CN106011694A - 一种钼铑基合金钢材料及其在钻进钻杆中的应用 - Google Patents

一种钼铑基合金钢材料及其在钻进钻杆中的应用 Download PDF

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CN106011694A
CN106011694A CN201610552391.7A CN201610552391A CN106011694A CN 106011694 A CN106011694 A CN 106011694A CN 201610552391 A CN201610552391 A CN 201610552391A CN 106011694 A CN106011694 A CN 106011694A
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曾冰冰
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Abstract

本发明公开了一种钼铑基合金钢材料及其在钻进钻杆中的应用,其化学成分及质量百分比为:碳0.34~0.54%,硅1.0~1.4%,铑4.5~6.5%,铬0.5~0.9%,钼8~12%,镍1.1~1.5%,铼0.08~0.10%,硫0.05~0.07%,锰0.9~1.3%,磷0.003~0.005%,铷0.09~0.13%,钴0.04~0.08%,硼0.05~0.07%,镱0.06~0.08%,锌和铜共0.07~0.09%,锌和铜所占质量百分比的比例为6~8:1,其余为铁。本发明提供的钼铑基合金钢材料强度高,性能好,适合用于制备钻进钻杆。

Description

一种钼铑基合金钢材料及其在钻进钻杆中的应用
技术领域
本发明属于钻杆领域,具体涉及一种钼铑基合金钢材料及其在钻进钻杆中的应用。
背景技术
钢根据用途的不同含有不同的合金元素,人类对钢的应用和研究历史相当悠久,但是直到19世纪贝氏炼钢法发明之前,钢的制取都是一项高成本低效率的工作。如今,钢以其低廉的价格、可靠的性能成为世界上使用最多的材料之一,是建筑业、制造业和人们日常生活中不可或缺的成分。可以说钢是现代社会的物质基础。但是钢本身特性存在缺点,密度高,比较重,比较易被腐蚀,比较脆容易断裂。
钻进钻杆用钢需要具有较高强度。
发明内容
本发明的目的在于提供一种钻进钻杆用合金钢。
本发明的上述目的是通过下面的技术方案得以实现的:
一种钼铑基合金钢材料,其化学成分及质量百分比为:碳0.34~0.54%,硅1.0~1.4%,铑4.5~6.5%,铬0.5~0.9%,钼8~12%,镍1.1~1.5%,铼0.08~0.10%,硫0.05~0.07%,锰0.9~1.3%,磷0.003~0.005%,铷0.09~0.13%,钴0.04~0.08%,硼0.05~0.07%,镱0.06~0.08%,锌和铜共0.07~0.09%,锌和铜所占质量百分比的比例为6~8:1,其余为铁。
进一步地,所述的钼铑基合金钢材料化学成分及质量百分比为:碳0.44%,硅1.2%,铑5.5%,铬0.7%,钼10%,镍1.3%,铼0.09%,硫0.06%,锰1.1%,磷0.004%,铷0.11%,钴0.06%,硼0.06%,镱0.07%,锌和铜共0.08%,锌和铜质量百分比比例为7:1,其余为铁。
进一步地,所述的钼铑基合金钢材料化学成分及质量百分比为:碳0.34%,硅1.0%,铑4.5%,铬0.5%,钼8%,镍1.1%,铼0.08%,硫0.05%,锰0.9%,磷0.003%,铷0.09%,钴0.04%,硼0.05%,镱0.06%,锌和铜共0.07%,锌和铜质量百分比比例为6:1,其余为铁。
进一步地,所述的钼铑基合金钢材料化学成分及质量百分比为:碳0.54%,硅1.4%,铑6.5%,铬0.9%,钼12%,镍1.5%,铼0.10%,硫0.07%,锰1.3%,磷0.005%,铷0.13%,钴0.08%,硼0.07%,镱0.08%,锌和铜共0.09%,锌和铜质量百分比比例为8:1,其余为铁。
上述钼铑基合金钢材料在制备钻进钻杆中的应用。
本发明的优点:
本发明提供的钼铑基合金钢材料强度高,性能好,适合用于制备钻进钻杆。
具体实施方式
下面结合实施例进一步说明本发明的实质性内容,但并不以此限定本发明保护范围。尽管参照较佳实施例对本发明作了详细说明,本领域的普通技术人员应当理解,可以对本发明的技术方案进行修改或者等同替换,而不脱离本发明技术方案的实质和范围。
实施例1:钻进钻杆用合金钢
化学成分及质量百分比为:碳0.44%,硅1.2%,铑5.5%,铬0.7%,钼10%,镍1.3%,铼0.09%,硫0.06%,锰1.1%,磷0.004%,铷0.11%,钴0.06%,硼0.06%,镱0.07%,锌和铜共0.08%,锌和铜所占质量百分比的比例为7:1,其余为铁。
实施例2:钻进钻杆用合金钢
化学成分及质量百分比为:碳0.34%,硅1.0%,铑4.5%,铬0.5%,钼8%,镍1.1%,铼0.08%,硫0.05%,锰0.9%,磷0.003%,铷0.09%,钴0.04%,硼0.05%,镱0.06%,锌和铜共0.07%,锌和铜所占质量百分比的比例为6:1,其余为铁。
实施例3:钻进钻杆用合金钢
化学成分及质量百分比为:碳0.54%,硅1.4%,铑6.5%,铬0.9%,钼12%,镍1.5%,铼0.10%,硫0.07%,锰1.3%,磷0.005%,铷0.13%,钴0.08%,硼0.07%,镱0.08%,锌和铜共0.09%,锌和铜所占质量百分比的比例为8:1,其余为铁。
实施例4:钻进钻杆用合金钢
化学成分及质量百分比为:碳0.44%,硅1.2%,铑5.5%,铬0.7%,钼10%,镍1.3%,铼0.09%,硫0.06%,锰1.1%,磷0.004%,铷0.11%,钴0.06%,硼0.06%,镱0.07%,锌和铜共0.08%,锌和铜所占质量百分比的比例为6:1,其余为铁。
实施例5:钻进钻杆用合金钢
化学成分及质量百分比为:碳0.44%,硅1.2%,铑5.5%,铬0.7%,钼10%,镍1.3%,铼0.09%,硫0.06%,锰1.1%,磷0.004%,铷0.11%,钴0.06%,硼0.06%,镱0.07%,锌和铜共0.08%,锌和铜所占质量百分比的比例为8:1,其余为铁。
实施例6:对比实施例
化学成分及质量百分比为:碳0.44%,硅1.2%,铑5.5%,铬0.7%,钼10%,镍1.3%,铼0.09%,硫0.06%,锰1.1%,磷0.004%,铷0.11%,钴0.06%,硼0.06%,镱0.07%,锌和铜共0.08%,锌和铜所占质量百分比的比例为5:1,其余为铁。
实施例7:对比实施例
化学成分及质量百分比为:碳0.44%,硅1.2%,铑5.5%,铬0.7%,钼10%,镍1.3%,铼0.09%,硫0.06%,锰1.1%,磷0.004%,铷0.11%,钴0.06%,硼0.06%,镱0.07%,锌和铜共0.08%,锌和铜所占质量百分比的比例为9:1,其余为铁。
实施例8:效果实施例
分别测试实施例1~7合金钢的屈服强度和抗拉强度。
结果见下表。
合金钢样品 屈服强度(MPa) 抗拉强度(MPa)
实施例1 2400 3350
实施例4 2330 3280
实施例5 2310 3190
实施例6 1280 1860
实施例7 1220 1890
实施例2、3与实施例4、5效果基本一致。
本发明提供的钼铑基合金钢材料强度高,性能好,适合用于制备钻进钻杆。
上述实施例的作用在于说明本发明的实质性内容,但并不以此限定本发明的保护范围。本领域的普通技术人员应当理解,可以对本发明的技术方案进行修改或者等同替换,而不脱离本发明技术方案的实质和保护范围。

Claims (5)

1.一种钼铑基合金钢材料,其特征在于,其化学成分及质量百分比为:碳0.34~0.54%,硅1.0~1.4%,铑4.5~6.5%,铬0.5~0.9%,钼8~12%,镍1.1~1.5%,铼0.08~0.10%,硫0.05~0.07%,锰0.9~1.3%,磷0.003~0.005%,铷0.09~0.13%,钴0.04~0.08%,硼0.05~0.07%,镱0.06~0.08%,锌和铜共0.07~0.09%,锌和铜所占质量百分比的比例为6~8:1,其余为铁。
2.根据权利要求1所述的钼铑基合金钢材料,其特征在于,化学成分及质量百分比为:碳0.44%,硅1.2%,铑5.5%,铬0.7%,钼10%,镍1.3%,铼0.09%,硫0.06%,锰1.1%,磷0.004%,铷0.11%,钴0.06%,硼0.06%,镱0.07%,锌和铜共0.08%,锌和铜所占质量百分比的比例为7:1,其余为铁。
3.根据权利要求1所述的钼铑基合金钢材料,其特征在于,化学成分及质量百分比为:碳0.34%,硅1.0%,铑4.5%,铬0.5%,钼8%,镍1.1%,铼0.08%,硫0.05%,锰0.9%,磷0.003%,铷0.09%,钴0.04%,硼0.05%,镱0.06%,锌和铜共0.07%,锌和铜所占质量百分比的比例为6:1,其余为铁。
4.根据权利要求1所述的钼铑基合金钢材料,其特征在于,化学成分及质量百分比为:碳0.54%,硅1.4%,铑6.5%,铬0.9%,钼12%,镍1.5%,铼0.10%,硫0.07%,锰1.3%,磷0.005%,铷0.13%,钴0.08%,硼0.07%,镱0.08%,锌和铜共0.09%,锌和铜所占质量百分比的比例为8:1,其余为铁。
5.权利要求1~4任一所述钼铑基合金钢材料在制备钻进钻杆中的应用。
CN201610552391.7A 2016-07-11 2016-07-11 一种钼铑基合金钢材料及其在钻进钻杆中的应用 Pending CN106011694A (zh)

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EP0371202A1 (en) * 1988-11-30 1990-06-06 Westinghouse Electric Corporation High strength martensitic steel alloy and method of preparing same
WO2010006259A2 (en) * 2008-07-11 2010-01-14 Baker Hughes Incorporated Pitting corrosion resistant non-magnetic stainless steel
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WO2010006259A2 (en) * 2008-07-11 2010-01-14 Baker Hughes Incorporated Pitting corrosion resistant non-magnetic stainless steel
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CN104975235A (zh) * 2015-07-20 2015-10-14 江阴兴澄特种钢铁有限公司 一种120ksi钢级高强韧中碳调质圆钢及其制造方法

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