RU2011110478A - Сварочный имитатор - Google Patents
Сварочный имитатор Download PDFInfo
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- RU2011110478A RU2011110478A RU2011110478/08A RU2011110478A RU2011110478A RU 2011110478 A RU2011110478 A RU 2011110478A RU 2011110478/08 A RU2011110478/08 A RU 2011110478/08A RU 2011110478 A RU2011110478 A RU 2011110478A RU 2011110478 A RU2011110478 A RU 2011110478A
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- G—PHYSICS
- G09—EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
- G09B—EDUCATIONAL OR DEMONSTRATION APPLIANCES; APPLIANCES FOR TEACHING, OR COMMUNICATING WITH, THE BLIND, DEAF OR MUTE; MODELS; PLANETARIA; GLOBES; MAPS; DIAGRAMS
- G09B19/00—Teaching not covered by other main groups of this subclass
- G09B19/24—Use of tools
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- G—PHYSICS
- G09—EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
- G09B—EDUCATIONAL OR DEMONSTRATION APPLIANCES; APPLIANCES FOR TEACHING, OR COMMUNICATING WITH, THE BLIND, DEAF OR MUTE; MODELS; PLANETARIA; GLOBES; MAPS; DIAGRAMS
- G09B5/00—Electrically-operated educational appliances
- G09B5/02—Electrically-operated educational appliances with visual presentation of the material to be studied, e.g. using film strip
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- G—PHYSICS
- G09—EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
- G09B—EDUCATIONAL OR DEMONSTRATION APPLIANCES; APPLIANCES FOR TEACHING, OR COMMUNICATING WITH, THE BLIND, DEAF OR MUTE; MODELS; PLANETARIA; GLOBES; MAPS; DIAGRAMS
- G09B9/00—Simulators for teaching or training purposes
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- Management, Administration, Business Operations System, And Electronic Commerce (AREA)
- Arc Welding Control (AREA)
- Automatic Assembly (AREA)
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Abstract
1. Способ имитации сварки посредством игровой программы, осущеетвляемой в вычислительном устройстве (24) на базе процессора, которое выполняет кодированные команды, включающий стадии, на которых: ! используют средство обработки, способное выполнять кодированные команды формирования интерактивной виртуальной среды (9), при этом в упомянутое средство обработки поступают входные данные от соответствующего устройства (13) ввода, ! создают в виртуальной среде (9) виртуальное изделие (16), имеющее рабочее состояние, которое может меняться между работоспособным и неработоспособным, ! определяют задачу игровой программы, которой является изменение рабочего состояния виртуального изделия (16) путем операции виртуальной сварки, и ! предлагают конечному пользователю (11) выполнить операцию виртуальной сварки для изменения рабочего состояния виртуального изделия (16). ! 2. Способ по п.1, дополнительно включающий стадию, на которой используют виртуальное изделие (16), имеющее неработоспособное рабочее состояние, при этом виртуальное изделие (16) способно функционировать в виртуальной среде, когда его рабочее состояние изменяется на работоспособное. ! 3. Способ по п.1 или 2, дополнительно включающий стадию, на которой: используют средство отображения для отображения виртуальной среды (9) и при этом, когда рабочее состояние виртуального изделия (16) изменяется на работоспособное, упомянутое средство отображения демонстрирует виртуальное изделие (16), выполняющее действия, связанные с его функциями. ! 4. Способ по п.1, дополнительно включающий стадии, на которых: сохраняют данные, описывающие стандарты качества виртуальной сварки, регис
Claims (19)
1. Способ имитации сварки посредством игровой программы, осущеетвляемой в вычислительном устройстве (24) на базе процессора, которое выполняет кодированные команды, включающий стадии, на которых:
используют средство обработки, способное выполнять кодированные команды формирования интерактивной виртуальной среды (9), при этом в упомянутое средство обработки поступают входные данные от соответствующего устройства (13) ввода,
создают в виртуальной среде (9) виртуальное изделие (16), имеющее рабочее состояние, которое может меняться между работоспособным и неработоспособным,
определяют задачу игровой программы, которой является изменение рабочего состояния виртуального изделия (16) путем операции виртуальной сварки, и
предлагают конечному пользователю (11) выполнить операцию виртуальной сварки для изменения рабочего состояния виртуального изделия (16).
2. Способ по п.1, дополнительно включающий стадию, на которой используют виртуальное изделие (16), имеющее неработоспособное рабочее состояние, при этом виртуальное изделие (16) способно функционировать в виртуальной среде, когда его рабочее состояние изменяется на работоспособное.
3. Способ по п.1 или 2, дополнительно включающий стадию, на которой: используют средство отображения для отображения виртуальной среды (9) и при этом, когда рабочее состояние виртуального изделия (16) изменяется на работоспособное, упомянутое средство отображения демонстрирует виртуальное изделие (16), выполняющее действия, связанные с его функциями.
4. Способ по п.1, дополнительно включающий стадии, на которых: сохраняют данные, описывающие стандарты качества виртуальной сварки, регистрируют данные о качестве действий при операции виртуальной сварки, определяют, выполнена ли задача игровой программы, путем сравнения данных о качестве действий при операции виртуальной сварки с данными, описывающими стандарты качества виртуальной сварки.
5. Способ по п.1, дополнительно включающий стадию, на которой определяют количественный показатель выполнения игровой программы на основании данных о качестве действий при операции виртуальной сварки.
6. Способ по п.4 или 5, в котором на стадии сохранения данных, описывающих стандарты качества виртуальной сварки, сохраняют диапазоны данных, описывающих стандарты качества виртуальной сварки, которые получены на основании угла наклона виртуальной сварочной горелки в продольном направлении или угла наклона виртуальной сварочной горелки в поперечном направлении.
7. Способ по п.1, дополнительно включающий стадии, на которых:
используют средство отображения для отображения интерактивной виртуальной среды (9), при этом виртуальную среду создают на основании одного из множества сценариев,
предоставляют возможность выбора одного из множества сценариев, на основании которого будет создана виртуальная среда (9), и
предлагают конечному пользователю (11) выбрать один из множества сценариев.
8. Способ по п.1, который имеет множество игровых уровней, различающихся числом операций виртуальной сварки, необходимых для изменения рабочего состояния виртуального изделия (16).
9. Способ по п.1, который имеет множество игровых уровней, различающихся сложностью операций виртуальной сварки.
10. Комплект, для использования с соответствующим вычислительным устройством (24) на базе процессора, которое выполняет кодированные команды отображения интерактивной виртуальной сварочной среды (9) и имеет соответствующее устройство (13) ввода для взаимодействия с конечным пользователем (11), в частности, по любому из пп.1-9, содержащий легко отсоединяемую приставку для жесткого соединения с соответствующим устройством (13) ввода, при этом легко отсоединяемая приставка походит на сварочный инструмент, отображаемый в интерактивной виртуальной сварочной среде (9).
11. Комплект по п.10, в котором легко отсоединяемая приставка походит на горелку (34) для дуговой сварки и/или имеет форму и вес, соответствующие реальной сварочной горелке (34).
12. Комплект по п.10 или 11, дополнительно содержащий образец для испытания сварочного шва, который соответствует виртуальному изделию, отображаемому в интерактивной виртуальной сварочной среде (9), для обучения конечного пользователя (11) при взаимодействии с виртуальной сварочной средой (9).
13. Устройство ввода, в частности, для использования с комплектом по одному из пп.10-12 для соответствующего вычислительного устройства (24) на базе процессора, которое выполняет соответствующий компьютерный программный продукт для формирования виртуальной сварочной среды (9), в частности по одному из пп.1-9, имеющее:
корпус, который своей формой походит на реальную сварочную горелку (34),
один или несколько датчиков (37) имеющих выход, при этом один или несколько датчиков (37) встроены в корпус устройства ввода и способны определять пространственную ориентацию корпуса устройства ввода, и
средство связи выхода датчика с соответствующим вычислительным устройством (24) на базе процессора.
14. Устройство ввода по п.13, в котором упомянутое средство связи представляет собой схему беспроводной связи выхода датчика с соответствующим вычислительным устройством (24) на базе процессора.
15. Устройство ввода по п.13 или 14, в котором упомянутое средство связи представляет собой схему беспроводной связи выхода датчика с соответствующим вычислительным устройством (24) на базе процессора посредством постоянно смонтированного кабеля, который может быть легко подключен к порту ввода соответствующего вычислительного устройства (24) на базе процессора.
16. Способ обучения сварочному делу, согласно которому:
используют вычислительное устройство (24) на базе процессора, способное выполнять кодированные команды, формирователь изображений, способный отображать виртуальную сварочную среду (9) в ответ на выполнение кодированных команд, и устройство ввода оперативно связанное с вычислительным устройством (24) на базе процессора, при этом устройство ввода распознает перемещения в реальных условиях,
отображают в виртуальной сварочной среде (9) один или несколько виртуальных объектов, имеющих эксплуатационный дефект, распознаваемый с помощью одного или нескольких виртуальных ключей,
предлагают конечному пользователю (11) проанализировать один или несколько виртуальных ключей, чтобы вывести решение для устранения эксплуатационного дефекта, и
осуществляют виртуальную сварку в виртуальной сварочной среде, чтобы устранить эксплуатационный дефект.
17. Способ по п.16, дополнительно включающий стадию, на которой отображают в формирователе изображений множество параметров виртуальной сварки, путем изменения которых задают метод виртуальной сварки, при этом множество параметров виртуальной сварки могут быть изменены путем манипуляции устройством ввода, а на стадии выведения решения для устранения эксплуатационного дефекта изменяют по меньшей мере один из множества параметров виртуальной сварки.
18. Способ по п.16 или 17, в котором на стадии осуществления виртуальной сварки в виртуальной сварочной среде (9) получают виртуальное сварное соединение, и который дополнительно включает стадии, на которых:
сохраняют данные, описывающие пороговое качество виртуальной сварки для получения виртуального сварного соединения, и
оценивают виртуальную сварку с учетом порогового качества виртуальной сварки.
19. Способ по п.16, в котором на стадии отображения в виртуальной сварочной среде одного или нескольких виртуальных объектов, имеющих эксплуатационный дефект, различимый с помощью одного или нескольких виртуальных ключей, отображают один или несколько виртуальных объектов, имеющих первый эксплуатационный дефект, различимый с помощью одного или нескольких виртуальных ключей, согласно первому сценарию виртуальной сварочной среды (9), и
дополнительно включающий стадию, на которой отображают один или несколько виртуальных объектов, имеющих второй эксплуатационный дефект, различимый с помощью одного или нескольких виртуальных ключей, согласно второму сценарию виртуальной сварочной среды (9).
Applications Claiming Priority (4)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
US9079408P | 2008-08-21 | 2008-08-21 | |
US61/090,794 | 2008-08-21 | ||
US12/504,870 | 2009-07-17 | ||
US12/504,870 US9483959B2 (en) | 2008-08-21 | 2009-07-17 | Welding simulator |
Publications (1)
Publication Number | Publication Date |
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RU2011110478A true RU2011110478A (ru) | 2012-09-27 |
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ID=41696882
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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RU2011110478/08A RU2011110478A (ru) | 2008-08-21 | 2009-08-20 | Сварочный имитатор |
Country Status (9)
Country | Link |
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US (3) | US9483959B2 (ru) |
EP (1) | EP2329479A2 (ru) |
CN (1) | CN102171744B (ru) |
BR (1) | BRPI0917273B1 (ru) |
CA (1) | CA2730545A1 (ru) |
DE (1) | DE202009018950U1 (ru) |
MX (1) | MX2011001223A (ru) |
RU (1) | RU2011110478A (ru) |
WO (1) | WO2010020869A2 (ru) |
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- 2009-08-20 EP EP09786164A patent/EP2329479A2/en not_active Withdrawn
- 2009-08-20 DE DE202009018950.3U patent/DE202009018950U1/de not_active Expired - Lifetime
- 2009-08-20 CN CN200980139363.0A patent/CN102171744B/zh not_active Expired - Fee Related
- 2009-08-20 MX MX2011001223A patent/MX2011001223A/es not_active Application Discontinuation
- 2009-08-20 RU RU2011110478/08A patent/RU2011110478A/ru unknown
-
2015
- 2015-09-23 US US14/862,649 patent/US20160012750A1/en not_active Abandoned
-
2016
- 2016-10-27 US US15/336,051 patent/US10762802B2/en active Active
Also Published As
Publication number | Publication date |
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US20160012750A1 (en) | 2016-01-14 |
US10762802B2 (en) | 2020-09-01 |
WO2010020869A3 (en) | 2010-04-15 |
CN102171744B (zh) | 2016-03-09 |
WO2010020869A2 (en) | 2010-02-25 |
US9483959B2 (en) | 2016-11-01 |
EP2329479A2 (en) | 2011-06-08 |
CA2730545A1 (en) | 2010-02-25 |
US20100048273A1 (en) | 2010-02-25 |
DE202009018950U1 (de) | 2014-10-15 |
BRPI0917273A2 (pt) | 2015-11-10 |
US20170046982A1 (en) | 2017-02-16 |
MX2011001223A (es) | 2011-03-15 |
CN102171744A (zh) | 2011-08-31 |
BRPI0917273B1 (pt) | 2019-10-08 |
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