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2015 | OriginalPaper | Buchkapitel

Explosive Welding, Forming, and Powder Consolidation

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Abstract

The use of explosives to manipulate and process materials epitomizes extreme deformation processing and provides additional evidence for the role played by dynamic recrystallization or related solid-state flow induced by strong shock waves. The explosive bonding or cladding of large areas of planar metal or alloy laminates by variations of interlocking weld waves or shallow DRX microstructures often resembles rim structures characteristic of ballistic impact craters and penetration channels. Novel forming by explosive charges in water creating hydroforming environments is presented. The explosive consolidation of powder materials can provide novel cylindrical precursors for more conventional materials processing or new materials fabrication not tenable by conventional materials processing routes.

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Literatur
Zurück zum Zitat Alba-Baena NG, Salas W, Murr LE (2008) Characterization of micro and nano second phase/2-phase regimes created by explosive shock-wave consolidation of powder mixtures. Mater Charact 59:1152–1160CrossRef Alba-Baena NG, Salas W, Murr LE (2008) Characterization of micro and nano second phase/2-phase regimes created by explosive shock-wave consolidation of powder mixtures. Mater Charact 59:1152–1160CrossRef
Zurück zum Zitat Chadwick MD, Jackson PW (1983) Chapter 7: Explosive welding in planar geometries. In: Blazynski TZ (ed) Explosive welding, forming and compaction. Applied Science, London, pp 219–287CrossRef Chadwick MD, Jackson PW (1983) Chapter 7: Explosive welding in planar geometries. In: Blazynski TZ (ed) Explosive welding, forming and compaction. Applied Science, London, pp 219–287CrossRef
Zurück zum Zitat DeCarli PS, Jamieson JC (1961) Formation of diamond by explosive shock. Science 133:821–824CrossRef DeCarli PS, Jamieson JC (1961) Formation of diamond by explosive shock. Science 133:821–824CrossRef
Zurück zum Zitat Deribas AA (1981) Chapter 52: Explosive metal working. In: Meyers MA, Murr LE (eds) Shock waves and high-strain-rate phenomena in metals. Plenum Press, New York, pp 915–939CrossRef Deribas AA (1981) Chapter 52: Explosive metal working. In: Meyers MA, Murr LE (eds) Shock waves and high-strain-rate phenomena in metals. Plenum Press, New York, pp 915–939CrossRef
Zurück zum Zitat Gurney RW (1947) Ballistic research report no 648, Aberdeen Proving Ground, Aberdeen Gurney RW (1947) Ballistic research report no 648, Aberdeen Proving Ground, Aberdeen
Zurück zum Zitat Meyers MA, Wang SL (1988) An improved method for shock consolidation of powders. Acta Metall 36(4):925–936CrossRef Meyers MA, Wang SL (1988) An improved method for shock consolidation of powders. Acta Metall 36(4):925–936CrossRef
Zurück zum Zitat Meyers MA, Thadhani NN, Yu L-H (1988) Chapter: 8 Explosive shock wave consolidation of metal and ceramic powders. In: Murr LE (ed) Shock waves for industrial applications. Noyes, Park Ridge, pp 265–334 Meyers MA, Thadhani NN, Yu L-H (1988) Chapter: 8 Explosive shock wave consolidation of metal and ceramic powders. In: Murr LE (ed) Shock waves for industrial applications. Noyes, Park Ridge, pp 265–334
Zurück zum Zitat Murr LE (ed) (1988) Shock waves for industrial applications. Noyes, Park Ridge Murr LE (ed) (1988) Shock waves for industrial applications. Noyes, Park Ridge
Zurück zum Zitat Murr LE (1991) Explosive processing of bulk superconductors. Mater Manuf Process 6(1):1–32CrossRef Murr LE (1991) Explosive processing of bulk superconductors. Mater Manuf Process 6(1):1–32CrossRef
Zurück zum Zitat Murr LE, Hare AW (1984) Implosive consolidation of a particle mass including amorphous material. US Patent 4,490,329, issued 25 Dec 1984. US Patent Office, Washington, DC Murr LE, Hare AW (1984) Implosive consolidation of a particle mass including amorphous material. US Patent 4,490,329, issued 25 Dec 1984. US Patent Office, Washington, DC
Zurück zum Zitat Murr LE, Hare AW (1988) Chapter 3: Explosive forming and material working applications. In: Murr LE (ed) Shock waves for industrial applications. Noyes, Park Ridge, pp 103–136 Murr LE, Hare AW (1988) Chapter 3: Explosive forming and material working applications. In: Murr LE (ed) Shock waves for industrial applications. Noyes, Park Ridge, pp 103–136
Zurück zum Zitat Murr LE, Staudhammer KP (1988) Chapter 12: Shock wave sensitization, shock-induced reactivity, and new materials fabrication. In: Murr LE (ed) Shock waves for industrial applications. Noyes, Park Ridge, pp 441–471 Murr LE, Staudhammer KP (1988) Chapter 12: Shock wave sensitization, shock-induced reactivity, and new materials fabrication. In: Murr LE (ed) Shock waves for industrial applications. Noyes, Park Ridge, pp 441–471
Zurück zum Zitat Murr LE, Hare AW, Eror NG (1988) Chapter 13: Fabrication of novel, bulk superconductor composites by simultaneous explosive consolidation and bonding. In: Murr LE (ed) Shock waves for industrial applications. Noyes, Park Ridge, pp 473–527 Murr LE, Hare AW, Eror NG (1988) Chapter 13: Fabrication of novel, bulk superconductor composites by simultaneous explosive consolidation and bonding. In: Murr LE (ed) Shock waves for industrial applications. Noyes, Park Ridge, pp 473–527
Zurück zum Zitat Rinehart J, Pearson J (1963) Explosive working of metals. MacMillan, New York Rinehart J, Pearson J (1963) Explosive working of metals. MacMillan, New York
Zurück zum Zitat Roman OV, Gorobtsov VG (1988) Chapter 9: Shock wave powder compaction: state of the art and trends in the USSR. In: Murr LE (ed) Shock waves for industrial applications. Noyes, Park Ridge, pp 335–379 Roman OV, Gorobtsov VG (1988) Chapter 9: Shock wave powder compaction: state of the art and trends in the USSR. In: Murr LE (ed) Shock waves for industrial applications. Noyes, Park Ridge, pp 335–379
Zurück zum Zitat Salam SAL, Al-Hassani STS (1981) Chapter 57: Interfacial wave generation in explosive welding of multilaminates. In: Meyers MA, Murr LE (eds) Shock waves and high-strain-rate phenomena in metals. Plenum Press, New York, pp 1003–1018CrossRef Salam SAL, Al-Hassani STS (1981) Chapter 57: Interfacial wave generation in explosive welding of multilaminates. In: Meyers MA, Murr LE (eds) Shock waves and high-strain-rate phenomena in metals. Plenum Press, New York, pp 1003–1018CrossRef
Metadaten
Titel
Explosive Welding, Forming, and Powder Consolidation
verfasst von
Lawrence E. Murr
Copyright-Jahr
2015
DOI
https://doi.org/10.1007/978-3-319-01815-7_50

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