CN201653847U - Oxygen permeability tester for cornea repair material - Google Patents

Oxygen permeability tester for cornea repair material Download PDF

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Publication number
CN201653847U
CN201653847U CN2010201782338U CN201020178233U CN201653847U CN 201653847 U CN201653847 U CN 201653847U CN 2010201782338 U CN2010201782338 U CN 2010201782338U CN 201020178233 U CN201020178233 U CN 201020178233U CN 201653847 U CN201653847 U CN 201653847U
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CN
China
Prior art keywords
oxygen
carrier gas
chamber
oxygen chamber
admission gear
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Expired - Lifetime
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CN2010201782338U
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Chinese (zh)
Inventor
任力
王迎军
王家鸣
赵连娜
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GUANGZHOU PUDAOLIANXIN BIOTECHNOLOGY CO., LTD.
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South China University of Technology SCUT
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Priority to CN2010201782338U priority Critical patent/CN201653847U/en
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Abstract

The utility model relates to an oxygen permeability tester for a cornea repair material. The tester mainly comprises a sample fixture (20), an oxygen inlet apparatus, a carrier gas inlet apparatus and a test apparatus; the sample fixture (20) comprises an oxygen chamber (21) and a carrier gas chamber (24); the oxygen chamber (21) is connected with the oxygen inlet apparatus through an oxygen chamber inlet conduit (7), and is also provided with an oxygen chamber outlet conduit (8); and the carrier gas chamber (24) is connected with the carrier gas inlet apparatus through a carrier gas chamber inlet conduit (15), and is connected with the test apparatus through a carrier gas chamber outlet conduit (16). The price of a gas chromatograph used by the utility model is far lower than the price of a coulometric sensor, moreover, the frequency of the maintenance of the gas chromatograph is lower than the frequency of the maintenance of the coulometric sensor, the service cycle of the gas chromatograph is far longer than the service cycle of the coulometric sensor, and thereby the operation cost is remarkably reduced.

Description

A kind of proving installation of oxygen permeation of cornea repair material
Technical field
The utility model relates to a kind of proving installation of oxygen permeation of cornea repair material, especially can realize the oxygen permeating amount of same device to test contact lens,soft, contact lens,hard, artificial cornea and other cornea repair materials.
Background technology
Oxygen permeability is the important indicator of cornea repair material performance, and it is the important step that cornea repair material characterizes that oxygen permeability detects.
Corresponding to dissimilar cornea repair materials, the detection of oxygen permeating amount is also different: generally use polarography for contact lens,soft and artificial cornea, sample is invested on the electrode, oxygen is by sample and after separating, on the two poles of the earth of electrode electrochemical reaction taking place, can obtain oxygen permeating amount by detecting the electric current that produces and calculating; Generally use a coulomb method for contact lens,hard, contact lense is placed sample clamp, a side passes to oxygen, and opposite side passes to carrier gas, and the oxygen infiltration utilizes enclosed pasture sensor concentration of oxygen by being taken away by carrier gas behind the contact lense.
Polarography can only be measured the oxygen permeability coefficient of contact lens,soft and artificial cornea, uses extremely limited.The enclosed pasture method generally is used for the mensuration of the oxygen permeability coefficient of contact lens,hard, also can be used for the mensuration of the oxygen permeability coefficient of contact lens,soft, but the enclosed pasture sensor price height in the enclosed pasture method, and it is the consumption-type equipment, the maintenance maintenance is frequent, and life cycle is short, and running cost is higher.
The utility model content
The purpose of this utility model is exactly in order to solve the single problem of present oxygen permeation of cornea repair material proving installation tested object, provide a kind of simple in structure, can realize the proving installation of the oxygen permeation of cornea repair material of same device to test contact lens,soft, contact lens,hard, artificial cornea and other cornea repair materials.
For realizing the purpose of this utility model, the utility model adopts following technical scheme:
A kind of device of method of testing of oxygen permeation of cornea repair material mainly comprises sample clamp 20, oxygen admission gear, carrier gas admission gear and pick-up unit, and described sample clamp 20 is made up of oxygen chamber 21 and carrier gas cavity 24; Oxygen chamber 21 is connected with the oxygen admission gear by oxygen chamber admission line 7, and the oxygen chamber also is provided with oxygen chamber outlet pipe 8; Carrier gas cavity 24 is connected with the carrier gas admission gear by carrier gas cavity admission line 15, and links to each other with pick-up unit by carrier gas cavity outlet pipe 16; Described pick-up unit comprises quantitative sampling device 17 and gas chromatograph 19.
Described oxygen admission gear comprises oxygen flow meter 6, oxygen channel III5, oxygen flow variable valve 4, oxygen channel I1 and the welding bottle that connects successively.
Described carrier gas admission gear comprises carrier gas flux meter 14, carrier gas channel III13, carrier gas flux variable valve 12, carrier gas channel I9 and the carrier gas bottle that connects successively.
Described oxygen chamber 21 is connected with screw with the chamber wall joint of carrier gas cavity 24.
The sample that is positioned at the chamber wall joint of described oxygen chamber 21 and carrier gas cavity 24 is provided with O-ring seal 23 or applies vacuum silica gel.
Outlet side, described oxygen chamber communicates with the external world by oxygen chamber outlet pipe 8.
Described quantitative sampling device 17 can adopt the quantitative sampling device of prior art, and as six-way valve and quantitative ring that employing is connected, six-way valve is connected with the injection port of gas chromatograph.
Described oxygen chamber admission line 7, oxygen chamber outlet pipe 8, carrier gas cavity outlet pipe 16, pick-up unit pipeline 18, oxygen channel III5, oxygen channel I1, carrier gas channel III13 and carrier gas channel I9 are tracheae.
The utility model with respect to advantage and the beneficial effect that prior art has is:
(1), same device can be realized the oxygen permeating amount test of contact lens,soft, contact lens,hard, artificial cornea and other cornea repair materials.
(2), the gas chromatograph price is far below the enclosed pasture sensor, and maintenance maintenance frequency the enclosed pasture sensor is low, life cycle has significantly reduced running cost far above the enclosed pasture sensor.
Description of drawings
Fig. 1 is the structural drawing of the utility model measurement mechanism;
Fig. 2 is the structural drawing of the sample clamp of mensuration contact lense;
Fig. 3 is the structural drawing of the sample clamp of other cornea repair materials of mensuration except that contact lense.
Wherein, 1. oxygen channel I, 4. oxygen flow variable valve, 5. oxygen channel III, 6. oxygen flow meter, 7. oxygen chamber admission line, 8. oxygen chamber outlet pipe, 9. carrier gas channel I, 12. the carrier gas flux variable valve, 13. carrier gas channel III, 14. carrier gas flux meters, 15. carrier gas cavity admission lines, 16. the carrier gas cavity outlet pipe, 17. quantitative sampling devices, 18. pick-up unit pipelines, 19. gas chromatograph, 20. sample clamps, 21. oxygen chambeies, 22. sample, 23. O-ring seals, 24. carrier gas cavity.
Embodiment
The utility model is described in further detail below in conjunction with accompanying drawing and embodiment.
Embodiment 1
The method of testing implementation step of the utility model device is:
(1) in gas chromatograph, advances volume V 1Oxygen, from spectrogram, obtain peak area S 1
(2) logical respectively oxygen in the both sides of testing sample and carrier gas, oxygen is penetrated into carrier gas one side through the zone that sample is exposed to Oxygen Flow, with volume V 2Oxygen and the mixed gas of carrier gas send into gas chromatograph, detect the amount of oxygen in the mixed gas, from spectrogram, obtain peak area S 2
(3) the oxygen permeability coefficient Dk of sample, oxygen permeating amount Dk/t can calculate by following formula:
Dk=(V 1×S 2×t×Q)/(S 1×A×p×V 2)
Dk/t=(V 1×S 2×Q)/(S 1×A×p×V 2)
Wherein, Dk is an oxygen permeability coefficient, and unit is mlcmcm -2S -1Pa -1Dk/t is an oxygen permeating amount, and unit is mlcmcm -3S -1Pa -1V 1Be the volume of purity oxygen standard specimen, unit is ml; S 1It is the gas chromatogram peak area of purity oxygen standard specimen; T is the harmonic average thickness that sample is exposed to the zone in the Oxygen Flow, and unit is cm; Q is the flow of carrier gas, and unit is mls -1A is the area that sample is exposed to the zone of Oxygen Flow, and unit is cm 2P is that sample both sides oxygen pressure is poor, and unit is Pa, and its value equals atmospheric pressure; V 2Be the volume of the mixed gas of carrier gas and oxygen, unit is ml; S 2It is the peak area of sending into the oxygen in the mixed gas of gas chromatograph.
Carrier gas is a nitrogen.
Embodiment 2
As illustrated in fig. 1 and 2, oxygen chamber 21 is the cambered surface that matches with the chamber wall joint of carrier gas cavity 24, with the solid shape is the sample of cambered surface, contact lense oxygen permeating amount proving installation mainly comprises sample clamp 20, oxygen admission gear, carrier gas admission gear and pick-up unit in the utility model, and described sample clamp 20 is made up of oxygen chamber 21 and carrier gas cavity 24; Oxygen chamber 21 is connected with the oxygen admission gear by oxygen chamber admission line 7, and the oxygen chamber also is provided with oxygen chamber outlet pipe 8; Carrier gas cavity 24 is connected with the carrier gas admission gear by carrier gas cavity admission line 15, and links to each other with pick-up unit by carrier gas cavity outlet pipe 16; Described pick-up unit comprises quantitative sampling device 17 and gas chromatograph 19.
The oxygen admission gear comprises oxygen flow meter 6, oxygen channel III5, oxygen flow variable valve 4, oxygen channel I1 and the welding bottle that connects successively.
The carrier gas admission gear comprises carrier gas flux meter 14, carrier gas channel III13, carrier gas flux variable valve 12, carrier gas channel I9 and the carrier gas bottle that connects successively.
Oxygen chamber 21 is connected with screw with the chamber wall joint of carrier gas cavity 24.
The sample that is positioned at the chamber wall joint of oxygen chamber 21 and carrier gas cavity 24 is provided with O-ring seal 23.
Outlet side, oxygen chamber communicates with the external world by oxygen chamber outlet pipe 8.
Quantitative sampling device 17 adopts the six-way valve that is connected and quantitatively encircles, and six-way valve is connected with the injection port of gas chromatograph again.
Six-way valve is when dress sample position, and the combination gas that carrier gas cavity outlet pipe 16 flows out enters quantitative ring by six-way valve, and after quantitatively ring was full of, unnecessary combination gas was discharged from the relieving device of six-way valve; When six-way valve turned to the sample introduction position, quantitative ring disconnection was connected with carrier gas cavity outlet pipe 16, and connects with the vapor-phase flow path of carrier gas, and quantitative ring is washed in carrier gas, and the combination gas during promotion quantitatively encircles enters gas chromatograph analysis.
Described oxygen chamber admission line 7, oxygen chamber outlet pipe 8, carrier gas cavity outlet pipe 16, pick-up unit pipeline 18, oxygen channel III5, oxygen channel I1, carrier gas channel III13 and carrier gas channel I9 are tracheae.
Oxygen flow is read by 4 controls of oxygen flow variable valve and by oxygen flow meter 6.Carrier gas flux is read by 12 controls of carrier gas flux variable valve and by carrier gas flux meter 14.Part oxygen can permeate under the effect of sample both sides oxygen concentration difference and enter carrier gas cavity 24 by sample 22, and remaining oxygen is then by outlet pipe 8 emptyings of oxygen chamber.Carrier gas enters carrier gas cavity 24 by carrier gas channel I9, carrier gas flux variable valve 12, carrier gas channel III13, carrier gas flux meter 14, carrier gas cavity admission line 15, and the oxygen of infiltration by sample is carried in carrier gas becomes sample gas, and quantitative sampling device is with volume V 2Carrier gas and the mixed gas of oxygen send into gas chromatograph, detect amount of oxygen in the mixed gas by gas chromatograph.
Embodiment 3
In the present embodiment, the sample of test is an artificial cornea, uses the sample clamp as Fig. 3, and oxygen chamber 21 is the plane with the chamber wall joint of carrier gas cavity 24.All the other are identical with embodiment 2, repeat no more.

Claims (6)

1. the proving installation of an oxygen permeation of cornea repair material, it is characterized in that, mainly comprise sample clamp (20), oxygen admission gear, carrier gas admission gear and pick-up unit, it is characterized in that described sample clamp (20) is made up of oxygen chamber (21) and carrier gas cavity (24); Oxygen chamber (21) is connected with the oxygen admission gear by oxygen chamber admission line (7), and the oxygen chamber also is provided with oxygen chamber outlet pipe (8); Carrier gas cavity (24) is connected with the carrier gas admission gear by carrier gas cavity admission line (15), and links to each other with pick-up unit by carrier gas cavity outlet pipe (16); Described pick-up unit comprises quantitative sampling device (17) and gas chromatograph (19).
2. device according to claim 1 is characterized in that, described oxygen admission gear comprises oxygen flow meter (6), oxygen channel III (5), oxygen flow variable valve (4), oxygen channel I (1) and the welding bottle that connects successively.
3. device according to claim 1 is characterized in that, described carrier gas admission gear comprises carrier gas flux meter (14), carrier gas channel III (13), carrier gas flux variable valve (12), carrier gas channel I (9) and the carrier gas bottle that connects successively.
4. device according to claim 1 is characterized in that, described oxygen chamber (21) is connected with screw with the chamber wall joint of carrier gas cavity (24).
5. device according to claim 4 is characterized in that, the sample that is positioned at the chamber wall joint of described oxygen chamber (21) and carrier gas cavity (24) is provided with O-ring seal (23) or applies vacuum silica gel.
6. device according to claim 1 is characterized in that, outlet side, described oxygen chamber communicates with the external world by oxygen chamber outlet pipe (8).
CN2010201782338U 2010-04-26 2010-04-26 Oxygen permeability tester for cornea repair material Expired - Lifetime CN201653847U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN2010201782338U CN201653847U (en) 2010-04-26 2010-04-26 Oxygen permeability tester for cornea repair material

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Application Number Priority Date Filing Date Title
CN2010201782338U CN201653847U (en) 2010-04-26 2010-04-26 Oxygen permeability tester for cornea repair material

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2013143029A1 (en) * 2012-03-27 2013-10-03 济南兰光机电技术有限公司 Organic gas transmission rate testing apparatus
CN103575630A (en) * 2013-10-23 2014-02-12 中国广州分析测试中心 Measuring method and device for simultaneously measuring membrane permeability of each gas mixed gas
CN105929078A (en) * 2016-06-12 2016-09-07 广州市朴道联信生物科技有限公司 Oxygen permeability test device and oxygen permeability test method

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2013143029A1 (en) * 2012-03-27 2013-10-03 济南兰光机电技术有限公司 Organic gas transmission rate testing apparatus
CN103575630A (en) * 2013-10-23 2014-02-12 中国广州分析测试中心 Measuring method and device for simultaneously measuring membrane permeability of each gas mixed gas
CN103575630B (en) * 2013-10-23 2016-04-27 中国广州分析测试中心 A kind of Simultaneously test combination gas respectively forms the assay method of the membrane permeability of gas
CN105929078A (en) * 2016-06-12 2016-09-07 广州市朴道联信生物科技有限公司 Oxygen permeability test device and oxygen permeability test method

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C14 Grant of patent or utility model
GR01 Patent grant
ASS Succession or assignment of patent right

Owner name: BEIJING QINGCHEN YULU BIOLOGICAL TECHNOLOGY CO., L

Free format text: FORMER OWNER: SOUTH CHINA UNIVERSITY OF TECHNOLOGY

Effective date: 20150211

C41 Transfer of patent application or patent right or utility model
COR Change of bibliographic data

Free format text: CORRECT: ADDRESS; FROM: 510640 GUANGZHOU, GUANGDONG PROVINCE TO: 101299 PINGGU, BEIJING

TR01 Transfer of patent right

Effective date of registration: 20150211

Address after: 101299 room 13, information building, 1002-81 North Avenue, Pinggu Town, Pinggu District, Beijing, China

Patentee after: Beijing early morning rain Biotechnology Co., Ltd.

Address before: 510640 Tianhe District, Guangdong, No. five road, No. 381,

Patentee before: South China University of Technology

Effective date of registration: 20150211

Address after: 101299 room 13, information building, 1002-81 North Avenue, Pinggu Town, Pinggu District, Beijing, China

Patentee after: Beijing early morning rain Biotechnology Co., Ltd.

Address before: 510640 Tianhe District, Guangdong, No. five road, No. 381,

Patentee before: South China University of Technology

C41 Transfer of patent application or patent right or utility model
TR01 Transfer of patent right

Effective date of registration: 20160121

Address after: 510000, International Biological Island, Guangdong, Guangzhou, No. three, road 603, office area Sixth

Patentee after: GUANGZHOU PUDAOLIANXIN BIOTECHNOLOGY CO., LTD.

Address before: 101299 room 13, information building, 1002-81 North Avenue, Pinggu Town, Pinggu District, Beijing, China

Patentee before: Beijing early morning rain Biotechnology Co., Ltd.

Effective date of registration: 20160121

Address after: 510000, International Biological Island, Guangdong, Guangzhou, No. three, road 603, office area Sixth

Patentee after: GUANGZHOU PUDAOLIANXIN BIOTECHNOLOGY CO., LTD.

Address before: 101299 room 13, information building, 1002-81 North Avenue, Pinggu Town, Pinggu District, Beijing, China

Patentee before: Beijing early morning rain Biotechnology Co., Ltd.

CX01 Expiry of patent term
CX01 Expiry of patent term

Granted publication date: 20101124