630 MPa-grade high-strength hot-rolled reinforced bar and production process thereof

A production process and steel bar technology, which is applied in the field of 630MPa high-strength hot-rolled steel bar and its production process, can solve the problems of difficulty in ensuring the yield platform and low yield strength of hot-rolled steel bar, and achieve the goal of avoiding excessive corrosion rate and hardness, and uniform extension High efficiency, strong effect of hysteresis fracture resistance

Active Publication Date: 2014-01-08
江苏森林建筑新材料股份有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0007] The yield strength of existing hot-rolled steel bars is relatively low. It is very difficult to make the yield strength of hot-rolled steel bars reach such a high strength as 630Mpa and above, and the strength is so high that it is difficult to guarantee the yield platform. Strength may be expressed as a 0.2% strain versus strength

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0034] The 630MPa grade high-strength hot-rolled steel bar in this embodiment has the following chemical composition by weight: C: 0.38%, Cr: 1.1%, Mn: 0.75%, Mo: 0.25%, Si: 0.21%, S: 0.025%, P: 0.03%, N: 0.025%, the balance is Fe.

[0035] The production technology of the 630MPa level high-strength hot-rolled steel bar of the present embodiment is carried out according to the following steps:

[0036] (1) Send the smelted steel bar into the heating furnace and heat it to 1200°C, then quickly cool the steel bar to 610°C through the first online cooling process, and then quench it with water or quenching liquid in the quenching device for 12 seconds, and then pass through The tempering heating furnace is heated to 660°C for tempering, and then cooled to normal temperature through the second cooling process;

[0037] The first cooling process: use water cooling to water-cool the steel bars to 610°C at a cooling rate of 15°C / s;

[0038] The second cooling process: the combinati...

Embodiment 2

[0045] The 630MPa grade high-strength hot-rolled steel bar in this embodiment has the following chemical composition by weight: C: 0.41%, Cr: 0.8%, Mn: 1.0%, Mo: 0.15%, Si: 0.15%, S: 0.015%, P: 0.025%, N: 0.015%, and the balance is Fe.

[0046] The production technology of the 630MPa level high-strength hot-rolled steel bar of the present embodiment is carried out according to the following steps:

[0047] (1) Put the smelted steel bar into the heating furnace and heat it to 1100°C, then cool the steel bar quickly to 620°C through the first online cooling process, and then quench it with water or quenching liquid in the quenching device for 13 seconds, and then pass through The tempering heating furnace is heated to 600°C for tempering, and then cooled to normal temperature through the second cooling process;

[0048] The first cooling process: use water cooling to cool the steel bars to 620°C at a cooling rate of 16°C / s;

[0049] The second cooling process: the combination ...

Embodiment 3

[0056] The 630MPa grade high-strength hot-rolled steel bar in this embodiment has the following chemical composition by weight: C: 0.43%, Cr: 0.9%, Mn: 0.85%, Mo: 0.2%, Si: 0.3%, S: 0.013%, P: 0.015%, N: 0.012%, and the balance is Fe.

[0057] The production technology of the 630MPa level high-strength hot-rolled steel bar of the present embodiment is carried out according to the following steps:

[0058] (1) Put the smelted steel bar into the heating furnace and heat it to 1010°C, then quickly cool the steel bar to 630°C through the first online cooling process, and then quench it with water or quenching liquid in the quenching device for 14 seconds, and then pass through The tempering heating furnace is heated to 520°C for tempering, and then cooled to normal temperature through the second cooling process;

[0059] The first cooling process: use water cooling to water-cool the steel bars to 630°C at a cooling rate of 17°C / s;

[0060] The second cooling process: the combina...

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Abstract

The invention relates to a reinforced bar and a production process thereof, and specifically relates to a 630 MPa-grade high-strength hot-rolled reinforced bar and a production process thereof. The 630 MPa-grade high-strength hot-rolled reinforced bar comprises the following chemical components in percentage by weight: 0.38%-0.43% of C, 0.8%-1.1% of Cr, 0.75%-1.0% of Mn, 0.15%-0.25% of Mo, 0.15%-0.3% of Si, less than 0.035% of S, less than 0.035% of P, less than 0.035% of Na and the balance of Fe. The yield strength of the reinforced bar disclosed by the invention can reach 630 Mpa, has the advantages of high strength, good ductility, strong anti-lagging breakage, steel saving, low relaxation, welding easiness, good upsetting performance and the like; carbides can be sufficiently dissolve and uniformly diffuse, thereby avoiding intercrystalline corrosion and overhigh point corrosion due to intercrystalline precipitation of carbides.

Description

technical field [0001] The invention relates to a steel bar and a production process thereof, in particular to a 630MPa high-strength hot-rolled steel bar and a production process thereof. Background technique [0002] Hot-rolled steel bars are finished steel bars that have been hot-rolled and naturally cooled. They are made of low-carbon steel and ordinary alloy steel at high temperatures. They are mainly used for reinforcement of reinforced concrete and prestressed concrete structures. They are used in civil engineering One of the most widely used steel varieties. Hot-rolled steel bars are graded according to the standard value of yield strength and are divided into four grades: [0003] HPB235 (Q235), the standard value of the yield strength of the steel bar is 235MPa, the diameter is 8-20mm, and the elastic modulus is 210GPa. [0004] HRB335 (20MnSi), the standard value of the yield strength of the steel bar is 335MPa, the diameter is 6-50mm, and the elastic modulus is...

Claims

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Application Information

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IPC IPC(8): C22C38/22C21D8/08
Inventor 姚圣法吴海洋
Owner 江苏森林建筑新材料股份有限公司
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