Designed for machining, corrosion-resistant, and durable, high tensile strength, corrosion and temperature resistant.Stainless steel alloys for electronic hardware, automotive, aerospace, medical instruments, and many other applications.
Stainless steel 304L (CNC) has excellent mechanical properties and good machinability.
Stainless steel 304/304L
Stainless steel 316L (CNC) has similar mechanical properties to 304, with higher corrosion and chemical resistance.
Stainless steel 316/316L
Stainless steel 303 (CNC) has excellent toughness, but lower corrosion resistance than 304.
Stainless steel 303
Stainless steel 416 is magnetic and has a high machinability.
Stainless steel 416
Stainless steel 420 provides high strength and corrosion resistance. It is the hardest of all stainless steels when hardened.
Stainless steel 420
Stainless steel 440C has improved toughness and corrosion resistance due to Carbon and Chromium content.
Stainless steel 440C
Stainless steel 301 is corrosion resistant similar to Stainless steel 304.
Stainless steel 301
Stainless steel 17-7 (CNC) - SAE grade 630 - is a precipitation hardening alloy with good corrosion resistance. Can be hardened up to 44 HRC.
Stainless Steel 17-7
CNC machining produces parts with excellent mechanical properties, accuracy and repeatability from metal and plastic. 3-axis & 5-axis CNC milling available.
Stainless steel is strong, resistant to corrosion, easy to clean and sterilize, and resistant to extreme temperatures. Our CNC machining services let you make custom stainless steel parts for many industries, including energy, medical technology, agriculture, industrial automation, machinery, robotics, and construction. We can machine your parts from a CAD file or technical drawing. This makes the steel harder and more corrosion-resistant.
Jingbang has been engaged in CNC machining industry for 13 years, more than 50 kinds of metal and plastic materials have a wealth of machining experience, the following materials are commonly used in our production of stainless steel materials
C % | Si % | Mn % | P % | S % | Cr % | Ni % | Mo % |
---|---|---|---|---|---|---|---|
≤0.15 | ≤1.00 | ≤2.00 | ≤0.20 | ≤0.15 | 17.00-19.00 | 8.00-10.00 | ≤0.6 |
Tensile strength (MPa) | Conditional yield strength (MPa) | Elongation (%) | Hardness |
---|---|---|---|
≥520 | ≥205 | ≥40 | HB≤187HB; HRC≤90HRB; HV≤200HV |
C % | Si % | Mn % | P % | S % | Cr % | Ni % |
---|---|---|---|---|---|---|
≤0.08 | ≤0.03 | ≤2.00 | ≤0.45 | ≤0.03 | 18.0–20.0 | 8.0-11.0 |
Tensile strength (MPa) | Conditional yield strength (MPa) | Elongation (%) | Hardness |
---|---|---|---|
≥515-1035 | ≥205 | ≥40 | ≤201HBW; ≤92HRB; ≤210HV |
C % | Si % | Mn % | P % | S % | Cr % | Ni % | Mo % |
---|---|---|---|---|---|---|---|
≤0.08 | ≤1.00 | ≤2.00 | ≤0.045 | ≤0.03 | 16.00-18.00 | 10.00-14.00 | 2.00-3.00 |
Tensile strength (MPa) | Conditional yield strength (MPa) | Elongation (%) | Reduction of area (%) |
---|---|---|---|
≥620 | ≥310 | ≥30 | ≥40 |
C % | Si % | Mn % | P % | S % | Cr % | Ni % | Mo % |
---|---|---|---|---|---|---|---|
0.16-0.25 | ≤1.00 | ≤1.00 | ≤0.04 | ≤0.03 | 12.00-14.00 | ≤0.75 | – |
Tensile strength (MPa) | Conditional yield strength (MPa) | Elongation (%) | Hardness |
---|---|---|---|
≥635 | ≥440 | ≥20 | annealing, ≤223HB; quenching and tempering, ≥192HB |
C % | Si % | Mn % | P % | S % | Cr % | Ni % | Mo % |
---|---|---|---|---|---|---|---|
≤0.12 | ≤0.75 | ≤1.00 | ≤0.04 | ≤0.03 | 16.00-18.00 | ≤0.6 | – |
Density | Melting point | Expansion coefficient | Young’s modulus |
---|---|---|---|
7.75g/cm³ | 1427℃ | mm/℃(at 20-100℃) | kN/mm² |
C % | Si % | Mn % | P % | S % | Cr % | Ni % | Mo % |
---|---|---|---|---|---|---|---|
0.95-1.20 | ≤1.00 | ≤1.00 | ≤0.035 | ≤0.03 | 16.00-18.00 | ≤0.6 | – |
Tensile strength (MPa) | Internal stress (MPa) | Quenching and tempering | Hardness |
---|---|---|---|
≥560 | ≥250 | ≥58HRC | Annealed, ≤269HB |
C % | Si % | Mn % | P % | S % | Cr % | Ni % | Cu % |
---|---|---|---|---|---|---|---|
≤0.07 | ≤1.00 | ≤1.00 | ≤0.04 | ≤0.03 | 15.5-17.5 | 3.00-5.00 | 3.00-5.00 |
Tensile strength (MPa) | Conditional yield strength (MPa) | Elongation (%) | Reduction of area (%) |
---|---|---|---|
aging at 480℃ | aging at 480°C | aging at 480°C | aging at 480°C |
If your project requires other materials, please Contact us, material-related data and suitability assessment for your project will be sent to you promptly.
CNC machining of stainless steel is used to produce a variety of parts in the medical industry, robotics, food and beverage industry, aerospace, and any industry that requires high-strength applications.
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Hardness (Brinell) | Density (g/cm^3) | Tensile Strength(MPa) | Fatigue Strength (MPa) | |
---|---|---|---|---|
Aluminum 6061 | 60 | 2.68 | 193 | 117 |
Aluminum 6063 | 73 | 2.7 | 214 | 68.9 |
Aluminum 7050 | 147 | 2.83 | 490 | 160 |
Aluminum 7075(Aerospace Grade) | 150 | 2.81 | 503 | 159 |
Aluminum MIC-6 | 65 | 2.7 | 105 | N/A |
Aluminum 5052 | 60 | 2.68 | 193 | 117 |
Hardness (Brinell) | Density (g/cm^3) | Tensile Strength(MPa) | Fatigue Strength (MPa) | |
---|---|---|---|---|
Copper 101 | 65 - 90 | 8.89 - 8.94 | 69 - 365 | 76 - 90 |
Copper C110 | 65 - 90 | 8.89 | 69 - 365 | 76 - 90 |
Copper C172 | 80 - 85 | 8.25 | 515 - 585 | 275 |
Copper C260 | 60 - 82 | 8.53 | 103 - 441 | 90 |
Copper C360 | 63-130 | 8.49 | 124-310 | 138 |
Brass CZ121 | 90 - 160 | 8.47 | 360 - 500 | 220 - 360 |
Brass CZ131 | 70 - 140 | 8.5 | 340 - 480 | 200 - 350 |
Hardness (Brinell) | Density (g/cm^3) | Tensile Strength(MPa) | Modulus of Elasticity (GPa) | Elongation at Break(%) | |
---|---|---|---|---|---|
Stainless Steel 17-7 | 388 | 7.8 | 1275 | 204 | 6 |
Stainless Steel 301 | 217 | 8.03 | 205 | 212 | 40 |
Stainless Steel 303 | 160 | 8.03 | 240 | 200 | 50 |
Stainless Steel 316 | 187 | 8.03 | 205 | 193 | 40 |
Stainless Steel 332 | 200 | 8.03 | 294 | 196 | 44 |
Stainless Steel 416 | 360 | 7.8 | 962 | 200 | 9.5 |
Stainless Steel 420 | 506 | 7.8 | 1040 | 200 | 11.5 |
Stainless Steel 440C | 495 - 653 | 7.8 | 450 - 1900 | 204 - 215 | 2.0 - 14 |
Hardness(Shore D) | Density (g/cm^3) | Modulus of Elasticity (GPa) | Tensile Strength(MPa) | Elongation at Break(%) | |
---|---|---|---|---|---|
HDPE | 50 - 76 | 0.92 - 0.99 | 0.565 - 1.5 | 11 - 43 | 3 - 80 |
UHMW-PE | 54 - 120 | 0.8 - 1.8 | 0.3 - 1.1 | 11.6 - 40 | 3.5 - 800 |
PVC | 80 | 1.16 - 1.65 | 1.82 - 7.03 | 3.45 - 73.1 | 2 - 330 |
ABS/Nylon Blend | 64 | 1.04 - 1.21 | 0.9 - 5.3 | 27 - 100 | 3.1 - 230 |
Acrylic | 60 | 0.7 - 1.3 | 0.95 - 3.79 | 25 - 85 | 1 - 85 |
Nylon 66 | 76 - 88 | 1.02 - 2.7 | 0.6 - 25 | 10 - 98 | 1 - 300 |
PTFE | 11 - 70 | 0.7 - 3.35 | 0.392 - 0.75 | 0.86 - 41.4 | 70 - 650 |
PEEK | 62 - 94 | 1.26 - 1.72 | 2.14 - 24 | 11 - 125 | 1.7 - 100 |
POM-H | 81 | 1.42 | 3.2 | 75 | 30 |
POM-C | 79 | 1.41 | 2.8 | 67 | 40 |
Hardness (Brinell) | Density (g/cm^3) | Tensile Strength(MPa) | Modulus of Elasticity (GPa) | Elongation at Break(%) | |
---|---|---|---|---|---|
Titanium(Grade 1) | 120 | 4.5 | 170 - 310 | 103 | 24 |
Titanium(Grade 2) | 200 | 4.51 | 276 - 448 | 103 | 20 |
Titanium(Grade 4) | 265 | 4.51 | 480 - 655 | 105 | 15 |
Ti-6Al-4V(Grade 5) | 379 | 4.43 | 1100 | 114 | 10 |
Bronze | 11.6 - 420 | 5.6 - 14 | 69 - 800 | 72.4 - 138 | 0 - 70 |
Zinc Alloy (Zamak 5) | 91 | 6.7 | 208 | 70 - 100 | 7 |
Steel Alloy AISI 4340 | 388 | 7.85 | 972 | 200 | 12.1 |
Nickel Alloy | 175 - 240 | 8.44 | 414 - 758 | 207 | 16 |