CN107725594A - 一种复合滑动轴承的生产工艺 - Google Patents

一种复合滑动轴承的生产工艺 Download PDF

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CN107725594A
CN107725594A CN201710736842.7A CN201710736842A CN107725594A CN 107725594 A CN107725594 A CN 107725594A CN 201710736842 A CN201710736842 A CN 201710736842A CN 107725594 A CN107725594 A CN 107725594A
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copper powder
iron
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production technology
sliding bearing
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纪桂林
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Nantong Crown Powder Metallurgy Co Ltd
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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16CSHAFTS; FLEXIBLE SHAFTS; ELEMENTS OR CRANKSHAFT MECHANISMS; ROTARY BODIES OTHER THAN GEARING ELEMENTS; BEARINGS
    • F16C33/00Parts of bearings; Special methods for making bearings or parts thereof
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B22CASTING; POWDER METALLURGY
    • B22FWORKING METALLIC POWDER; MANUFACTURE OF ARTICLES FROM METALLIC POWDER; MAKING METALLIC POWDER; APPARATUS OR DEVICES SPECIALLY ADAPTED FOR METALLIC POWDER
    • B22F5/00Manufacture of workpieces or articles from metallic powder characterised by the special shape of the product
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B22CASTING; POWDER METALLURGY
    • B22FWORKING METALLIC POWDER; MANUFACTURE OF ARTICLES FROM METALLIC POWDER; MAKING METALLIC POWDER; APPARATUS OR DEVICES SPECIALLY ADAPTED FOR METALLIC POWDER
    • B22F2998/00Supplementary information concerning processes or compositions relating to powder metallurgy
    • B22F2998/10Processes characterised by the sequence of their steps
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16CSHAFTS; FLEXIBLE SHAFTS; ELEMENTS OR CRANKSHAFT MECHANISMS; ROTARY BODIES OTHER THAN GEARING ELEMENTS; BEARINGS
    • F16C2204/00Metallic materials; Alloys
    • F16C2204/10Alloys based on copper
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16CSHAFTS; FLEXIBLE SHAFTS; ELEMENTS OR CRANKSHAFT MECHANISMS; ROTARY BODIES OTHER THAN GEARING ELEMENTS; BEARINGS
    • F16C2204/00Metallic materials; Alloys
    • F16C2204/60Ferrous alloys, e.g. steel alloys
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16CSHAFTS; FLEXIBLE SHAFTS; ELEMENTS OR CRANKSHAFT MECHANISMS; ROTARY BODIES OTHER THAN GEARING ELEMENTS; BEARINGS
    • F16C2220/00Shaping
    • F16C2220/20Shaping by sintering pulverised material, e.g. powder metallurgy
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16CSHAFTS; FLEXIBLE SHAFTS; ELEMENTS OR CRANKSHAFT MECHANISMS; ROTARY BODIES OTHER THAN GEARING ELEMENTS; BEARINGS
    • F16C2220/00Shaping
    • F16C2220/40Shaping by deformation without removing material
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16CSHAFTS; FLEXIBLE SHAFTS; ELEMENTS OR CRANKSHAFT MECHANISMS; ROTARY BODIES OTHER THAN GEARING ELEMENTS; BEARINGS
    • F16C2220/00Shaping
    • F16C2220/60Shaping by removing material, e.g. machining
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16CSHAFTS; FLEXIBLE SHAFTS; ELEMENTS OR CRANKSHAFT MECHANISMS; ROTARY BODIES OTHER THAN GEARING ELEMENTS; BEARINGS
    • F16C2226/00Joining parts; Fastening; Assembling or mounting parts
    • F16C2226/30Material joints
    • F16C2226/36Material joints by welding
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16CSHAFTS; FLEXIBLE SHAFTS; ELEMENTS OR CRANKSHAFT MECHANISMS; ROTARY BODIES OTHER THAN GEARING ELEMENTS; BEARINGS
    • F16C33/00Parts of bearings; Special methods for making bearings or parts thereof
    • F16C33/02Parts of sliding-contact bearings
    • F16C33/04Brasses; Bushes; Linings
    • F16C33/06Sliding surface mainly made of metal
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16CSHAFTS; FLEXIBLE SHAFTS; ELEMENTS OR CRANKSHAFT MECHANISMS; ROTARY BODIES OTHER THAN GEARING ELEMENTS; BEARINGS
    • F16C33/00Parts of bearings; Special methods for making bearings or parts thereof
    • F16C33/02Parts of sliding-contact bearings
    • F16C33/04Brasses; Bushes; Linings
    • F16C33/06Sliding surface mainly made of metal
    • F16C33/10Construction relative to lubrication
    • F16C33/1025Construction relative to lubrication with liquid, e.g. oil, as lubricant
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16CSHAFTS; FLEXIBLE SHAFTS; ELEMENTS OR CRANKSHAFT MECHANISMS; ROTARY BODIES OTHER THAN GEARING ELEMENTS; BEARINGS
    • F16C9/00Bearings for crankshafts or connecting-rods; Attachment of connecting-rods
    • F16C9/02Crankshaft bearings

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  • General Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Manufacturing & Machinery (AREA)
  • Sliding-Contact Bearings (AREA)

Abstract

本发明涉及一种双金属复合滑动轴承的生产工艺,所述生产工艺包括以下步骤:(1)铺粉;(2)烧结;(3)压制:(4)后处理;且烧结过程采用梯度及分阶段烧结,压制过程中也采用分阶段进行压制。本发明的优点在于:本发明双金属复合滑动轴承的生产工艺,与传统制备工艺相比,对铺粉工艺进行改进,采用动磁压制技术进行铺粉,可使铺设于铁基板上的铜粉能够密实贴合,避免了压制过程中上下铜粉受力不均,导致致密度差;同时,烧结过程采用梯度及分阶段烧结,切压制过程中也采用分阶段进行压制,可使铜粉层与铁基体的结合强度大大增强;同时该生产工艺适用于不同规格的滑动轴承,可降低生产成本,适用于批量化生产。

Description

一种复合滑动轴承的生产工艺
技术领域
本发明涉及一种复合轴承的制造方法,特别涉及一种复合
滑动轴承的生产工艺。
背景技术
滑动轴承是汽车中非常重要的摩擦易损件,与汽车发动机曲轴、活塞销、制动器凸轮轴等组成重要的往复循环工作组件。
传统的滑动轴承大多是全部用铜合金浇铸成轴套,再经切削加工而成,这样的结构制造成本高,特别是随着有色金属价格的上涨,这种整体的铜合金轴承被称作双金属的轴承所替代。
钢—铜双金属轴套以其承载力强、耐磨性好已在轴承领域广泛应用。目前,钢—铜双金属轴套的生产方法基本上是中国专利号为98239209.5、名称为“减摩与耐磨自润滑关节轴承”的实用新型专利说明书所公开的方法,即首先将铜合金粉铺在低碳冷轧钢板上,在有保护气氛的高温烧结炉内进行烧结,烧结后在轧机上进行轧制,再经过退火(回火)、调平等工序制成双金属板材,然后将双金属板材在冲压设备上进行落料,卷制成圆形薄壁轴套。该生产方法可适用于不同规格的轴承生产,因而成本低,但用该方法生产轴套有如下缺点:将铜合金粉铺在钢板上,其密度为堆积密度,烧结后孔隙率较大,为了提高其密度必须在烧结后进行轧制工艺,但在轧制过程中,粉末体在压模内受力后向各个方向流动,于是引起垂直于压模壁的侧压力,侧压力引起摩擦力,会使压坯在高度方向存在明显的压力降,进而使得粉末体与基板之间的致密度差,易出现钢套基体变形的问题。
针对上述现象,专利CN 1632340 A 公开了一种钢—铜双金属轴套及其生产方法,该钢—铜双金属轴套,这有钢套,与钢套内侧直接相接有铜合金喷涂烧结层;其生产方法是:制作钢套并清洁其内表面,将铜合金粉直接喷涂在钢套的内表面上,形成铜合金喷涂层;在保护气氛下,以低于铜合金熔点的温度烧结覆有铜合金喷涂层的钢套,使铜合金喷涂层为铜合金喷涂烧结层而紧密结合在钢套的内表面,表面铜合金致密、硬度高,空隙率只为1%左右,其铜合金层与钢套的结合强度也大大高于现有技术的粘结强度,但该生产方法仍存在一定的缺点:针对不同规格的双金属轴套,需对应不同的钢套及铜层制作模具,因而产品稳定性差,成本高,不适用于批量化生产。
因此,研发一种能够降低生产成本,适用于批量化生产,且能够增强基板与粉层面之间致密度的复合滑动轴承的生
产工艺是非常有必要的。
发明内容
本发明要解决的技术问题是提供一种能够降低生产成本,适用于批量化生产,且能够增强基板与粉层面之间致密度的复
合滑动轴承的生产工艺。
为解决上述技术问题,本发明的技术方案为:一种复合滑动轴承的生产工艺,其创新点在于:所述生产工艺包括以下步骤:
(1)铺粉:利用铺粉装置将铜粉均匀地铺设在厚度为30~50丝米的铁基板上,铜粉的铺设厚度为20~30丝米,同时将设置于铁基板下端的磁感器通电6~8µs,使得铺设于铁基板上的铜粉能够密实贴合;
(2)烧结:将铺粉结束的铁基板送至烧结炉中,以16~24℃/分钟速率升温至550~650℃条件下烧结20~40min,再以12~16℃/分钟速率升温至650~750℃条件下烧结30~40min,然后10~14℃/分钟速率升温至800~820℃条件下烧结20~30min,使得铜粉层牢固地粘结在铁基板上,得到铁基铜粉板;
(3)压制:将铁基铜粉板装入压型模具,开始以300~450MPa的压力压制60~150s,使得铜粉层厚度减少15~20丝米,然后再以600~750MPa的压力压制10~30s,形成铜—铁双金属轴承材料的复合板材;
(4)后处理:对复合板材表面的铜粉层进行机械加工分别获得注油孔、油穴、油槽,然后定尺切断,切断后的复合板材通过自动卷圆机卷成圆筒形,接口处以焊接连接并由数控磨床进行表面处理最终获得复合滑动轴承基体。
进一步地,所述铜粉选用粒度为160~240目的铜粉。
本发明的优点在于:
(1)本发明复合滑动轴承的生产工艺,与传统制备工艺相比,对铺粉工艺进行改进,采用动磁压制技术,可使铺设于铁基板上的铜粉能够密实贴合,避免了压制过程中上下铜粉受力不均,导致致密度差;同时,烧结过程采用梯度及分阶段烧结,避免刚开始温度过高,破坏金属相组织,并可使铜粉层牢固地粘结在铁基板上,进而使表面铜粉层致密、硬度高,空隙率只为0.2%左右,且该过程中的烧结温度相对于传统烧结温度降低,进而可降低能耗;此外,压制过程中也采用分阶段进行压制,避免初始压力过大,造成基体变形;后段再加压压制,可使铜粉层与铁基体的结合强度大大增强;且该生产工艺先制备出复合板材,再根据不同规格的滑动轴承,进行切断,卷圆,因而不需要不同的钢套及铜层制作模具,可降低生产成本,适用于批量化生产。
(2)本发明复合滑动轴承的生产工艺,铜粉选用粒度为160~240目的铜粉,可从原材料的选用,进一步提高铜粉层与铁基体的致密度。
具体实施方式
实施例1
本实施例复合滑动轴承的生产工艺,该生产工艺包括以下步骤:
(1)铺粉:利用铺粉装置将铜粉均匀地铺设在厚度为30丝米的铁基板上,铜粉的铺设厚度为20丝米,同时将设置于铁基板下端的磁感器通电6µs,使得铺设于铁基板上的铜粉能够密实贴合;
(2)烧结:将铺粉结束的铁基板送至烧结炉中,以16℃/分钟速率升温至550℃条件下烧结20min,再以12℃/分钟速率升温至650℃条件下烧结30min,然后10℃/分钟速率升温至800℃条件下烧结20min,使得铜粉层牢固地粘结在铁基板上,得到铁基铜粉板;
(3)压制:将铁基铜粉板装入压型模具,开始以300MPa的压力压制60s,使得铜粉层厚度减少15丝米,然后再以600MPa的压力压制10s,形成铜—铁双金属轴承材料的复合板材;
(4)后处理:对复合板材表面的铜粉层进行机械加工分别获得注油孔、油穴、油槽,然后定尺切断,切断后的复合板材通过自动卷圆机卷成圆筒形,接口处以焊接连接并由数控磨床进行表面处理最终获得复合滑动轴承基体。
实施例2
本实施例复合滑动轴承的生产工艺,该生产工艺包括以下步骤:
(1)铺粉:利用铺粉装置将铜粉均匀地铺设在厚度为50丝米的铁基板上,铜粉的铺设厚度为30丝米,同时将设置于铁基板下端的磁感器通电8µs,使得铺设于铁基板上的铜粉能够密实贴合;
(2)烧结:将铺粉结束的铁基板送至烧结炉中,以24℃/分钟速率升温至650℃条件下烧结40min,再以16℃/分钟速率升温至750℃条件下烧结40min,然后14℃/分钟速率升温至820℃条件下烧结30min,使得铜粉层牢固地粘结在铁基板上,得到铁基铜粉板;
(3)压制:将铁基铜粉板装入压型模具,开始以450MPa的压力压制150s,使得铜粉层厚度减少20丝米,然后再以750MPa的压力压制30s,形成铜—铁双金属轴承材料的复合板材;
(4)后处理:对复合板材表面的铜粉层进行机械加工分别获得注油孔、油穴、油槽,然后定尺切断,切断后的复合板材通过自动卷圆机卷成圆筒形,接口处以焊接连接并由数控磨床进行表面处理最终获得复合滑动轴承基体。
实施例3
本实施例复合滑动轴承的生产工艺,该生产工艺包括以下步骤:
(1)铺粉:利用铺粉装置将铜粉均匀地铺设在厚度为40丝米的铁基板上,铜粉的铺设厚度为25丝米,同时将设置于铁基板下端的磁感器通电7µs,使得铺设于铁基板上的铜粉能够密实贴合;
(2)烧结:将铺粉结束的铁基板送至烧结炉中,以20℃/分钟速率升温至600℃条件下烧结30min,再以14℃/分钟速率升温至700℃条件下烧结35min,然后12℃/分钟速率升温至810℃条件下烧结25min,使得铜粉层牢固地粘结在铁基板上,得到铁基铜粉板;
(3)压制:将铁基铜粉板装入压型模具,开始以375MPa的压力压制105s,使得铜粉层厚度减少18丝米,然后再以675MPa的压力压制20s,形成铜—铁双金属轴承材料的复合板材;
(4)后处理:对复合板材表面的铜粉层进行机械加工分别获得注油孔、油穴、油槽,然后定尺切断,切断后的复合板材通过自动卷圆机卷成圆筒形,接口处以焊接连接并由数控磨床进行表面处理最终获得复合滑动轴承基体。
以上显示和描述了本发明的基本原理和主要特征以及本发明的优点。本行业的技术人员应该了解,本发明不受上述实施例的限制,上述实施例和说明书中描述的只是说明本发明的原理,在不脱离本发明精神和范围的前提下,本发明还会有各种变化和改进,这些变化和改进都落入要求保护的本发明范围内。本发明要求保护范围由所附的权利要求书及其等效物界定。

Claims (2)

1.一种复合滑动轴承的生产工艺,其特征在于:所述生产工艺包括以下步骤:
铺粉:利用铺粉装置将铜粉均匀地铺设在厚度为30~50丝米的铁基板上,铜粉的铺设厚度为20~30丝米,同时将设置于铁基板下端的磁感器通电6~8µs,使得铺设于铁基板上的铜粉能够密实贴合;
烧结:将铺粉结束的铁基板送至烧结炉中,以16~24℃/分钟速率升温至550~650℃条件下烧结20~40min,再以12~16℃/分钟速率升温至650~750℃条件下烧结30~40min,然后10~14℃/分钟速率升温至800~820℃条件下烧结20~30min,使得铜粉层牢固地粘结在铁基板上,得到铁基铜粉板;
压制:将铁基铜粉板装入压型模具,开始以300~450MPa的压力压制60~150s,使得铜粉层厚度减少15~20丝米,然后再以600~750MPa的压力压制10~30s,形成铜—铁双金属轴承材料的复合板材;
后处理:对复合板材表面的铜粉层进行机械加工分别获得注油孔、油穴、油槽,然后定尺切断,切断后的复合板材通过自动卷圆机卷成圆筒形,接口处以焊接连接并由数控磨床进行表面处理最终获得复合滑动轴承基体。
2.根据权利要求1所述的复合滑动轴承的生产工艺,其特征在于:所述铜粉选用粒度为160~240目的铜粉。
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CN115156536A (zh) * 2022-06-06 2022-10-11 浙江长盛滑动轴承股份有限公司 一种多阶段烧结铜合金粉层的配油盘的制备方法

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CN106238739A (zh) * 2016-08-29 2016-12-21 靖江市金泰粉末冶金制品有限公司 一种双金属复合滑动轴承的生产工艺

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CN106238739A (zh) * 2016-08-29 2016-12-21 靖江市金泰粉末冶金制品有限公司 一种双金属复合滑动轴承的生产工艺

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* Cited by examiner, † Cited by third party
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CN115156536A (zh) * 2022-06-06 2022-10-11 浙江长盛滑动轴承股份有限公司 一种多阶段烧结铜合金粉层的配油盘的制备方法

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