CN101216425A - Conical curved face windshields light transmittance ratio detection bench - Google Patents

Conical curved face windshields light transmittance ratio detection bench Download PDF

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Publication number
CN101216425A
CN101216425A CNA2007100510184A CN200710051018A CN101216425A CN 101216425 A CN101216425 A CN 101216425A CN A2007100510184 A CNA2007100510184 A CN A2007100510184A CN 200710051018 A CN200710051018 A CN 200710051018A CN 101216425 A CN101216425 A CN 101216425A
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CN
China
Prior art keywords
platform
windshields
cone angle
detector
light transmittance
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Application number
CNA2007100510184A
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Chinese (zh)
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CN100533124C (en
Inventor
魏星
黄维菊
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Sichuan University
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Sichuan University
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Priority to CNB2007100510184A priority Critical patent/CN100533124C/en
Publication of CN101216425A publication Critical patent/CN101216425A/en
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Publication of CN100533124C publication Critical patent/CN100533124C/en
Expired - Fee Related legal-status Critical Current
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Abstract

The invention provides a transmittance detection platform of windshield glass with conical surface, comprising a pedestal, a lifting stage on the pedestal, two first support pillars arranged on the periphery of the lifting stage symmetrical to the center of the lifting stage, a conical angle adjusting stage supported on the two first support pillars and controlled by a first tilt angle adjusting mechanism, a rotation stage arranged on the conical angle adjusting stage and concentrically controlled by a rotation drive mechanism concentric thereiwh, two second support pillars arranged on the periphery of the rotation stage symmetrical to the center of the rotation stage, a glass installation stage supported on the two second support pillars and controlled by a second tilt angle adjusting mechanism, a detector pillar arranged on the pedestal and including top cantilever bending rod arranged on the glass installation stage, a detector light source hanged on the cantilever end of the cantilever bending rod, and a detector arranged on the pillar at a position corresponding to the detector light source. The invention can achieve full surface detection of a windshield glass by one-step installation and positioning.

Description

Conical curved face windshields light transmittance ratio detection bench
Technical field
The invention belongs to aviation and make the field, be used for carrying out the monitor station that transmittance detects after the moulding of aircraft conical surface windshield.
Background technology
The aircraft windshield has very high quality requirements on making, need carry out many index and detect, and wherein transmittance is very important essential items for inspection.The transmittance of windshield still will detect after the moulding will detecting before moulding.Aircraft windshield transmittance detection mode is different from the material sampling of generally being taked, exemplar is taken the mode that detects on the detector, but need carry out the detection on whole full surface, require the transmittance of any position of glass surface to arrive the set quota requirement.
Summary of the invention
The objective of the invention is in order to provide a kind of clamping of glass that can be implemented in when detecting to make the normal direction of measured point consistent all the time after fixing with the detector direction of illumination, testing process is reliable, accurately and raise the efficiency, adapt to the conical curved face windshields light transmittance ratio detection bench of present domestic aircraft manufacturing industry requirement.
The object of the present invention is achieved like this:
Conical curved face windshields light transmittance ratio detection bench of the present invention comprises base, be positioned at the lifting table that is subjected to elevating mechanism control on the base, with the Lifting platform center is two first support columns that the center symmetry is loaded on lifting table table top upper periphery, be supported on and be subjected to the cone angle of first inclination angle adjustment mechanism control to adjust platform on two first support columns, being loaded on cone angle adjusts on the platform and the universal stage that be subjected to revolving power mechanism control concentric with it, with the rotary table top center is that the center symmetry is loaded on two second support columns on the universal stage table top periphery, be supported on the glass erecting bed that is subjected to the control of second inclination angle adjustment mechanism on two second support columns, the detector column is loaded on the base, the cantilever knee that is positioned at glass erecting bed top is arranged at its top, cantilever knee cantilever end hangs the detector light source, and detector is contained on column top and the corresponding position of detector light source.
Above-mentioned detector column position of center line is being crossed cone angle adjustment platform center and is being adjusted on the vertical plane of platform rotation axis with cone angle.
Above-mentioned cone angle adjust edge of table along on two first outside projecting shafts are arranged, its axis is a diameter on the table top, two first projecting shafts stretch in two first axis holes on the support column respectively and can rotate, worm gear on one first projecting shaft that is contained on the cone angle adjustment platform is arranged in first inclination angle adjustment mechanism, be contained on the worm bearing that is fixed on corresponding first support column with the worm gear engaged worm.Cone angle adjust platform by first projecting shaft with hinged mode frame on first support column that is fixed on the lifting table, adjust the pitch angle between platform and lifting table by worm gear, worm mechanism change cone angle, can keep the center of rotation of platen can not change, can pass through worm gear, worm mechanism realization self-locking after the adjustment because of the variation of plate face tilt angle.
Above-mentioned universal stage is adjusted to be equipped with on the opposite position between the platform with cone angle and is made both relative to the ball that easily rotates.
Above-mentioned revolving power mechanism is the oscillating oil cylinder that is contained on the cone angle adjustment platform, and the rotation axis on the oscillating oil cylinder passes cone angle adjustment platform and is connected with universal stage.
Two second outside projecting shafts are arranged on the above-mentioned glass erecting bed edge, its axis is a diameter on the table top, two second projecting shafts stretch in two second axis holes on the support column respectively and can rotate, worm gear on one second projecting shaft that is contained on the glass erecting bed is arranged in second inclination angle adjustment mechanism, be contained on the worm bearing that is fixed on corresponding second support column with the worm gear engaged worm, the glass erecting bed by projecting shaft with hinged mode frame on two second support columns that are fixed on the universal stage, rotatable, rotate the pitch angle that changes between glass erecting bed and universal stage.
Telescopic oil cylinder in being contained on the base is arranged in the above-mentioned elevating mechanism, and the upper end of telescopic oil cylinder piston rod is connected on the lifting table.
Transmittance monitor station of the present invention is exclusively used in the requirement that the full surface of the aircraft windshield with conical surface feature is detected.During detection, the transmittance detector is maintained fixed, behind the glass one-step installation location, utilize hydraulic power to drive glass and do specific moving, can guarantee the vertical all the time surface, glass measured point of direction of measurement of detecting instrument, be that direction of measurement is consistent with the normal direction of this measurement point, the distance of the measurement Jing Kou of glass measurement point and detector remains unchanged, and promptly the latitude of measurement point circle center is consistent with rotation center.
Aircraft conical surface transmittance monitor station of the present invention has following characteristics:
1, easy, the simple installation in tested windshield location can carry out the glass surface arbitrfary point behind the clamping location and detect the detection efficiency height;
2, adjust tapering in advance and adjust angle of inclination between platform and the lifting table and the angle of inclination between glass erecting bed and the universal stage, can make the tested position of windshield vertical with the detection light path;
3, the windshield lifting with rotate by hydraulic-driven around axis, motion is steady, friction;
4, mobile, rotational positioning precision satisfies measurement requirement;
5, detector can move along the monitor station radial direction, makes the tested part of windshield be positioned as close to the detector integrating sphere;
6, this monitor station can be used for the detection of the circular conical surface windshield transmittance of different size specification.
This monitor station is joined Hydraulic Station in addition, for hoist cylinder and oscillating oil cylinder provide power source; Can join a cover automatic control system, can realize the robotization of testing process, each check point is by program setting, and monitor station makes windshield automatic lifting or rotation, and measurement result is gathered automatically, stores, handled, and gets by printer.
Description of drawings
Fig. 1 transmittance monitor station general structure synoptic diagram;
Fig. 2 conical surface windshield shape synoptic diagram;
Fig. 3 platen supporting construction synoptic diagram;
Fig. 4 is a partial enlarged drawing among Fig. 3;
Fig. 5 glass erecting bed structural representation.
Embodiment
Referring to Fig. 1, hoist cylinder 2 is installed on the base 1, and lifting table 3 is installed in hoist cylinder 2 piston rod tops, and piston moves 3 liters of promotion lifting tables and falls.Lifting table 3 peripheries have four guide poles that play the guiding role 4.
Referring to Fig. 3, Fig. 4, lifting table 3 table top peripheries are fixed with two first support columns, 6, the first support columns 6 and table top center symmetry, and support column 6 is adjusted the top that platform 5 is supported on lifting table 3 with cone angle.At the end that cone angle is adjusted platform 5 projecting shafts worm gear 21 in as shown in Figure 4 first worm-and-wheel gear 11 is installed, be contained on the bearing 23 that is fixed on first support column with its engaged worm 22, be used for adjusting the angle of inclination that cone angle is adjusted platform 5 and 3 of lifting tables, adjust self-locking afterwards by the size of windshield conical surface tapering α.
As shown in Figure 1, cone angle is adjusted on the platform 5 universal stage concentric with it 7 is housed, between a circle ball 9 is housed.Oscillating oil cylinder 8 is connected in cone angle and adjusts below the platform 5, and oscillating oil cylinder 8 output shafts and universal stage 7 are connected, and driven rotary platform 7 rotates.
As shown in Figure 3, universal stage 7 table top peripheries are fixed with 19, two second support columns of two second support columns 19 and table top center symmetry, and second support column 19 is supported on glass erecting bed 10 top of universal stage 7.End at glass erecting bed 10 first projecting shafts is equipped with second worm-and-wheel gear 20, is used for adjusting by the size of windshield large end face and its conical surface center line angle β the angle of inclination of erecting bed 10 and 7 of universal stages, adjusts self-locking afterwards.
As shown in Figure 1, detector column 13 is fixed on a side of base 1, and makes column 13 center lines cross cone angle adjustment platform 5 centers and adjust on the vertical plane of platform 5 rotation axiss with cone angle.Detector 12 is installed in the column top, and the inside cantilever knee 16 that is connected from column 13 tops, cantilever knee 16 1 ends hang detector light source 13 to monitor station top, the range-azimuth that is maintained fixed between detector 12 and the detector light source 13.
As shown in Figure 5, circular glass erecting bed 10 faces have groove radially, and anchor clamps 14 are placed in the groove, can adjust position diametrically.
The main operating process of windshield transmittance monitor station:
1, adjusts the position of penetrability detector according to the diameter dimension of the big end of windshield.
2, adjust the angle of inclination of tapering location-plate 5 and lifting table 3 according to the conical surface tapering α (Fig. 2) of detected windshield; End face and angle β (Fig. 2) the adjustment erecting bed 10 of its conical surface center line and the angle of inclination of universal stage 7 according to detected windshield.
3, windshield is lifted to monitor station erecting bed 10, windshield conical surface center line is by the center of erecting bed 10, and the plane of symmetry of glass is parallel to the maximum slope line of erecting bed 10 relative universal stages 7, so just makes the center line of windshield overlap with the universal stage pivot center.
4, with anchor clamps with the windshield fixing and locking on erecting bed 10.
5, under hoist cylinder, oscillating oil cylinder drive, windshield is moved to initial detection position.
6, by the change windshield position of setting in advance, glass check point position, detect the transmittance of each point position one by one, testing result generates and detects file, prints testing result.

Claims (7)

1. conical curved face windshields light transmittance ratio detection bench, it is characterized in that comprising base, be positioned at the lifting table that is subjected to elevating mechanism control on the base, with the Lifting platform center is two first support columns that the center symmetry is loaded on lifting table table top upper periphery, be supported on and be subjected to the cone angle of first inclination angle adjustment mechanism control to adjust platform on two first support columns, being loaded on cone angle adjusts on the platform and the universal stage that be subjected to revolving power mechanism control concentric with it, with the rotary table top center is that the center symmetry is loaded on two second support columns on the universal stage table top periphery, be supported on the glass erecting bed that is subjected to the control of second inclination angle adjustment mechanism on two second support columns, the detector column is loaded on the base, the cantilever knee that is positioned at glass erecting bed top is arranged at its top, cantilever knee cantilever end hangs the detector light source, and detector is contained on column top and the corresponding position of detector light source.
2. conical curved face windshields light transmittance ratio detection bench as claimed in claim 1 is characterized in that detector column position of center line adjusts the platform center and adjust on the vertical plane of platform rotation axis with cone angle crossing cone angle.
3. conical curved face windshields light transmittance ratio detection bench as claimed in claim 1 or 2, it is characterized in that cone angle adjust edge of table along on two first outside projecting shafts are arranged, its axis is a diameter on the table top, two first projecting shafts stretch in two first axis holes on the support column respectively and can rotate, worm gear on one first projecting shaft that is contained on the cone angle adjustment platform is arranged in first inclination angle adjustment mechanism, be contained on the worm bearing that is fixed on corresponding first support column with the worm gear engaged worm.
4. conical curved face windshields light transmittance ratio detection bench as claimed in claim 1 or 2 is characterized in that universal stage and cone angle are adjusted to be equipped with on the opposite position between the platform to make both relative to the ball that easily rotates.
5. conical curved face windshields light transmittance ratio detection bench as claimed in claim 1 or 2 is characterized in that revolving power mechanism is the oscillating oil cylinder that is contained on the cone angle adjustment platform, and the rotation axis on the oscillating oil cylinder passes cone angle adjustment platform and is connected with universal stage.
6. conical curved face windshields light transmittance ratio detection bench as claimed in claim 1 or 2, it is characterized in that two second outside projecting shafts are arranged on the glass erecting bed edge, its axis is a diameter on the table top, two second projecting shafts stretch in two second axis holes on the support column respectively and can rotate, second pitch angle adjustment root, second projecting shaft stretches in two second axis holes on the support column respectively and can rotate, worm gear on one second projecting shaft that is contained on the glass erecting bed is arranged in second inclination angle adjustment mechanism, be contained on the worm bearing that is fixed on corresponding second support column with the worm gear engaged worm.
7. conical curved face windshields light transmittance ratio detection bench as claimed in claim 1 or 2 is characterized in that having in the elevating mechanism telescopic oil cylinder in being contained on the base, and the upper end of telescopic oil cylinder piston rod is connected on the lifting table.
CNB2007100510184A 2007-12-28 2007-12-28 Conical curved face windshields light transmittance ratio detection bench Expired - Fee Related CN100533124C (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CNB2007100510184A CN100533124C (en) 2007-12-28 2007-12-28 Conical curved face windshields light transmittance ratio detection bench

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CNB2007100510184A CN100533124C (en) 2007-12-28 2007-12-28 Conical curved face windshields light transmittance ratio detection bench

Publications (2)

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CN101216425A true CN101216425A (en) 2008-07-09
CN100533124C CN100533124C (en) 2009-08-26

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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103399020A (en) * 2013-07-24 2013-11-20 惠晶显示科技(苏州)有限公司 Glass testing device
CN104330356A (en) * 2014-11-24 2015-02-04 中国航空工业集团公司洛阳电光设备研究所 Detection device for testing transmittance of optical cowling film
CN111323433A (en) * 2018-12-13 2020-06-23 深圳中科飞测科技有限公司 Detection device and detection method thereof
CN116754524A (en) * 2023-06-12 2023-09-15 滁州新盛诺光电科技有限公司 Quality detection equipment for thinning vehicle-mounted window glass and detection method thereof

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103399020A (en) * 2013-07-24 2013-11-20 惠晶显示科技(苏州)有限公司 Glass testing device
CN104330356A (en) * 2014-11-24 2015-02-04 中国航空工业集团公司洛阳电光设备研究所 Detection device for testing transmittance of optical cowling film
CN111323433A (en) * 2018-12-13 2020-06-23 深圳中科飞测科技有限公司 Detection device and detection method thereof
CN116754524A (en) * 2023-06-12 2023-09-15 滁州新盛诺光电科技有限公司 Quality detection equipment for thinning vehicle-mounted window glass and detection method thereof
CN116754524B (en) * 2023-06-12 2024-02-23 滁州新盛诺光电科技有限公司 Quality detection equipment for thinning vehicle-mounted window glass and detection method thereof

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