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008190130s1958    onc     ot   f|0| 0 eng d
040 |aCaOODSP|beng|erda|cCaOODSP
041 |aeng|bfre|bger
043 |an-cn---
0861 |aM38-1/40-1958E-PDF
1001 |aWeinberg, F., |eauthor.
24510|aGrain boundaries in metals / |cby F. Weinberg.
264 1|aOttawa, Ontario : |bDepartment of Mines and Technical Surveys, |c1958.
300 |a1 online resource (26 unnumbered pages)
336 |atext|btxt|2rdacontent
337 |acomputer|bc|2rdamedia
338 |aonline resource|bcr|2rdacarrier
4901 |aMines Branch Research Report ; |vR 40
500 |a"A & B reprinted from Acta Metallurgica Vol. 5, No. 8, 1957 & Vol. 6, No. 8, 1958. C reprinted from trans. of The Metallurgical Society of Aime, Vol. 212, Dec. 1958."
500 |aTitle from cover.
504 |aIncludes bibliographic references.
5050 |aA. Grain boundary melting -- B. Further observations on grain boundary melting -- C. Grain boundary shear in aluminum.
520 |a"Using bicrystal specimens of tin, the melting behavior of grain boundaries has been examined as a function of stress, heating rate, boundary angle, and impurity concentration. For small-angle boundaries (less than 12°) there is no tendency for the crystals to part at the boundary during melting. However, specimens with large-angle boundaries were consistently observed to separate at the boundary during melting. Tho temperature at which the separation took place, over a wide range of stress and heating rates, was the same as the melting temperature of the bulk material within the experimental accuracy of 0.02°C. The actual separation occurred a finite interval of time after the onset of general melting, and this interval was determined as a function of test conditions"--Abstract.
546 |aAbstract in French and German.
69207|2gccst|aMetals
7101 |aCanada. |bDepartment of Mines and Technical Surveys.
7101 |aCanada. |bMines Branch.
830#0|aResearch report (Canada. Mines Branch)|vR 40.|w(CaOODSP)9.855660
85640|qPDF|s4.67 MB|uhttps://publications.gc.ca/collections/collection_2019/rncan-nrcan/m38-1/M38-1-40-1958-eng.pdf