ASM Handbook: Volume 7: Powder Metal Technologies and by Asm International Handbook Committee PDF

By Asm International Handbook Committee

ISBN-10: 0871703874

ISBN-13: 9780871703873

Covers all components of powder creation, sampling, characterization, shaping, consolidation, sintering, qc, machining, warmth treating, and PM purposes. For useful engineering details on sintering practices, device layout, P/M metallography, dimensional keep watch over, half layout, powders, binders, lubricants, and the processing, houses, and function of P/M fabrics in numerous construction applied sciences and purposes.

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Extra resources for ASM Handbook: Volume 7: Powder Metal Technologies and Applications (Asm Handbook)

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Aluminum. 5Fe alloy is significantly higher than the strength of RS alloys up to at least 250 °C, a result of the fine microstructure produced by the vapor deposition technique. It is also possible to produce nanostructured layered structures that exhibit novel strength and modulus combinations (Ref 21, 22). Titanium. The electron beam vapor quenching technique has been used to produce alloys that are not possible by I/M or even RS. One example is the production of titanium-magnesium alloys. Magnesium boils below the melting point of titanium making production of a liquid alloy impossible by conventional methods.

Aluminum. 5Fe alloy is significantly higher than the strength of RS alloys up to at least 250 °C, a result of the fine microstructure produced by the vapor deposition technique. It is also possible to produce nanostructured layered structures that exhibit novel strength and modulus combinations (Ref 21, 22). Titanium. The electron beam vapor quenching technique has been used to produce alloys that are not possible by I/M or even RS. One example is the production of titanium-magnesium alloys. Magnesium boils below the melting point of titanium making production of a liquid alloy impossible by conventional methods.

5 Material selection method Figure 6 provides the second evaluation scheme. Starting from the material selected, this leads directly to the density needed in the critical section of the part. Knowing the desired density leads to a preliminary selection of the powder and press size necessary to reach the required density. From this point the remainder of the processing steps are considered. For example, is a conventional sintering process or a "high-temperature" process needed? Will a repressing-resintering process be necessary to achieve the density selected?

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ASM Handbook: Volume 7: Powder Metal Technologies and Applications (Asm Handbook) by Asm International Handbook Committee


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