1.5732
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1.5732

1.5732 Carbon Steel

Products Description 1.5732 Carbon steel CHEMICAL COMPOSITION (mass weight - %) Carbon, C (%): 0.10 ~ 0.17 Silicon, Si (%): 0.15 ~ 0.35 Manganese, Mn (%): 0.40 ~ 0.70 Phosphorus, P (%) ≤: 0.035 Sulfur, S (%) ≤: 0.035 Chromium, Cr (%): 0.55 ~ 0.95 Molybdenum, Mo (%): - Nickel, Ni (%): 2.25...

Description
Products Description

 

1.5732 Carbon steel CHEMICAL COMPOSITION (mass weight - %)
Carbon, C (%): 0.10 ~ 0.17
Silicon, Si (%): 0.15 ~ 0.35
Manganese, Mn (%): 0.40 ~ 0.70
Phosphorus, P (%) ≤: 0.035
Sulfur, S (%) ≤: 0.035
Chromium, Cr (%): 0.55 ~ 0.95
Molybdenum, Mo (%): -
Nickel, Ni (%): 2.25 ~ 2.75
 
1.5732 Carbon steel MECHANICAL PROPERTIES - HOT WORKING, HEAT TREATMENT AND HARDNESS
Hot working temperature /℃: 1150~850
Heat treatment temperature /℃| annealing: 610~650
Heat treatment temperature /℃|carburization: 850~900
Heat treatment temperature /℃|quenchingⅠ(center): 850~880
Heat treatment temperature /℃|quenchingⅡ(surface): 780~810, Oil
Heat treatment temperature /℃|tempering: 150~180
HBS≤: 205
|size /mm: φ11
Tensile strength, Rm / MPa: 980~1270
Yield strength, Rp0.2 ≥ MPa: 735
Elongation, A5 (%) ≥: 9
Reduction of area, Z (%) ≥: 40
Impact strength, AKv / J: 69

 

This carbon steel typically contains a carefully balanced combination of elements that contribute to its overall performance. It has a moderate to relatively high carbon content, which is a key factor in determining its strength and hardness. The carbon imparts rigidity to the steel, allowing it to withstand significant loads and resist deformation. However, it also needs to be carefully managed to ensure that the steel retains an appropriate level of ductility and toughness.

 

In addition to carbon, 1.5732 carbon steel may contain other alloying elements in specific amounts. These can include elements such as manganese, which helps to improve the steel's tensile strength and toughness. It may also contain traces of silicon, which can enhance the steel's resistance to oxidation and improve its overall quality during manufacturing processes. The precise composition of these alloying elements is carefully controlled to achieve the desired mechanical and physical properties of the steel.

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Regarding its mechanical properties, 1.5732 carbon steel exhibits good tensile strength. This means that it can resist being pulled apart or stretched without easily failing. It also has a reasonable level of hardness, which makes it suitable for applications where wear resistance is important, such as in the production of gears, shafts, and mechanical components that are in constant contact and subject to friction. At the same time, it maintains a certain degree of ductility, allowing it to be shaped and formed during manufacturing processes without cracking or breaking too easily.
The manufacturing processes for 1.5732 carbon steel can involve techniques like forging, rolling, and machining. Forging can improve the steel's internal structure and mechanical properties by aligning the grain structure. Rolling is often used to produce sheets or bars with the desired dimensions and surface finish. Machining operations can then be used to precisely shape the steel into the final components required for various applications. During these manufacturing processes, proper heat treatment may be applied to further optimize the steel's properties. Heat treatment can involve processes like annealing to relieve internal stresses, quenching to increase hardness, and tempering to improve toughness and reduce brittleness.
 

 

 

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