Patents Assigned to Komatsu Industries Corporation
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Publication number: 20110036140Abstract: A die cushion device includes a cushion pad, a support section, a servomotor, and a shock absorber device. The support section supports the cushion pad. The servomotor raises and lowers the support section for raising and lowering the cushion pad. The shock absorber device includes a damping section and relieves shock between the cushion pad and the support section. The damping section generates reaction force in accordance with the relative speed of the cushion pad with respect to the support section.Type: ApplicationFiled: May 7, 2009Publication date: February 17, 2011Applicants: KOMATSU LTD., KOMATSU INDUSTRIES CORPORATIONInventors: Takuji Miyasaka, Hirohide Sato, Shigeo Morimoto, Hiroyuki Ito, Takeo Arikabe, Shyoji Watanabe, Shigenori Nagashima
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Publication number: 20100155373Abstract: A plasma torch includes a torch main unit and a nozzle. The torch main unit has a nozzle seat member on which the nozzle is mounted. The nozzle is arranged to move toward or away from the nozzle seat member in a direction substantially parallel to a center axis of the nozzle when the nozzle is mounted on or removed from the nozzle seat member. The nozzle has an electroconductive surface facing the nozzle seat member. The torch main unit has an elastic electric contact portion contacting with the electroconductive surface of the nozzle to form an electroconductive path for a pilot arc to the nozzle. The electroconductive surface of the nozzle presses the electric contact portion in the direction substantially parallel to the center axis when the nozzle is moved toward the nozzle seat member to mount the nozzle on the nozzle seat member.Type: ApplicationFiled: June 27, 2008Publication date: June 24, 2010Applicant: KOMATSU INDUSTRIES CORPORATIONInventors: Yoshihiro Yamaguchi, Kazuhiro Kuraoka
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Patent number: 7674998Abstract: To enable the amount of air capable of bringing smoke to the vicinity of a discharge opening of a gas discharge chamber to be sent into the gas discharge chamber. A cutting machine has gas discharge chambers arranged side by side by partitioning the inside of a table, blower openings each provided on one end side of a gas discharge chamber, gas discharge openings each provided on the other side of the gas discharge chamber, and fans for sending air, while moving to the outside of the table, to at least one gas discharge chamber from the blower opening of the gas discharge chamber and arranged in the direction of the movement. The fans are arranged at intervals such that two or more fans face the blower opening of one gas discharge chamber, and the two or more fans can simultaneously send air to the one gas discharge chamber.Type: GrantFiled: May 26, 2005Date of Patent: March 9, 2010Assignee: Komatsu Industries CorporationInventors: Satoshi Ohnishi, Yoshihiro Yamaguchi
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Patent number: 7631528Abstract: A control apparatus for controlling a die cushion mechanism including a servo-motor as a drive source and producing a force adapted to be applied outside. The control apparatus includes a force commanding section for commanding a force to be produced by the die cushion mechanism; a force detecting section for detecting a force produced by the die cushion mechanism; a force controlling section for executing a force control on the servo-motor, based on a force command value commanded by the force commanding section and a force detected value detected by the force detecting section; and an abnormality preventing section for preventing, in association with a control state of the servo-motor, the die cushion mechanism from producing an abnormal force.Type: GrantFiled: November 3, 2005Date of Patent: December 15, 2009Assignees: Fanuc Ltd, Komatsu Ltd, Komatsu Industries CorporationInventors: Yasusuke Iwashita, Tadashi Okita, Hiroyuki Kawamura, Satoshi Ikai
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Publication number: 20090183612Abstract: A cutting machine secures safety of a worker during movement of a head without lowering production efficiency. When moving a cutting head without cutting material to be cut upon a table, a moving truck and the cutting head are moved at a higher speed as compared with when cutting the material to be cut. If, when the moving truck and the cutting head are moving at high speed, a worker who is present upon the table intercepts either of light beams which are located in front of and behind a horizontal beam, then this movement speed is decelerated to a safe low speed, but the task of cutting the material is not interrupted. Subsequently, when the worker approaches the horizontal beam closer, and contacts a wire or a bar in the vicinity of the horizontal beam, movement of the moving truck and the cutting head is forcibly stopped.Type: ApplicationFiled: February 14, 2007Publication date: July 23, 2009Applicant: Komatsu Industries CorporationInventors: Yoshihiro Yamaguchi, Takahiro Iriyama, Satoshi Ohnishi
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Publication number: 20080314875Abstract: A thermal cutter for cutting with heat a board mounted upon a table having an internal space includes a plurality of walls and a sound absorbent material. The walls are disposed in the internal space of the table to partition a plurality of exhaust chambers with each of the exhaust chambers having an aperture that opens towards a side on which the board is mounted. The sound absorbent material is provided to at least a portion of at least one of the walls, the sound absorbent material being removably coupled to the table.Type: ApplicationFiled: June 20, 2008Publication date: December 25, 2008Applicant: KOMATSU INDUSTRIES CORPORATIONInventors: Yoshihiro YAMAGUCHI, Satoshi OHNISHI
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Publication number: 20080302767Abstract: A plasma cutting machine cuts stainless steel with good quality. An inactive gas (nitrogen) is supplied as a plasma gas, and a combustible gas (propane) having a specific gravity higher than that of air and having a reducing ability or a mixed gas of the combustible gas (propane) and an inactive gas (nitrogen) is supplied as an assist gas to a plasma torch. The combustible gas (propane) contained in the assist gas is not supplied in the pre-flow interval and after-flow interval, and is supplied only in the plasma arc generation interval.Type: ApplicationFiled: June 2, 2005Publication date: December 11, 2008Applicant: KOMATSU INDUSTRIES CORPORATIONInventors: Yoshihiro Yamaguchi, Kazuhiro Kuraoka
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Patent number: 7434505Abstract: High production processing and high accuracy processing are selectively performed with a single press. To this end, there are provided a system and method for controlling a servo press 1 in which an eccentric rotation mechanism 20 is driven by a servo motor 21 and the rotating power of the eccentric rotation mechanism 20 is transmitted to a slide 3 through a toggle linkage 15, thereby vertically moving the slide 3. In the control system and method, the rotation of the servo motor 21 is controlled in response to a motor speed command rm calculated based on the deviation ? p of the position of the slide 3 and a positional gain G(?) preset according to a speed ratio of the slide 3.Type: GrantFiled: September 2, 2005Date of Patent: October 14, 2008Assignees: Komatsu Ltd., Komatsu Industries CorporationInventors: Yuichi Suzuki, Yukio Hata
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Publication number: 20080093346Abstract: In order to increase the flow rate of coolant liquid supplied to the nozzle (88) of a plasma torch (10) and to extend the life of the plasma torch (10), within the plasma torch (10), an electrode coolant liquid passage (60, 84, 85, 86, and 64 which supplies coolant liquid to an electrode (80), and a nozzle coolant liquid passage (56, 70, 92, 72 and 68) which supplies coolant liquid to the nozzle (88), are provided separately as independent coolant liquid passages which extend in parallel, and which are mutually electrically insulated from one another. Moreover, the flow rate of coolant liquid in the nozzle coolant liquid passage is greater than the flow rate of coolant liquid in the electrode coolant liquid passage.Type: ApplicationFiled: October 11, 2007Publication date: April 24, 2008Applicants: KOMATSU LTD., KOMATSU INDUSTRIES CORPORATIONInventors: Yoshihiro Yamaguchi, Shigeo Morimoto, Mikio Minonishi
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Publication number: 20080093347Abstract: In a main circuit 11 of the plasma cutter power supply device 6, a plurality of DC power units 14-1, . . . 14-n of low capacity are connected in parallel on their DC output sides, and are connected to a plasma torch 20. Each power unit 14-1, . . . 14-n can operate asynchronously and independently from each other. The power supply control device 6 controls the number of power units to be operated, and the intensity of output electrical current at which each of them is to be operated, according to the cutting conditions (the nature of the material to be cut, its thickness, and the cutting speed) and according to the number of power units which can be operated. If some of the power units are faulty, the power supply control device 6 controls the cutting conditions which can be accepted, according to the number of normal power units.Type: ApplicationFiled: October 18, 2007Publication date: April 24, 2008Applicant: KOMATSU INDUSTRIES CORPORATIONInventors: Yoshihiro Yamaguchi, Takahiro Iriyama
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Publication number: 20080034985Abstract: High production processing and high accuracy processing are selectively performed with a single press. To this end, there are provided a system and method for controlling a servo press 1 in which an eccentric rotation mechanism 20 is driven by a servo motor 21 and the rotating power of the eccentric rotation mechanism 20 is transmitted to a slide 3 through a toggle linkage 15, thereby vertically moving the slide 3. In the control system and method, the rotation of the servo motor 21 is controlled in response to a motor speed command rm calculated based on the deviation ? p of the position of the slide 3 and a positional gain G(?) preset according to a speed ratio of the slide 3.Type: ApplicationFiled: September 2, 2005Publication date: February 14, 2008Applicants: KOMATSU LTD., KOMATSU INDUSTRIES CORPORATION JAPANInventors: Yuichi Suzuki, Yukio Hata
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Publication number: 20080029489Abstract: A lattice pallet 13 having a large number of supporters for placing a plate 14 is installed to a table 12 so as to be freely fittable and removable. Bringing in of the plate 14 is performed by the method of raising the lattice pallet 13 with a crane with the plate 14 already having been loaded upon the lattice pallet 13 in a different location, transporting them over the table 12, and lowering them down onto the table 12. Directly after cutting has been completed, the lattice pallet 12 is raised and separated from the table 12 with the manufactured product and the left over material carried upon it and is taken away to a different location, and another lattice pallet 13 with another plate 14 mounted upon it is brought in with the crane upon the table 12, and the task of cutting this other plate 14 is commenced.Type: ApplicationFiled: June 5, 2005Publication date: February 7, 2008Applicant: Komatsu Industries CorporationInventors: Satoshi Ohnishi, Yoshihiro Yamaguchi
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Publication number: 20080028907Abstract: To enable the amount of air capable of bringing smoke to the vicinity of a discharge opening of a gas discharge chamber to be sent into the gas discharge chamber. A cutting machine has gas discharge chambers arranged side by side by partitioning the inside of a table, blower openings each provided on one end side of a gas discharge chamber, gas discharge openings each provided on the other side of the gas discharge chamber, and fans for sending air, while moving to the outside of the table, to at least one gas discharge chamber from the blower opening of the gas discharge chamber and arranged in the direction of the movement. The fans are arranged at intervals such that two or more fans face the blower opening of one gas discharge chamber, and the two or more fans can simultaneously send air to the one gas discharge chamber.Type: ApplicationFiled: May 26, 2005Publication date: February 7, 2008Applicant: Komatsu Industries CorporationInventors: Satoshi Ohnishi, Yoshihiro Yamaguchi
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Publication number: 20070241083Abstract: A hybrid thermal cutting apparatus has both a laser head and a plasma torch, both of which can be controlled independently, can perform both laser processing and plasma processing, thus reducing the running costs. A large number of cutting lines for cutting out various types of manufactured products from plate materials are classified into a laser cutting type and a plasma cutting type, according to the cutting length, whether they are the external periphery of manufactured products or apertures, the size of the manufactured products or the apertures, the required process accuracy, the plate thickness, or the like. The lines of the laser cutting type are cut by laser processing, while the lines of the plasma cutting type are cut by plasma processing.Type: ApplicationFiled: June 20, 2005Publication date: October 18, 2007Applicant: KOMATSU INDUSTRIES CORPORATIONInventors: Yoshihiro Yamaguchi, Tetsuya Kabata, Ikuo Kamada
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Patent number: 7087855Abstract: Cutting quality of the product, in particular, hole cutting quality, in plasma arc cutting is improved. A control unit, which controls a plasma cutting apparatus for cutting a product from a plate material by moving a plasma torch at a cutting speed along a cutting path corresponding to the product shape to cut the plate material, while supplying an arc current and a plasma gas to the plasma torch and forming a plasma arc from a nozzle of the plasma torch to the plate material, conducts control so that, when a hole is cut, a cutting speed is lower, a value of the arc current value is smaller, and a plasma gas flow rate or pressure is less than those when a contour is cut.Type: GrantFiled: May 7, 2004Date of Patent: August 8, 2006Assignee: Komatsu Industries CorporationInventors: Yoshihiro Yamaguchi, Tetsuya Kabata
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Patent number: D580960Type: GrantFiled: May 27, 2008Date of Patent: November 18, 2008Assignee: Komatsu Industries CorporationInventors: Yoshihiro Yamaguchi, Kazuhiro Kuraoka
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Patent number: D582449Type: GrantFiled: January 10, 2008Date of Patent: December 9, 2008Assignee: Komatsu Industries CorporationInventors: Yoshihiro Yamaguchi, Kazuhiro Kuraoka
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Patent number: D582950Type: GrantFiled: January 10, 2008Date of Patent: December 16, 2008Assignee: Komatsu Industries CorporationInventors: Yoshihiro Yamaguchi, Kazuhiro Kuraoka
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Patent number: D582951Type: GrantFiled: January 10, 2008Date of Patent: December 16, 2008Assignee: Komatsu Industries CorporationInventors: Yoshihiro Yamaguchi, Kazuhiro Kuraoka
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Patent number: D582952Type: GrantFiled: May 27, 2008Date of Patent: December 16, 2008Assignee: Komatsu Industries CorporationInventors: Yoshihiro Yamaguchi, Kazuhiro Kuraoka