CALCULATION OF THE BORING BAR DESIGN FOR STATIC RIGIDITY AND STRENGTH WITH SIMULTANEOUS BORING OF A STEPPED HOLE WITH FURTHER OPTIMIZATION

N. Karsakova, K. Sherov, B. Donenbayev, D. Abulkhairov, I. Sagynganova, M. Usserbayev, I. Teliman, Aibek Sherov, G. Tussupbekova
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Abstract

A method for simultaneous processing of stepped holes in the bedding of a submersible pump and the boring bar design is proposed. The results of the study of existing methods for processing stepped holes and the design of boring tools are presented. It was revealed that the considered methods and designs of tools cannot be used for processing stepped holes in the submersible pump frame. The calculation of the developed design of the boring bar for static stiffness and strength, as well as the calculation of the stress-strain state (SSS) of the cutting plates by the finite element method using the ANSYS program, was carried out. The purpose of calculating the boring bar for static stiffness is a finite element study of the radial displacement of the boring bar cutter plates in the process of machining a stepped hole. As a result, the value of deformation in the axial and radial directions, which occur at the top of the cutting plate, is established. Also, the values of the cantilever overhang of the boring cutters are established, under which the conditions for the static rigidity of the boring bar are met. Taking into account the obtained results, the boring bar design was optimized.
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计算了阶梯孔同时镗削时镗杆的静刚度和强度,并进行了进一步的优化设计
提出了一种潜水泵垫层阶梯孔与镗杆设计同时加工的方法。介绍了现有阶梯孔加工方法的研究结果和镗孔工具的设计。结果表明,所考虑的方法和工具设计不能用于潜水泵机架阶梯式孔的加工。利用ANSYS软件对镗杆的静刚度和强度进行了开发设计计算,并对切削板的应力-应变状态进行了有限元计算。计算镗杆静刚度的目的是对镗杆刀板在加工阶梯孔过程中的径向位移进行有限元分析。由此确定了切割板顶部的轴向和径向变形值。在满足镗杆静刚度条件的前提下,建立了镗刀悬臂悬伸量的取值。根据研究结果,对镗杆进行了优化设计。
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来源期刊
Journal of Applied Engineering Science
Journal of Applied Engineering Science Engineering-Engineering (all)
CiteScore
2.00
自引率
0.00%
发文量
122
审稿时长
12 weeks
期刊介绍: Since 2002 iipp build cooperation with its clients established on wealthy experience, interchangeable respect and trust and permanently arrangement with the purpose of successfully realization of projects recognizable according to good organization and high quality of provided favors. Working as unique team of highly motivated experts, Institute iipp provides to its customers the most high-quality solutions in domain of engineering consulting.
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