Abstract:
A boring machine for boring a part of a fluid pipe in an uninterrupted flow state, includes: a shaft member having a leading end to which a cutter is attached; a drive mechanism configured to rotate the cutter and the shaft member around the shaft of the shaft member; and a forward and backward moving operation mechanism configured to move the cutter and the shaft member forward and backward in the axial direction of the shaft member by a handle that is manually rotated. The forward and backward moving operation mechanism is further configured to switch a feed amount of the cutter and the shaft member in the axial direction between at least two different feed amounts according to a rotational amount of the handle.
Abstract:
An apparatus for perforating a panel of material comprising a driver assembly; a perforation assembly comprising a cutting edge for cutting the panel of material; an impacting surface moveable with respect to the cutting edge; and, means for holding the panel of material in a material plane between the cutting edge and the impacting surface, wherein the driver assembly is arranged to drive the cutting edge through the material plane into the impacting surface to cut the panel of material.
Abstract:
A drilling apparatus includes a hydraulic motor 27 for rotating a drilling blade 30 that drills a pipe lining material 13, laser light sources 40, 41 for emitting laser beams toward the pipe lining material parallel to the rotary shaft of the drilling blade from positions near the drilling blade to form laser spots on the inner circumferential surface of the pipe lining material, an electric motor 28 for rotating the laser light sources coaxially with the rotary shaft of the drilling blade, and a camera 50 for photographing the trajectory of the laser spots rotating on the inner circumferential surface of the pipe lining material and a bright area that is formed on the inner circumferential surface of the pipe lining material by illumination light from the lateral pipe side. The positioning of the drilling blade is performed so that the trajectory image and the bright area image match.
Abstract:
Disclosed herein is an apparatus for processing a substrate that forms a hole in a substrate while reducing a burr in the hole so that a module device can be inserted into the hole to reduce the thickness of a display device, and the display device using the apparatus. The apparatus for processing the substrate comprises a body configured to operably be rotatable, and a cylindrical cutting tip at an end of the body. The bottom surface of the cutting tip is in an acute angle with respect to a contact surface of the substrate to allow formation of a groove at the substrate.
Abstract:
Prior to lining a main pipe, a marker configured as a receiving coil 33 is disposed at the center 12b of a lateral pipe opening or at a position separated a predetermined distance S from the center thereof. An in-pipe robot 20 is loaded coaxially or separated by the predetermined distance with a rotatable drilling blade 31 for drilling a hole in a main pipe lining material 13 that blocks the lateral pipe opening and a transmitting coil 40 that detects a marker position. After lining the main pipe, the drilling blade and the transmitting coil are moved in conjunction in the main pipe longitudinal direction and in the main pipe circumferential direction to drill a hole in the main pipe lining material at a position where the electromagnetic coupling of both the coils becomes maximum. The center of rotation of the drilling blade coincides with the center of the lateral pipe opening at the position where the electromagnetic coupling of both the coils becomes maximum, so that a hole can be drilled precisely in the main pipe lining material in alignment with the lateral pipe opening.
Abstract:
Disclosed herein is an apparatus for processing a substrate that forms a hole in a substrate while reducing a burr in the hole so that a module device can be inserted into the hole to reduce the thickness of a display device, and the display device using the apparatus. The apparatus for processing the substrate comprises a body configured to operably be rotatable, and a cylindrical cutting tip at an end of the body. The bottom surface of the cutting tip is in an acute angle with respect to a contact surface of the substrate to allow formation of a groove at the substrate.
Abstract:
A process to manufacture a vehicle interior trim with an airbag cover, the process including: obtaining an interior trim part; and creating a weakening line around at least a part of a defined area of said interior trim part, said defined area being the airbag cover, characterized in that the weakening line is created by milling along the weakening line a number of holes, the holes being milled by a milling machine having a milling tool and a stitching axis for moving the milling tool substantially perpendicularly to a zone of the trim part to be milled.
Abstract:
A spinning-head punch assembly has a crown-shaped cutting head that rotates at a high rate of speed, creating high quality holes in webs of plastic film or other materials. A rotary drive such as an electric motor is mounted on a reciprocating carriage above an apertured backing plate, and a pneumatic cylinder is actuated to thrust the cutting head toward the web. A spring biased clamp holds the web firmly around the die hole. In the first part of the punch cycle, the clamp closes down onto the web, and then the spinning cutting head contacts the web. The teeth on the web pierce the material so the punch cuts a clean hole, and does not pull or tear the material. Then on the second part of the punch cycle, the pneumatic cylinder lifts the cutting head away from the web material, and as the carriage reaches the top of its stroke the clamp releases the web so that it can advance to the next hole location.
Abstract:
An apparatus for punching and binding a stack of papers is disclosed. The apparatus includes a paper clamp and a binding element insertion device that are movable relative to each other. The binding element insertion device is configured to receive and detect binding elements of different sizes. The apparatus also includes a punching mechanism, a controller, and a user interface. The controller controls movement of the paper clamp and the binding element insertion device based on the size of the binding element needed to bind the stack of papers together. The user interface is configured to provide information to a user of the apparatus and to receive input from the user before, during, and after the punching and binding operation.
Abstract:
A hand tool combination is useful for punching various sized holes in the sidewall of irrigation tubing to discharge water onto crop-growing soil. The tool combination comprises an elongated handle member including a hand grasping section at one end thereof and carrying a cutter element assembly at the other end thereof. The cutter element assembly includes at least one hole-forming cutting element removably mounted to a cutting element carrier module. A plurality of cutting elements each includes a cutting edge effective to penetrate the sidewall of the irrigation tubing when thrust against the tubing by an individual gripping the hand grasping section and swinging the cutter element assembly toward the sidewall.