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275:(EBM). 3D printing with AlSi10Mg allows for the creation of complex geometries that would be difficult or impossible to produce using traditional manufacturing methods. The alloy's high strength and ductility also make it easy to work with during the printing process, allowing for the creation of high-quality, precise components.
176:, to improve its mechanical properties and corrosion resistance. The precise composition of AlSi10Mg may vary depending on the specific manufacturing process used and the intended application of the alloy. However, the general proportions of aluminum, silicon, and magnesium remain consistent in most formulations of the alloy.
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AlSi10Mg can be machined, spark-eroded, welded, micro shot-peened, polished, and coated if required. Conventionally cast components in this type of aluminium alloy are often heat treated to improve their properties. In addition, as technology continues to advance, it is likely that the use of
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AlSi10Mg-0403 alloy is a specific type of AlSi10Mg that comprises aluminium alloyed with silicon of mass fraction up to 10%, small quantities of magnesium and iron, along with other minor elements. The presence of silicon makes the alloy both harder and stronger than pure aluminium due to the
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was found to offer an ideal balance of strength, lightweight, and corrosion resistance. Today, AlSi10Mg is used in a wide range of industries, including automotive, medical, and defence. Its unique combination of properties makes it a versatile material that can be used for everything from
251:. Aluminum naturally forms a thin oxide layer that protects it from corrosion, and the addition of silicon and magnesium further enhances this property. This makes AlSi10Mg an excellent choice for components that are exposed to harsh environments, such as marine or aerospace applications.
244:, which makes it useful for heat transfer applications, such as in heat sinks and cooling systems. The alloy's excellent strength-to-weight ratio and thermal conductivity made it a popular choice for aircraft components, such as engine parts, landing gear, and wing structures.
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Despite its many advantages, there are some limitations to the use of AlSi10Mg. The alloy can be expensive compared to other aluminium alloys, and it requires specialised equipment and expertise to work with, which can add to the cost and complexity of production.
187:, while magnesium enhances its ductility and corrosion resistance. The combination of these elements results in a material that is lightweight, strong, and resistant to corrosion, making it well-suited for a range of applications.
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AlSi10Mg will continue to grow and evolve. Ongoing research and development efforts are focused on improving the alloy's properties and exploring new applications.
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333:"Standard for Additive Manufacturing – Finished Part Properties – Specification for AlSi10Mg with Powder Bed Fusion – Laser Beam"
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The chemical composition of AlSi10Mg is according to ASTM F3318, making it an essential aluminium alloy in
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that is widely used in the aerospace, automotive, and medical industries. Its unique combination of
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In recent years, the development of additive manufacturing processes, such as
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lightweight structural components to heat sinks and electronic enclosures.
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makes it an ideal material for additive manufacturing processes, such as
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The composition of AlSi10Mg typically consists of approximately 90%
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were being developed for various applications. The combination of
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The history of AlSi10Mg dates back to the mid-20th century when
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One of the primary advantages of AlSi10Mg is its high
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109:Learn how and when to remove this message
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247:Another advantage of AlSi10Mg is its
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47:adding citations to reliable sources
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124:is a lightweight, high-strength
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34:needs additional citations for
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212:Properties and applications
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1372:Aluminium–scandium alloys
1276:Aluminium–lithium alloys
238:strength-to-weight ratio
269:selective laser melting
206:additive manufacturing
16:Type of aluminum alloy
273:electron beam melting
1387:Hypereutectic piston
408:History of aluminium
309:"Aluminium AlSi10Mg"
249:corrosion resistance
242:thermal conductivity
43:improve this article
1306:Aluminium granules
420:1000 series (pure)
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60: –
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54:Find sources:
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32:This article
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26:
21:
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1269:Named alloys
391:Introduction
340:. Retrieved
337:www.astm.org
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316:. Retrieved
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41:Please help
36:verification
33:
1337:Hydronalium
1316:Birmabright
1201:8000 series
1074:7000 series
935:6000 series
821:5000 series
772:4000 series
723:3000 series
544:2000 series
279:Limitations
265:3D printing
259:3D printing
148:Composition
142:3D printing
1331:Hiduminium
342:2023-04-21
318:2023-04-05
288:References
271:(SLM) and
69:newspapers
58:"AlSi10Mg"
1362:MKM steel
1352:Magnalium
1326:Duralumin
398:Aluminium
230:magnesium
222:aluminium
162:magnesium
160:, and 1%
154:aluminium
138:magnesium
130:aluminium
1412:Category
1397:AlSi10Mg
933:Al-Mg-Si
313:Additiva
185:hardness
181:strength
122:AlSi10Mg
1377:Y alloy
1281:AlBeMet
1203:(misc.)
226:silicon
158:silicon
134:silicon
83:scholar
1342:Italma
1311:Alusil
1301:Alumel
1291:Alnico
1286:Alclad
228:, and
172:, and
170:copper
136:, and
85:
78:
71:
64:
56:
1347:Lo-Ex
1296:AlSiC
1072:Al-Zn
946:6005A
819:Al-Mg
770:Al-Si
721:Al-Mn
542:Al-Cu
156:, 9%
90:JSTOR
76:books
1260:8176
1255:8093
1250:8091
1245:8090
1240:8030
1235:8025
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586:2029
581:2025
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571:2020
566:2017
561:2014
556:2011
551:2004
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522:1461
517:1460
512:1450
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432:1060
427:1050
183:and
174:zinc
166:iron
62:news
45:by
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418:Al
335:.
311:.
296:^
224:,
208:.
198:Si
194:Mg
168:,
144:.
132:,
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369:t
362:v
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97:(
87:·
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39:.
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