BS 1490 · Group B · Special Purpose

lm22
Aluminium Alloy

Al-Si5Cu3Mn0.4 — High Shock Resistance and Natural-Age Strength

Sand Casting

Gravity Die Casting

Low Pressure Die Casting

ISO 9001:2015

At a Glance

Overview

High Shock Resistance and Natural-Age Strength

LM22 is a medium-silicon, medium-copper alloy delivering high tensile strength and elongation in the TB (solution treated + naturally aged) condition. BS 1490 specifies LM22 only in the TB condition, where chill casting delivers 245 N/mm² minimum tensile with 8% elongation — an exceptional combination of strength and ductility that makes it the alloy of choice for shock-loaded structural components in heavy-duty transport and road vehicle applications.

The 8% minimum elongation in TB chill cast condition is the highest elongation specification for any heat-treated alloy in the BS 1490 series (matched only by the TB7 condition of LM25 at 5%). This ductility in a heat-treated state reflects LM22’s specific formulation for impact and fatigue resistance.

Highest Elongation in Heat-Treated Condition

LM22 TB chill cast achieves 8% minimum elongation at 245 N/mm² minimum tensile — the highest elongation specification of any heat-treated LM alloy in BS 1490. This combination of high strength and exceptional ductility is the specific design intent: components subjected to impact loading, vibration, and fatigue cycles in heavy vehicle service.

Chemical Composition

LM22 Chemical Composition — BS 1490:1988

Element Symbol Min % Max % Role in alloy
Silicon Si 4.0 6.0 4–6% Si — same range as LM4. Provides moderate castability. Not eutectic; wider freezing range requires careful feeding in heavy sections.
Copper Cu 2.8 3.8 2.8–3.8% Cu — primary hardening agent. CuAl₂ precipitates form during natural ageing (TB condition). Narrower Cu range than LM4 for tighter TB performance control.
Magnesium Mg 0.05 Very low Mg (≤0.05%). LM22 is unusual in its near-zero Mg content — TB strength comes from Cu precipitation alone, not Mg₂Si. This avoids the Mg sensitivity issues that affect T6 alloys.
Iron Fe 0.6 Controlled to ≤0.6% — lower than HPDC alloys, reflecting the GDC/sand structural application.
Manganese Mn 0.2 0.6 Impurity limit. Controlled to maintain clean melt.
Nickel Ni 0.15 Impurity limit.
Zinc Zn 0.15 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

LM22 Equivalent Grades — International Standards

BS 1490

LM22

Group B · Special Purpose Al-Si5Cu3Mn0.4

EN 1706

EN AC-45400

EN AC-Al Si5Cu3

ASTM / AA

No close ASTM equivalent

JIS H 5302

No JIS equivalent

DIN 1725-2

G-AlSi5Cu3

Superseded by EN 1706

ISO 3522

Al-Si5Cu3

ISO casting alloy designation

Mechanical Properties

LM22 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
TB Chill / GDC 245 8 85–95

Physical Properties

LM22 Physical & Thermal Properties

Density

2.73 g/cm³

Approx. 1/3 the density of steel

Freezing Range

620–520 °C

Solidification temperature range

Thermal Conductivity

121 W/m·K

Heat dissipation capability

Electrical Conductivity

— % IACS

Relative to copper standard

Linear Expansion

21 ×10⁻⁶/K

20–300°C range

Brinell Hardness

80–95 (TB condition) HB

As-cast or stated condition

Property Rating Notes
Corrosion resistance Fair (C) Cu content (2.8–3.8%) limits corrosion resistance. Suitable for indoor/protected environments.
Decorative anodising Poor (D) Cu content gives poor anodising quality.
Weldability Fair Weldable with care. Post-weld natural ageing required to restore TB properties.
Machinability group 3 — Good Group 3 machinability. Cu content assists chip formation.

Casting Suitability

LM22 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)
3
High Pressure (HPDC)
n
Castability Property Rating Explanation
Fluidity 3 — Good Moderate Si gives adequate fluidity for most geometries.
Resistance to hot tearing 3 — Good Reasonable resistance. Wider freezing range requires controlled feeding.
Pressure tightness 3 — Good Good pressure tightness from correct casting practice.
Machinability (as-cast) 3 — Good Group 3 machinability. Cu content assists chip formation.

Heat Treatment

LM22 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.

TB — Solution Treat + Natural Ageing

LM22 is specified only in the TB condition: solution treat at approximately 515°C, water quench, then naturally aged at room temperature for a minimum of several days. No artificial ageing is specified — strength develops from room-temperature CuAl₂ precipitation. Full in-house solution treatment at Creative Alucast. No artificial ageing furnace cycle required — reduces lead time.

Applications

Typical Applications of LM22

Industry Typical Parts Why LM13
Automotive Suspension components, steering linkages, structural brackets, road transport castings High strength + 8% elongation = ideal for impact and fatigue loaded parts
Commercial Vehicles Heavy duty structural castings, chassis components, gearbox cases BS 1490 specifically notes road transport vehicles as the application
Industrial Shock-loaded machine components, impact-resistant brackets Unique combination of 245 N/mm² + 8% elongation

Suspension Components

Steering Linkages

Structural Brackets

Heavy Vehicle Parts

Chassis Components

Impact-Resistant Parts

Shock-Loaded Components

When NOT to Specify LM22

Do not specify LM22 for applications requiring corrosion resistance — high Cu reduces resistance. Do not specify for HPDC. Do not specify when artificial ageing (T6) is required — LM22 TB is natural age only.

Frequently Asked Questions

Common Questions About LM22

What is the chemical composition of LM22 aluminium alloy?
LM22 per BS 1490:1988 has nominal composition Al-Si5Cu3Mn0.4. Silicon: 4.0–6.0%, Copper: 2.8–3.8%, Magnesium: —–0.05%. The remainder is aluminium with controlled impurity limits.
The EN 1706 equivalent of BS 1490 LM22 is EN AC-45400, with chemical symbol designation EN AC-Al Si5Cu3. This European standard supersedes the German DIN designation G-AlSi5Cu3.
The ASTM/Aluminium Association equivalent of LM22 is —. No close ASTM equivalent.
There is no direct JIS H 5302 equivalent for LM22. No JIS equivalent.
The minimum tensile strength of LM22 is 245 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.
No — LM22 is not normally heat-treated to T6. Available conditions: TB.
Per BS 1490:1988 Table 8: Sand casting (3), Gravity Die Casting (3), Low Pressure Die Casting (3), High Pressure Die Casting (n). Scale: 4=Excellent, 3=Good, 2=Fair, n=Not recommended.
The density of LM22 is 2.73 g/cm³ — approximately one-third the density of steel (7.85 g/cm³), making it ideal for lightweight structural applications.
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