BS 1490 · Group B · Special Purpose

lm9
Aluminium Alloy

Al-Si12Mg0.5Mn0.5 — The Premier Alloy for Low Pressure Die Casting

Sand Casting

Gravity Die Casting

Low Pressure Die Casting

T6 Heat-Treatable

ISO 9001:2015

At a Glance

Overview

The Premier Alloy for Low Pressure Die Casting

LM9 combines the outstanding castability of a eutectic Al-Si alloy (10–13% Si) with the heat-treatability of Mg-containing alloys (0.2–0.6% Mg). This unique combination makes it the premier alloy for low pressure die casting — rated 4 (Excellent) for LPDC in BS 1490 Table 8, the highest rating of any alloy for that process. The addition of 0.3–0.7% manganese improves strength at elevated temperatures.

LM9 delivers the fluidity and hot-tear resistance of LM6 combined with the T6 precipitation-hardening response of LM25. In the TF (T6) condition from chill casting, LM9 achieves a minimum tensile strength of 295 N/mm² — the highest T6 strength of any standard LM-series alloy in GDC. It is not recommended for HPDC.

Rated 4 (Excellent) for LPDC — Best in Series

BS 1490 Table 8 rates LM9 as 4 (Excellent) for low pressure die casting — the highest possible rating. Combined with T6 heat treatability delivering 295 N/mm² minimum tensile in chill cast condition, LM9 is the specification of choice for safety-critical LPDC components: wheel hubs, cylinder heads, structural brackets.

Chemical Composition

LM9 Chemical Composition — BS 1490:1988

Element Symbol Min % Max % Role in alloy
Silicon Si 10.0 13.0 10–13% Si — eutectic or near-eutectic composition giving excellent fluidity and hot-tear resistance. Same Si range as LM6, but LM9 adds Mg for heat-treatability.
Copper Cu 0.20 Strict limit ≤0.20%. Low Cu preserves corrosion resistance and ensures clean T6 heat treatment response.
Magnesium Mg 0.2 0.6 0.2–0.6% Mg forms Mg₂Si precipitates during T6 ageing — same mechanism as LM25. For T6 applications, Mg should be near the upper limit (0.45–0.60%). Critical alloying element.
Iron Fe 0.6 Controlled to ≤0.6%. Low Fe limit — LM9 is intended for GDC and LPDC where ductility matters. Fe forms β-AlFeSi platelets that reduce elongation if unchecked.
Manganese Mn 0.3 0.7 Impurity limit. Controlled to maintain clean melt.
Nickel Ni 0.1 Impurity limit.
Zinc Zn 0.1 Impurity limit. Higher Zn increases hot-cracking risk.
Lead Pb 0.1 Impurity limit.
Tin Sn 0.05 Impurity limit.
Titanium Ti 0.2 Grain refiner when added as TiB₂ master alloy.
Aluminium Al Remainder Base metal. Composition verified by OES (ARUN Technology UK, MERLIN-4 ULTRA).
Other elements 0.05 each /
0.15 total
Each unspecified element ≤0.05%, total ≤0.15%.

Global Standards

LM9 Equivalent Grades — International Standards

BS 1490

LM9

Group B · Special Purpose Al-Si12Mg0.5Mn0.5

EN 1706

EN AC-43300

EN AC-Al Si9Mg

ASTM / AA

A360.0

Al-Si9Mg — primary US equivalent

JIS H 5302

ADC3

Al-Si-Mg die casting alloy

DIN 1725-2

GD-AlSi10Mg

Superseded by EN 1706

ISO 3522

Al-Si10Mg

ISO casting alloy designation

Mechanical Properties

LM9 Mechanical Properties — BS 1490:1988 Table 4

Minimum values from separately cast test samples per BS 1490:1988. These are guaranteed minimums — not average values. Properties in actual castings vary with section thickness, cooling rate, and local geometry.

Condition Process Tensile N/mm² min 0.2% Proof N/mm² Elongation % min Brinell HB
M Chill / GDC 190 3 65–75
TE Sand / Investment 80–90
TE Chill / GDC 230 2 85–95
TF Sand / Investment 240 90–100
TF Chill / GDC 295 100–115

Physical Properties

LM9 Physical & Thermal Properties

Density

2.68 g/cm³

Approx. 1/3 the density of steel

Freezing Range

575–555 °C

Solidification temperature range

Thermal Conductivity

150 W/m·K

Heat dissipation capability

Electrical Conductivity

38 % IACS

Relative to copper standard

Linear Expansion

21 ×10⁻⁶/K

20–300°C range

Brinell Hardness

65–75 HB

As-cast or stated condition

Property Rating Notes
Corrosion resistance Good (B) Low Cu (≤0.20%) gives good corrosion resistance — better than Cu-bearing alloys. Suitable for most non-marine environments.
Decorative anodising Fair (E) High Si gives dark grey anodised appearance. Protective anodising applicable. Not for decorative use.
Weldability Good Weldable. Low Cu content prevents hot cracking. Post-weld T6 restores strength.
Machinability group 2 — Fair Group 2 machinability. High Si causes some tool wear. Better than LM6 but below Cu-bearing alloys.

Casting Suitability

LM9 Casting Process Suitability — BS 1490:1988 Table 8

Ratings from BS 1490:1988 Table 8. Scale: 4 = Excellent, 3 = Good, 2 = Fair, 1 = Poor, n = Not normally recommended.

Sand Casting
3
Gravity Die Casting (GDC)
3
Low Pressure (LPDC)
4
High Pressure (HPDC)
n
Castability Property Rating Explanation
Fluidity 3 — Good Eutectic Si range gives good fluidity. LPDC controlled fill maximises the benefit of LM9's fluidity.
Resistance to hot tearing 4 — Excellent Eutectic composition gives excellent hot-tear resistance, matching LM6.
Pressure tightness 4 — Excellent Excellent pressure tightness — ideal for hydraulic and pressure-tight LPDC components.
Machinability (as-cast) 2 — Fair Group 2 machinability. High Si causes some tool wear. Better than LM6 but below Cu-bearing alloys.

Heat Treatment

LM9 Heat Treatment —BS 1490:1988 Conditions

M

As Cast

No heat treatment. Used as-cast. Dimensional stability is the priority.

TS

Stress Relieved

200–250°C, 2–4 hours. Reduces residual casting stresses without significant property change.

TB

Solution + Natural Age

Solution treat, quench, age at room temperature. Strength develops over days to weeks.

TB7

Solution + Stabilise

Solution treat, quench, then stabilise at low temperature. Good ductility and dimensional stability.

TE

Artificially Aged Only

Age at 160–180°C, 6–12 hours. Moderate strength improvement without solution treatment.

TF

T6 — Peak Strength

Solution treat + quench + artificial age. Peak strength condition. Full in-house at Creative Alucast.

TF7

T7 — Over-aged / Stabilised

Solution treat + quench + over-age. Slightly lower strength than TF but superior dimensional stability.

Full T6 Heat Treatment — In-House at Creative Alucast

LM9 responds fully to T6 heat treatment (TF condition). Solution treat at 515–525°C, quench, artificially age at 160–175°C. Delivers 295 N/mm² minimum tensile in chill/GDC — the highest T6 tensile of any standard LM alloy. T6 is not applicable to HPDC LM9 castings due to gas porosity blistering risk. Full in-house T6 capability at Creative Alucast with batch hardness verification.

Applications

Typical Applications of LM9

Industry Typical Parts Why LM6
Automotive Wheel hubs (LPDC), cylinder heads, structural brackets, safety-critical suspension parts LPDC rating 4 + T6 strength — ideal for structural automotive
Power & Energy High-pressure pump casings, hydraulic manifolds, compressor valve plates Pressure tightness + T6 strength
Aerospace (commercial) Structural housings, brackets, actuator bodies Highest T6 tensile in standard LM series
Industrial High-integrity castings requiring pressure testing and mechanical certification T6 + low porosity from LPDC

Wheel Hubs

Cylinder Heads

Structural Brackets

Hydraulic Manifolds

Compressor Parts

Safety-Critical Components

High-Pressure Pump Casings

Suspension Parts

LPDC Structural Parts

When NOT to Specify LM9

Do not specify LM9 when: (1) HPDC is required — rated ‘n’ (not recommended) for HPDC; use LM2 or LM24; (2) decorative anodising is required; (3) the application requires weldability — LM9 is not listed as easily weldable; (4) as-cast (M) condition strength is sufficient — use the simpler LM6 instead.

Frequently Asked Questions

Common Questions Abou LM9

What is the chemical composition of LM9 aluminium alloy?
LM9 per BS 1490:1988 has nominal composition Al-Si12Mg0.5Mn0.5. Silicon: 10.0–13.0%, Copper: —–0.20%, Magnesium: 0.2–0.6%. The remainder is aluminium with controlled impurity limits.
The EN 1706 equivalent of BS 1490 LM9 is EN AC-43300, with chemical symbol designation EN AC-Al Si9Mg. This European standard supersedes the German DIN designation GD-AlSi10Mg.
The ASTM/Aluminium Association equivalent of LM9 is A360.0. Al-Si9Mg — primary US equivalent.
The JIS H 5302 equivalent of LM9 is ADC3. Al-Si-Mg die casting alloy.
The minimum tensile strength of LM9 is 295 N/mm² in the best condition and process per BS 1490:1988 Table 4 (separately cast test samples). Properties vary with casting process and heat treatment condition.
Yes — LM9 is T6 heat-treatable (TF condition). Solution treat at 515–525°C, water quench, artificially age at 155–175°C. Full in-house T6 available at Creative Alucast with batch hardness verification.
Per BS 1490:1988 Table 8: Sand casting (3), Gravity Die Casting (3), Low Pressure Die Casting (4), High Pressure Die Casting (n). Scale: 4=Excellent, 3=Good, 2=Fair, n=Not recommended.
The density of LM9 is 2.68 g/cm³ — approximately one-third the density of steel (7.85 g/cm³), making it ideal for lightweight structural applications.
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