Padrão de espessura de chapa metálica & Referência da tabela de comparação de medidores

Chapa metálica

Ao trabalhar com chapas metálicas, seja para peças automotivas, construção, ou bens de consumo - compreender os padrões de espessura de chapa metálica e o sistema de medição não é negociável. O sistema de medição usa um método contra-intuitivo, escala não linear (números menores = metal mais espesso) isso pode confundir até mesmo engenheiros experientes. Este guia explica como funciona o sistema de medição, fornece tabelas de comparação detalhadas para 7 metais comuns (aço, […]

Ao trabalhar com chapas metálicas, seja para peças automotivas, construção, or consumer goods—understandingsheet metal thickness standards e ogauge system is non-negotiable. O sistema de medição usa um método contra-intuitivo, escala não linear (números menores = metal mais espesso) isso pode confundir até mesmo engenheiros experientes. Este guia explica como funciona o sistema de medição, fornece tabelas de comparação detalhadas para 7 metais comuns (aço, alumínio, cobre, e mais), shares real-world application examples, and answers critical questions to help you choose the right thickness for your project.

Primeiro: What Is the Sheet Metal Gauge System?

Unlike the metric system (which measures thickness directly in millimeters), the sheet metal gauge system is a historical standard based onweight per square foot of metal. This means:

  • O smaller the gauge number, o thicker the metal (por exemplo, 3 gauge steel = 6.07mm thick; 38 gauge steel = 0.15mm thick).
  • Gauge standards vary by metal type (por exemplo, 10 gauge steel is thicker than 10 gauge aluminum)—density differences cause this variation.

Key Thickness Limits for “Sheet Metal”

By industry standard, metal is classified as “sheet metal” only if its thickness falls within a specific range:

  • Lower limit: 0.5milímetros (thinner than this is considered foil, not sheet metal).
  • Upper limit: 6milímetros (thicker than this is classified as “plate metal” and follows different standards).

Observação: Regional variations exist—some countries consider 8mm the upper limit for sheet metal. Always confirm with your supplier if working on international projects.

Sheet Metal Gauge Comparison Tables (By Metal Type)

Below are detailed gauge-to-thickness conversion tables for the 7 most commonly used metals in sheet metal processing. All measurements include both inches and millimeters for global compatibility.

1. Standard Steel Gauge Table

Standard steel (aço macio) é usado para peças estruturais, colchetes, and machinery components. Its gauge scale is the most widely referenced in manufacturing.

MedidorThickness (em)Thickness (milímetros)Best Use Case
30.2396.073Heavy structural beams, industrial machinery frames
40.2245.695Large storage tanks, heavy-duty brackets
50.2095.314Truck bed floors, construction supports
80.1644.176Metal doors, safety barriers
100.1353.416Load-bearing brackets, peças de chassis automotivos
120.1052.657Dutos HVAC, metal shelving
160.0601.519Gabinetes elétricos, light-duty brackets
200.0360.912Thin metal panels, guarnição decorativa
300.0120.305Precision electronics components, thin covers
380.0060.152Ultra-thin parts (rarely used for structural needs)

2. Galvanized Steel Gauge Table

Galvanized steel has a zinc coating for corrosion resistance, making it ideal for outdoor or wet environments. Its gauge thickness includes the zinc layer (adds ~0.1mm to base steel thickness).

MedidorThickness (em)Thickness (milímetros)Best Use Case
80.1684.270Outdoor fences, garden sheds
100.1383.510Painéis de cobertura, gutter systems
120.1082.753Outdoor furniture frames, mailboxes
160.0641.613Ventilation grilles, outdoor light fixtures
200.0401.006Thin roofing flashing, decorative outdoor trim

3. Stainless Steel Gauge Table

Aço inoxidável (304/316 notas) is corrosion-resistant and used for medical devices, equipamento de processamento de alimentos, and marine parts. It has a wider gauge range than standard steel.

MedidorThickness (em)Thickness (milímetros)Best Use Case
0000.3759.525Marine hull components, heavy-duty food processing tanks
30.2506.350Industrial kitchen equipment, large chemical containers
80.1724.366Stainless steel sinks, countertop supports
120.1092.779Invólucros para dispositivos médicos, food conveyor belts
160.0631.588Cutlery, small kitchen appliances
200.0380.953Thin stainless steel panels, gabinetes eletrônicos
300.0130.318Precision medical instruments, small sensor housings

4. Carbon Steel Gauge Table

Carbon steel (high-carbon) is stronger than standard steel but less corrosion-resistant. It’s used for tools, molas, and high-strength parts.

MedidorThickness (em)Thickness (milímetros)Best Use Case
30.2396.07Heavy-duty tool bases, industrial springs
80.1644.18Metal cutting tools, machinery gears
100.1343.42Peças de suspensão automotiva, high-strength brackets
160.0601.52Small tool components, thin springs

5. Aluminum Sheet Gauge Table

Aluminum is lightweight (1/3 o peso do aço) and corrosion-resistant, making it ideal for aerospace, automotivo, e bens de consumo. Its gauge scale is thinner than steel for the same number.

MedidorThickness (em)Thickness (milímetros)Best Use Case
60.1624.115Aircraft structural parts, heavy aluminum frames
100.1022.588Painéis de carroceria automotiva, aluminum ladders
160.0511.290Invólucros de laptop, beverage cans (thinner grades)
200.0320.813Molduras para smartphones, thin aluminum sheets for signage
300.0100.254Ultra-thin aluminum foil (for packaging, not structural use)

6. Copper Sheet Gauge Table

Copper is highly conductive and malleable, used for electrical wiring, encanamento, and decorative applications. Its gauge scale is thicker than aluminum but thinner than steel for the same number.

MedidorThickness (em)Thickness (milímetros)Best Use Case
70.1804.572Heavy copper pipes, industrial electrical busbars
100.1343.404Medium-duty plumbing pipes, decorative copper panels
160.0651.651Electrical wiring insulation, thin copper sheets for crafts
240.0220.559Precision electrical components, guarnição decorativa

7. Brass Sheet Gauge Table

Latão (copper-zinc alloy) is corrosion-resistant and has an attractive gold-like finish. It’s used for decorative parts, instrumentos musicais, and plumbing fittings.

MedidorThickness (em)Thickness (milímetros)Best Use Case
70.1443.665Musical instrument bells, heavy brass fixtures
100.1022.588Decorative wall panels, brass hardware
160.0511.291Small brass fittings, componentes de jóias
240.0200.511Thin brass sheets for engraving, guarnição decorativa

How to Choose the Right Sheet Metal Thickness (Passo a passo)

Selecting the correct thickness isn’t just about gauge numbers—it depends on your project’s load, ambiente, and manufacturing process. Follow these 4 passos:

Etapa 1: Define Load Requirements

  • Heavy load (por exemplo, vigas estruturais, truck beds): Choose 3–10 gauge (4–6mm thick) steel or aluminum.
  • Medium load (por exemplo, prateleiras, colchetes): Choose 12–16 gauge (1.5–2.7mm thick).
  • Light load (por exemplo, guarnição decorativa, gabinetes eletrônicos): Choose 18–24 gauge (0.7–1.2mm thick).

Exemplo: A construction company needed brackets for a 500kg load. They chose 8 gauge steel (4.18mm de espessura)—12 gauge (2.66milímetros) would have bent under the weight.

Etapa 2: Consider Environmental Conditions

  • Outdoor/wet environments: Use galvanized steel (10–16 gauge) or stainless steel (12–20 gauge) para resistência à corrosão.
  • Indoor/dry environments: Standard steel (12–20 gauge) or aluminum (16–24 gauge) works—cheaper than corrosion-resistant metals.

Estudo de caso: A garden furniture maker switched from standard steel (16 medidor) to galvanized steel (16 medidor) for outdoor chairs. The galvanized chairs lasted 5 anos (contra. 2 years for standard steel) without rusting.

Etapa 3: Match Thickness to Manufacturing Process

  • Usinagem CNC: Thicker metal (8–12 gauge) is easier to machine—thin metal (20+ medidor) bends during cutting.
  • Bending/Forming: Medium thickness (16–20 gauge) is ideal—too thick (8–12 gauge) cracks when bent; too thin (24+ medidor) warps.
  • Soldagem: Thicker metal (10–16 gauge) creates stronger welds—thin metal (20+ medidor) burns through during welding.

Tip: For parts that need both bending and welding (por exemplo, armações metálicas), 16 gauge steel is the sweet spot.

Etapa 4: Use the Gauge Comparison Table to Verify

Once you’ve narrowed down your needs, cross-check with the appropriate gauge table. Por exemplo:

  • Precisa de um peso leve, corrosion-resistant part for a laptop casing? Usar 20 gauge aluminum (0.813mm de espessura) from the aluminum gauge table.
  • Need a heavy-duty structural part for a truck? Usar 8 gauge standard steel (4.176mm de espessura) from the standard steel table.

Common Myths About Sheet Metal Gauge (Debunked)

Myths about the gauge system lead to costly mistakes. Aqui estão 3 common misconceptions:

Myth 1: “All metals use the same gauge scale.”

Fact: Gauge varies by metal density. UM 10 gauge steel sheet (3.416milímetros) is thicker than a 10 gauge aluminum sheet (2.588milímetros)—aluminum is less dense, so the same gauge number corresponds to a thinner thickness. Always use the metal-specific gauge table.

Myth 2: “Thicker metal is always more corrosion-resistant.”

Fact: Thickness only affects howlongo metal takes to corrode—not if it corrodes. A thin stainless steel sheet (20 medidor, 0.953milímetros) is more corrosion-resistant than a thick standard steel sheet (8 medidor, 4.176milímetros) because stainless steel has chromium, which prevents rust.

Myth 3: “Gauge is more accurate than metric thickness.”

Fact: Metric thickness (milímetros) is a direct measurement—gauge is a historical weight-based standard with slight variations between suppliers. Para peças críticas (por exemplo, dispositivos médicos), specify thickness in millimeterse gauge to avoid confusion.

Yigu Technology’s Perspective on Sheet Metal Thickness & Medidor

Na tecnologia Yigu, we help clients navigate the gauge system to avoid costly errors. For structural parts, we recommend referencing the standard steel or stainless steel gauge tables and prioritizing thickness over gauge number. For lightweight or corrosion-sensitive projects, we guide clients to aluminum or galvanized steel, using their specific gauge tables to find the right balance of strength and weight. We also provide sample pieces of different gauges, so clients can see and test thickness before full production. For us, the gauge system is a tool—but the goal is always to match thickness to your project’s unique needs, not just follow a number.

FAQ About Sheet Metal Thickness Standard & Medidor

1. Can I use a steel gauge table for aluminum parts?

No—aluminum has a different gauge scale than steel. UM 10 gauge steel sheet (3.416milímetros) is thicker than a 10 gauge aluminum sheet (2.588milímetros). Using the wrong table will result in a part that’s too thin (if you use steel gauge for aluminum) or too thick (if you use aluminum gauge for steel).

2. What’s the difference between “sheet metal” and “plate metal”?

Sheet metal has a thickness of 0.5–6mm (medidor 38 to gauge 3). Plate metal is thicker than 6mm (no standard gauge) and is used for heavy-duty applications like bridges or ship hulls. Always confirm if your project requires sheet or plate metal—using plate metal when sheet metal works wastes money.

3. How do I convert gauge to millimeters if I don’t have a table?

Para a maioria dos metais, you can use a general rule (but always verify with a metal-specific table):

  • Aço: Medidor 10 = ~3.4mm, medidor 16 = ~1.5mm, medidor 20 = ~0.9mm.
  • Alumínio: Medidor 10 = ~2.6mm, medidor 16 = ~1.3mm, medidor 20 = ~0.8mm.
    Para peças críticas, never rely on estimates—use the official gauge tables provided in this guide.
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