Stainless Steel Pipe 304 304L Polished
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Stainless Steel Pipe 304 304L Polished

Chemical composition of 304 stainless steel:
⑴ Carbon C: ≤0.04~0.10,
⑵ Silicon Si: ≤1.00,
⑶ Manganese Mn: ≤2.00,
⑷ P: ≤0.045,
⑸ Sulfur S: ≤0.030,
⑹ Chromium Cr: 18.00 ~ 20.00,
⑺ Nickel Ni: 8.00 ~ 11.00,
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Product Introduction

Stainless Steel Pipe 304 304L Polished

The main difference between 304 and 304L stainless steel pipes is in the following aspects:

Chemical composition: The carbon content of 304L stainless steel is low, usually less than 0.03%, while the carbon content of 304 stainless steel is greater than 0.08%. This difference causes the two to behave differently in the welding state. Because of its low carbon content, 304L stainless steel is not easy to form carbides in the area near the welding, thereby reducing the risk of intergranular corrosion caused by carbides. 123
Mechanical properties: Although the tensile strength of the two is similar, there may be differences in other mechanical properties. For example, 304L stainless steel can maintain better mechanical properties at higher temperatures, which is more favorable for use after welding. 23
Price: Due to the high cost of 304L stainless steel, its price is relatively expensive. If it is used instead of 304 stainless steel, it will increase the overall cost of the product.

Stainless Steel Grades
EN-DIN standard steel grade EN-standard steel grade ASTM/AISIstandard steel grade UNS GB-standard steel grade
1.431 X10CrNi18-8 301    
1.4318 X2CrNiN18-7 301LN    
1.4307 X2CrNi18-9 304L

S30403

 
1.4306 X2CrNi19-11 304L S30403 00Cr18Ni9
1.4311 X2CrNiN18-10 304LN S30453  
1.4301 X5CrNi18-10 304 S30400 06Cr19Ni10(GB/T3280-2007)
1.4948 X6CrNi18-11 304H S30409  
1.4303 X5CrNi18 12 305    
1.4541 X6CrNiTi18-10 321 S32100 0Cr18Ni11Ti
1.4878 X12CrNiTi18-9 321H S32109  
1.4404 X2CrNiMo17-12-2 316L S31603 00Cr17Ni14Mo2
1.4432 X2CrNiMo17-12-3 316L S31603 00Cr17Ni14Mo2
1.4435 X2CrNiMo18-14-3 316L S31603 00Cr17Ni14Mo2
1.4401 X5CrNiMo17-12-2 316 S31600 0Cr17Ni12Mo2
1.4436 X3CrNiMo17-13-3 316 S31600 0Cr17Ni12Mo2
1.4406 X2CrNiMoN17-12-2 316LN S31635  
1.4571 X6CrNiMoTi17-12-2 316Ti S31635  
1.4429 X2CrNiMoN17-13-3 316LN S31653  
1.4438 X2CrNiMo18-15-4 317L S31703  
  X10CrNiTi189 347   0Cr18Ni11Nb
1.4512 X6CrTi12 409   0Cr11Ti
      S41000 0Cr13
    410   1Cr13
    420J1   2Cr13
1.4016 X6Cr17 430   1Cr17
1.4118 X40CrMo15 440A S44002 8Cr13
1.4112   440B S44004 9Cr13
1.4125   440C S44003 11Cr18
    440F S44020  
1.4539 X1NiCrMoCu25-20-5 904L N08904 00Cr20Ni25Mo4.5Cu
1.4547 X1CrNiMoCuN20-18-7   S31254  

 

Chemical composition
Grade C Si Mn Cr Ni
304 ≤0.07 ≤1.00 ≤2.0 18.00~20.00 8.00~10.50
304L ≤0.030 ≤1.00 ≤2.0 18.00~20.00 9.00~13.00
310S ≤0.08 ≤1.00 ≤2.0 24.00~26.00 19.00~22.00
316 ≤0.08 ≤1.00 ≤2.0 16.00~18.00 10.00~14.00
316L ≤0.03 ≤1.00 ≤2.0 16.00~18.00 12.00~15.00
321 ≤0.08 ≤1.00 ≤2.0 17.00~19.00 9.00~13.00
904L ≤0.02 ≤1.00 ≤2.0 19.00~23.00 23.00~28.00
2205 ≤0.03 ≤1.00 ≤2.0 22.00~23.00 4.5~6.5
2507 ≤0.03 ≤0.08 ≤1.20 24.00~26.00 6.00~8.00

Product Application

Stainless Steel Pipe 304 304L Polished

Production Process

Stainless Steel 304 pipes and tubes

 

Quality Control

Uses of 304 Stainless Steel Tubing

ASTM A312 TP304 Seamless Stainless Steel Pipe

Packaging&Delivery

304 alloys Seamless and Welded

 

Available Surface

SUS304 Stainless Steel Pipes

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