Self-healing metal matrix composite of nitinol wire-reinforced A356 alloy matrix by stir casting technology
The current demand for novel and self-healing material in today’s industries is one of the key challenges. Many engineering applications required tailored properties including self-healing characteristics in novel engineering materials. In this regard, an attempt is made to develop the metal matrix...
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Veröffentlicht in: | Engineering Research Express 2023-09, Vol.5 (3), p.35038 |
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description | The current demand for novel and self-healing material in today’s industries is one of the key challenges. Many engineering applications required tailored properties including self-healing characteristics in novel engineering materials. In this regard, an attempt is made to develop the metal matrix composite of aluminum A356 alloy by utilizing the properties of Nitinol alloy (wire) through a semi-solid metal processing technique. The investigation was validated by light-microscope images of the developed material. Further, filed emission scanning electron microscopy images are taken from the specimens for morphological examination. The elemental confirmation of the produced material is conducted through Energy Dispersive X-Ray Analysis (EDX) spectrum. The results revealed the random dispersion of reinforcement in the matrix phase and EDX confirms that the major constituents of A356 alloy and the Nitinol wires. At last, the crack analysis is conducted before and after hearing which reveals that the interlocks of Nitinol wire with the alpha Al phase of base alloy can provide the ability to close the crack and it can recover the deformed surface by 17.35%. |
doi_str_mv | 10.1088/2631-8695/aceed3 |
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Many engineering applications required tailored properties including self-healing characteristics in novel engineering materials. In this regard, an attempt is made to develop the metal matrix composite of aluminum A356 alloy by utilizing the properties of Nitinol alloy (wire) through a semi-solid metal processing technique. The investigation was validated by light-microscope images of the developed material. Further, filed emission scanning electron microscopy images are taken from the specimens for morphological examination. The elemental confirmation of the produced material is conducted through Energy Dispersive X-Ray Analysis (EDX) spectrum. The results revealed the random dispersion of reinforcement in the matrix phase and EDX confirms that the major constituents of A356 alloy and the Nitinol wires. 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Res. Express</addtitle><description>The current demand for novel and self-healing material in today’s industries is one of the key challenges. Many engineering applications required tailored properties including self-healing characteristics in novel engineering materials. In this regard, an attempt is made to develop the metal matrix composite of aluminum A356 alloy by utilizing the properties of Nitinol alloy (wire) through a semi-solid metal processing technique. The investigation was validated by light-microscope images of the developed material. Further, filed emission scanning electron microscopy images are taken from the specimens for morphological examination. The elemental confirmation of the produced material is conducted through Energy Dispersive X-Ray Analysis (EDX) spectrum. The results revealed the random dispersion of reinforcement in the matrix phase and EDX confirms that the major constituents of A356 alloy and the Nitinol wires. At last, the crack analysis is conducted before and after hearing which reveals that the interlocks of Nitinol wire with the alpha Al phase of base alloy can provide the ability to close the crack and it can recover the deformed surface by 17.35%.</description><subject>Al-7Si alloy (A356)</subject><subject>nitinol</subject><subject>self-healing materials</subject><subject>semi-solid metal processing</subject><subject>shape memory alloy</subject><subject>smart materials metal matrix composites</subject><issn>2631-8695</issn><issn>2631-8695</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2023</creationdate><recordtype>article</recordtype><recordid>eNp9kL1PwzAQxS0EElXpzuiJiVAnjj86VhVQpEoMwGw5zrk1JHFkG9H896QqIAbE9E6n93u6ewhd5uQmJ1LOC07zTPIFm2sDUNMTNPlZnf6az9EsRleRkvOci1xM0NsTNDbbgW5ct8UtJN3gVqfg9tj4tvfRJcDe4s4l1_kGf7gAWQDXWR8M1HhJGce6afzwjVUDjskFbPQoY2YCsxtJvx0u0JnVTYTZl07Ry93t82qdbR7vH1bLTWYooymra0t1yQpGCkIKSU2tmTUWKg6VzAmpBCuJLDgTYlGWpZVCGG6J0JWWQIuaThE55prgYwxgVR9cq8OgcqIOfalDIepQiDr2NSLXR8T5Xr3699CNB_5nv_rDDmGvmKKKUEaoVP34xye32Hud</recordid><startdate>20230901</startdate><enddate>20230901</enddate><creator>Sharma, Sumit</creator><creator>Nandan, Gopal</creator><creator>Tyagi, R K</creator><general>IOP Publishing</general><scope>AAYXX</scope><scope>CITATION</scope><orcidid>https://orcid.org/0000-0001-5748-8535</orcidid><orcidid>https://orcid.org/0000-0001-6395-5216</orcidid></search><sort><creationdate>20230901</creationdate><title>Self-healing metal matrix composite of nitinol wire-reinforced A356 alloy matrix by stir casting technology</title><author>Sharma, Sumit ; Nandan, Gopal ; Tyagi, R K</author></sort><facets><frbrtype>5</frbrtype><frbrgroupid>cdi_FETCH-LOGICAL-c353t-ddf3a45250200283cda5fcfeb6eb8100b75408265779444f877c6f07aba8e32d3</frbrgroupid><rsrctype>articles</rsrctype><prefilter>articles</prefilter><language>eng</language><creationdate>2023</creationdate><topic>Al-7Si alloy (A356)</topic><topic>nitinol</topic><topic>self-healing materials</topic><topic>semi-solid metal processing</topic><topic>shape memory alloy</topic><topic>smart materials metal matrix composites</topic><toplevel>peer_reviewed</toplevel><toplevel>online_resources</toplevel><creatorcontrib>Sharma, Sumit</creatorcontrib><creatorcontrib>Nandan, Gopal</creatorcontrib><creatorcontrib>Tyagi, R K</creatorcontrib><collection>CrossRef</collection><jtitle>Engineering Research Express</jtitle></facets><delivery><delcategory>Remote Search Resource</delcategory><fulltext>fulltext</fulltext></delivery><addata><au>Sharma, Sumit</au><au>Nandan, Gopal</au><au>Tyagi, R K</au><format>journal</format><genre>article</genre><ristype>JOUR</ristype><atitle>Self-healing metal matrix composite of nitinol wire-reinforced A356 alloy matrix by stir casting technology</atitle><jtitle>Engineering Research Express</jtitle><stitle>ERX</stitle><addtitle>Eng. Res. Express</addtitle><date>2023-09-01</date><risdate>2023</risdate><volume>5</volume><issue>3</issue><spage>35038</spage><pages>35038-</pages><issn>2631-8695</issn><eissn>2631-8695</eissn><coden>ERENBL</coden><abstract>The current demand for novel and self-healing material in today’s industries is one of the key challenges. Many engineering applications required tailored properties including self-healing characteristics in novel engineering materials. In this regard, an attempt is made to develop the metal matrix composite of aluminum A356 alloy by utilizing the properties of Nitinol alloy (wire) through a semi-solid metal processing technique. The investigation was validated by light-microscope images of the developed material. Further, filed emission scanning electron microscopy images are taken from the specimens for morphological examination. The elemental confirmation of the produced material is conducted through Energy Dispersive X-Ray Analysis (EDX) spectrum. The results revealed the random dispersion of reinforcement in the matrix phase and EDX confirms that the major constituents of A356 alloy and the Nitinol wires. At last, the crack analysis is conducted before and after hearing which reveals that the interlocks of Nitinol wire with the alpha Al phase of base alloy can provide the ability to close the crack and it can recover the deformed surface by 17.35%.</abstract><pub>IOP Publishing</pub><doi>10.1088/2631-8695/aceed3</doi><tpages>9</tpages><orcidid>https://orcid.org/0000-0001-5748-8535</orcidid><orcidid>https://orcid.org/0000-0001-6395-5216</orcidid><oa>free_for_read</oa></addata></record> |
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subjects | Al-7Si alloy (A356) nitinol self-healing materials semi-solid metal processing shape memory alloy smart materials metal matrix composites |
title | Self-healing metal matrix composite of nitinol wire-reinforced A356 alloy matrix by stir casting technology |
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