Perforated 316 Stainless Steel Sheet
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Perforated 316 stainless steel sheet is a versatile and durable material that is used for a wide range of applications. It is made from high-quality stainless steel and has a smooth, polished finish that is resistant to corrosion, rust, and staining. The perforations in the sheet allow for ventilation, filtration, and drainage, making it ideal for use in a variety of industrial, commercial, and residential settings.
The 316 grade stainless steel used in the perforated sheet is a high-quality alloy that contains molybdenum, which enhances its corrosion resistance. This makes it suitable for applications that expose it to harsh chemicals, acids, and corrosive environments. The sheet can be cut to size and shaped to suit specific requirements, and can be easily installed using a variety of methods.
The perforations in the sheet are carefully designed and spaced to ensure maximum efficiency. They allow for easy airflow, drainage, and filtration, while also providing strength and stability to the sheet. The sheet is available in a range of hole sizes and patterns to suit different applications and can be customized to meet particular requirements.
Perforated 316 stainless steel sheet is commonly used in architectural, automotive, chemical, food processing, manufacturing, oil and gas, and pharmaceutical industries. It is also used for decorative purposes, such as in door panels, wall cladding, and furniture.
- Material: 316 stainless steel.
- Thickness: 0.4mm - 10mm.
- Hole shapes: round, square, slotted, hexagonal, and others.
- Hole sizes: from 0.5mm to 100mm.
- Open area: from 2% to 80%.
- Surface treatment: hot-dipped galvanized, electro-galvanized, PVC coated, powder coated, and others.
- Easy to fabricate and weld.
- Can be easily cut, bent, and shaped to meet specific requirements.
- Highly resistant to corrosion, rust, and staining.
- Can withstand high temperatures and extreme weather conditions.
316 Stainless Steel Chemical Composition (VS 304)
Elements (%) |
304 (S30400) |
304L (S30403) |
316 (S31600) |
316L (S31603) |
---|---|---|---|---|
Carbon, Max |
0.07 |
0.030 |
0.08 |
0.030 |
Manganese, Max |
2.00 |
2.00 |
2.00 |
2.00 |
Phosphorus, Max |
0.045 |
0.045 |
0.045 |
0.045 |
Sulphur, Max |
0.030 |
0.030 |
0.030 |
0.030 |
Silicon, Max |
0.75 |
0.75 |
0.75 |
0.75 |
Chromium |
17.5-19.5 |
17.5-19.5 |
16.0-18.0 |
16.0-18.0 |
Nickel |
8.0-10.5 |
8.0-12.0 |
10.0-14.0 |
10.0-14.0 |
Mo |
... |
... |
2.00-3.00 |
2.00-3.00 |
Nitrogen |
0.10 |
0.10 |
0.10 |
... |
316 vs 304 Mechanical Properties
Mechanical Properties |
304 (S30400) |
304L (S30403) |
316 (S31600) |
304L (S30403) |
---|---|---|---|---|
Tensile Strength Min |
75 Ksi [515 Mpa] |
70 Ksi [485 Mpa] |
75 Ksi [515 Mpa] |
70 Ksi [485 Mpa] |
Yield Strength Min 0.2% offset |
30 Ksi [205 Mpa] |
25 Ksi [170 Mpa] |
30 Ksi [205 Mpa] |
25 Ksi [170 Mpa] |
Yield Strength Min 1% offset |
36 Ksi [250 Mpa] |
35 Ksi [240 Mpa] |
38 Ksi [260 Mpa] |
38 Ksi [260 Mpa] |
Elongation Min |
40% |
40% |
40% |
40% |
Hardness Max |
92 HRB |
92 HRB |
95 HRB |
95 HRB |
Packing
Application
Available Surface
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