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Book part
Publication date: 18 November 2020

Wong Mei Foong and Shankar Chelliah

This chapter explained the findings of a research that is aimed at studying the effectiveness of cross-border knowledge transfer from Japanese companies to their business…

Abstract

This chapter explained the findings of a research that is aimed at studying the effectiveness of cross-border knowledge transfer from Japanese companies to their business affiliates in Malaysia by looking into Japanese organizational culture and the mediating effect of the business affiliate’s learning intent. By focusing on attributes identified by existing literature, there were three aspects being investigated to study their roles in influencing the effectiveness of cross-border knowledge transfer. These aspects are intensive and extensive job training, employee involvement and human relations, and leadership styles. The results indicate that all three aspects indeed led to a higher learning intention. The research also found that the business affiliates’ learning intent significantly mediates the relationship between organizational culture and the effectiveness of cross-border knowledge transfer. This study provides academicians and human resource managers deeper insights on how to improve knowledge transfer in cross-culture organizations by managing organizational culture more effectively.

Content available
Book part
Publication date: 18 November 2020

Abstract

Details

Contemporary Global Issues in Human Resource Management
Type: Book
ISBN: 978-1-80043-393-9

Abstract

Details

Contemporary Global Issues in Human Resource Management
Type: Book
ISBN: 978-1-80043-393-9

Article
Publication date: 14 August 2023

Usman Tariq, Ranjit Joy, Sung-Heng Wu, Muhammad Arif Mahmood, Asad Waqar Malik and Frank Liou

This study aims to discuss the state-of-the-art digital factory (DF) development combining digital twins (DTs), sensing devices, laser additive manufacturing (LAM) and subtractive…

Abstract

Purpose

This study aims to discuss the state-of-the-art digital factory (DF) development combining digital twins (DTs), sensing devices, laser additive manufacturing (LAM) and subtractive manufacturing (SM) processes. The current shortcomings and outlook of the DF also have been highlighted. A DF is a state-of-the-art manufacturing facility that uses innovative technologies, including automation, artificial intelligence (AI), the Internet of Things, additive manufacturing (AM), SM, hybrid manufacturing (HM), sensors for real-time feedback and control, and a DT, to streamline and improve manufacturing operations.

Design/methodology/approach

This study presents a novel perspective on DF development using laser-based AM, SM, sensors and DTs. Recent developments in laser-based AM, SM, sensors and DTs have been compiled. This study has been developed using systematic reviews and meta-analyses (PRISMA) guidelines, discussing literature on the DTs for laser-based AM, particularly laser powder bed fusion and direct energy deposition, in-situ monitoring and control equipment, SM and HM. The principal goal of this study is to highlight the aspects of DF and its development using existing techniques.

Findings

A comprehensive literature review finds a substantial lack of complete techniques that incorporate cyber-physical systems, advanced data analytics, AI, standardized interoperability, human–machine cooperation and scalable adaptability. The suggested DF effectively fills this void by integrating cyber-physical system components, including DT, AM, SM and sensors into the manufacturing process. Using sophisticated data analytics and AI algorithms, the DF facilitates real-time data analysis, predictive maintenance, quality control and optimal resource allocation. In addition, the suggested DF ensures interoperability between diverse devices and systems by emphasizing standardized communication protocols and interfaces. The modular and adaptable architecture of the DF enables scalability and adaptation, allowing for rapid reaction to market conditions.

Originality/value

Based on the need of DF, this review presents a comprehensive approach to DF development using DTs, sensing devices, LAM and SM processes and provides current progress in this domain.

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