Abstract:
A portable rail system for mounting an engraving device includes rails and crossbar members that are precisely joined, and include height adjustment devices for incrementally adjusting the height of the rail system relative to a work surface or contact surface, thus making the portable rail system capable of being assembled and disassembled at a work site to enable the use of an engraving device, such as a CNC router engraving systems, in situ, or on-site, rather than in a workshop. The portable rail system enables the use of a CNC router device or other engraving device on vertical surfaces.
Abstract:
The invention relates to a method of profiling a running surface of a laid rail by means of a processing vehicle, in particular in the region of a switch, comprising placing a first copying probe element displaceable transversely to the rail in contact with the running edge or the inner side edge and machining the rail.
Abstract:
A method of cutting a slot using an apparatus comprising a carriage that is movable along an axis, a cutting tool, and a depth controller. The cutting tool may be removably attached to the carriage. The depth controller may be used to select a cutting depth of the cutting tool with respect to a surface of a workpiece closest to a part.
Abstract:
A method of cutting a slot using an apparatus comprising a carriage that is movable along an axis, a cutting tool, and a depth controller. The cutting tool may be removably attached to the carriage. The depth controller may be used to select a cutting depth of the cutting tool with respect to a surface of a workpiece closest to a part.
Abstract:
A machining method for machining a superficial portion of a laminate using machine tool having a depth limiter which restricts a maximum depth of the machine tool. A guide frame having an inner guide contour restricts a maximum dimension of the superficial portion, and is secured over the superficial portion. The superficial portion is machined while the machine tool is guided by the guide contour. From another point of view, a machining apparatus for machining a superficial portion of a material is provided. The machining apparatus comprises a guide frame, an inner guide contour for guiding a machine tool, an attachment member for securing the guide frame to an attachment member, adjacent to the superficial portion, of the material.
Abstract:
A variable depth router and base assembly can include a ring-type, depth-adjustment mechanism. The base assembly can be a two-piece base wherein one piece is disposed inside the other. One of the pieces can include an annular lip or recess that can cooperate with levers on the adjustment ring to secure the router to the base assembly. The two-piece base assembly can facilitate the manufacture of the base assembly, can allow the use of different materials for different portions of the base assembly, and can provide a more economical base assembly. The use of differing materials can facilitate the using of more wear-resistant materials where needed while avoiding the costs of such materials in locations where it is not needed. The two-piece base assembly may allow various features to be economically incorporated into one of the pieces, thereby facilitating the manufacturing and assembly of the base assembly.
Abstract:
A fixture includes a router guide portion having a router support surface and a workpiece support surface, a drill guide portion having a drill bit member, an opening adjacent the router guide portion and the drill guide portion for accepting a workpiece, and a clamping portion. The clamping portion includes a clamping member for securing the workpiece to the router guide portion.
Abstract:
Methods and apparatus for counterbalanced manufacturing operations are disclosed. In one embodiment, an assembly includes a base, a tool support assembly, and a biasing device. The tool support assembly includes a first component coupled to the base and a second component moveable along a translation axis relative to the first component. The second component is configured to be coupled to a tool operable to perform the manufacturing operation on a workpiece. The biasing device includes a first portion coupled to the first component, a second portion coupled to the second component, and a control component. The first and second portions are moveably coupled and configured to apply a biasing force to the second component to at least partially counterbalance a force exerted on the second component along the translation axis by a weight of the tool support assembly and the tool during performance of the manufacturing operation.
Abstract:
A production system for manufacturing a workpiece comprises an index system including a plurality of index devices removably mounted on the workpiece at known longitudinally spaced locations therealong, and a longitudinally extending index member releasably engaged with at least two of the index devices such that a position and orientation of the index member are fixed relative to the workpiece by the index devices, the index member having position-indicating features distributed therealong. The production system further comprises a machine module mounted for longitudinal movement along the index member and operable to perform an operation, the machine module being operable to detect the position-indicating features on the index member and thereby determine a position of the machine module relative to the workpiece.
Abstract:
Embodiments of the present invention may include a cutting tool support that may provide supplemental support to a cutting tool when used with a cutting guide. In some embodiments, the cutting tool support may also include a dust collector that moves along the cutting tool support along with the cutting tool.