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公开(公告)号:US09928755B2
公开(公告)日:2018-03-27
申请号:US14326567
申请日:2014-07-09
申请人: Lincoln Global, Inc.
发明人: Matthew Wayne Wallace , David Anthony Zboray , Antonius Aditjandra , Adam Lee Webb , Deanna Postlethwaite , Zachary Steven Lenker
CPC分类号: G09B19/24 , B23K9/09 , B23K9/095 , B23K9/0953 , B23K9/0956 , G09B5/00 , G09B25/02
摘要: A simulator facilitating virtual welding activity. The simulator may include a logic processor based subsystem operable to generate an interactive welding environment in virtual reality space that emulates welding activity by simulating a virtual weld puddle having dynamic, real time molten metal fluidity and heat dissipation characteristics, responsive to performing a simulated welding activity in real time. The simulator may include a foot pedal device in operative communication with the logic processor based subsystem and configured to affect a characteristic of the virtual weld puddle in real time, responsive to user control of the foot pedal device. The simulator may be configured to track the movements of a mock welding tool and a mock filler wire and determine interaction between the virtual weld puddle, a corresponding virtual welding tool, and a corresponding filler wire in virtual reality space that would result in the welding tool becoming contaminated.
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公开(公告)号:US08851896B2
公开(公告)日:2014-10-07
申请号:US13792294
申请日:2013-03-11
申请人: Lincoln Global, Inc.
发明人: Matthew Wayne Wallace , David Anthony Zboray , Antonius Aditjandra , Adam Lee Webb , Deanna Postlethwaite , Zachary Steven Lenker
IPC分类号: G09B5/00
CPC分类号: G09B19/24 , B23K9/09 , B23K9/095 , B23K9/0953 , B23K9/0956 , G09B5/00 , G09B25/02
摘要: A simulator facilitating virtual welding activity. The simulator may include a logic processor based subsystem operable to generate an interactive welding environment in virtual reality space that emulates welding activity by simulating a virtual weld puddle having dynamic, real time molten metal fluidity and heat dissipation characteristics, responsive to performing a simulated welding activity in real time. The simulator may include a foot pedal device in operative communication with the logic processor based subsystem and configured to affect a characteristic of the virtual weld puddle in real time, responsive to user control of the foot pedal device. The simulator may be configured to track the movements of a mock welding tool and a mock filler wire and determine interaction between the virtual weld puddle, a corresponding virtual welding tool, and a corresponding filler wire in virtual reality space that would result in the welding tool becoming contaminated.
摘要翻译: 一个促进虚拟焊接活动的模拟器。 模拟器可以包括基于逻辑处理器的子系统,其可操作以在虚拟现实空间中生成交互式焊接环境,其通过模拟具有动态的,实时的熔融金属流动性和散热特性的虚拟焊接熔池来模拟焊接活动,响应于执行模拟焊接活动 实时。 模拟器可以包括与基于逻辑处理器的子系统操作地通信的脚踏板装置,并且被配置成响应于脚踏板装置的用户控制实时地影响虚拟焊接熔池的特性。 模拟器可以被配置为跟踪模拟焊接工具和模拟填充焊丝的运动,并且确定虚拟焊接熔池,相应的虚拟焊接工具和虚拟现实空间中相应的填充焊丝之间的相互作用,这将导致焊接工具 变得污染
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公开(公告)号:US09858833B2
公开(公告)日:2018-01-02
申请号:US15017561
申请日:2016-02-05
申请人: Lincoln Global, Inc.
发明人: David Anthony Zboray , Matthew Alan Bennett , Matthew Wayne Wallace , Jeremiah Hennessey , Yvette Christine Dudac , Zachary Steven Lenker , Andrew Paul Lundell , Paul Dana , Eric A. Preisz
IPC分类号: G09B19/00 , G09B19/24 , G09B5/02 , A42B3/04 , A42B3/30 , G09B5/00 , B23K9/00 , G09B5/06 , B23K9/09 , H04L29/06 , B23K9/095 , B23K9/10
CPC分类号: G09B19/24 , A42B3/042 , A42B3/30 , A61F9/06 , B23K9/00 , B23K9/09 , B23K9/095 , B23K9/0953 , B23K9/0956 , B23K9/10 , G09B5/00 , G09B5/02 , G09B5/04 , G09B5/06 , G09B5/065 , H04L29/06034
摘要: A real-time virtual reality welding system including a programmable processor-based subsystem, a spatial tracker operatively connected to the programmable processor-based subsystem, at least one mock welding tool capable of being spatially tracked by the spatial tracker, and at least one display device operatively connected to the programmable processor-based subsystem. The system is capable of simulating, in virtual reality space, a weld puddle having real-time molten metal fluidity and heat dissipation characteristics. The system is further capable of importing data into the virtual reality welding system and analyzing the data to characterize a student welder's progress and to provide training.
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公开(公告)号:US09767712B2
公开(公告)日:2017-09-19
申请号:US13792314
申请日:2013-03-11
申请人: LINCOLN GLOBAL, INC.
摘要: A simulator facilitates virtual welding activity of orbital weld joints. The simulator may include a logic processor based system operable to execute coded instructions for generating an interactive welding environment that emulates welding activity on a section of virtual pipe having at least one virtual weld joint. It also includes a display connected to the logic processor based system for visually depicting the interactive welding environment, wherein the display depicts the section of virtual pipe. A pendant is provided for performing welding equipment setup and virtual welding activity on the at least one weld joint in real time where one or more sensors are adapted to track movement of the input device in real time for communicating data about the movement of the input device to the logic processor based system.
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公开(公告)号:US09761153B2
公开(公告)日:2017-09-12
申请号:US15017564
申请日:2016-02-05
申请人: Lincoln Global, Inc.
发明人: David Anthony Zboray , Matthew Alan Bennett , Matthew Wayne Wallace , Jeremiah Hennessey , Yvette Christine Dudac , Zachary Steven Lenker , Andrew Paul Lundell , Paul Dana , Eric A. Preisz
IPC分类号: G09B19/24 , G09B5/02 , A42B3/04 , A42B3/30 , G09B5/00 , B23K9/00 , G09B5/06 , B23K9/09 , H04L29/06 , B23K9/095 , B23K9/10
CPC分类号: G09B19/24 , A42B3/042 , A42B3/30 , A61F9/06 , B23K9/00 , B23K9/09 , B23K9/095 , B23K9/0953 , B23K9/0956 , B23K9/10 , G09B5/00 , G09B5/02 , G09B5/04 , G09B5/06 , G09B5/065 , H04L29/06034
摘要: A real-time virtual reality welding system including a programmable processor-based subsystem, a spatial tracker operatively connected to the programmable processor-based subsystem, at least one mock welding tool capable of being spatially tracked by the spatial tracker, and at least one display device operatively connected to the programmable processor-based subsystem. The system is capable of simulating, in virtual reality space, a weld puddle having real-time molten metal fluidity and heat dissipation characteristics. The system is further capable of importing data into the virtual reality welding system and analyzing the data to characterize a student welder's progress and to provide training.
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公开(公告)号:US11715388B2
公开(公告)日:2023-08-01
申请号:US17980678
申请日:2022-11-04
申请人: Lincoln Global, Inc.
发明人: David Anthony Zboray , Matthew Alan Bennett , Matthew Wayne Wallace , Jeremiah Hennessey , Yvette Christine Dudac , Zachary Steven Lenker , Andrew Paul Lundell , Paul Dana , Eric A. Preisz
IPC分类号: G09B19/24 , G09B5/02 , G09B5/00 , G09B5/06 , G09B5/04 , A42B3/04 , A42B3/30 , B23K9/00 , B23K9/095 , A61F9/06 , B23K9/09 , B23K9/10 , H04L67/131
CPC分类号: G09B19/24 , A42B3/042 , A42B3/30 , A61F9/06 , B23K9/00 , B23K9/095 , B23K9/0953 , G09B5/00 , G09B5/02 , G09B5/04 , G09B5/06 , G09B5/065 , B23K9/09 , B23K9/0956 , B23K9/10 , H04L67/131
摘要: A real-time virtual reality welding system including a programmable processor-based subsystem, a spatial tracker operatively connected to the programmable processor-based subsystem, at least one mock welding tool capable of being spatially tracked by the spatial tracker, and at least one display device operatively connected to the programmable processor-based subsystem. The system is capable of simulating, in virtual reality space, a weld puddle having real-time molten metal fluidity and heat dissipation characteristics. The system is further capable of importing data into the virtual reality welding system and analyzing the data to characterize a student welder's progress and to provide training.
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公开(公告)号:US10803770B2
公开(公告)日:2020-10-13
申请号:US15819465
申请日:2017-11-21
申请人: LINCOLN GLOBAL, INC.
发明人: David Anthony Zboray , Matthew Alan Bennett , Matthew Wayne Wallace , Jeremiah Hennessey , Yvette Christine Dudac , Zachary Steven Lenker , Andrew Paul Lundell , Paul Dana , Eric A. Preisz
IPC分类号: G09B19/24 , G09B5/02 , G09B5/00 , A42B3/04 , A42B3/30 , B23K9/00 , B23K9/095 , G09B5/06 , A61F9/06 , G09B5/04 , B23K9/09 , H04L29/06 , B23K9/10
摘要: A real-time virtual reality welding system including a programmable processor-based subsystem, a spatial tracker operatively connected to the programmable processor-based subsystem, at least one mock welding tool capable of being spatially tracked by the spatial tracker, and at least one display device operatively connected to the programmable processor-based subsystem. The system is capable of simulating, in virtual reality space, a weld puddle having real-time molten metal fluidity and heat dissipation characteristics. The system is further capable of importing data into the virtual reality welding system and analyzing the data to characterize a student welder's progress and to provide training.
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公开(公告)号:US09818311B2
公开(公告)日:2017-11-14
申请号:US14821018
申请日:2015-08-07
申请人: Lincoln Global, Inc.
发明人: David Anthony Zboray , Matthew Alan Bennett , Matthew Wayne Wallace , Jeremiah Hennessey , Yvette Christine Dudac , Zachary Steven Lenker , Andrew Paul Lundell , Paul Dana , Eric A. Preisz
IPC分类号: G09B19/24 , G09B5/02 , A42B3/04 , A42B3/30 , G09B5/00 , B23K9/00 , G09B5/06 , B23K9/09 , H04L29/06 , B23K9/095 , B23K9/10
CPC分类号: G09B19/24 , A42B3/042 , A42B3/30 , A61F9/06 , B23K9/00 , B23K9/09 , B23K9/095 , B23K9/0953 , B23K9/0956 , B23K9/10 , G09B5/00 , G09B5/02 , G09B5/04 , G09B5/06 , G09B5/065 , H04L29/06034
摘要: A real-time virtual reality welding system including a programmable processor-based subsystem, a spatial tracker operatively connected to the programmable processor-based subsystem, at least one mock welding tool capable of being spatially tracked by the spatial tracker, and at least one display device operatively connected to the programmable processor-based subsystem. The system is capable of simulating, in virtual reality space, a weld puddle having real-time molten metal fluidity and heat dissipation characteristics. The system is further capable of importing data into the virtual reality welding system and analyzing the data to characterize a student welder's progress and to provide training.
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公开(公告)号:US20140017642A1
公开(公告)日:2014-01-16
申请号:US13792314
申请日:2013-03-11
申请人: LINCOLN GLOBAL INC.
摘要: A simulator facilitates virtual welding activity of orbital weld joints. The simulator may include a logic processor based system operable to execute coded instructions for generating an interactive welding environment that emulates welding activity on a section of virtual pipe having at least one virtual weld joint. It also includes a display connected to the logic processor based system for visually depicting the interactive welding environment, wherein the display depicts the section of virtual pipe. A pendant is provided for performing welding equipment setup and virtual welding activity on the at least one weld joint in real time where one or more sensors are adapted to track movement of the input device in real time for communicating data about the movement of the input device to the logic processor based system.
摘要翻译: 模拟器有助于轨道焊缝的虚拟焊接活动。 模拟器可以包括基于逻辑处理器的系统,其可操作以执行编码指令,用于生成在具有至少一个虚拟焊接接头的虚拟管道的一部分上模拟焊接活动的交互式焊接环境。 它还包括连接到基于逻辑处理器的系统的显示器,用于可视地描绘交互式焊接环境,其中显示器描绘虚拟管道的部分。 提供了一种用于在实时地对至少一个焊接接头执行焊接设备设置和虚拟焊接活动的吊坠,其中一个或多个传感器适于实时跟踪输入设备的移动,以便传达关于输入设备的移动的数据 到基于逻辑处理器的系统。
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公开(公告)号:US20230306872A1
公开(公告)日:2023-09-28
申请号:US18328832
申请日:2023-06-05
申请人: Lincoln Global, Inc.
发明人: David Anthony Zboray , Matthew Alan Bennett , Matthew Wayne Wallace , Jeremiah Hennessey , Yvette Christine Dudac , Zachary Steven Lenker , Andrew Paul Lundell , Paul Dana , Eric A. Preisz
IPC分类号: G09B19/24 , G09B5/02 , A42B3/04 , A42B3/30 , G09B5/00 , B23K9/00 , B23K9/095 , G09B5/06 , A61F9/06 , G09B5/04
CPC分类号: G09B19/24 , G09B5/02 , A42B3/042 , A42B3/30 , G09B5/00 , B23K9/00 , B23K9/095 , G09B5/06 , G09B5/065 , A61F9/06 , B23K9/0953 , G09B5/04 , B23K9/09
摘要: A real-time virtual reality welding system including a programmable processor-based subsystem, a spatial tracker operatively connected to the programmable processor-based subsystem, at least one mock welding tool capable of being spatially tracked by the spatial tracker, and at least one display device operatively connected to the programmable processor-based subsystem. The system is capable of simulating, in virtual reality space, a weld puddle having real-time molten metal fluidity and heat dissipation characteristics. The system is further capable of importing data into the virtual reality welding system and analyzing the data to characterize a student welder's progress and to provide training.
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