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CN102401625B - Slide rheostat positioning device for light transmission channel - Google Patents

Slide rheostat positioning device for light transmission channel Download PDF

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Publication number
CN102401625B
CN102401625B CN 201010286320 CN201010286320A CN102401625B CN 102401625 B CN102401625 B CN 102401625B CN 201010286320 CN201010286320 CN 201010286320 CN 201010286320 A CN201010286320 A CN 201010286320A CN 102401625 B CN102401625 B CN 102401625B
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CN
China
Prior art keywords
slide rheostat
spring
light transmission
transmission passage
slide
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CN 201010286320
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Chinese (zh)
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CN102401625A (en
Inventor
王玄极
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Nantong Xingshi Material Trade Co ltd
Original Assignee
CHENGDU YISHENGXUAN TECHNOLOGY Co Ltd
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Priority to CN 201010286320 priority Critical patent/CN102401625B/en
Publication of CN102401625A publication Critical patent/CN102401625A/en
Application granted granted Critical
Publication of CN102401625B publication Critical patent/CN102401625B/en
Expired - Fee Related legal-status Critical Current
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Abstract

The invention relates to a slide rheostat positioning method for a light transmission channel, which comprises a slide rheostat, a spring, an annular fixing structure, a light transmission channel, a resistance measuring instrument and a voltage measuring instrument. The slide rheostat positioning method is characterized in that a coordinate system is set up by matching the slide rheostat and the spring, the slide rheostat and the spring are parallel and positioned in a same plane, the slide rheostat positioning method for the light transmission mechanism refers to a three-layer structure including the center light transmission channel, an intermediate layer of the slide rheostat and the spring matched with each other, and an outer annular structure for fixing the slide rheostat and the spring matched with each other, the top end of the spring is connected with a non-light area of the light transmission channel, and the tail end of the spring is fixed to the outer annular structure. The whole system is virtualized by software programs so that the light transmission channel is positioned.

Description

The slide rheostat locating device of light transmission passage
Technical field
What patent of the present invention related to is the slide rheostat locating device of light transmission passage, especially a kind of slide rheostat locating device of setting up coordinate system location light transmission passage by slide rheostat and spring pairing.
Background technology
The slide rheostat locating device of light transmission passage is location light transmission passage, the light transmission passage is to reflect, reflection, total reflection polycondensation mirror (application number: 201010028057.4), refraction, reflection, total reflection polycondensation mirror is the integrated concentrating method (application number: 201010134349.6) of main body, refraction, reflection polycondensation mirror (application number: 201010028058.9), refraction, reflection polycondensation mirror is the integrated concentrating method (application number: 201010134358.5) of main body, many (the application numbers: 201010134340.5) of method to single polycondensation light of light transmission, (application number: 201010266432.9), the method for energy source class light straight line transmission is basis (application number: 201010266412.1) to the method for energy source class light curve transmission.
Summary of the invention
The objective of the invention is with slide rheostat and spring pairing, a kind of slide rheostat locating device of setting up coordinate system location light transmission passage by slide rheostat and spring pairing is provided.
The slide rheostat locating device of light transmission passage of the present invention, comprise: slide rheostat, spring, loop configuration, the light transmission passage, resistance measuring instrument, pressure measuring instrument, it is characterized in that: set up coordinate system by slide rheostat and spring pairing, slide rheostat is in same plane and parallel with spring, the top of spring is by the slide plate of connecting rod control slide rheostat, the original state of slide rheostat slide plate is the centre position at slide rheostat, the telescopic variation of spring and the slide plate of slide rheostat change synchronously, coordinate system is made of three pairs of identical slide rheostats and spring pairing at least, the three pairs of identical slide rheostats and spring are fixed on the loop configuration, slide rheostat and spring are in same plane, and slide rheostat is parallel with spring, the top of spring is on the concentric circles, the extended line of spring meets at a bit, the extending line intersection point of spring is the concentrically ringed center of circle on spring top, and the intersection point of spring extended line is the reference point of coordinate system; The slide rheostat locating device of light transmission passage is three-decker, central core is the light transmission passage, the middle layer is slide rheostat and the spring of pairing, skin is the slide rheostat of fixing pairing and the loop configuration of spring, the spring top is connected with the non-light zone of light transmission passage, and spring end is fixed on the outer annular structure; The light transmission passage is under the effect of self gravitation, effect is drawn, is pressed in generation to spring, when the light transmission passage produces pulling force to spring, extension spring, the spring top drives the slide plate of slide rheostat and does equidistance motion in the same way, when the light transmission passage produces pressure to spring, the compression spring, the spring top drives the slide plate of slide rheostat and does equidistance motion in the same way; Change in location by slide rheostat reaction spring has dual mode, first kind of mode is electric resistivity method, directly embody the light transmission passage to the pressure size and Orientation of spring, to the pulling force size and Orientation of spring with the variation of slide rheostat resistance value size, the second way is the current value method, under the certain situation of voltage, use variation by slide rheostat current value size directly to embody the light transmission passage to the pressure size and Orientation of spring, to the pulling force size and Orientation of spring; The central point of light transmission channel cross-section overlaps with the intersection point of spring extended line, and the state that constitutes the every pair of identical slide rheostat of coordinate system and spring is just the same, as the original state of the slide rheostat locating device of light transmission passage; The every pair of identical slide rheostat and spring adopt geometric point, line, the face relation distributes, by software program to every pair of identical slide rheostat and spring, the light transmission passage is simulated, first kind of mode is electric resistivity method, big or small Input Software program with the slide rheostat resistance value, direction and the size of representing pulling force with the slide rheostat resistance value, direction and the size of representing pressure with the slide rheostat resistance value, through the synthetic of exertin with decompose, determine gravity direction and the position relation of light transmission passage in the coordinate system that slide rheostat and spring are composed of; The second way is the current value method, big or small Input Software program with the current value by slide rheostat, direction and the size of representing pulling force with the current value of slide rheostat, direction and the size of representing pressure with the current value of slide rheostat, through the synthetic of exertin with decompose, determine gravity direction and the position relation of light transmission passage in the coordinate system that slide rheostat and spring are composed of.
The slide rheostat locating device of light transmission passage of the present invention is provided in detail by the following drawings and embodiment.
Description of drawings
Fig. 1 is the slide rheostat of slide rheostat locating device of light transmission passage and the schematic cross-section of spring pairing.
[0007] Embodiment
Embodiment: the slide rheostat locating device of light transmission passage adopts software program virtual, software program is set up interface, first kind of mode is to measure the resistance of slide rheostat, by the resistance value information Input Software program of software program interface with slide rheostat; The second way is the electric current of measuring through slide rheostat, will be through the current value information Input Software program of slide rheostat by the software program interface.
[0008]Fig. 1 is the slide rheostat of slide rheostat locating device of light transmission passage and the schematic cross-section of spring pairing, (1) first binding post of expression slide rheostat, (2) second binding post of expression slide rheostat, (3) resistance wire of expression slide rheostat, (4) the 4th binding post of expression slide rheostat, (5) slide plate of expression slide rheostat, (6) the 6th binding post of expression slide rheostat, (7) expression connecting rod, (8) top of expression spring, (9) end of expression spring, (10) expression spring; The method that connects slide rheostat has four kinds, first kind is to connect second binding post (2) of slide rheostat and first binding post (1) of slide rheostat, second kind is to connect second binding post (2) of slide rheostat and the 6th binding post (6) of slide rheostat, the third is to connect the 4th binding post (4) of slide rheostat and first binding post (1) of slide rheostat, the 4th kind is to connect the 4th binding post (4) of slide rheostat and the 6th binding post (6) of slide rheostat, connecting rod (7) is to connect the slide plate (5) of slide rheostat and the top (8) of spring, follow the top (8) of spring at the rheostatic slide plate of drive lower slider (5) of connecting rod (7) and do equidistance motion in the same way, the top of spring (8) is connected with the non-light zone of light transmission passage, the end of spring (9) is fixed on the outer field loop configuration, the light transmission passage applies acting force to the top (8) of spring, allows spring (10) that elastic deformation takes place.

Claims (2)

1. the slide rheostat locating device of a light transmission passage, the slide rheostat locating device of light transmission passage comprises: slide rheostat, spring, loop configuration, the light transmission passage, resistance measuring instrument, pressure measuring instrument, it is characterized in that: set up coordinate system by slide rheostat and spring pairing, slide rheostat is in same plane and parallel with spring, the top of spring is by the slide plate of connecting rod control slide rheostat, the original state of slide rheostat slide plate is the centre position at slide rheostat, the telescopic variation of spring and the slide plate of slide rheostat change synchronously, coordinate system is made of three pairs of identical slide rheostats and spring pairing at least, the three pairs of identical slide rheostats and spring are fixed on the loop configuration, slide rheostat and spring are in same plane, and slide rheostat is parallel with spring, the top of spring is on the concentric circles, the extended line of spring meets at a bit, the extending line intersection point of spring is the concentrically ringed center of circle on spring top, and the intersection point of spring extended line is the reference point of coordinate system; The slide rheostat locating device of light transmission passage is three-decker, central core is the light transmission passage, the middle layer is slide rheostat and the spring of pairing, skin is the slide rheostat of fixing pairing and the loop configuration of spring, the spring top is connected with the non-light zone of light transmission passage, and spring end is fixed on the outer annular structure; The light transmission passage is under the effect of self gravitation, effect is drawn, is pressed in generation to spring, when the light transmission passage produces pulling force to spring, extension spring, the spring top drives the slide plate of slide rheostat and does equidistance motion in the same way, when the light transmission passage produces pressure to spring, the compression spring, the spring top drives the slide plate of slide rheostat and does equidistance motion in the same way; Change in location by slide rheostat reaction spring has dual mode, first kind of mode is electric resistivity method, directly embody the light transmission passage to the pressure size and Orientation of spring, to the pulling force size and Orientation of spring with the variation of slide rheostat resistance value size, the second way is the current value method, under the certain situation of voltage, use variation by slide rheostat current value size directly to embody the light transmission passage to the pressure size and Orientation of spring, to the pulling force size and Orientation of spring; The central point of light transmission channel cross-section overlaps with the intersection point of spring extended line, and the state that constitutes the every pair of identical slide rheostat of coordinate system and spring is just the same, as the original state of the slide rheostat locating device of light transmission passage.
2. according to the slide rheostat locating device of the described a kind of light transmission passage of claim 1, it is characterized in that: the every pair of identical slide rheostat and spring adopt geometric point, line, the face relation distributes, by software program to every pair of identical slide rheostat and spring, the light transmission passage is simulated, first kind of mode is electric resistivity method, big or small Input Software program with the slide rheostat resistance value, direction and the size of representing pulling force with the slide rheostat resistance value, direction and the size of representing pressure with the slide rheostat resistance value, through the synthetic of exertin with decompose, determine gravity direction and the position relation of light transmission passage in the coordinate system that slide rheostat and spring are composed of; The second way is the current value method, big or small Input Software program with the current value by slide rheostat, direction and the size of representing pulling force with the current value of slide rheostat, direction and the size of representing pressure with the current value of slide rheostat, through the synthetic of exertin with decompose, determine gravity direction and the position relation of light transmission passage in the coordinate system that slide rheostat and spring are composed of.
3, slide rheostat locating device according to the described a kind of light transmission passage of claim 1, it is characterized in that: the method that connects slide rheostat has four kinds, first kind is to connect second binding post (2) of slide rheostat and first binding post (1) of slide rheostat, second kind is to connect second binding post (2) of slide rheostat and the 6th binding post (6) of slide rheostat, the third is to connect the 4th binding post (4) of slide rheostat and first binding post (1) of slide rheostat, the 4th kind is to connect the 4th binding post (4) of slide rheostat and the 6th binding post (6) of slide rheostat, connecting rod (7) is to connect the slide plate (5) of slide rheostat and the top (8) of spring, follow the top (8) of spring at the rheostatic slide plate of drive lower slider (5) of connecting rod (7) and do equidistance motion in the same way, the top of spring (8) is connected with the non-light zone of light transmission passage, the end of spring (9) is fixed on the outer field loop configuration, the light transmission passage applies acting force to the top (8) of spring, allows spring (10) that elastic deformation takes place.
4, according to the slide rheostat locating device of the described a kind of light transmission passage of claim 1, it is characterized in that: the slide rheostat locating device of light transmission passage adopts software program virtual, software program is set up interface, first kind of mode is to measure the resistance of slide rheostat, by the resistance value information Input Software program of software program interface with slide rheostat; The second way is the electric current of measuring through slide rheostat, will be through the current value information Input Software program of slide rheostat by the software program interface.
CN 201010286320 2010-09-19 2010-09-19 Slide rheostat positioning device for light transmission channel Expired - Fee Related CN102401625B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN 201010286320 CN102401625B (en) 2010-09-19 2010-09-19 Slide rheostat positioning device for light transmission channel

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Application Number Priority Date Filing Date Title
CN 201010286320 CN102401625B (en) 2010-09-19 2010-09-19 Slide rheostat positioning device for light transmission channel

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CN102401625A CN102401625A (en) 2012-04-04
CN102401625B true CN102401625B (en) 2013-08-07

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Families Citing this family (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102927897A (en) * 2012-11-21 2013-02-13 昆山北极光电子科技有限公司 Mechanical deformation measuring method
CN106949331A (en) * 2017-05-02 2017-07-14 华北理工大学 Gas flow angle detecting threeway

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP0494377A1 (en) * 1990-12-10 1992-07-15 Firma Carl Zeiss Method for quickly measuring the temperature of a workpiece on a coordinate measuring machine
CN2309569Y (en) * 1996-06-10 1999-03-03 陈长友 Liquid pressure gauge
EP1182422A1 (en) * 2000-08-18 2002-02-27 Cooper Cameron Corporation Position measurement with spring and force measurement for actuators, BOP, valves
CN1341220A (en) * 1999-12-22 2002-03-20 古河电气工业株式会社 Optical fiber, dispersion compensator comprising the same, optical transmission line, and optical transmission system
CN1604433A (en) * 2004-11-08 2005-04-06 史可德 Torque adaptive winding type motor

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP0494377A1 (en) * 1990-12-10 1992-07-15 Firma Carl Zeiss Method for quickly measuring the temperature of a workpiece on a coordinate measuring machine
CN2309569Y (en) * 1996-06-10 1999-03-03 陈长友 Liquid pressure gauge
CN1341220A (en) * 1999-12-22 2002-03-20 古河电气工业株式会社 Optical fiber, dispersion compensator comprising the same, optical transmission line, and optical transmission system
EP1182422A1 (en) * 2000-08-18 2002-02-27 Cooper Cameron Corporation Position measurement with spring and force measurement for actuators, BOP, valves
CN1604433A (en) * 2004-11-08 2005-04-06 史可德 Torque adaptive winding type motor

Non-Patent Citations (2)

* Cited by examiner, † Cited by third party
Title
张志荣.汽包测压计的设计与应用.《张家口师专学报》.1997,(第1期),66-68.
汽包测压计的设计与应用;张志荣;《张家口师专学报》;19971231(第1期);66-68 *

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Effective date of registration: 20200409

Address after: 236000 Anhui province Fuyang City Yingshang County Industrial Park Bao Lu tube

Patentee after: ANHUI OURUIDA ELECTRICAL APPLIANCE TECHNOLOGY Co.,Ltd.

Address before: High tech Zone Gaopeng road in Chengdu city of Sichuan province 610041 No. 5 A-93

Patentee before: CHENGDU YISHENGXUAN TECHNOLOGY Co.,Ltd.

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Effective date of registration: 20201116

Address after: No.16, dongbanqiao Road, Shizhuang Town, Rugao City, Nantong City, Jiangsu Province, 226000

Patentee after: Nantong Xingshi material Trade Co.,Ltd.

Address before: 236000 Anhui province Fuyang City Yingshang County Industrial Park Bao Lu tube

Patentee before: ANHUI OURUIDA ELECTRICAL APPLIANCE TECHNOLOGY Co.,Ltd.

CF01 Termination of patent right due to non-payment of annual fee
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20130807

Termination date: 20210919