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化工儀器網(wǎng)>產(chǎn)品展廳>物理特性分析儀器>測(cè)厚儀>其它測(cè)厚儀 >BR-UL-MCT 金屬覆蓋層厚度測(cè)試系統(tǒng)

BR-UL-MCT 金屬覆蓋層厚度測(cè)試系統(tǒng)

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2003'  泊睿成立

2006'  偶然承接了國(guó)內(nèi)光伏行業(yè)*組件紫外預(yù)處理試驗(yàn)機(jī), 自此躋身光伏行業(yè)...

2007'  面向光伏領(lǐng)域全面技術(shù)轉(zhuǎn)型...

2008'  大發(fā)展時(shí)期, *研發(fā)或*商品化了大陸地區(qū)*冰雹試驗(yàn)機(jī)、機(jī)械載荷試驗(yàn)機(jī)、組件穩(wěn)態(tài)模擬器...同年研發(fā)出或許是國(guó)內(nèi)光伏行業(yè)*(中國(guó)臺(tái)灣可能同年)引出端強(qiáng)度試驗(yàn)機(jī)、導(dǎo)線管彎曲試驗(yàn)機(jī)、孔口蓋敲擊試驗(yàn)機(jī)、抗劃傷(切割)試驗(yàn)機(jī)、UL推擠試驗(yàn)機(jī)...

2009'  行業(yè)一片"冬天"、"洗牌"聲中, 泊睿貴在堅(jiān)持...

2010'  第二輪大發(fā)展時(shí)期...

2011'  完善了組件及光伏方陣戶外測(cè)試系統(tǒng)及穩(wěn)態(tài)模擬器的全部測(cè)試項(xiàng)目, 研發(fā)出全自動(dòng)UL熱斑耐久試驗(yàn)機(jī)、組件鹽霧試驗(yàn)室、接線盒標(biāo)識(shí)耐久性試驗(yàn)機(jī)、組件PID電勢(shì)差誘導(dǎo)降解試驗(yàn)系統(tǒng)...

2012'  光伏殤年,泊睿與業(yè)界共渡時(shí)艱…

2013'  尊嚴(yán)來(lái)自實(shí)力…

Shanghai B.R. sci. instrument co.,ltd. is one of first manufacturer devoted to the study of solar photovoltaic testing instruments, the products had been accepted by numerous solar photovoltaic factorys and Lab, the products implement IEC 61215:2005 & Ed.3, IEC 61646:2008, IEC 61730-2:2004 & Ed.2, UL 1703-2012, VDE 0126-3/5:2008 etc. standards.

B.R. instruments includes:

PV Module UV preconditioning test chamber (or room)

Photovoltaic material UV light Aging tester

Steady-State Solar Simulator

Xenon arc lamp test chamber for SWE & light soaking test

Module & array outdoor measure system

Mechanical load tester

Hail tester

Thermal cycling & humidity-freeze & damp-heat test chamber

Wet leakage current tester with spray system

Salt water spray test chamber

Bypass diode thermal test system

Accessibility test finger

Drop-ball impact tester

Module breakage tester

Robustness of terminations Ua Ub tester

Robustness of terminations Ud tester

Terminal box knockout tester

Conduit bending tester

Cut susceptibility tester

Material universal tester

Crosslinking rate test system

Atomic absorption spectrometer

Programmable control voltage insulation meter

Visual inspection series instruments

Partial discharge-test system

UL push tester

UL hot-spot tester

DC power supplies

DC electronic load

Impulse voltage test system

Reverse current overload test system

Ground bond tester

Fire resistance test room…

 

http://www.br17.com

 

China

TEL: 86-21-51595236, 51595237

FAX: 86-21-51595235

E-mail: br.sci@263.net,borui17@126.com

 

USA

18 Culnen Drive, Somerville, NJ 08876

Phone: 888-900-1581 ext 203/100

FAX: 888-900-4560

E-mail: karen@atlanticces.com

 

 

穩(wěn)態(tài)模擬器及I-V測(cè)試儀,組件戶外測(cè)試系統(tǒng),紫外預(yù)處理試驗(yàn)機(jī),引出端強(qiáng)度試驗(yàn)機(jī),濕漏電流測(cè)試系統(tǒng),機(jī)械載荷試驗(yàn)機(jī),冰雹撞擊試驗(yàn)機(jī),旁路二極管熱性能測(cè)試系統(tǒng),熱斑耐久試驗(yàn)機(jī),EVA交聯(lián)度測(cè)試儀

 

BR-UL-MCT Metallic Coating Thickness Test System
 
Implementation of standards: UL 1703-2008, ASTM B499-2009, ISO 2178-1995
 
The test for corrosive atmosphere Test, include salt spray test and moist carbon dioxide / sulphur dioxide, measure the thicknees of coating on Zinc-coated (galvanized) Iron or steel articles. Recommend ASTM B499 and ISO 2178 Nonmagnetic coatings on magnetic basis metals measurement of coating method. UL 1703-2008 use mass loss methodchemical method), Maneuverability is not strong, and chemical reagent may pollute the environment.
 
The method for determining the thickness of a zinc or cadmium coating mentioned in 14.1 and 14.2 is described in following.
The solution to be used for the metallic coating thickness test is to be made from distilled water and is to contain 200g/L of reagent (or better) grade chromium trioxide (CrO3) and 50g/l of reagent (or better) grade concentrated sulfuric acid (H2SO4). The latter is equivalent to 27ml/l of reagent grade concentrated sulphuric acid, specific gravity 1.84, containing 96 percent of H2SO4.
The test solution is to be contained in a glass vessel such as a separatory funnel with the outlet equipped with a stopcock and a capillary tube of approximay 0.64 mm inside bore and 150mm long. The lower end of the capillary tube is to be tapered to form a tip, the drops from which are about 0.05 milliliter each. To preserve an effectively constant level, a small glass tube is to be inserted in the top of the funnel through a rubber stopper and its position is to be adjusted so that when the stopcock is open, the rate of dropping is 100±5 drops/min. If desired, an additional stopcock may be used in place of the glass tube to control the rate of dropping.
The sample and the test solution are to be kept in the test room long enough to acquire the temperature of the room, which should be noted and recorded. The test is to be conducted at a room temperature of 21.2°C~32.0°C.
The sample is to be thoroughly cleaned before testing. All grease, lacquer, paint, or other nonmetallic coatings, including skin oils, are to be removed compley by means of solvents. The sample is then to be thoroughly rinsed in water and dried with clean cheesecloth.
The sample to be tested is to be supported from 17mm to 25mm below the orifice. The surface to be tested shall be inclined at approximay 45 degrees from the horizontal so that the drops of solution strike the point to be tested and run off quickly.
The stopcock is to be opened and the time in seconds is to be measured until the dropping solution dissolves the protective metal coating, exposing the base metal. The end point is the first appearance of the base metal recognizable by the change in color at that point.
The sample of a test lot is to be subjected to the test at three or more points, excluding cut, stenciled, and threaded surfaces, on the inside surface and at an equal number of points on the outside surface, at places where the metal coating may be expected to be the thinnest. (On enclosures made from precoated sheets, the external corners that are subjected to the greatest deformation are likely to have thin coatings.)
To calculate the thickness of the coating being tested, select from following the thickness factor appropriate for the temperature at which the test was conducted and multiply by the time in seconds required to expose base metal as noted in 38.7.

Temp.
Thickness factors
Temp.
Thickness factors
Temp.
Thickness factors
Cadmium platings
Zinc platings
Cadmium platings
Zinc platings
Cadmium platings
Zinc platings
21.1
1.331
0.980
25.0
1.405
1.042
28.9
1.480
1.100
21.7
1.340
0.990
25.6
1.416
1.050
29.4
1.490
1.110
22.2
1.352
1.000
26.1
1.427
1.060
30.0
1.501
1.120
22.8
1.362
1.010
26.7
1.438
1.070
30.6
1.513
1.130
23.3
1.372
1.015
27.2
1.450
1.080
31.1
1.524
1.141
23.9
1.383
1.025
27.8
1.460
1.085
31.7
1.534
1.150
24.4
1.395
1.033
28.3
1.470
1.095
32.2
1.546
1.160



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