintering of Oxides |
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