B26D2001/008

APPARATUS FOR DETECTING THE BREAKAGE OF A CUTTING ELEMENT

An apparatus for detecting the breakage of at least one cutting element disposed in a guide includes at least one sliding piece which is linearly displaceable relative to the guide and which can be connected to the cutting element for holding the cutting element. A force applying element is provided to produce a force on the sliding piece so that if the cutting element breaks, the sliding piece is displaced relative to the guide. A sensor detects such a displacement of the sliding piece relative to the guide. A system having the detection device is also provided.

Method of forming topping sheet and apparatus thereof

A topping sheet forming method includes: a division step of cylindrically winding a textile original fabric, obtained by weaving longitudinally aligned tire cords into a cord fabric by use of weft yarns, to form an original fabric roll and cutting off the weft yarns in predetermined widthwise positions by using a wire wound on the original fabric roll in a predetermined winding angle range to divide the textile original fabric into narrow textile original fabrics; and a topping step of topping at least one surface of each of the narrow textile original fabrics with unvulcanized rubber.

INGOT CUTTING APPARATUS, AND LOAD DETECTING DEVICE USED IN INGOT CUTTING APPARATUS

In an ingot cutting apparatus that cuts an ingot using a plurality of stretched wires, load sensors are provided on the new wire side and the old wire side of the ingot, and loads applied to the new wire side and the old wire side of the ingot are measured using the load sensors on the new wire side and the old wire side. When measuring the loads, for example, the center of moment about the X-axis that is the running direction of the wire is calculated. When the deviation from the center of gravity of the ingot is greater than or equal to a reference value, notification for replacement of the wire, control of the conveying speed of the wire, control of the pressing speed of the ingot, and so forth are performed through a control unit.

Solar panel disassembling apparatus

A solar panel disassembling apparatus according to an embodiment of the present disclosure separates a glass plate of a solar panel and a film layer bonded to the glass plate from each other. The solar panel disassembling apparatus includes a supply module that stands and fixes the solar panel such that a bond line between the glass plate and the film layer is exposed upward and downward and that moves the solar panel in a parallel direction parallel to a bonding surface between the glass plate and the film layer, and a wire-shaped cutting blade that is disposed in front of the solar panel in a movement direction of the solar panel to have a distance from the supply module, is disposed in parallel to the bonding surface, and separates the glass plate and the film layer from each other.

Line-type auto glass removal tools for use with an independent vacuum cup device
12214516 · 2025-02-04 · ·

A line-type auto glass cutout tool for use with a vacuum cup device having a vacuum cup and a base connected to the vacuum cup. The tool includes a tool body with a first winding spool mounted on the tool body for rotation about a first spool axis relative to the tool body. A first drive element is coupled to the first winding spool to rotate with the first winding spool about the first spool axis. The auto glass cutout tool also includes an attachment arrangement for releasably securing the tool body to the vacuum cup device in a tool operating position.

Fast-ejection safety systems for hotwire cutters

Fast-ejection safety systems for hotwire cutters are provided. The safety system comprises a microcontroller, a wire shield, a servo motor and a servo motor arm. The safety system further comprises one or more ultrasonic sensors, a power source, and a safety system casing.

Method for disassembling a photovoltaic module and associated installation

A photovoltaic module includes a first protective element, a second protective element, photovoltaic cells that are located between the first protective element and the second protective element, an envelope in which the photovoltaic cells are encapsulated. The envelope links the first protective element to the second protective element and includes a first portion that is located between the photovoltaic cells and the first protective element, and a second portion that is located between the photovoltaic cells and the second protective element. The disassembly method includes separating the photovoltaic cells with respect to the first protective element and cutting the first portion of the envelope by an abrasive wire.

SOLAR PANEL DISASSEMBLING APPARATUS

A solar panel disassembling apparatus according to an embodiment of the present disclosure separates a glass plate of a solar panel and a film layer bonded to the glass plate from each other. The solar panel disassembling apparatus includes a supply module that stands and fixes the solar panel such that a bond line between the glass plate and the film layer is exposed upward and downward and that moves the solar panel in a parallel direction parallel to a bonding surface between the glass plate and the film layer, and a wire-shaped cutting blade that is disposed in front of the solar panel in a movement direction of the solar panel to have a distance from the supply module, is disposed in parallel to the bonding surface, and separates the glass plate and the film layer from each other.

CUTTING APPARATUS USING MULTI-WIRE AND CONTROL METHOD THEREOF

A cutting apparatus includes a main roller, a main motor configured to rotate the main roller, a plurality of adjusting rollers spaced apart from the main roller, a plurality of sub-motors respectively connected to the plurality of adjusting rollers and configured to respectively rotate the plurality of adjusting rollers, a plurality of cutting wires wound around the main roller and the plurality of adjusting rollers, and a controller configured to control the main motor and the plurality of sub-motors such that a surface speed of the main roller is substantially the same as surface speeds of the plurality of adjusting rollers.

FOOD SLICER
20250289156 · 2025-09-18 ·

A food slicer is described. The food slicer includes a substantially open frame having opposing first and second sides, and a plurality of cutting elements mounted between the first and second sides. The plurality of cutting elements are arranged in parallel and have different lengths according to their position along a length of the open frame. The first and second sides are configured to encircle and pass around a food item on a surface when the open frame is placed over and pushed through the food item onto the surface. The plurality of cutting elements are configured to perform a Hasselback cut into the food item when the open frame is placed over and pushed through the food item onto the surface.