Deaconescu Tudor, Deaconescu Andrea
Department of Industrial Engineering and Management, Transilvania University of Brasov, 500036 Brasov, Romania.
Materials (Basel). 2020 Mar 16;13(6):1343. doi: 10.3390/ma13061343.
Lapping is a finishing process where loose abrasive grains contained in a slurry are pressed against a workpiece to reduce its surface roughness. To perform a lapping operation, the user needs to set the values of the respective lapping conditions (e.g., pressure, depth of cut, the rotational speed of the pressing lap plate, and alike) based on some material properties of the workpiece, abrasive grains, and slurry, as well as on the desired surface roughness. Therefore, a mathematical model is needed that establishes the relationships among the abovementioned parameters. The mathematical model can be used to develop a lapping operation optimization system, as well. To this date, such a model and system are not available mainly because the relationships among lapping conditions, material properties of abrasive grains and slurry, and surface roughness are difficult to establish. This study solves this problem. It presents a mathematical model establishing the required relationships. It also presents a system developed based on the mathematical model. In addition, the efficacy of the system is also shown using a case study. This study thus helps systematize lapping operations in regard to real-world applications.
研磨是一种精加工工艺,其中将浆液中所含的松散磨粒压在工件上以降低其表面粗糙度。为了进行研磨操作,用户需要根据工件、磨粒和浆液的一些材料特性以及所需的表面粗糙度来设置相应的研磨条件值(例如压力、切削深度、压盘的转速等)。因此,需要一个数学模型来建立上述参数之间的关系。该数学模型也可用于开发研磨操作优化系统。迄今为止,这样的模型和系统尚未出现,主要是因为研磨条件、磨粒和浆液的材料特性与表面粗糙度之间的关系难以建立。本研究解决了这个问题。它提出了一个建立所需关系的数学模型。它还展示了基于该数学模型开发的系统。此外,通过一个案例研究展示了该系统的有效性。因此,本研究有助于使研磨操作在实际应用方面系统化。