2018
DOI: 10.1155/2018/1989754
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Effect of Powder Size on Microstructure and Mechanical Properties of 2A12Al Compacts Fabricated by Hot Isostatic Pressing

Abstract: This paper studied the effects of powder size on densification, microstructure, and mechanical properties of the hot isostatic-pressed 2A12 aluminum alloy powder compact. The results show that the near-fully dense powder compact can be successfully achieved and the smaller the powder is, the higher the relative density is. In addition, as the powder size decreases, the precipitated phases in the powder compact change from continuously point-like distribution at the junctions among powder particles to the conce… Show more

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Cited by 4 publications
(5 citation statements)
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“…To test the feasibility of the notion that (1) was responsible, one would expect the Mg content within the Al 6061 and Al 7075 castings to be overestimated, too. However, the fact that the wt.% of Mg within the cast Al 6061 sample was slightly lower than the specified lower limit of 0.8 wt.%, at 0.66 wt.%, detracts from the feasibility of explanation (1). The fact that the wt.% of Mg within the cast Al 7075 sample was within the defined range at 2.21 wt.% also detracts from (1) listed above as well.…”
Section: Additional Analysis Of the Reported Resultsmentioning
confidence: 92%
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“…To test the feasibility of the notion that (1) was responsible, one would expect the Mg content within the Al 6061 and Al 7075 castings to be overestimated, too. However, the fact that the wt.% of Mg within the cast Al 6061 sample was slightly lower than the specified lower limit of 0.8 wt.%, at 0.66 wt.%, detracts from the feasibility of explanation (1). The fact that the wt.% of Mg within the cast Al 7075 sample was within the defined range at 2.21 wt.% also detracts from (1) listed above as well.…”
Section: Additional Analysis Of the Reported Resultsmentioning
confidence: 92%
“…From Figure 3c, one may note that the calculated cooling rates as a function of particle diameter for each of the gas-atomized systems considered during the course of this work were similar to one another. Figure 3c also enabled the visualization of consequences associated with the inverse proportionality between molten metal droplet diameter and cooling rate, which was mathematically expressed in Equation ( 2) upon inspection of the simplified heat transfer model for the rapidly solidified powders presented in Equation (1). A detailed consideration of Figure 3c also identified gas-atomized Al 6061 as the rapidly solidified alloy with the greatest cooling rate for a given particle size, followed by Al 7075 and Al 2024, in that order.…”
Section: Resultsmentioning
confidence: 99%
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