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公开(公告)号:US20240339022A1
公开(公告)日:2024-10-10
申请号:US18746045
申请日:2024-06-18
Applicant: Hypertherm, Inc.
Inventor: Cedar VANDERGON , William SCHULTZ
CPC classification number: G08B21/18 , B05B12/004 , B26F3/004 , G08B7/06
Abstract: An operational monitoring system for use with a liquid jet cutting system can include an accelerometer coupled to a cutting head of the liquid jet cutting system. The accelerometer can be configured to generate motion data associated with movement of the cutting head. The system can include a computing device operably connected to the accelerometer and having a memory and a processor. The memory can store a planned data set including expected parameters associated with movement of the cutting head along a planned cut path. In some embodiments, the computing device is configured to receive the motion data from the accelerometer and correlate the motion data to the planned data set.
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公开(公告)号:US20240181669A1
公开(公告)日:2024-06-06
申请号:US18523439
申请日:2023-11-29
Applicant: Shape Technologies Group, Inc.
Inventor: Per Edarp
Abstract: An energy efficient fluid pressurization system includes a hydraulic pressure chamber, a piston positioned within an interior cavity of the hydraulic pressure chamber, and a pump that conveys a hydraulic fluid into a portion of the interior cavity of the pressure chamber thereby moving the piston within the interior cavity. Movement of the piston results in compression of a working fluid within a pressure vessel. A motor coupled to the pump drives the pump resulting in conveyance of the hydraulic fluid. The system may detect a change in one or more parameters, caused by a fluctuation in demand for the pressurized working fluid, and vary a speed of the pump in response to the detected change. The one or more parameters include: flow rate of the hydraulic fluid; flow rate of the working fluid; angle of a swash plate of the pump; or any combination thereof.
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公开(公告)号:US11976011B2
公开(公告)日:2024-05-07
申请号:US17289689
申请日:2018-10-30
Applicant: HYPERION MATERIALS & TECHNOLOGIES INC.
Inventor: Stefan Sven-Olov Ederyd
IPC: C04B35/563 , B21C3/02 , B26F3/00 , C04B35/56
CPC classification number: C04B35/563 , B21C3/02 , B26F3/004 , C04B35/5626 , C04B2235/386
Abstract: Provided is a wear resistant, sintered body made of a binderless carbide, cermet or cemented carbide, e.g., WC, W2C and/or eta-phase, with a grain size less than 6.0 μm, and less than 6% binder phase (e.g., Co—Ni—Fe). At least some working surfaces of the sintered body are surface treated with a boron yielding method including applying a low viscosity liquid medium having boron or aluminum content and heating at 1200° C. to 1450° C. under a pressure less than atmospheric pressure or a hydrogen containing atmosphere to from a hardness gradient with an increased hardness of the treated working surfaces of at least 50 to 200 HV5 and favorable compressive stresses in a surface zone that gives a tougher working surfaces of the boronized sintered bodies.
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公开(公告)号:US20230407538A1
公开(公告)日:2023-12-21
申请号:US18036303
申请日:2021-11-08
Applicant: NORAFIN INDUSTRIES (GERMANY) GMBH
Inventor: Marc Jolly , André Lang
Abstract: The invention relates to an apparatus (1) for bonding a fiber structure (2) by means of a fluid (3), comprising a fluid jet head (9) having a nozzle (20) for discharging the fluid (3), a manipulator (4), and a fiber receptable (25) for arranging the fiber structure (2), wherein the fluid jet head (9) is arranged as an effector (8) on the manipulator (4), and wherein the manipulator (4) is provided in such a way that the fluid jet head (9) arranged thereon can be moved in at least two spatial directions (10.1, 10.2, 10.3) relative to the fiber receptable (25).
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公开(公告)号:US11783138B2
公开(公告)日:2023-10-10
申请号:US17382992
申请日:2021-07-22
Applicant: Hypertherm, Inc.
Inventor: Michael Hoffa , E. Michael Shipulski
IPC: G06K7/10 , B23K26/21 , B23K5/00 , B23K7/10 , B23K10/00 , B23K10/02 , B24C1/04 , B23K26/38 , B26F3/00 , H05H1/34 , G05B19/18 , B26D5/00 , B23K101/18 , B23K103/04
CPC classification number: G06K7/10019 , B23K5/00 , B23K7/10 , B23K10/006 , B23K10/02 , B23K26/21 , B23K26/38 , B24C1/045 , B26F3/004 , G05B19/182 , G06K7/10316 , H05H1/34 , B23K2101/18 , B23K2103/04 , B26D5/00 , G05B2219/45041 , G05B2219/49001 , H05H1/3473 , H05H1/3489 , H05H1/3494
Abstract: In some aspects, material processing head can include a body; an antenna disposed within the body; a first tag, associated with a first consumable component, disposed within a flux communication zone of the body at a first distance from the antenna, the first tag having a first resonant frequency; and a second tag, associated with a second consumable component, disposed within the flux communication zone of the body at a second distance from the antenna, the second tag having a second resonant frequency that is different than the first resonant frequency, where the first and second resonant frequencies are tuned based upon at least one of: i) a difference between the first distance and the second distance; or ii) a characteristic (e.g., shape) of the flux communication zone in which the first tag and/or the second tag is disposed.
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公开(公告)号:US20230295925A1
公开(公告)日:2023-09-21
申请号:US18202843
申请日:2023-05-26
Applicant: TECTONIC FACADES LTD
Inventor: Harvey Richard THORP
CPC classification number: E04C2/526 , B26F3/004 , E04B2/02 , E04C1/40 , E04C2/041 , E04C2/06 , E04F13/0862 , E04F13/142 , E04B2002/0234 , E04B2002/0239 , E04C2002/007
Abstract: A facing building member, a method of forming a facing building member and a method of forming a cladding panel. The facing building member is usable with other building members in forming a cladding panel. The building member has a front face and a rear side, the rear side being profiled by cutting with a water jet so as to provide at least one mechanical key on the facing building member.
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公开(公告)号:US20230264380A1
公开(公告)日:2023-08-24
申请号:US17652391
申请日:2022-02-24
Applicant: SAUDI ARABIAN OIL COMPANY
Inventor: Sanjiv Kumar , Muhammad Imran Javed
IPC: B26F3/00
CPC classification number: B26F3/004
Abstract: A system includes a rod, a nozzle, a camera, and a pressure control system. The rod has a conduit extending along a rod axis. The rod is disposed adjacent to the barrier within the orifice. The nozzle is connected to the rod and is in hydraulic communication with the conduit and the orifice. The camera is also connected to the rod. The nozzle and the camera are configured to protrude from the rod and rotate about the rod axis. The pressure control system is connected to the tubular body and is disposed around the rod. The nozzle is configured to cut away the portion of the barrier upon pumping of a cutting fluid through a conduit of the rod and out of the nozzle towards the barrier. The portion of the barrier is removable from the orifice of the tubular body once cut away.
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公开(公告)号:US11641863B2
公开(公告)日:2023-05-09
申请号:US16934523
申请日:2020-07-21
Inventor: George R. Blaine , Jon A. Hocker , Alexander Steffens
IPC: G01N23/00 , A23L3/26 , A22C17/00 , A22B5/00 , G01N23/04 , B26D5/00 , B26F3/00 , G01N21/27 , G01N33/02
CPC classification number: A23L3/263 , A22B5/007 , A22C17/008 , A22C17/0086 , B26D5/007 , B26F3/004 , G01N21/27 , G01N23/04 , G01N33/02 , B26D2210/02
Abstract: A method for processing food products (12) includes transporting the food products by a first conveyor (11), an X-ray unit (13) positioned between the intake end and the discharge end of the first conveyor to acquire a first set of product-specific data relating to the food product transported. At least one first optical camera (17), assigned to the first conveyor, is used to acquire a second set of product-specific data relating to the food product. A control unit (18) is used to receive and integrate the first and second data sets to analyze the composition of the food product and determine parameters for the food product. Based on the determined parameters of the food product, the food product is cut with a cutting unit, under the control of the control unit.
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公开(公告)号:US20190210240A1
公开(公告)日:2019-07-11
申请号:US16242496
申请日:2019-01-08
Inventor: Michael Willis
CPC classification number: B26F3/004 , B24C1/045 , B26F2003/006
Abstract: A vacuum diverter defined by a housing or hollow body having a first end, a second end, a plurality of sides, and an opening formed in one of the plurality of sides. A valve flap is disposed within the hollow body and moveable between a first position and a second position. The valve flap is supported by a shaft that extends across a cavity defined by the housing and which is rotationally supported by the housing such that the shaft and valve flap can be removed from the housing in a crossing direction relative to an axis of rotation of the shaft. Rotation of the shaft effectuates rotation of the valve flap relative to the cavity to selectively fluidly connect the discrete vacuum flow passages defined by the housing.
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公开(公告)号:US20190161280A1
公开(公告)日:2019-05-30
申请号:US15824938
申请日:2017-11-28
Applicant: John Bean Technologies Corporation
Inventor: Harrison T. Gill , Erick A. Sorenson
CPC classification number: B65G17/48 , B26D5/007 , B26D5/30 , B26D5/32 , B26F3/004 , B65G15/62 , B65G17/064 , B65G43/00 , B65G2201/0202 , B65G2203/0283 , B65G2203/041
Abstract: A conveyor belt support system for a conveyor having a belt movable along a frame includes a plurality of support slats each extending substantially along a longitudinal axis of the belt. The plurality of support slats is adjustable in position relative to the belt.A processing machine for scanning and portioning a workpiece includes a scanning station configured to scan a workpiece to ascertain at least one physical parameter of the workpiece, a portioning station configured to portion the scanned workpiece, a conveyor for moving the workpiece beneath the scanning station and the portioning station that includes a belt with an open form moveable along a frame, and the conveyor belt support system located beneath at least the scanning station.
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