The Experts below are selected from a list of 1479 Experts worldwide ranked by ideXlab platform

Innocent Boyle Eraikhuemen - One of the best experts on this subject based on the ideXlab platform.

  • Application of Statistical Quality Control in Monitoring the Production, Packaging and Marketing Process of Sachet Water
    Journal of Scientific Research and Reports, 2020
    Co-Authors: Terna Godfrey Ieren, Samson Kuje, Abraham Iorkaa Asongo, Innocent Boyle Eraikhuemen
    Abstract:

    Statistical Process control is a technique employed to enhance the quality and productivity of Processes and the distribution or marketing of its products. Sachet water is a product that has become popular and is being used as a replacement for lack of potable water. It is an alternative that is readily available, affordable but with questions about its purity, production and marketing Processes. The objective of this study is to apply statistical control Charts in monitoring the production, packaging and distribution or marketing Processes of sachet water in Nigeria. This paper employed statistical quality control approach to monitor Process stability in a Table Water manufacturing company. Quality control tools such as p-Chart, u-Chart, X-bar and R Charts as well as Process Capability Chart were use to observed field data obtained from the sachet water manufacturing company on important Processes of sachet water production and marketing for 30 working days. This was done to check if the Processes were in control or out of control and to verify the Capability of the marketing Process of the product meeting preset specifications. With this, the statistical control Charts suitable for the Processes were constructed using package “qcc” in R software version 3.6.1. The results from p-Chart and u-Chart showed that the production and packaging Process of the product is not in control and hence the need for further investigations and corrective measures to prevent variability in the Process and thus allowing improvement in the quality of the product. Also, the results from X-bar and R Charts showed that the marking Process was in statistical Process control in respects of the product sales recorded by the four independent marketers, with no assignable cause of variation. It also revealed that, the product marketing Process has low Capability of successfully attending the preset specification limits in respect of the product sales and hence generating low profit for the company.

Fred A. Spiring - One of the best experts on this subject based on the ideXlab platform.

  • Process Capability: A total quality management tool
    Total Quality Management, 1995
    Co-Authors: Fred A. Spiring
    Abstract:

    Abstract Recent developments in the assessment of Process Capability have fostered the principle of continuously monitoring and assessing the ability of a Process to meet customer requirements. A procedure is outlined and an example provided illustrating the continuous assessment of Process Capability and its use as a management tool. The proposed Process Capability Chart contains information regarding the ability of the Process to meet or exceed customer requirements over the life of the Process. Monitoring the behavior of the Process's ability to meet customer requirements provides managers with feedback and evidence of the Process's ability in terms they understand.

Terna Godfrey Ieren - One of the best experts on this subject based on the ideXlab platform.

  • Application of Statistical Quality Control in Monitoring the Production, Packaging and Marketing Process of Sachet Water
    Journal of Scientific Research and Reports, 2020
    Co-Authors: Terna Godfrey Ieren, Samson Kuje, Abraham Iorkaa Asongo, Innocent Boyle Eraikhuemen
    Abstract:

    Statistical Process control is a technique employed to enhance the quality and productivity of Processes and the distribution or marketing of its products. Sachet water is a product that has become popular and is being used as a replacement for lack of potable water. It is an alternative that is readily available, affordable but with questions about its purity, production and marketing Processes. The objective of this study is to apply statistical control Charts in monitoring the production, packaging and distribution or marketing Processes of sachet water in Nigeria. This paper employed statistical quality control approach to monitor Process stability in a Table Water manufacturing company. Quality control tools such as p-Chart, u-Chart, X-bar and R Charts as well as Process Capability Chart were use to observed field data obtained from the sachet water manufacturing company on important Processes of sachet water production and marketing for 30 working days. This was done to check if the Processes were in control or out of control and to verify the Capability of the marketing Process of the product meeting preset specifications. With this, the statistical control Charts suitable for the Processes were constructed using package “qcc” in R software version 3.6.1. The results from p-Chart and u-Chart showed that the production and packaging Process of the product is not in control and hence the need for further investigations and corrective measures to prevent variability in the Process and thus allowing improvement in the quality of the product. Also, the results from X-bar and R Charts showed that the marking Process was in statistical Process control in respects of the product sales recorded by the four independent marketers, with no assignable cause of variation. It also revealed that, the product marketing Process has low Capability of successfully attending the preset specification limits in respect of the product sales and hence generating low profit for the company.

Liu Hui - One of the best experts on this subject based on the ideXlab platform.

K.g. Swift - One of the best experts on this subject based on the ideXlab platform.

  • Chapter 6 – Machining Processes
    Manufacturing Process Selection Handbook, 2013
    Co-Authors: K.g. Swift
    Abstract:

    This chapter presents PRIMAs for a range of commonly applied machining Processes, including: Turning and Boring, Milling, Planing and Shaping, Drilling, Broaching, Reaming, Grinding, Honing and Lapping. Each of the casting PRIMAs is divided into seven categories covering the characteristics and capabilities of the Process as follows: • Process Description (how the Process works) • Materials (currently suitable for the Process) • Process Variation (a description of any variations of the basic Process) • Economic Considerations (a list of several important points such as production rate) • Typical Applications (examples of successful implementations) • Design Aspects (list of important points such as information on minimum section and size range) • Quality Issues (a Process Capability Chart, typical surface roughness, detail and common Process faults, and geometrical tolerance data).

  • Chapter 3 – Casting Processes
    Manufacturing Process Selection Handbook, 2013
    Co-Authors: K.g. Swift
    Abstract:

    This chapter presents PRIMAs for a range of commonly applied casting Processes, including: Sand Casting, Shell Moulding, Gravity and Pressure Die Casting, Centrifugal Casting, Investment Casting, Ceramic Mould Casting, Plaster Mould Casting and Squeeze Casting. Each of the casting PRIMAs is divided into seven categories covering the characteristics and capabilities of the Process as follows: • Process Description (how the Process works) • Materials (currently suitable for the Process) • Process Variation (a description of any variations of the basic Process) • Economic Considerations (a list of several important points such as production rate) • Typical Applications (examples of successful implementations) • Design Aspects (list of important points such as information on minimum section and size range) • Quality Issues (a Process Capability Chart, where relevant, or tolerance Capability information, typical surface roughness and detail, and common Process faults).

  • Chapter 4 – Forming Processes
    Manufacturing Process Selection Handbook, 2013
    Co-Authors: K.g. Swift
    Abstract:

    This chapter presents PRIMAs for a range of commonly applied forming Processes, including: Forging, Rolling, Drawing, Cold Forming, Cold Heading, Swaging, Superplastic Forming, Sheet-metal Shearing, Sheet-metal Forming, Spinning, Powder Metallurgy, Metal Injection Moulding and Continuous Extrusion (Metals). Each of the casting PRIMAs is divided in to seven categories covering the characteristics and capabilities of the Process as follows: • Process Description (how the Process works) • Materials (currently suitable for the Process) • Process Variation (a description of any variations of the basic Process) • Economic Considerations (a list of several important points such as production rate) • Typical Applications (examples of successful implementations) • Design Aspects (list of important points such as information on minimum section and size range) • Quality Issues (a Process Capability Chart, where relevant, or tolerance Capability information, typical surface roughness and detail, and common Process faults).