Patent classifications
B23D53/00
MACHINING APPARATUS AND MACHINING METHOD
According to one implementation, a machining apparatus includes an electromotive saw and an attaching structure. The electromotive saw cuts off a workpiece to be machined. The attaching structure attaches the saw to an arm of a robot. Further, according to one implementation, a machining method is provided. In the machining method, a machined product is manufactured by processing a composite material or a honeycomb structure with a cutting tool attached to an arm of a robot. Further, according to one implementation, a machining method is provided. In the machining method, a machined product is manufactured by processing a workpiece to be machined with a cutting tool attached to an arm of a robot. The workpiece is processed along a shape of a jig for setting the workpiece. The workpiece is processed with contacting a guide with the jig. The guide is attached to the arm.
MACHINING APPARATUS AND MACHINING METHOD
According to one implementation, a machining apparatus includes an electromotive saw and an attaching structure. The electromotive saw cuts off a workpiece to be machined. The attaching structure attaches the saw to an arm of a robot. Further, according to one implementation, a machining method is provided. In the machining method, a machined product is manufactured by processing a composite material or a honeycomb structure with a cutting tool attached to an arm of a robot. Further, according to one implementation, a machining method is provided. In the machining method, a machined product is manufactured by processing a workpiece to be machined with a cutting tool attached to an arm of a robot. The workpiece is processed along a shape of a jig for setting the workpiece. The workpiece is processed with contacting a guide with the jig. The guide is attached to the arm.
Sample cutter
A sample cutting assembly includes a base block, a saw pressure plate, an external blade guide, and an internal blade guide. The cutter can be used to conveniently remove samples for Material testing to determine serviceability or material condition. Apparatuses and techniques for using the sample cutting assembly are also disclosed.
BAND SAW FOR SAWING A RAIL OF A TRACK
A band saw for sawing a rail of a track is configured for fastening to a vice which can be clamped onto the rail and is provided with a feed device. The band saw includes a frame in which four saw band rollers are mounted. A saw band is stretched around the four saw band rollers and, in a recess of the frame, the saw band is twisted into a sawing plane by guiding elements. Due to the utilization of four saw band rollers, there is little wear of the saw band, resulting in a longer service life.
MACHINE TOOL, IN PARTICULAR SAWING MACHINE, AND SYSTEM FOR AN OPTIMIZED OPERATION OF A MACHINE TOOL
A machine tool, in particular a sawing machine, with a tool for metal cutting, in particular a saw band or saw blade, a drive device for driving and/or moving the tool, a controller for the drive device in order to control and/or regulate the drive device with a process dataset, as well as a communication device for data exchange between the controller and an external data memory and/or an external computer. The controller includes a detector for identifying the tool. A system for optimized operation of such a machine tool which additionally includes an external data memory and/or external computer is also provided.
Rapidly detachable horizontal work table for a combination horizontal-vertical band saw
A rapidly detachable table for a host combination vertical-horizontal band saw that provides an enlarged work platform in the vertical cutting mode. The table employs a rapidly activated latching mechanism so that the table is quickly installed to operate in the enhanced vertical cutting mode and quickly removed to allow normal horizontal cutting operation. The portfolio of cuts that the saw can make is increased, as is the accuracy of the cuts in the vertical cutting mode.
A CNC MACHINING APPARATUS AND USES THEREOF
A CNC machining apparatus (14) is configured for machining a rotating part (3;4) of an object (2) by comprising a hinge member (15) adapted to be secured to the object (2) and a CNC X-Y table (16,17,18) securable to the hinge member (15). The CNC X-Y table (16,17,18) comprises a CNC base (16), which is adapted for being rotationally secured to the hinge member (15), a lower linear slide mechanism (17) adapted to be secured in a selected lower working position on top of the CNC base (16), and an upper linear slide mechanism (18) adapted to be secured in a selected upper working position on top of the lower linear slide mechanism (17). The CNC machining apparatus can be used to crown pulley wheels of a band saw while the pulley wheels remain mounted on the band saw. The CNC machining apparatus can also be used on a bench as part of a turning lathe (128).
Dual position blade guide for vertical or horizontal position of band saw
A blade guide for a band saw tool includes an adjustment channel mounted to a blade housing. The adjustment channel has a bracket plate with two recesses at an angle to one another. A roller bracket has a ridge that fits into one or the other recess, the roller bracket including rollers to guide the band saw blade. A single screw holds the roller bracket to the bracket plate. The roller bracket may be moved to the other recess to impart a twist to the blade. The blade is used without a twist when the band saw tool is configured for vertical cutting and is used with a twist when the band saw tool is configured for horizontal cutting.
Work table for band saw for use in vertical or horizontal saw position and method
A band saw that is convertible between a vertical cutting position and a horizontal cutting position includes a work table extension that extends from a work table when the band saw is used in the horizontal cutting position. The work table extension is removable from the work table and is attachable to a blade guide when the band saw is used in the vertical cutting position.
FLOOR UNDERLAYMENT SLICING MACHINE
A method and equipment for manufacturing floor underlayment is provided. The equipment is configured to produce floor underlayment having a consistent density and thickness. The equipment has a series of rollers configured to pull a formed batt into a moving transverse blade and to cut the underlayment into two portions having random fiber distribution and even thicknesses and densities.