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Series: ASM Handbook
Volume: 2B
Publisher: ASM International
Published: 15 June 2019
DOI: 10.31399/asm.hb.v02b.a0006576
EISBN: 978-1-62708-210-5
... Abstract The aluminum alloys 383.0, 384.0, and A384.0 are Al-Si-Cu high-strength die-casting alloys suitable for castings with thin walls and large areas. This datasheet provides information on key alloy metallurgy, processing effects on physical and mechanical properties, and fabrication...
Book: Casting
Series: ASM Handbook
Volume: 15
Publisher: ASM International
Published: 01 December 2008
DOI: 10.31399/asm.hb.v15.a0005269
EISBN: 978-1-62708-187-0
...) Modified chemistry. (e) HPDC, high-pressure die casting Key observations from Table 1 are: for a given heat treatment process and aluminum alloy (A3256.2, 357, or 206), squeeze casting exhibits higher ductility than GPM; however, both processes reveal comparable strengths. The higher...
Series: ASM Handbook
Volume: 2B
Publisher: ASM International
Published: 15 June 2019
DOI: 10.31399/asm.hb.v02b.a0006553
EISBN: 978-1-62708-210-5
... Abstract This article summarizes some general alloy groupings by application or major characteristics. The groupings include cast rotor, general-purpose, elevated-temperature, wear-resistant, moderate-strength, high-strength, and high-integrity die casting alloys and cast aluminum alloys...
Series: ASM Handbook
Volume: 2B
Publisher: ASM International
Published: 15 June 2019
DOI: 10.31399/asm.hb.v02b.a0006573
EISBN: 978-1-62708-210-5
... properties of alloy 365.0, high-press die-casting Table 5 Typical tensile properties of alloy 365.0, high-press die-casting Heat treatment Tensile strength, MPa (ksi) Yield strength, MPa (ksi) Elongation, % Brinell hardness F 250–290 (36–42) 120–150 (17–22) 5–11 75–95 T5 275–340...
Series: ASM Handbook
Volume: 2B
Publisher: ASM International
Published: 15 June 2019
DOI: 10.31399/asm.hb.v02b.a0006583
EISBN: 978-1-62708-210-5
... 518.0 aluminum-magnesium die-casting alloys mechanical properties physical properties rotating-beam fatigue curve Alloy 518.0 ( Table 1 ) is an aluminum die-casting alloy with an excellent combination of high strength and resistance to corrosion, and good fatigue properties ( Fig. 1 and 2...
Series: ASM Handbook
Volume: 2B
Publisher: ASM International
Published: 15 June 2019
DOI: 10.31399/asm.hb.v02b.a0006572
EISBN: 978-1-62708-210-5
... be used without corrosion protection. Alloy 362.0 has higher magnesium levels than 367.0 and 368.0 for higher strength. The high silicon and magnesium provide wear resistance and high strength, particularly after T5 and T6 heat treatment. Die cast engine blocks, gear cases, and similar key engine...
Series: ASM Handbook
Volume: 2B
Publisher: ASM International
Published: 15 June 2019
DOI: 10.31399/asm.hb.v02b.a0006577
EISBN: 978-1-62708-210-5
... no tendency toward hot shortness. High quality die castings (390.0 and B390.0 alloys) and permanent-mold castings (A390 alloy) have been produced. They have varied in complexity from very simple cylinder sleeves to large air-cooled engine blocks and heads. Fluidity in the binary aluminum-silicon system...
Series: ASM Handbook
Volume: 2B
Publisher: ASM International
Published: 15 June 2019
DOI: 10.31399/asm.hb.v02b.a0006580
EISBN: 978-1-62708-210-5
... silicon content of 5 wt% with various limits on iron, copper, manganese and magnesium ( Table 1 ). They are hypoeutectic AI-Si binary alloys with high ductility, very good corrosion resistance, good machinability, but only fair castability, and low strength. The alloys are used in castings where above...
Series: ASM Handbook
Volume: 2
Publisher: ASM International
Published: 01 January 1990
DOI: 10.31399/asm.hb.v02.a0001077
EISBN: 978-1-62708-162-7
... dimensional tolerances. Zinc alloys allow the use of very low draft angles; in some cases, a zero draft angle is possible. Alloy No. 2 Alloy No. 2 has the highest tensile strength, creep strength, and hardness of all alloys in the hypoeutectic Zamak series of die casting alloys. The high copper content...
Series: ASM Handbook
Volume: 2B
Publisher: ASM International
Published: 15 June 2019
DOI: 10.31399/asm.hb.v02b.a0006574
EISBN: 978-1-62708-210-5
... Abstract The aluminum alloys 367.0 and 368.0 are high-performance, low-iron, die-casting alloys that rely on strontium for die soldering resistance. In these alloys, the lower iron content minimizes the formation of needle-like, Al-Fe-Si phases that can deteriorate strength, elongation...
Series: ASM Handbook
Volume: 2A
Publisher: ASM International
Published: 30 November 2018
DOI: 10.31399/asm.hb.v02a.a0006524
EISBN: 978-1-62708-207-5
... maintained at high levels in most die casting alloys, to reduce the tendency for die soldering. Iron improves hot tear resistance in rotor alloys. Iron-bearing phases forming during solidification produce some improvement in hardness and strength, especially at higher temperatures. The volume fraction...
Series: ASM Handbook
Volume: 2B
Publisher: ASM International
Published: 15 June 2019
DOI: 10.31399/asm.hb.v02b.a0006571
EISBN: 978-1-62708-210-5
... Fabrication Characteristics Castability : The excellent castability of Alloys 360.0 and A360.0 make them favorite die alloys for high-strength, thin-walled, complex castings. They have excellent fluidity, pressure tightness and resistance to hot cracking. It should be noted, however, that these alloys...
Series: ASM Handbook
Volume: 2B
Publisher: ASM International
Published: 15 June 2019
DOI: 10.31399/asm.hb.v02b.a0006579
EISBN: 978-1-62708-210-5
.... It is suitable for large castings, complex shapes, and thin wall castings. Alloys 413.0 and A413.0 are normally classified as die-casting alloys; however, they can also be used for sand and permanent-mold castings. The high-silicon content (12%) lowers the melting temperature and increases fluidity, thus...
Series: ASM Desk Editions
Publisher: ASM International
Published: 01 December 1998
DOI: 10.31399/asm.hb.mhde2.a0003127
EISBN: 978-1-62708-199-3
... of these alloys have nominal magnesium contents ranging from as low as 0.3% to ∼0.6% for the high-strength compositions and 1.0% for the piston alloys 332.0 and 336.0. The principal alloys of this group requiring low magnesium contents (0.10% maximum) are the die casting compositions 380.0 through 384.0. Both...
Series: ASM Handbook
Volume: 14B
Publisher: ASM International
Published: 01 January 2006
DOI: 10.31399/asm.hb.v14b.a0005140
EISBN: 978-1-62708-186-3
... iron Low-carbon steel, to 1 4 hard Best None Yes Epoxy-metal, polyester-metal, zinc alloy Epoxy-glass-metal, polyester-glass-metal, zinc alloy Polyester-glass (d) , zinc alloy Cast iron Alloy cast iron High-strength aluminum or copper alloys Best None No Epoxy-metal...
Book: Casting
Series: ASM Handbook
Volume: 15
Publisher: ASM International
Published: 01 December 2008
DOI: 10.31399/asm.hb.v15.a0005333
EISBN: 978-1-62708-187-0
... oxyacetylene flame. Stud welding has been used, but it is not satisfactory, because the alloy adjacent to the stud is weakened and may break. Adhesive Bonding When appropriate, zinc die castings can be bonded with a range of modern high-strength adhesives, particularly those based on epoxy and phenolic...
Series: ASM Desk Editions
Publisher: ASM International
Published: 01 December 1998
DOI: 10.31399/asm.hb.mhde2.a0003138
EISBN: 978-1-62708-199-3
.... Standard specifications for magnesium die castings are covered in ASTM B 94. For applications requiring greater ductility than available with AZ91D, high-purity die cast alloys AM50A and AM60B are used. AM50A and AM60B alloys have better elongation and toughness than AZ91D. Despite the decrease...
Book: Casting
Series: ASM Handbook
Volume: 15
Publisher: ASM International
Published: 01 December 2008
DOI: 10.31399/asm.hb.v15.a0005276
EISBN: 978-1-62708-187-0
... and other transportation markets. Aluminum and magnesium alloys are increasing their share of the automotive market. It is normally considered that die-cast parts have a great deal of design flexibility, but high ductility is not usually a characteristic of die-cast parts. High-vacuum die casting permits...
Series: ASM Handbook
Volume: 2A
Publisher: ASM International
Published: 30 November 2018
DOI: 10.31399/asm.hb.v02a.a0006498
EISBN: 978-1-62708-207-5
... to be poured like a liquid, and these processes commonly use die casting alloys to produce die-cast-like components, but with reduced porosity and overall higher quality. Examples of each of the process are provided subsequently. High-Solid-Fraction Rheocasting As noted previously, the solid content...
Series: ASM Handbook
Volume: 2B
Publisher: ASM International
Published: 15 June 2019
DOI: 10.31399/asm.hb.v02b.a0006575
EISBN: 978-1-62708-210-5
... to withstand stress from contraction while cooling. Melting temperature is 650–760 °C (1200–1400 °F). Die casting temperature is 635–705 °C (1175–1300 °F). Castings which have extremely large differences in section thickness are more readily cast in this alloy than in the alloys of high-copper content...