CN106048419A - 一种hrb400e高强度低合金盘螺及其生产方法 - Google Patents
一种hrb400e高强度低合金盘螺及其生产方法 Download PDFInfo
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- CN106048419A CN106048419A CN201610552650.6A CN201610552650A CN106048419A CN 106048419 A CN106048419 A CN 106048419A CN 201610552650 A CN201610552650 A CN 201610552650A CN 106048419 A CN106048419 A CN 106048419A
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Classifications
-
- C—CHEMISTRY; METALLURGY
- C21—METALLURGY OF IRON
- C21D—MODIFYING THE PHYSICAL STRUCTURE OF FERROUS METALS; GENERAL DEVICES FOR HEAT TREATMENT OF FERROUS OR NON-FERROUS METALS OR ALLOYS; MAKING METAL MALLEABLE, e.g. BY DECARBURISATION OR TEMPERING
- C21D8/00—Modifying the physical properties by deformation combined with, or followed by, heat treatment
- C21D8/06—Modifying the physical properties by deformation combined with, or followed by, heat treatment during manufacturing of rods or wires
- C21D8/065—Modifying the physical properties by deformation combined with, or followed by, heat treatment during manufacturing of rods or wires of ferrous alloys
-
- C—CHEMISTRY; METALLURGY
- C21—METALLURGY OF IRON
- C21D—MODIFYING THE PHYSICAL STRUCTURE OF FERROUS METALS; GENERAL DEVICES FOR HEAT TREATMENT OF FERROUS OR NON-FERROUS METALS OR ALLOYS; MAKING METAL MALLEABLE, e.g. BY DECARBURISATION OR TEMPERING
- C21D8/00—Modifying the physical properties by deformation combined with, or followed by, heat treatment
- C21D8/06—Modifying the physical properties by deformation combined with, or followed by, heat treatment during manufacturing of rods or wires
- C21D8/08—Modifying the physical properties by deformation combined with, or followed by, heat treatment during manufacturing of rods or wires for concrete reinforcement
-
- C—CHEMISTRY; METALLURGY
- C22—METALLURGY; FERROUS OR NON-FERROUS ALLOYS; TREATMENT OF ALLOYS OR NON-FERROUS METALS
- C22C—ALLOYS
- C22C38/00—Ferrous alloys, e.g. steel alloys
- C22C38/02—Ferrous alloys, e.g. steel alloys containing silicon
-
- C—CHEMISTRY; METALLURGY
- C22—METALLURGY; FERROUS OR NON-FERROUS ALLOYS; TREATMENT OF ALLOYS OR NON-FERROUS METALS
- C22C—ALLOYS
- C22C38/00—Ferrous alloys, e.g. steel alloys
- C22C38/04—Ferrous alloys, e.g. steel alloys containing manganese
-
- C—CHEMISTRY; METALLURGY
- C22—METALLURGY; FERROUS OR NON-FERROUS ALLOYS; TREATMENT OF ALLOYS OR NON-FERROUS METALS
- C22C—ALLOYS
- C22C38/00—Ferrous alloys, e.g. steel alloys
- C22C38/60—Ferrous alloys, e.g. steel alloys containing lead, selenium, tellurium, or antimony, or more than 0.04% by weight of sulfur
Abstract
本发明公开了一种HRB400E高强度低合金盘螺及其生产方法,属于金属材料加工与成型技术领域,涉及螺纹钢筋的生产方法。一种HRB400E高强度低合金盘螺,按照重量百分比,包括下列各组分:C:0.20~0.25%,Si:0.35~0.50%,Mn:0.70~0.80%,S:≤0.045%,P:≤0.045%,其中Ceq:≥0.40%。本发明可以极大的降低生产成本,降低环境污染,产品的强度高,抗震性能良好,生产工艺简单,易于操作推广。
Description
技术领域
[0001]本发明属于金属材料加工与成型技术领域,涉及螺纹钢筋的生产方法,具体涉及一种HRB400E高强度低合金盘螺及其生产方法。
背景技术
[0002]钢筋混凝土用热乳带肋钢筋是国内外各类建筑工程中广泛使用的一种增强材料,也是我国冶金行业各钢厂大量生产的一种关键产品。目前螺纹钢筋的生产流程一般为钢坯、加热炉加热、连乳机乳制、穿水控制冷却、倍尺剪切、冷床、定尺。直条螺纹钢筋由于在施工中钢筋利用率较低、成本较高,很多企业开始用高速线材乳机生产小规格螺纹钢筋,以盘卷形式交货,主要以小规格Φ 8〜14mm为主。
[0003]我国热乳带肋钢筋按屈服强度等级分类有三个牌号,分别为HRB335、HRB400、HRB500,抗震钢筋在牌号后加E,热乳带肋钢筋按照棒材生产和高线生产的设备不同,分为直条和盘卷两种类型,盘卷的钢筋简称盘螺。
[0004]目前国内在高速线材工艺中生产直径彡1mm小规格HRB400热乳带肋钢筋的方法主要是对钢水进行微合金化处理,通常所说的钢水微合金化是在低合金钢的基体化学成分中添加微量合金化素。目前在炼钢过程中对钢水进行微合金化时一般采用铌铁合金(Fe-Nb)、钒铁合金(Fe-V)或钛铁合金(Fe-Ti),利用Nb、V或Ti等微合金元素的细晶强化效果和沉淀析出强化效果提高产品的综合力学性能,但因含钒(V)、铌(Nb)或钛(Ti)的铁合金是由相应的矿石经烧结后再由电炉或矿热炉冶炼而成,所以该方法存在生产流程长,能耗和成本高,对环境污染大,同时对钢水冶炼、脱氧及合金化工艺控制要求高,所以不易操作,成品率低的缺点。
[0005]为了解决现有技术存在的上述成本高、质量低、污染大,流程长的问题,本发明研发了一种HRB400E高强度低合金盘螺及其生产方法。
发明内容
[0006]本发明的目的是提供一种HRB400E高强度低合金盘螺。
[0007]本发明的另一个目的是提供HRB400E高强度低合金盘螺的生产方法。
[0008]本发明是通过以下技术方案实现的:
一种HRB400E高强度低合金盘螺,按照重量百分比,包括下列各组分: C:0.20〜0.25%,
S1:0.35〜0.50%,
Mn:0.70〜0.80%,
S:彡0.045%,
P:^0.045%,
其中Ceq:彡0.40%。
[0009] 进一步地,上述HRB400E高强度低合金盘螺的生产方法,步骤为: (1)按照重量百分比称取下列组分,其中C:0.20〜0.25%,S1:0.35〜0.50%,Μη:0.70〜0.80 %,S:彡0.045 %,P:彡0.045 %,Ceq:彡0.40%,其余为Fe,各组分的重量百分比之和为 100%;
(2)将步骤(I)中称取的各组分混合融化为钢水铸造钢坯;
(3)将铸造后的钢坯送入均热段炉内进行加热;
(4)将加热后的钢坯进行高压水除磷、降温后,在960-1000°C温度下开乳得到预精乳钢件;
(5)将预精乳钢件进行穿水冷却,在720-800°C条件下进行精乳,得到精乳钢件;
(6)将精乳钢件进行穿水冷却、减定径乳制,得到定径钢件;
(7)将定径钢件进行穿水冷却,然后将定径钢件进行吐丝,吐丝温度720-760 °C,得到钢筋盘螺;
(8)将钢筋盘螺进行风冷后进行保温,冷却后即得HRB400E高强度低合金盘螺。
[0010] 更进一步地,所述的步骤(4)在980°C温度下开乳得到预精乳钢件。
[0011]所述的步骤(5)在750°C条件下进行精乳,得到精乳钢件。
[0012] 所述的步骤(7)的吐丝温度为7200C。
[0013] HRB400E是高强螺纹钢筋的一种,该钢种传统的化学成分为C:0.20〜0.25%,S1:
0.35 〜0.50%,Mn:1.20 〜1.50%,V(Nb、Ti): 0.015-0.035,S:彡0.045%,Ρ:<0.045%,其中Ceq:彡0.40%,资源浪费大,而且需要使用Nb、V、Ti等微量元素进行强化调整。本发明相比传统的HRB400E盘螺,降低了 Mn含量,并取消了 V、Nb、Ti等微量元素的加入,达到降低生产成本,降低环境污染的目的,其中成本降低约70元/吨钢,并进一步通过控制乳钢温度,来达到提高盘螺强度的目的,其中开乳温度980±20°C,精乳温度720-800°C,吐丝温度720-760°C。
[0014]本发明可以极大的降低生产成本,降低环境污染,产品的强度高,抗震性能良好,其中屈服强度彡470MPa,抗拉强度彡610MPa,断后伸长率彡27,生产工艺简单,易于操作推广。
具体实施方式
[0015]以下结合实施例对本发明作进一步说明。
[0016] 实施例1
一种HRB400E高强度低合金盘螺的生产方法,步骤为:
(1)按照重量百分比称取下列组分,其中C:0.20%,S1:0.40%,Mn: 0.70%,S:
0.045%,P: 0.035%,Ceq:彡0.40%,其余为Fe,各组分的重量百分比之和为100% ;
(2)将步骤(I)中称取的各组分混合融化为钢水铸造钢坯;
(3)将铸造后的钢坯送入均热段炉内进行加热;
(4)将加热后的钢坯进行高压水除磷、降温后,在980°C温度下开乳得到预精乳钢件;
(5)将预精乳钢件进行穿水冷却,在750°C条件下进行精乳,得到精乳钢件;
(6)将精乳钢件进行穿水冷却、减定径乳制,得到定径钢件;
(7)将定径钢件进行穿水冷却,然后将定径钢件吐丝,吐丝温度720°C,得到钢筋盘螺;
(8)将钢筋盘螺进行风冷后进行保温,冷却后即得HRB400E高强度低合金盘螺。
[0017] 实施例2 一种HRB400E高强度低合金盘螺的生产方法,步骤为:
(1)按照重量百分比称取下列组分,其中C:0.25%,S1:0.50%,Mn: 0.75%,S:
0.040%,P: 0.020%,Ceq:彡0.40%,其余为Fe,各组分的重量百分比之和为100% ;
(2)将步骤(I)中称取的各组分混合融化为钢水铸造钢坯;
(3)将铸造后的钢坯送入均热段炉内进行加热;
(4)将加热后的钢坯进行高压水除磷、降温后,在960°C温度下开乳得到预精乳钢件;
(5)将预精乳钢件进行穿水冷却,在770°C条件下进行精乳,得到精乳钢件;
(6)将精乳钢件进行穿水冷却、减定径乳制,得到定径钢件;
(7)将定径钢件进行穿水冷却,然后将定径钢件吐丝,吐丝温度730°C,得到钢筋盘螺;
(8)将钢筋盘螺进行风冷后进行保温,冷却后即得HRB400E高强度低合金盘螺。
[0018] 实施例3
一种HRB400E高强度低合金盘螺的生产方法,步骤为:
(1)按照重量百分比称取下列组分,其中C:0.22%,S1:0.35%,Mn: 0.80%,S:
0.042%,P: 0.038%,Ceq:彡0.40%,其余为Fe,各组分的重量百分比之和为100% ;
(2)将步骤(I)中称取的各组分混合融化为钢水铸造钢坯;
(3)将铸造后的钢坯送入均热段炉内进行加热;
(4)将加热后的钢坯进行高压水除磷、降温后,在100tC温度下开乳得到预精乳钢件;
(5)将预精乳钢件进行穿水冷却,在800°C条件下进行精乳,得到精乳钢件;
(6)将精乳钢件进行穿水冷却、减定径乳制,得到定径钢件;
(7)将定径钢件进行穿水冷却,然后将定径钢件吐丝,吐丝温度760°C,得到钢筋盘螺;
(8)将钢筋盘螺进行风冷后进行保温,冷却后即得HRB400E高强度低合金盘螺。
Claims (5)
1.一种HRB400E高强度低合金盘螺,其特征在于,按照重量百分比,包括下列各组分: C:0.20〜0.25%, S1:0.35〜0.50%, Mn:0.70〜0.80%, S:彡0.045%, P:彡0.045%, 其中Ceq:彡0.40%。
2.根据权利要I所述的一种HRB400E高强度低合金盘螺的生产方法,其特征在于,步骤为: (1)按照重量百分比称取下列组分,其中C:0.20〜0.25%,S1:0.35〜0.50%,Mn:0.70〜0.80 %,S:彡0.045 %,P:彡0.045 %,Ceq:彡0.40%,其余为Fe,各组分的重量百分比之和为 100%; (2)将步骤(I)中称取的各组分混合融化为钢水铸造钢坯; (3)将铸造后的钢坯送入均热段炉内进行加热; (4)将加热后的钢坯进行高压水除磷、降温后,在960-1000°C温度下开乳得到预精乳钢件; (5)将预精乳钢件进行穿水冷却,在720-800°C条件下进行精乳,得到精乳钢件; (6)将精乳钢件进行穿水冷却、减定径乳制,得到定径钢件; (7)将定径钢件进行穿水冷却,然后将定径钢件吐丝,吐丝温度720-760°C,得到钢筋盘螺; (8)将钢筋盘螺进行风冷后进行保温,冷却后即得HRB400E高强度低合金盘螺。
3.根据权利要2所述的HRB400E高强度低合金盘螺的生产方法,其特征在于,所述的步骤(4)在980°C温度下开乳得到预精乳钢件。
4.根据权利要2所述的HRB400E高强度低合金盘螺的生产方法,其特征在于,所述的步骤(5)在750°C条件下进行精乳,得到精乳钢件。
5.根据权利要2所述的HRB400E高强度低合金盘螺的生产方法,其特征在于,所述的步骤(7)的吐丝温度为7200C。
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