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173225

The Static Stiffness of the Interference Shrink-Fitted Joints.

Article

Last updated: 04 Jan 2025

Subjects

-

Tags

Production Engineering and Mechanical Design

Abstract

 The main objective of the work is to investigate the effect of size, surface roughness and the interference value on the static stiffness of shrink-fitted joints. 
Most of the previous research has been concerned with the joint holding load under static conditions without consideration to many of the applications in which the joints are exposed to dynamic loading. The dynamic performance of a machine tool is greatly affected by the collected response of its joints. In many applications in which shrink fitted joints are used, such as engines and machine tools, their dynamic characteristics can be an important factor in deciding the overall performance of the machine. Hence, studying the joints stiffness characteristics under static and dynamic conditions is of great importance. 
 

 

DOI

10.21608/bfemu.2021.173225

Authors

First Name

Ibrahim Mohamed

Last Name

Ammar

MiddleName

Ibrahim Elewa

Affiliation

Assistant Professor., Industrial Production Engineering Department., Faculty of Engineering., El-Mansoura University., Mansoura., Egypt.

Email

-

City

Mansoura

Orcid

-

First Name

Robert

Last Name

Thornley

MiddleName

-

Affiliation

Professor., Department of Mechanical & Production Engineering., Aston University., UK.

Email

-

City

-

Orcid

-

Volume

13

Article Issue

2

Related Issue

25101

Issue Date

1988-12-01

Receive Date

1988-10-10

Publish Date

2021-05-29

Page Start

17

Page End

32

Print ISSN

1110-0923

Online ISSN

2735-4202

Link

https://bfemu.journals.ekb.eg/article_173225.html

Detail API

https://bfemu.journals.ekb.eg/service?article_code=173225

Order

10

Type

Research Studies

Type Code

1,205

Publication Type

Journal

Publication Title

MEJ. Mansoura Engineering Journal

Publication Link

https://bfemu.journals.ekb.eg/

MainTitle

The Static Stiffness of the Interference Shrink-Fitted Joints.

Details

Type

Article

Created At

22 Jan 2023