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Six Sigma improvement project in a concrete block plant

Salvador Noriega Morales (Institute of Engineering and Technology, Autonomous University of Ciudad Juárez, Ciudad Juárez, Mexico)
Adán Valles Ch. (Department of Graduate Studies and Research, Technological Institute of Ciudad Juárez, Ciudad Juárez, México)
Vianey Torres-Argüelles (Institute of Engineering and Technology, Autonomous University of Ciudad Juárez, Ciudad Juárez, Mexico)
Erwin Martínez G. (Institute of Engineering and Technology, Autonomous University of Ciudad Juárez, Ciudad Juárez, Mexico)
Andrés Hernández G. (Institute of Engineering and Technology, Autonomous University of Ciudad Juárez, Ciudad Juárez, Mexico)

Construction Innovation

ISSN: 1471-4175

Article publication date: 3 October 2016

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Abstract

Purpose

This paper aims to describe the application of several Six Sigma tools to explain the improvement changes needed in a company that manufactures concrete blocks. The paper explains the methodology and the tools of the Six Sigma system, their use in the project, the application of the DMAIC (Define, Measure, Analyse, Improve and Control) process for the identification and definition of the problems, the related performance variables and the results obtained.

Design/methodology/approach

The paper reports the research made to improve the production of concrete blocks, specifically, the application of the DMAIC process, which is part of the Six Sigma methodologies; DMAIC stands for Definition of the problem, Measurement of the performance, Analysis using specific statistical methods and tools, Improvement the factors that cause the problem and Control the processes to ensure that the problem will not occur again. Each of those steps is explained in detail in the paper, which also presents the application of other improvement techniques.

Findings

The results show the adaptability and relevance of Six Sigma for the improvement of production operations. It is clearly demonstrated that it leads to benefits such as the elimination of machine downtime, reduction of scrap from 18 to 2 per cent and the improvements made in plant layout and production facilities to increase the productivity.

Research limitations/implications

In improvement projects, the differential between the initial and final conditions varies, depending on the magnitude of the problems or potential opportunities. Although this paper describes only the application of Six Sigma, the methodology has a wide potential application in most manufacturing industries.

Practical implications

With the Six Sigma and DMAIC tools’ application and the improvement process, the agility obtained is driving a more mechanized perspective of production operations. The customer service level was increased, through fast deliveries of complete orders. This project shows that the application of the Six Sigma methodology is feasible and produces attractive financial and operational results in this segment of the construction industry.

Originality/value

The companies dedicated to the production of concrete blocks commonly reproduce the systems and standards of the industry, which are commonly designed around civil engineering and technical issues. Thus, the application of improvement tools is exceptional in manufacturing environments. Although this paper is just one application of the methodology, it explains in detail the DMAIC use for companies that are committed to the development of new competencies to increase their competitiveness.

Keywords

Acknowledgements

The authors would like to thank Grupo Cementos de Chihuahua, GCC, for the invaluable support provided to this project.

Citation

Noriega Morales, S., Valles Ch., A., Torres-Argüelles, V., Martínez G., E. and Hernández G., A. (2016), "Six Sigma improvement project in a concrete block plant", Construction Innovation, Vol. 16 No. 4, pp. 526-544. https://doi.org/10.1108/CI-01-2015-0003

Publisher

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Emerald Group Publishing Limited

Copyright © 2016, Emerald Group Publishing Limited

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