Design of a disk-mandrel assembly for achieving rotational autofrettage in the disk

Author:

Kamal SM1,Dixit US2

Affiliation:

1. Department of Mechanical Engineering, Tezpur University, Tezpur, India

2. Department of Mechanical Engineering, Indian Institute of Technology Guwahati, Guwahati, India

Abstract

Rotational autofrettage is a recently proposed method to induce beneficial residual stresses in axisymmetric hollow cylindrical bodies. The feasibility of the process has been studied for both disks and cylinders used in many engineering applications. The earlier analyses of rotational autofrettage of disks are based on certain assumptions. One of the crucial assumptions is the free rotation of the disk. However, the free rotation of the disk is practically difficult. In practice, it is feasible to rotate the disk by shrink-fitting it over a solid cylindrical mandrel. In view of this, a design of a disk-mandrel assembly for achieving rotational autofrettage in disks is proposed in this article. The main aim of the design is to obtain appropriate values of the disk-mandrel interference and the rotational speed of the assembly to prevent the loss of contact of the disk with the mandrel during rotation. The critical speeds corresponding to the yield onset, contact separation and the full plastic deformation of the disk are obtained as a function of shrink interference. The safe operating design parameters can be decided by plotting the critical speeds with varying interference values. A detailed stress analysis during elastic-plastic loading of the assembly followed by the analysis of residual stresses in the assembly after unloading is presented. The analysis is based on the plane stress assumption, Tresca yield criterion and elastic unloading. The analysis is validated with a finite element method model in ABAQUS. The proposed design is illustrated through the numerical example of an ASTM A723 disk-mandrel assembly to achieve rotational autofrettage in the disk. With a small overstrain level of 17.5% in the disk, a large magnitude of compressive residual stress, viz., 0.52 times the yield stress, is induced.

Publisher

SAGE Publications

Subject

Mechanical Engineering

Cited by 6 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. On a multiweight formulation of boundary conditions for surface growth theories;Вестник Чувашского государственного педагогического университета им. И.Я. Яковлева. Серия: Механика предельного состояния;2024-07-05

2. On the appearance of plastic regions in a rotating disk;Вестник Чувашского государственного педагогического университета им. И.Я. Яковлева. Серия: Механика предельного состояния;2024-07-05

3. Analysis of Thermal Autofrettage of Disks Using von Mises Yield Criteria;Lecture Notes in Mechanical Engineering;2024

4. A Numerical Model for Rotational Autofrettage of Disks Based on von Mises Yield Criterion and its Application in Strengthening Flanged Disks Used for Joining High-Pressure Pipelines;International Journal of Applied Mechanics;2023-01-31

5. The Use of an Equivalent Temperature Field to Emulate an Induced Residual Stress Field in a Rotating Disk Due to Full Or Partial Rotational Autofrettage;Journal of Pressure Vessel Technology;2022-02-16

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