润滑与密封
潤滑與密封
윤활여밀봉
LUBRICATION ENGINEERING
2013年
2期
31-34
,共4页
黄勇%赵文杰%乌学东%薛群基%王宗和%程慧玲
黃勇%趙文傑%烏學東%薛群基%王宗和%程慧玲
황용%조문걸%오학동%설군기%왕종화%정혜령
水溶性酚醛树脂%摩擦材料%化学改性%摩擦磨损性能
水溶性酚醛樹脂%摩抆材料%化學改性%摩抆磨損性能
수용성분철수지%마찰재료%화학개성%마찰마손성능
water-soluble phenolic resin%friction material%chemical modification%tribological property
分别以水溶性酚醛树脂和凹凸土/硼酸改性水溶性酚醛树脂作为黏接剂制备出摩擦材料,考察2种水溶性酚醛树脂的耐热性,利用摩擦磨损试验机考察2种水溶性酚醛树脂基摩擦材料的摩擦磨损性能,并用扫描电镜观察试样磨损后的表面形貌,结果表明,经过凹凸土/硼酸改性后的水溶性酚醛树脂耐热性得到提高,利用其制备的摩擦材料能保持稳定的摩擦因数和较低的磨损率,在高温区域没有产生热衰退.基于实验结果分析化学改性对水溶性树脂材料摩擦学性能的影响机制,结果表明,在摩擦过程中,耐热改性后的树脂热分解的量少,材料的热衰退不明显,摩擦因数更加稳定,增韧后的树脂较难形成裂痕而脱落,降低了材料的磨损率.
分彆以水溶性酚醛樹脂和凹凸土/硼痠改性水溶性酚醛樹脂作為黏接劑製備齣摩抆材料,攷察2種水溶性酚醛樹脂的耐熱性,利用摩抆磨損試驗機攷察2種水溶性酚醛樹脂基摩抆材料的摩抆磨損性能,併用掃描電鏡觀察試樣磨損後的錶麵形貌,結果錶明,經過凹凸土/硼痠改性後的水溶性酚醛樹脂耐熱性得到提高,利用其製備的摩抆材料能保持穩定的摩抆因數和較低的磨損率,在高溫區域沒有產生熱衰退.基于實驗結果分析化學改性對水溶性樹脂材料摩抆學性能的影響機製,結果錶明,在摩抆過程中,耐熱改性後的樹脂熱分解的量少,材料的熱衰退不明顯,摩抆因數更加穩定,增韌後的樹脂較難形成裂痕而脫落,降低瞭材料的磨損率.
분별이수용성분철수지화요철토/붕산개성수용성분철수지작위점접제제비출마찰재료,고찰2충수용성분철수지적내열성,이용마찰마손시험궤고찰2충수용성분철수지기마찰재료적마찰마손성능,병용소묘전경관찰시양마손후적표면형모,결과표명,경과요철토/붕산개성후적수용성분철수지내열성득도제고,이용기제비적마찰재료능보지은정적마찰인수화교저적마손솔,재고온구역몰유산생열쇠퇴.기우실험결과분석화학개성대수용성수지재료마찰학성능적영향궤제,결과표명,재마찰과정중,내열개성후적수지열분해적량소,재료적열쇠퇴불명현,마찰인수경가은정,증인후적수지교난형성렬흔이탈락,강저료재료적마손솔.
Two kinds of friction materials were prepared separately using water-soluble phenolic resin(PF)and attapulg-ite/boric acid modified water-soluble PF as the matrix. The thermostability of two kinds of water-soluble PF was investiga-ted by thermogravimetric experiments,and the tribological performances of two kinds of friction materials were examined on a fixed-velocity friction tester. SEM was used to observed surface morphology of friction materials after friction test. The re-sults show that the thermostability of attapulgite/boric acid modified water-soluble PF is better than that of water-soluble PF. The friction materials prepared using attapulgite/boric acid modified water-soluble PF as the matrix show the better friction stability and wear resistance. The corresponding influence of chemical modification on the tribological behaviors of water-soluble PF was analyzed based on the experimental data. The results show that the heat resistant modified resin has very little thermal decomposition in the friction process,so that the heat fade of friction materials is not apparent and fric-tion coefficient is stable. After being toughened,the resin is difficult to form crack and fall off from friction materials,so the wear rate of materials is reduced.