表面技术
錶麵技術
표면기술
SURFACE TECHNOLOGY
2015年
4期
60-65
,共6页
徐永礼%覃海泉%庞祖高%徐宇%徐仁强%郑勇
徐永禮%覃海泉%龐祖高%徐宇%徐仁彊%鄭勇
서영례%담해천%방조고%서우%서인강%정용
多元共渗%高温耐磨性%摩擦系数%磨损率
多元共滲%高溫耐磨性%摩抆繫數%磨損率
다원공삼%고온내마성%마찰계수%마손솔
multicomponent permeating%high temperature wear resistance%friction coefficient%wear rate
目的:研究RE-N-C-S-V-Nb多元共渗H13钢的高温耐磨性,为避免铝型材挤压模具的早期磨损失效提供表面强化的新工艺。方法把多元共渗试样及对比试样进行高温摩擦磨损实验,然后利用金相显微镜、扫描电镜、能谱分析仪、X射线衍射仪等设备进行检测分析。结果淬火试样和软氮化试样均存在较严重的磨粒磨损和粘着磨损现象,渗层有微裂纹,高温摩擦系数曲线有明显的波动和峰值,磨损率分别为21.20×10-13,11.30×10-13 m3/(N·m),在560℃保温4 h后的显微硬度分别为584,1018HV0.1。RE-N-C-S-V-Nb多元共渗试样以微量氧化磨损和微量粘着磨损形式出现,渗层无裂纹,高温摩擦系数曲线平缓,磨损率仅为2.96×10-13 m3/(N·m),显微硬度高达1334HV0.1。结论 RE-N-C-S-V-Nb多元共渗H13钢具有较强的高温耐磨性。
目的:研究RE-N-C-S-V-Nb多元共滲H13鋼的高溫耐磨性,為避免鋁型材擠壓模具的早期磨損失效提供錶麵彊化的新工藝。方法把多元共滲試樣及對比試樣進行高溫摩抆磨損實驗,然後利用金相顯微鏡、掃描電鏡、能譜分析儀、X射線衍射儀等設備進行檢測分析。結果淬火試樣和軟氮化試樣均存在較嚴重的磨粒磨損和粘著磨損現象,滲層有微裂紋,高溫摩抆繫數麯線有明顯的波動和峰值,磨損率分彆為21.20×10-13,11.30×10-13 m3/(N·m),在560℃保溫4 h後的顯微硬度分彆為584,1018HV0.1。RE-N-C-S-V-Nb多元共滲試樣以微量氧化磨損和微量粘著磨損形式齣現,滲層無裂紋,高溫摩抆繫數麯線平緩,磨損率僅為2.96×10-13 m3/(N·m),顯微硬度高達1334HV0.1。結論 RE-N-C-S-V-Nb多元共滲H13鋼具有較彊的高溫耐磨性。
목적:연구RE-N-C-S-V-Nb다원공삼H13강적고온내마성,위피면려형재제압모구적조기마손실효제공표면강화적신공예。방법파다원공삼시양급대비시양진행고온마찰마손실험,연후이용금상현미경、소묘전경、능보분석의、X사선연사의등설비진행검측분석。결과쉬화시양화연담화시양균존재교엄중적마립마손화점착마손현상,삼층유미렬문,고온마찰계수곡선유명현적파동화봉치,마손솔분별위21.20×10-13,11.30×10-13 m3/(N·m),재560℃보온4 h후적현미경도분별위584,1018HV0.1。RE-N-C-S-V-Nb다원공삼시양이미량양화마손화미량점착마손형식출현,삼층무렬문,고온마찰계수곡선평완,마손솔부위2.96×10-13 m3/(N·m),현미경도고체1334HV0.1。결론 RE-N-C-S-V-Nb다원공삼H13강구유교강적고온내마성。
ABSTRACT:Objective To investigate the wear resistance at high temperature of H13 steel by RE-N-C-S-V-Nb multicomponent permeating treatment, in order to provide new technology to avoid premature wear of aluminum extrusion die. Methods The high temperature wear property of compound deposition samples and control samples was tested and then the samples were detected by means of optical microscopy ( OM) , scanning electron microscopy ( SEM) , X-ray energy dispersive spectroscopy ( EDS) , and X-ray diffraction. Results It was found that quenched samples and tufftriding samples all had severe abrasive wear and adhesive wear phenomenon, microcracks appeared on the permeation layer, the high temperature friction coefficient curve had obvious fluctuations and peaks, the high temperature wear rate for the two kinds of samples was respectively at 21. 20×10-13,11. 30×10-13 m3/(N·m), The microhardness at 584HV0. 1 and 1018HV0. 1 after incubation for 4 h at 560 ℃. The RE-N-C-S-V-Nb compound deposition sample had mostly micro oxidation wear and adhesive wear, no microcracks appeared on the permeation layer, the high temperature <br> friction coefficient curve was gentle, the high temperature wear rate was only up to 2. 96×10-13 m3/(N·m), 1334HV0. 1 at mi-crohardness. Conclusion H13 steel after RE-N-C-S-V-Nb multi-element penetrating has a strong high-temperature wear resistance.