A new class of dual-functioning solid lubricants providing lubrication and wear protection for contact bodies under extreme loading conditions
A new class of dual-functioning solid lubricants providing lubrication and wear protection for contact bodies under extreme loading conditions
批准号:
RGPIN-2021-04005
负责人:
Aramesh, Maryam
金额:
$1.97万
依托单位:
依托单位国家:
加拿大
项目类别:
Discovery Grants Program - Individual
财政年份:
2021
资助国家:
加拿大
项目状态:
已结题
起止时间:
2021-01-01 至 2022-12-31
中文摘要
接触体在极端负载条件下,由于与作用在其身体上的高热和机械负载相关的高摩擦和卡扣,容易发生严重磨损和失效。这种现象具有重大的经济影响,因为从生物医学到航空航天等众多应用中使用的几乎所有关键部件在加工过程中都会遇到这种情况,这是大多数制造过程中不可避免的一部分。由于缺乏对机械加工摩擦学方面的知识,导致切削能量浪费25-60%。据估计,仅对美国工业而言,次优加工操作的财政后果每年就超过100亿美元。十多年来,科学家们一直试图降低刀具磨损的严重程度,以及与加工中高摩擦有关的工件损坏,但它们仍然是加工难切削材料的严峻挑战。到目前为止,克服严重刀具磨损的常用方法是通过使用超硬刀具或使用超硬耐磨刀具涂层来对抗更硬的刀具。这种传统方法在提高工具耐磨性方面的能力有限,而不是解决根本原因。为了减少摩擦和加工引起的应力,人们进行了一些尝试,例如在不同的润滑剂上使用喷射润滑或增强硬涂层的润滑性。然而,对于加工难以切割的材料,卡扣是如此严重,以至于主要是水或油基的润滑剂在很大程度上是无效的,因为它们通常不能渗透到接触区来执行润滑功能。此外,刀具-切屑接触区严酷的接触压力限制了大多数涂层的适用性。为了从根本上解决这些问题,我首次提出在工具上涂上具有双重界面功能的选择性软、低熔点金属合金,主要作为有效的原位润滑剂,同时提供高耐磨性。软金属通常用作固体润滑剂,主要用于发动机轴承,但它们的性能受到熔点的限制,并且它们从未用作机械加工中的润滑剂,在极端的温度和压力条件下应用。我独特的涂层方法包括在刀具上沉积材料的切削过程中添加一个简单的加工步骤,从而消除了对昂贵的选择性涂层的刀具涂层过程的需要,并且具有当前方法无法实现的优点。短期目标是深入评估新提出的润滑油和新刀具涂层方法的行为、局限性和能力,并开发新的兼容的双功能润滑油,用于加工各种难以切削的材料。长期目标是发现在其他极端条件下应用的新机会。
英文摘要
Contact bodies under extreme loading conditions are prone to severe wear and failure as a result of high friction and seizure, which are associated with high thermal and mechanical loads, acting on their bodies. The phenomenon has a significant economic impact since almost all critical parts used in numerous applications, from biomedical to aerospace, experience it during their machining, which is an unavoidable part of most manufacturing processes. Significant lack of knowledge about the tribological aspects of machining results in a 25-60% waste in terms of cutting energy. The fiscal consequences of sub-optimal machining operations are estimated to be more than $10 billion per year for the US industry alone. For more than a decade, scientists have tried to reduce the severity of tool wear and damages to the workpieces linked to high friction in machining, yet they remain serious challenges for machining difficult-to-cut materials. The common approach used so far to overcome severe tool wear is to fight hard with harder by using super hard tooling or applying super hard and wear-resistant tool coatings. This conventional approach has provided the industry with a limited capability to improve the tool wear resistance rather than addressing the root cause. Several attempts have been made to reduce friction and machining-induced stresses such as employing jet lubrication on different lubricants or enhancing the lubricity of hard coatings. However, for machining difficult-to-cut materials, seizure is so severe that lubricants, which are mainly water or oil based, are largely ineffective since they generally do not penetrate into the contact zone to perform a lubricating function. Moreover, the harsh contact pressure at the tool-chip contact zone restricts the applicability of most coatings. To address these problems at their roots, for the first time, I proposed coating the tools with selective soft and low melting point metallic alloys with dual interfacial functional capabilities for acting primarily as effective in-situ lubricants while providing high wear resistance. Soft metals are often used as solid lubricants, mainly in engine bearings, but their performance is limited by their melting point, and they have never been used as lubricants in machining, where extreme conditions of temperature and pressure apply. My unique coating approach involves adding a simple machining step to a cutting process for depositing the material on the tool which eliminates the need for expensive tool coating processes for selective coatings and has advantages not achievable with current methods. The short-term objectives are to evaluate in-depth the behaviour, limitations, and capabilities of the new proposed lubricant and the new tool coating method and to develop new compatible dual-functioning lubricants for the machining of various hard-to-cut materials. The long-term objective is to discover new opportunities for applications under other extreme conditions.
期刊论文(0)
专著(0)
科研奖励(0)
会议论文
A new class of dual-functioning solid lubricants providing lubrication and wear protection for contact bodies under extreme loading conditions
-
批准号:RGPIN-2021-04005
-
项目类别:Discovery Grants Program - Individual
-
资助金额:$1.97万
-
财政年份:2022
-
负责人:Aramesh, Maryam
-
依托单位:
A new class of dual-functioning solid lubricants providing lubrication and wear protection for contact bodies under extreme loading conditions
-
批准号:DGECR-2021-00344
-
项目类别:Discovery Launch Supplement
-
资助金额:$0.91万
-
财政年份:2021
-
负责人:Aramesh, Maryam
-
依托单位:
国内基金
海外基金
登录
查看更多内容
Class Ⅲ型过氧化物酶基因OsPOX8.1调控水稻抗褐飞虱的分子机制研究
-
批准号:32301918
-
项目类别:青年科学基金项目
-
资助金额:30.00万元
-
批准年份:2023
-
负责人:胡亮
-
依托单位:
拟南芥Class II TCP转录因子调控雌蕊顶端命运决定的分子机制
-
批准号:32300291
-
项目类别:青年科学基金项目
-
资助金额:30万元
-
批准年份:2023
-
负责人:王宇涛
-
依托单位:
基于PAR1介导的MHC class I表达探讨血府逐瘀汤逆转肺癌免疫逃逸的作用及机制研究
-
批准号:--
-
项目类别:青年科学基金项目
-
资助金额:30万元
-
批准年份:2022
-
负责人:李燕
-
依托单位:
无细胞生物合成S-腺苷甲硫氨酸自由基依赖的Class B甲基转移酶的系统构筑及应用研究
-
批准号:--
-
项目类别:面上项目
-
资助金额:58万元
-
批准年份:2021
-
负责人:刘晚秋
-
依托单位:
CAMKIV-MHC Class I-ER Stress途径对骨骼肌炎症及再生的调控及机制研究
-
批准号:
-
项目类别:省市级项目
-
资助金额:10.0万元
-
批准年份:2019
-
负责人:廖华
-
依托单位:
柴芪益肝颗粒通过调控classⅢ/ⅠPI3K介导的自噬抑制HBx及其抗肝癌细胞凋亡效应治疗HBV相关肝癌的作用机制研究
-
批准号:
-
项目类别:省市级项目
-
资助金额:10.0万元
-
批准年份:2019
-
负责人:胡世平
-
依托单位:
时空 g-class Ornstein-Uhlenbeck 型过程的统计推断问题研究
-
批准号:11801355
-
项目类别:青年科学基金项目
-
资助金额:23.0万元
-
批准年份:2018
-
负责人:王银凤
-
依托单位:
Class IIa 类乳酸菌细菌素 plantaricin YKX 在亚抑菌浓度下对脂环酸芽孢杆菌 QS 系统的调控机理研究
-
批准号:31801563
-
项目类别:青年科学基金项目
-
资助金额:24.0万元
-
批准年份:2018
-
负责人:裴金金
-
依托单位:
Class I HDACs介导的DNA损伤修复和转录重编程在肝癌发生中的作用研究
-
批准号:81872019
-
项目类别:面上项目
-
资助金额:63.0万元
-
批准年份:2018
-
负责人:石毓君
-
依托单位:
Class III PI3K通过负反馈AngII/AT1信号通路调节血管内皮细胞衰老的分子机制研究
-
批准号:81771509
-
项目类别:面上项目
-
资助金额:25.0万元
-
批准年份:2017
-
负责人:单海燕
-
依托单位: