Investigation of complex surfaces of propellers of vehicles by a mechatronic profilograph

IF 0.4 Q4 METALLURGY & METALLURGICAL ENGINEERING
S. Vasiliev, V. Alekseev, A. Fedorova, D. Lobanov
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Abstract

Introduction. The technology of investigation of screw propellers complex surfaces, which include the marine and aircraft propellers of vehicles, mechatronic profilers for the implementation of reverse engineering, is considered. A review of the scientific literature shows that at present the problem of monitoring complex surfaces of products at various stages of its life cycle requires further research, since the use of available devices and methods does not always provide the necessary accuracy, technological effectiveness and sufficient information on measurements. The purpose of the work is to develop a new technology for studying complex surfaces of propellers, which include marine and aircraft propellers of vehicles by means of a mechatronic profilograph to implement reverse engineering. Methods. The paper considers the implementation of the innovative technology for studying complex surfaces of propellers using the developed mechatronic profilograph. This ingenious mechatronic profilograph is designed to measure the profile and study the shape of complex surfaces of various products, as well as to determine the geometric and morphological parameters of these surfaces. On the basis of theoretical studies the main design and technological parameters are found and the hyperbolic dependence of the angular rate of the laser sensor movement on the scanning radius is determined for the developed mechatronic profilograph. For example, if a constant pitch of the trajectory along the Archimedes spiral is 2 mm, the value of the sensor angular rate should gradually decrease from the maximum value of 2 rad/s to the minimum value of 0.574 rad/s, i.e. by 3.484 times. Results and discussion. It is revealed that the use of cylindrical coordinates for processing the obtained data by a profilograph is logical and has a number of advantages. An express analysis of the propeller surfaces with rotary symmetry is carried out and differences in the shapes of the surfaces of the propeller blades by deviation values in the longitudinal and transverse directions for different radii are established. On the basis of the experimental data, a two-factor power model describing deviations with a determination coefficient of 0.967 is obtained, according to its analysis, it is clear that on average the angle of deviation in the perpendicular direction to the radius  - increases from 0 to 0.3, and the angle of deviation along the radius  increases from 0 to 5.4.
飞行器螺旋桨复杂表面的机电剖面研究
介绍。研究了船舶螺旋桨和飞行器螺旋桨等螺旋桨复杂曲面的研究技术,并提出了实施逆向工程的机电剖面。对科学文献的回顾表明,目前在其生命周期的各个阶段监测产品复杂表面的问题需要进一步研究,因为使用现有的设备和方法并不总是提供必要的准确性、技术有效性和足够的测量信息。本研究的目的是开发一种新的技术,用于研究螺旋桨的复杂表面,包括船舶和飞行器螺旋桨,利用机电剖面仪进行逆向工程。方法。本文考虑利用研制的机电剖面仪实现螺旋桨复杂表面研究的创新技术。这款精巧的机电一体化轮廓仪设计用于测量各种产品复杂表面的轮廓和研究形状,以及确定这些表面的几何和形态参数。在理论研究的基础上,确定了所研制的机电轮廓仪的主要设计参数和工艺参数,确定了激光传感器运动角速度与扫描半径的双曲关系。例如,如果轨迹沿阿基米德螺旋的定螺距为2mm,则传感器角速率的值应从最大值2 rad/s逐渐减小到最小值0.574 rad/s,即减小3.484倍。结果和讨论。结果表明,利用圆柱坐标对轮廓仪所获得的数据进行处理是合乎逻辑的,并且具有许多优点。对具有旋转对称的螺旋桨表面进行了表达式分析,建立了不同半径下螺旋桨叶片表面在纵向和横向上的偏差值的形状差异。在实验数据的基础上,得到了一个决定系数为0.967的描述偏差的双因素功率模型,通过分析可知,垂直于半径的偏离角平均从0增加到0.3,沿半径的偏离角平均从0增加到5.4。
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来源期刊
Obrabotka Metallov-Metal Working and Material Science
Obrabotka Metallov-Metal Working and Material Science METALLURGY & METALLURGICAL ENGINEERING-
CiteScore
1.10
自引率
50.00%
发文量
26
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