纳米高岭土在矿用卡车轮胎中的应用

孙义高, 艾博, 姚翔, 佘刚

化工新型材料 ›› 2018, Vol. 46 ›› Issue (9) : 242 -245.

PDF (1823KB)
化工新型材料 ›› 2018, Vol. 46 ›› Issue (9) : 242-245.
开发与应用

纳米高岭土在矿用卡车轮胎中的应用

    孙义高, 艾博, 姚翔, 佘刚
作者信息 +

Application of nanokaolin in the tire for mining truck

  • Sun Yigao, Ai Bo, Yao Xiang, She Gang
Author information +
文章历史 +
PDF (1865K)

摘要

将纳米高岭土(NK)改性后应用于矿用卡车轮胎的胶料中,在天然橡胶与丁苯橡胶共混为基底的条件下,探讨NK与炭黑、白炭黑的协同作用及其对传统矿用卡车轮胎胎面胶性能的影响。结果表明,添加NK之后,矿用卡车轮胎胎面胶的硬度基本保持不变,定伸应力、拉伸强度和扯断伸长率都略有提升,但撕裂强度下降,在NK用量为15份,老化后的条件下,矿用卡车轮胎胎面胶的硬度为68H,300%定伸应力为15.18MPa,拉伸强度为19.56MPa,扯断伸长率为398%,但撕裂强度为48.00kN/m(未老化条件下),比没有添加NK的轮胎胎面胶下降31.03%。添加NK后,打破了高填充量的炭黑、白炭黑对橡胶分子链的圈闭作用,胎面胶的动态生热减少。

Abstract

Under the condition of natural rubber mixed with styrene-butadiene rubber as mixground,the nano-kaolin (NK) was modified and applied to the rubber material of mining truck.The synergistic effects of NK,carbon black and white carbon black on the performance of traditional tires were discussed.After adding NK,the results showed that the hardness of tire tread glue was basically unchanged.The modulus,tensile strength and elongation at break all increased slightly,but the tear strength decreased.After filling 15 NK,the hardness of tread rubber of mining truck tires was 68H,300% modulus was 15.18MPa,the tensile strength was 19.56MPa and the elongation at break was 398% under the conditions of aging.But the tear strength was 48.00kN/m (under non-aging conditions),it was 31.03% lower than tyre tread rubber without NK.After adding NK,it breaked the trapping effect on the high filled carbon black and silica to the rubber molecular chain.Meanwhile,the loss modulus and lag factor were also significantly reduced,with the dynamic heat generation decreased.

关键词

纳米高岭土 / 橡胶 / 矿用卡车轮胎 / 力学性能 / 动态性能

Key words

nano-kaolin / rubber / mining truck tire / mechanical property / dynamic property

引用本文

引用格式 ▾
纳米高岭土在矿用卡车轮胎中的应用[J]. 化工新型材料, 2018, 46(9): 242-245 DOI:

登录浏览全文

4963

注册一个新账户 忘记密码

参考文献

[1]郑仙群.全球大型矿用工程轮胎需求与供给分析及中国巨型工程轮胎制造商的对策[J].中国橡胶,2008,24(8):25-29.
[2]丁震,王铁军,孟峰,等.巨型矿用轮胎全寿命管理研究[J].中国煤炭,2014(z1):125-129.
[3]阎岩,赵红.浅析提高矿用汽车轮胎使用寿命的途径[J].黄金,2006,27(3):31-34.
[4]程玉军.矿用车辆轮胎的磨损分析与维护措施[J].机电产品开发与创新,2013,26(4):62-63.
[5]焦继海.矿用轮胎的损坏与对策[J].矿山机械,1989(5):31-33.
[6]Varghese S,Karger-Kocsis J.Melt-compounded natural rubber nanocomposites with pristine and organophilic layered silicates of natural and synthetic origin[J].Journal of Applied Polymer Science,2004,91(2):813-819.
[7]Teh P L,Mohd Ishak Z A,Hashim A S,et al.On the potential of organoclay with respect to conventional fillers (carbon black,silica) for epoxidized natural rubber compatibilized natural rubber vulcanizates[J].Journal of Applied Polymer Science,2004,94(6):2438-2445.
[8]Bala P,Samantaray B K,Srivastava S K,et al.Organomodified montmorillonite as filler in natural and synthetic rubber[J].Journal of Applied Polymer Science,2004,92(6):3583-3592.
[9]Alex R,Nah C.Preparation and characterization of organoclay-rubber nanocomposites via a new route with skim natural rubber latex[J].Journal of Applied Polymer Science,2006,102(4):3277-3285.
[10]Valsecchi R,Viganò M,Levi M,et al.Dynamic mechanical and rheological behavior of fluoroelastomer-organoclay nanocomposites obtained from different preparation methods[J].Journal of Applied Polymer Science,2006,102(5):4484-4487.
[11]Privalko V P,Ponomarenko S M,Privalko E G,et al.Thermoelasticity and stress relaxation behavior of polychloroprene/organoclay nanocomposites[J].European Polymer Journal,2005,41(12):3042-3050.
[12]Sridhar V,Tripathy D K.Barrier properties of chlorobutyl nanoclay composites[J].Journal of Applied Polymer Science,2006,101(6):3630-3637.
[13]Burnside S D,Giannelis E P.Nanostructure and properties of polysiloxane-layered silicate nanocomposites[J].Journal of Polymer Science Part B(Polymer Physics),2000,38(12):1595-1604.
[14]Gatos K G,Thomann R,Karger-Kocsis J.Characteristics of ethylene propylene diene monomer rubber/organoclay nanocomposites resulting from different processing conditions and formulations[J].Polymer International,2004,53(8):1191-1197.
[15]Chang Y,Yang Y,Ryu S,et al.Preparation and properties of EPDM/organo montmorillonite hybrid nanocomposites[J].Polymer International,2002,51(4):319-324.
[16]Acharya H,Pramanik M,Srivastava S K,et al.Synthesis and evaluation of high-performance ethylene-propylene-diene terpolymer/organoclay nanoscale composites[J].Journal of Applied Polymer Science,2004,93(5):2429-2436.
[17]徐文总,郝文涛,马德柱,等.丁苯橡胶/天然橡胶复合体系动态力学性能[J].应用化学,2001,18(1):44-47.
[18]马德柱,郝文涛,徐文总,等.不同链化学结构丁苯橡胶与天然橡胶混容性研究[J].高分子学报,2001(2):153-156.

基金资助

国家自然科学基金(41602171);北京市自然科学基金(8164062);北京市科技新星计划(2015B081)

AI Summary AI Mindmap
PDF (1823KB)

558

访问

0

被引

导航
相关文章

AI思维导图

/