Design for Six Sigma e-bog
403,64 DKK
(inkl. moms 504,55 DKK)
Design for Six Sigma (DFSS) is an innovative continuous improvement methodology for designing new products, processes, and services by integrating Lean and Six Sigma principles. This book will explain how the DFSS methodology is used to design robust products, processes, or services right the first time by using the voice of the customer to meet Six Sigma performance. Robust designs are insensi...
E-bog
403,64 DKK
Forlag
CRC Press
Udgivet
5 august 2016
Længde
357 sider
Genrer
Quality Assurance (QA) and Total Quality Management (TQM)
Sprog
English
Format
epub
Beskyttelse
LCP
ISBN
9781315352077
Design for Six Sigma (DFSS) is an innovative continuous improvement methodology for designing new products, processes, and services by integrating Lean and Six Sigma principles. This book will explain how the DFSS methodology is used to design robust products, processes, or services right the first time by using the voice of the customer to meet Six Sigma performance. Robust designs are insensitive to variation and provide consistent performance in the hands of the customer. DFSS is used to meet customer needs by understanding their requirements, considering current process capability, identifying and reducing gaps, and verifying predictions to develop a robust design. This book offers:Methodology on how to implement DFSS in various industriesPractical examples of the use of DFSSSustainability utilizing Lean Six Sigma techniques and Lean product developmentInnovative designs using DFSS with concept generationCase studies for implementing the DFSS methodologyDesign for Six Sigma (DFSS) enables organizations to develop innovative designs. In order to redesign an existing process or design a new process, the success is dependent on a rigorous process and methodology. DFSS ensures that there are minimal defects in the introduction of new products, processes, or services. The authors have compiled all of the tools necessary for implementation of a practical approach though innovation.