Explore the benefits of 3003 H14 aluminum coil for lithium battery shell. Magaan ang timbang, formable, and corrosion-resistant—ideal for EV, cylindrical, and prismatic cell casings.
The global rise in electric vehicles (EVs) and energy storage systems has triggered soaring demand for advanced materials in lithium battery manufacturing.
One such material gaining traction is the 3003 H14 aluminum coil for lithium battery shell mga aplikasyon.
Combining lightweight properties, napakahusay na formability, at paglaban sa kaagnasan, 3003 H14 offers a practical solution for safe and efficient battery enclosures.
Sa artikulong ito, we explore the material’s composition, performance in lithium battery environments, manufacturing advantages, and how it compares to other alloys.

3003 H14 aluminum coil for Lithium battery shell
Here’s a detailed breakdown of the chemical makeup of 3003 aluminyo haluang metal, suitable for battery shell applications:
| Elemento | Typical Content (%) |
|---|---|
| Aluminyo (Al) | 96.6 – 98.6 |
| Mga mangganeso (Mn) | 1.0 – 1.5 |
| Tanso (Cu) | 0.05 – 0.20 |
| Silicon (Si Si) | ≤ 0.6 |
| bakal na bakal (Fe) | ≤ 0.7 |
| Sink (Zn) | ≤ 0.1 |
| Titanium (Ti) | ≤ 0.15 |
| Chromium (Cr) | ≤ 0.1 |
| Ang iba naman (bawat isa ay) | ≤ 0.05 |
| Ang iba naman (kabuuan) | ≤ 0.15 |
3003 is a non-heat-treatable alloy that gains strength primarily through cold working.
Ang H14 temper indicates that the coil has been strain-hardened to 50% tigas na tigas.
This gives it moderate strength while maintaining excellent formability—an ideal balance for deep drawing and forming required in lithium battery shells.
The table below summarizes the typical mechanical properties of 3003 H14 aluminyo likawin as used in lithium battery shell mga aplikasyon:
| Pag-aari | Karaniwang Halaga | Unit | Mga Pananalita |
|---|---|---|---|
| Lakas ng Paghatak (tunay na) | 140 – 180 | MPa | Provides sufficient strength for structural stability in shell designs |
| Yield Lakas | ≥ 120 | MPa | Ensures the shell resists permanent deformation under internal cell pressure |
| Pagpapahaba (ha 50 mm) | ≥ 5 | % | Indicates good ductility for deep drawing and forming |
| Ang katigasan ng ulo (Brinell) | ~47 | HB | Moderate hardness supports impact resistance without cracking |
| Modulus ng Pagkalastiko | ~69,000 | MPa | Reflects stiffness and resistance to elastic deformation |
| Lakas ng Pagkapagod | ~55 | MPa | Suitable for cyclic loading conditions in mobile or EV applications |
| Ang Ratio ni Poisson | ~0.33 | — | Standard value for aluminum alloys |
| Lakas ng Paggupit | ~110 | MPa | Supports resistance against twisting and lateral forces |
The material’s ductility allows for malalim na pagguhit, pag stamp ng, at pagbaluktot operations—critical processes in shaping cylindrical and prismatic battery housings.
Manufacturers favor 3003 H14 for achieving consistent wall thickness in tightly toleranced enclosures.
While not the strongest alloy, 3003 H14 delivers adequate structural integrity to protect internal battery components from mechanical stress and handling during transport and installation.

Power Banks and Portable Energy Storage
Thanks to its manganese content, 3003 exhibits strong resistance to oxidation and mild acids, protecting the shell from moisture, hangin, and electrolyte vapors—especially important in sealed battery packs.
Sa about one-third the weight of steel, 3003 H14 enhances energy density by reducing overall battery module mass.
This directly improves EV range and energy system portability.
Compared to higher-strength alloys like 5052 or stainless steel, 3003 H14 aluminum coil for lithium battery shell applications provides significant cost savings, especially for high-volume manufacturing.
Battery assembly processes involve spot welding, laser welding, or adhesive bonding.
3003 H14 performs well under moderate heat exposure without warping, helping maintain shell integrity.
3003 adheres easily to polymer coatings, insulating films, and adhesives, improving safety and preventing electrical shorts within battery packs.
Although not immersed in electrolytes directly, shell materials must resist chemical vapor or accidental leaks.
3003 aluminum offers stable performance in such controlled environments.

Huawei 3003 H14 aluminyo likawin
In certain designs, the shell may act as a grounding layer or electromagnetic shield.
With ~38% IACS conductivity, 3003 H14 provides functional benefits beyond structural support.
Ang 3003 H14 aluminum coil is typically available in:
Battery-grade coils often undergo:
It supports:
These methods allow precise assembly of thin-walled enclosures.
Aluminum’s high recyclability supports sustainable battery production. 3003 H14 retains value after end-of-life and aligns with EV circular economy principles.
Choosing the right material for battery shell design involves a balance of strength, pagiging formable, bigat ng katawan, paglaban sa kaagnasan, at gastos.
Habang 3003 H14 aluminum coil for lithium battery shell applications is a popular choice, it’s essential to understand how it compares with other commonly used materials such as 1060 aluminyo, 5052 aluminyo, at 304 hindi kinakalawang na asero.
The following table provides a side-by-side technical comparison:
| Pag-aari / Materyal | 3003 H14 Aluminyo | 1060 Aluminyo | 5052 Aluminyo | 304 Hindi kinakalawang na asero |
|---|---|---|---|---|
| Uri ng haluang metal | Al–Mn | Purong Aluminum (99.6%) | Al–Mg | Fe–Cr–Ni Austenitic Steel |
| Lakas ng Paghatak (MPa) | 140–180 | 95–125 | 210–260 | 515–620 |
| Yield Lakas (MPa) | ≥120 | ~ 45 | ~160 | ~215 |
| Pagpapahaba (%) | ≥5 | ≥15 | ≥10 | ≥45 |
| Formability | Napakahusay (deep drawing grade) | Napakahusay | Mabuti na lang | Katamtaman (requires high force) |
| Paglaban sa Kaagnasan | Mabuti na lang | Katamtaman | Napakahusay | Napakahusay |
| Densidad ng katawan (g/cm³) | 2.73 | 2.71 | 2.68 | 7.93 |
| Electrical kondaktibiti | ~38% IACS | ~61% IACS | ~35% IACS | ~3% IACS |
| Weldability | Mabuti na lang | Napakahusay | Mabuti na lang | Katamtaman |
| Gastos | Mababa ang | Very Low | Katamtaman | Mataas na |
| Recyclability | Mataas na | Mataas na | Mataas na | Mataas na |
| Suitability for Battery Shell | ✅ Excellent | ✅ Adequate | ✅ Excellent (for structural use) | ⚠️ Overqualified (too heavy) |
Thanks to its excellent formability, paglaban sa kaagnasan, at pagiging epektibo sa gastos, 3003 H14 aluminyo likawin has become a material of choice for manufacturers of lithium battery shells across multiple industries.
Whether used in cylindrical cells for consumer electronics or large prismatic units for EVs, this aluminum alloy meets the technical and commercial demands of today’s energy systems.
Cylindrical lithium-ion cells are widely used in Laptop, power tools, and electric vehicles.
These cells require shells that are lightweight, seamless, and strong enough to contain internal pressure changes.
Ang deep-drawing capability ng mga 3003 H14 aluminum makes it ideal for forming the narrow, round housings of 18650 at 21700 batteries with precision.
Dagdag pa, its smooth surface and good weldability support laser sealing at the cell cap, enhancing safety and production speed.

3003 H14 aluminum coil for Cylindrical Cells
As electric vehicles and energy storage systems demand higher energy densities, prismatic cells have grown in popularity.
These larger, rectangular formats benefit from aluminum shells that can be bent and joined into modular blocks.
Ang moderate strength and formability of 3003 H14 allow for tightly folded corners and thin-wall sections that reduce space and weight without compromising protection.
Sa kontekstong ito, 3003 H14 provides a superior alternative to heavier stainless steel or lower-strength pure aluminum, offering the right balance of mechanical support and processing efficiency.
Portable devices, tulad ng mga bangko ng kapangyarihan, mobile chargers, and backup battery systems, require slim, stylish casings that can endure daily handling and occasional impacts.
3003 H14 aluminum is frequently chosen for its attractive surface finish, which can be further enhanced with anodizing or decorative coatings.
It offers both mechanical protection and aesthetic appeal, especially in consumer-facing products.
Bukod pa rito, its lightweight nature improves product ergonomics and energy efficiency by reducing the overall mass of the battery pack.
In electric vehicles and smart grids, battery enclosures must meet stringent requirements for kaligtasan, heat dissipation, recyclability, and mass production compatibility.
3003 H14 aluminum coil supports these needs through:

EV Battery Modules used 3003 H14 aluminyo likawin
As lithium battery production scales, supply reliability becomes critical. Henan Huawei Aluminyo, a leading Chinese supplier, offers:
Their products undergo rigorous quality inspections, ensuring uniformity for automated fabrication.
Choosing 3003 H14 aluminum coil for lithium battery shell design is a strategic decision balancing performance, Kakayahang manufacturur, at gastos.
Its deep drawing capabilities, paglaban sa kaagnasan, and lightweight nature make it ideal for cylindrical and prismatic cell casings.
Whether you’re scaling battery pack production for EVs or developing compact energy solutions, 3003 H14 offers a proven, efficient material foundation.
Partnering with qualified suppliers like Henan Huawei Aluminum ensures consistency, compliance, and peace of mind in high-volume operations.
Q1: Ay 3003 H14 suitable for high-voltage battery systems?
Oo nga, when properly coated or insulated, 3003 H14 can be safely used in high-voltage enclosures.
Q2: Maaari bang 3003 H14 aluminum coil be used in pouch cells?
It is generally not used for pouch cells, which prefer laminated foils. Gayunpaman, it may be used for outer casings in modular systems.
Q3: What are the standard thicknesses used for battery shells?
Typical thickness ranges from 0.3mm to 1.2mm, depending on the battery type and application.
Q4: How does surface cleanliness affect battery safety?
A clean, oil-free surface prevents contamination, ensuring adhesion of films and reducing fire risk during operation.
Q5: Saan po ba pwede bumili 3003 H14 aluminum coil for lithium battery shell applications?
Trusted suppliers like Henan Huawei Aluminyo offer certified coils with consistent quality for industrial use.
Ang bilog na aluminyo para sa mga kagamitan sa pagluluto ay karaniwang tumutukoy sa isang hugis pabilog na piraso o bilog na gawa mula sa aluminyo na ginagamit sa pagmamanupaktura ng iba't ibang uri ng cookware, tulad ng mga kaldero, mga kawali, at mga kagamitan sa pagluluto.
Kung naghahanap ka ng mga nangungunang kalidad na prepainted aluminum coils na may iba't ibang mga modelo ng haluang metal at mga pagtutukoy, Ang Huawei Aluminum ay ang iyong tunay na pagpipilian.
1085 Mataas na reflectivity mirror plate ay isang pinasadyang anyo ng aluminyo sheet na nailalarawan sa pamamagitan ng kanyang pambihirang mataas na reflectivity at makinis, parang salamin tapos sa ibabaw.
Ang aluminum circle para sa cookware bottoms ay normal na tinatawag na "Aluminum Disc" o "aluminyo disk." ito ay mga pabilog na bahagi ng aluminyo na maaaring gamitin dahil ang base o backside ng iba't ibang anyo ng mga kagamitan sa pagluluto, na kinabibilangan ng mga kaldero, mga kawali, at strain cookers.
Ang 3003 ang aluminium strip ay gawa sa 3003 aluminyo haluang metal. Ang 3 serye aluminyo haluang metal ay tinatawag ding isang aluminyo-mangganeso haluang metal.
Ang Henan Huawei Aluminum ay nagbibigay ng mga roll ng jumbo ng household aluminum foil, 8011 haluang metal, 1235 haluang metal Household Aluminum foil application para sa barbecue, pambalot ng pagkain, atbp.
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Mahal na Sir, Please offer your best FOB Prices specs are as under ALUMINIUM STRIP (AL=99.50% MIN) SUKAT:450 X32 X6 MM. DIN EN 570 EN-AW 1050 A, QUANTITY=3400KG
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