Tolerances indicate geometrical limits between which a component is expected to perform its function adequately. They are used for instance for set-up selection in process planning and for inspection. Tolerances must be accounted for in sequencing and positioning procedures for bending of sheet metal parts. In bending, the shape of a part changes not only locally, but globally as well. Therefore, sheet metal part manufacturing presents some specific problems as regards reasoning about tolerances. The paper focuses on the interpretation and conversion of tolerances as part of a sequencing procedure for bending to be used in an integrated CAPP system
This paper presents a measurement case study of an automotive stamped sheet metal sub-assembly, in o...
Part tolerance design is the process to define the optimal values of part functional characteristics...
The fields of tolerancing and assembly analysis have depended for decades on ad hoc, shop floor meth...
This paper discuss the development of a method to analyse the dimension and tolerance of a sheet met...
The dimensional accuracy of bent sheet metal parts is influenced by many factors and possible source...
The use of CNC machine tools, together with decreasing lot sizes and stricter tolerance prescription...
The use of CNC machine tools, together with decreasing lot sizes and stricter tolerance prescription...
As an essential link between sheet metal design and manufacturing, process planning generates a sequ...
An important process-planning task in sheet-metal manufacturing is the determination f bending seque...
Sheet-metal components are used extensively in the aerospace and the electronic industry, where high...
Sheet-metal components are used extensively in the aerospace and the electronic industry, where high...
This paper presents a complete model including method and result for tolerance verification of bent ...
To receive a technology leadership in global markets an explicit competitive advantage is the optimi...
Mechanical tolerances are specified in conjunction with part geometry, material type andother techni...
Manufacturing tolerancing is intended to determine the intermediate geometrical and dimensional stat...
This paper presents a measurement case study of an automotive stamped sheet metal sub-assembly, in o...
Part tolerance design is the process to define the optimal values of part functional characteristics...
The fields of tolerancing and assembly analysis have depended for decades on ad hoc, shop floor meth...
This paper discuss the development of a method to analyse the dimension and tolerance of a sheet met...
The dimensional accuracy of bent sheet metal parts is influenced by many factors and possible source...
The use of CNC machine tools, together with decreasing lot sizes and stricter tolerance prescription...
The use of CNC machine tools, together with decreasing lot sizes and stricter tolerance prescription...
As an essential link between sheet metal design and manufacturing, process planning generates a sequ...
An important process-planning task in sheet-metal manufacturing is the determination f bending seque...
Sheet-metal components are used extensively in the aerospace and the electronic industry, where high...
Sheet-metal components are used extensively in the aerospace and the electronic industry, where high...
This paper presents a complete model including method and result for tolerance verification of bent ...
To receive a technology leadership in global markets an explicit competitive advantage is the optimi...
Mechanical tolerances are specified in conjunction with part geometry, material type andother techni...
Manufacturing tolerancing is intended to determine the intermediate geometrical and dimensional stat...
This paper presents a measurement case study of an automotive stamped sheet metal sub-assembly, in o...
Part tolerance design is the process to define the optimal values of part functional characteristics...
The fields of tolerancing and assembly analysis have depended for decades on ad hoc, shop floor meth...