Design and Manufacturing of a Pin on Disk Tribometer

Korcan Küçüköztaş, İlker Talay, Fatih Çalışkan, Mustafa Elsakka, Mohammed Nassar, Bilgin Kaftanoğlu
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Abstract

This paper presents the design and manufacturing of a pin on disk tribometer aimed at performing friction and wear testing as accurate as a professional tribometer at a lower cost. Since friction is an important part of our lives and its application varies greatly in size, environment and other factors, testing can be expensive. Tribometers are instruments where these conditions can be simulated experimentally. They are manufactured by various companies abroad and are imported to Turkey. For this reason, the cost of these instruments is very high. The design of the proposed tribometer prioritizes portability and low cost of manufacturing. The manufacturing process of the various parts are discussed in detail. The tribometer was manufactured in the ATILIM University manufacturing laboratories within a tight budget using CNC machining. The instrument has the full capability to adjust the load, testing radius, motor speed, and the duration of the test before starting the experiments. To handle the electronics and data gathering within the instrument, Arduino boards and software are utilized. Real-time data streaming is made possible for data analysis tasks both during and after the experiments. The paper also provides the results of experiments that are obtained from the newly developed tribometer and comparisons with a mass produced, professional tribometer. The experiments are conducted with the same type of samples and with the same parameters. The proposed tribometer provides researchers with easily accessible friction data that is within close range to what they would get from a professional tribometer.
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设计和制造盘上销钉摩擦磨损测试仪
本文介绍了一种盘上销钉摩擦磨损测试仪的设计和制造,旨在以较低的成本进行与专业摩擦磨损测试仪同样精确的摩擦磨损测试。摩擦是我们生活中的一个重要组成部分,其应用因尺寸、环境和其他因素的不同而有很大差异,因此测试成本可能很高。摩擦磨损仪是可以通过实验模拟这些条件的仪器。摩擦磨损仪由国外多家公司制造,并进口到土耳其。因此,这些仪器的成本非常高。拟议的摩擦磨损仪的设计优先考虑便携性和低制造成本。我们将详细讨论各部件的制造过程。摩擦磨损计是在 ATILIM 大学的制造实验室里,在预算紧张的情况下,使用数控加工技术制造出来的。在实验开始前,仪器完全可以调整负载、测试半径、电机速度和测试持续时间。为了处理仪器内的电子元件和数据收集,使用了 Arduino 电路板和软件。实时数据流可用于实验期间和实验后的数据分析任务。论文还提供了新开发的摩擦磨损仪的实验结果,并与批量生产的专业摩擦磨损仪进行了比较。实验使用相同类型的样品和相同的参数。所提出的摩擦磨损计为研究人员提供了易于获取的摩擦数据,这些数据与他们从专业摩擦磨损计获得的数据相差无几。
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Design and Manufacturing of a Pin on Disk Tribometer Diz İmplant Yapımında Kullanılan Biyo-malzemelerin Araştırılması Kelebek Vanaların Simülasyon Destekli Deney Tasarımı ve Prototip Üretimi Investigation of the relationship between the gray scale average values of turned surface images and tool wear Yeni Bir Hibrid Metasezgisel Algoritma İle Drone Kolunun Yapısal Optimizasyonu
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