The Experts below are selected from a list of 75 Experts worldwide ranked by ideXlab platform

Matthew Carmona - One of the best experts on this subject based on the ideXlab platform.

  • Design Control—bridging the professional divide, part 2: A new consensus
    Journal of Urban Design, 1998
    Co-Authors: Matthew Carmona
    Abstract:

    Abstract In Part 1 of this paper the new framework for Design Control in England in the form of (revised) Planning Policy Guidance Note 1: General Policy and Principles (1997) was examined alongside a reformulation of the established critiques of Design Control in the UK. From the analysis the implications of the new framework for the key actors in the Design Control Process was considered and the extent to which the guidance addresses the key themes of the Design Control debate reviewed. In Part 2, the rare opportunity is taken of reviewing a snapshot of opinion on Design Control from across the full range of actors in the Design/development Process. This is achieved through a detailed comparative review of the responses of 20 key (development, professional and amenity) respondents to the consultation exercise held on the revised government guidance on Design. From the analysis, a series of eight key consensus positions are identified; positions it is argued that provide a potential basis from which to b...

Khalwani Setiyono - One of the best experts on this subject based on the ideXlab platform.

  • IMPROVEMENT DISABLED MACHINE BC-2TR PRODUCTS IN CASTING Process IN PT TOYOTA MOTOR MANUFACTURING INDONESIA
    2011
    Co-Authors: Khalwani Setiyono, Sudaryanto Sudaryanto
    Abstract:

    PT. TMMIN Indonesia has been known as a big company and applying advanced technology in manufacturing, particularly the field of metal casting. In PT.TMMIN applying a good quality Control method is a tool (tool) in the direct producers toward product improvement (zero defect), the casting plant is the division that produces several products such as: engine block BC-BC-1TR and 2TR. In the study using five methods of this phase has the purpose, among others, identify problematic lines of the Process, identify and analyze the types of defects in engine blocks BC-2TR in the Process of casting the problem and provide suggestions for improvement in the quality of the casting Process is problematic. Quality Control using the five phases (definition, measurement, analysis, repair, and Control) were applied to achieve those goals. On stage will be conducted to measure the normality test whether the data is still in normal state, and measured using a map p, and test capabilities that make the number 98.75%, which means that the Process is feasible. The analysis uses a causal diagram and searched three of the dominant defect type to be analyzed and searched for the specified root cause which constitutes the main factor of the three types of defect. Stage repair using a method carried 5W 2 H fixes for three types of dominant defects are analyzed. At this stage of Design Control Process improvements resulting in the form of work instructions, such as observation sheets to Control so that defective products do not happen again.

  • THE IDEA OF IMPROVEMENT BC-2TR MACHINE DISABLED'S PRODUCT IN PT CASTING Process. TOYOTA MOTOR INDONESIA MANUFACTURING
    2011
    Co-Authors: Khalwani Setiyono, Rer. Pol. Sudaryanto
    Abstract:

    Keyword: key words: casting, manufacturing, machine Abstrack: ABSTRACT :PT. TMMIN Indonesia has been known as a big company and applying advanced technology in manufacturing, particularly the field of metal casting. In PT.TMMIN applying a good quality Control method is a tool (tool) in the direct producers toward product improvement (zero defect), the casting plant is the division that produces several products such as: engine block BC-BC-1TR and 2TR. In a study using five phase has the purpose, among others, identify problematic lines of the Process, identify and analyze the types of defects in the engine block BC-2TR in the Process of casting the problem and provide suggestions for improvement in the quality of the casting Process is problematic. Quality Control using the five phases (definition, measurement, analysis, repair, and Control) is applied to achieve those goals.On stage will be conducted to measure the normality test whether the data is still in normal state, and measured using a map p, and test capabilities that make the number 98.75%, which means that the Process is feasible. The analysis uses a causal diagram and searched three of the dominant defect type to be analyzed and searched for the specified root cause which constitutes the main factor of the three types of defect. Stage repair using a method carried 5W 2 H fixes for three types of dominant defects are analyzed. At this stage of Design Control Process improvements resulting in the form of work instructions, such as observation sheets to Control so that defective products do not happen again.USULAN PERBAIKAN PRODUK CACAT MESIN BC-2TR PADA PROSES PENGECORAN DI PT TOYOTA MOTOR MANUFACTURING INDONESIA

James T. Conway - One of the best experts on this subject based on the ideXlab platform.

  • Design Control Process Requirements for Geologic Repository Operations Area Design
    High Level Radioactive Waste Management, 1991
    Co-Authors: Dinesh C. Gupta, Mysore S. Nataraja, James T. Conway
    Abstract:

    This paper outlines U.S. Nuclear Regulatory Commission's (NRC's) key regulations applicable to U.S. Department of Energy's (DOE's) Design of geologic repository operations area (GROA) in the area of Design Control. According to Part 60 of Title 10 of the Code of Federal Regulations (10 CFR) all structures, systems, and components important to safety, and Design and characterization of barriers important to waste isolation and activities related thereto, are subject to a quality assurance program based on criteria of Appendix B of 10 CFR Part 50. For engineered systems, the requirements are intended to provide a means to Control the quality of the material, structure, or components to predetermined levels of specificity. The Design Control Process is a key component of these quality assurance requirements and includes measures to be taken to ensure that (1) applicable regulatory requirements and Design bases are correctly translated into specifications, drawings, procedures, and instructions; (2) Design interfaces are identified and Controlled and coordination is maintained among participating Design organizations; (3) the adequacy of Design is verified or checked; and (4) Design changes are subject to Controls commensurate with those Controls applied to the original Design.

  • Design Control Process Requirements for Geologic Repository Operations Area Design
    High Level Radioactive Waste Management, 1991
    Co-Authors: Dinesh C. Gupta, Mysore S. Nataraja, James T. Conway
    Abstract:

    This paper outlines U.S. Nuclear Regulatory Commission's (NRC's) key regulations applicable to U.S. Department of Energy's (DOE's) Design of geologic repository operations area (GROA) in the area of Design Control. According to Part 60 of Title 10 of the Code of Federal Regulations (10 CFR) all structures, systems, and components important to safety, and Design and characterization of barriers important to waste isolation and activities related thereto, are subject to a quality assurance program based on criteria of Appendix B of 10 CFR Part 50. For engineered systems, the requirements are intended to provide a means to Control the quality of the material, structure, or components to predetermined levels of specificity. The Design Control Process is a key component of these quality assurance requirements and includes measures to be taken to ensure that (1) applicable regulatory requirements and Design bases are correctly translated into specifications, drawings, procedures, and instructions; (2) Design interfaces are identified and Controlled and coordination is maintained among participating Design organizations; (3) the adequacy of Design is verified or checked; and (4) Design changes are subject to Controls commensurate with those Controls applied to the original Design.

Rer. Pol. Sudaryanto - One of the best experts on this subject based on the ideXlab platform.

  • THE IDEA OF IMPROVEMENT BC-2TR MACHINE DISABLED'S PRODUCT IN PT CASTING Process. TOYOTA MOTOR INDONESIA MANUFACTURING
    2011
    Co-Authors: Khalwani Setiyono, Rer. Pol. Sudaryanto
    Abstract:

    Keyword: key words: casting, manufacturing, machine Abstrack: ABSTRACT :PT. TMMIN Indonesia has been known as a big company and applying advanced technology in manufacturing, particularly the field of metal casting. In PT.TMMIN applying a good quality Control method is a tool (tool) in the direct producers toward product improvement (zero defect), the casting plant is the division that produces several products such as: engine block BC-BC-1TR and 2TR. In a study using five phase has the purpose, among others, identify problematic lines of the Process, identify and analyze the types of defects in the engine block BC-2TR in the Process of casting the problem and provide suggestions for improvement in the quality of the casting Process is problematic. Quality Control using the five phases (definition, measurement, analysis, repair, and Control) is applied to achieve those goals.On stage will be conducted to measure the normality test whether the data is still in normal state, and measured using a map p, and test capabilities that make the number 98.75%, which means that the Process is feasible. The analysis uses a causal diagram and searched three of the dominant defect type to be analyzed and searched for the specified root cause which constitutes the main factor of the three types of defect. Stage repair using a method carried 5W 2 H fixes for three types of dominant defects are analyzed. At this stage of Design Control Process improvements resulting in the form of work instructions, such as observation sheets to Control so that defective products do not happen again.USULAN PERBAIKAN PRODUK CACAT MESIN BC-2TR PADA PROSES PENGECORAN DI PT TOYOTA MOTOR MANUFACTURING INDONESIA

Dinesh C. Gupta - One of the best experts on this subject based on the ideXlab platform.

  • Design Control Process Requirements for Geologic Repository Operations Area Design
    High Level Radioactive Waste Management, 1991
    Co-Authors: Dinesh C. Gupta, Mysore S. Nataraja, James T. Conway
    Abstract:

    This paper outlines U.S. Nuclear Regulatory Commission's (NRC's) key regulations applicable to U.S. Department of Energy's (DOE's) Design of geologic repository operations area (GROA) in the area of Design Control. According to Part 60 of Title 10 of the Code of Federal Regulations (10 CFR) all structures, systems, and components important to safety, and Design and characterization of barriers important to waste isolation and activities related thereto, are subject to a quality assurance program based on criteria of Appendix B of 10 CFR Part 50. For engineered systems, the requirements are intended to provide a means to Control the quality of the material, structure, or components to predetermined levels of specificity. The Design Control Process is a key component of these quality assurance requirements and includes measures to be taken to ensure that (1) applicable regulatory requirements and Design bases are correctly translated into specifications, drawings, procedures, and instructions; (2) Design interfaces are identified and Controlled and coordination is maintained among participating Design organizations; (3) the adequacy of Design is verified or checked; and (4) Design changes are subject to Controls commensurate with those Controls applied to the original Design.

  • Design Control Process Requirements for Geologic Repository Operations Area Design
    High Level Radioactive Waste Management, 1991
    Co-Authors: Dinesh C. Gupta, Mysore S. Nataraja, James T. Conway
    Abstract:

    This paper outlines U.S. Nuclear Regulatory Commission's (NRC's) key regulations applicable to U.S. Department of Energy's (DOE's) Design of geologic repository operations area (GROA) in the area of Design Control. According to Part 60 of Title 10 of the Code of Federal Regulations (10 CFR) all structures, systems, and components important to safety, and Design and characterization of barriers important to waste isolation and activities related thereto, are subject to a quality assurance program based on criteria of Appendix B of 10 CFR Part 50. For engineered systems, the requirements are intended to provide a means to Control the quality of the material, structure, or components to predetermined levels of specificity. The Design Control Process is a key component of these quality assurance requirements and includes measures to be taken to ensure that (1) applicable regulatory requirements and Design bases are correctly translated into specifications, drawings, procedures, and instructions; (2) Design interfaces are identified and Controlled and coordination is maintained among participating Design organizations; (3) the adequacy of Design is verified or checked; and (4) Design changes are subject to Controls commensurate with those Controls applied to the original Design.