日韩高清免费视频一区二区三区-午夜久久成人精品-五月激情五月天综合网-久久久久亚洲中文-国产成人一区二区福利一区二区-久久精品色妇熟妇丰满人妻av网-激情五月综合激情-欧美黑人狂躁亚洲区综合-久久一日本道色综合久久大香,欧美激情日韩激情,成人精品在线免费视频,国产一区二区三区av观看

產(chǎn)品列表PRODUCTS LIST

聯(lián)系信息

  • 電話:
    189-2580-2250
  • 傳真:
    18925802250
  • 服務(wù)熱線:
    0769-82205353
首頁 > 技術(shù)與支持 > ASTM D5894-2005
ASTM D5894-2005
點擊次數(shù):1363 更新時間:2019-08-19

ASTM D5894-2005

本頁面標(biāo)準(zhǔn)信息均來源于網(wǎng)絡(luò)收集,或由參與標(biāo)準(zhǔn)制定的供應(yīng)商提供,只作為參考使用,為確保測試結(jié)果的準(zhǔn)確性、節(jié)省您的時間,如需ASTM D5894-2005標(biāo)準(zhǔn)詳細(xì)信息或ASTM D5894-2005具體測試方法,請與我們技術(shù)人員聯(lián)系或給我們留言,我們將為您提供相關(guān)的技術(shù)支持。

 

涂層金屬的循環(huán)鹽霧/紫外線暴露試驗(交替暴露在鹽霧/干燥裝置和紫外線/冷凝裝置中)的標(biāo)準(zhǔn)測試方法:

本測試方法規(guī)定了金屬上涂層循環(huán)腐蝕/紫外線暴露測試的基本原則和操作程序;在兩個不同試驗箱之間進(jìn)行交替暴露: 一個是鹽霧/干燥循環(huán),一個是熒光紫外線/冷凝循環(huán)。

ASTM D5894英文介紹

This standard is issued under the fixed designation D 5894; the number immediately following the designation indicates the year of original adoption or, in the case of revision, the year of last revision. A number in parentheses indicates the year of last reapproval. A superscript epsilon (e) indicates an editorial change since the last revision or reapproval.

1. Scope

1.1 This practice covers basic principles and operating practice for cyclic corrosion/V exposure of paints on metal, using alternating periods of exposure in two different cabinets: a cycling salt fog/dry cabinet, and a fluorescent V/condensation cabinet.

1.2 This practice is limited to the methods of obtaining,measuring, and controlling exposure conditions, and procedures. It does not specify specimen preparation nor evaluation of results.

1.3 The values stated in SI units are to be regarded as standard. No other units of measurement are included in this standard.

1.4 This standard does not purport to address all of the safety concerns, if any, associated with its use. It is the responsibility of the user of this standard to establish appropriate safety and health practices and determine the applicability of regulatory limitations prior to use.

2. Referenced Documents

2.1 ASTM Standards:

D 610 Test Method for Evaluating Degree of Rusting on Painted Steel Surfaces

D 714 Test Method for Evaluating Degree of Blistering of Paints

D 1654 Test Method for Evaluation of Painted or Coated Specimens Subjected to Corrosive Environments。

 

D 4587 Practice for Fluorescent V-Condensation Exposures of Paint and Related Coatings

G 85 Practice for Modified Salt Spray (Fog) Testing

G 113 Terminology Relating to Natural and Artificial Weathering Tests of Nonmetallic Materials

G 147 Test Method for Measuring Abrasion Resistance Materials by Abrasive Loop Contact

G 151 Practice for Exposing Nonmetallic Materials in Accelerated Test Devices That se Laboratory Light Sources

G 152 Practice for Operating Open Flame Carbon Arc Light Apparatus for Exposure of Nonmetallic Materials

G 154 Practice for Operating Fluorescent Light Apparatus for V Exposure of Nonmetallic Materials

G 155 Practice for Operating Xenon Arc Light Apparatus for Exposure of Non-Metallic Materials

3. Terminology

 

3.1 Definitions—The definitions given in Terminology

G 113 are applicable to this practice.

4. Summary of Practice

4.1 The test specimens are exposed to alternating periods of one week in a fluorescent V/condensation chamber and one week in a cyclic salt fog/dry chamber. The fluorescent V/condensation cycle is 4-h V at 0.89 W/(㎡· nm) at 340 nm at 60°C and 4-h condensation at 50°C, using VA-340 lamps. The fog/dry chamber runs a cycle of 1-h fog at ambient temperature and 1-h dry-off at 35°C. The fog electrolyte is a relatively dilute solution, with 0.05 % sodium chloride and 0.35 % ammonium sulfate.

NOTE 1—The irradiance target setpoint of 0.89 is based upon actual irradiance levels that have been historically widely used for coatings.

5. Significance and se

5.1 The outdoor corrosion of painted metals is influenced by many factors, including: corrosive atmospheres, rain, condensed dew, V light, wet/dry cycling, and temperature cycling. These factors frequently have a synergistic effect on one another. This practice is intended to provide a more realistic simulation of the interaction of these factors than is found in traditional tests with continuous exposure to a static set of corrosive conditions.

5.2 Results obtained from this practice can be used to compare the relative durability of materials subjected to the specific test cycle used.

5.3 No single exposure test can be specified as a complete simulation of actual use conditions in outdoor environments.

Results obtained from exposures conducted according to this practice can be considered as representative of actual outdoor exposures only when the degree of rank correlation has been established for the specific materials being tested. The relative durability of materials in actual outdoor service can be very different in different locations because of differences in V radiation, time of wetness, temperature, pollutants, and other factors. Therefore, even if results from a specific artificial test condition are found to be useful for comparing the relative durability of materials exposed in a particular exterior environment, it cannot be assumed that they will be useful for determining relative durability for a different environment.

5.4 Even though it is very tempting, it is not recommended to calculate an “acceleration factor” relating x hours of laboratory exposure to y months of exterior exposure. Different materials and different formulations of the same material can have significantly different acceleration factors. The acceleration factor also varies depending on the variability in rate of degradation in the laboratory test and in actual outdoor exposure.

5.5 This practice is best used to compare the relative performance of materials tested at the same time in the same exposure device. Because of possible variability between the same type of exposure devices, it is not recommended to compare the amount of degradation in materials exposed for the same duration at separate times, or in separate devices running the same test condition. This practice should not be used to establish a “pass/fail” approval of materials after a specific period of exposure unless performance comparisons are made relative to a control material exposed simultaneously, or the variability in the test is rigorously quantified so that statistically significant pass/fail judgments can be made.

5.6 This practice has been found useful for air-dry industrial maintenance paints on steel3,4,5,6 and zinc-rich primers but its applicability has not yet been assessed for galvanized substrates.

6. Apparatus

6.1 Fluorescent V-Condensation Exposure Chamber,complying with Practices G 151 and G 154.

6.2 VA-340 Fluorescent Lamps.

6.3 Salt Fog/Dry Cabinet, complying with Practice G 85,Dilute Electrolyte Cyclic Fog/Dry Test Annex.

NOTE 2—Committee G03 is developing information to be published in Appendices of G 151, G 152, G 154, and G 155 for guidance on uniformity of conditions in the test chambers and allowed operational fluctuations of the set points.

7. Test Specimens

7.1 The composition and preparation of the substrate, specimen preparation, and the number of specimens shall be agreed upon prior to testing.

7.2 Follow the guidelines of Practice G 85 and Practice

D 4587 on the preparation of specimens for the needs of those particular exposures.

7.2.1 Follow the guidelines of Practice G 147 on conditioning and handling of specimens.

7.3 nless otherwise agreed, flat specimens shall be 75 by 150 mm.

7.4 Expose at least one control specimen with every test.

The control specimen should have known durability and be of similar composition to the test specimens. It is preferable to have two control materials: one of higher durability and one of lower durability.

7.5 It is recommended that at least three replicates of each specimen be tested, to compensate for variation within the chambers and variation between specimens.

8. Procedure

8.1 Fluorescent V-Condensation Exposure:

8.1.1 Start the exposure in the fluorescent V-condensation chamber.

NOTE 3—It has been found that in certain cases the exposure must start in the fluorescent V/condensation device in order to get realistic rusting and staining as well as faster corrosion. It is thought that the initial V damage to the coating allows the subsequent salt fog to produce a more realistic corrosion attack on the substrate.

8.1.2 Perform the fluorescent V-condensation exposure in compliance with Cycle 2 of Practices D 4587 and G 151 and G 154.

8.1.3 nless otherwise specified, set the irradiance level to 0.89 W/(㎡· nm) at 340 nm. Program a cycle of 4-h V at 60°C 6 3°C and 4-h condensation at 50°C 6 3°C.

8.1.3.1 If mutually agreed upon by all parties, use of non-irradiance controlled devices is permitted, but use of these devices must be included in the test report.

8.1.4 se VA-340 fluorescent lamps.

8.1.5 Expose the specimens for a total of 168 h (1 week) in the fluorescent V-condensation chamber before transferring them to the fog/dry chamber.

8.1.6 Other cycles and lamps are acceptable if agreed upon prior to the test, and reported in compliance with Section 10.

8.2 Cyclic Salt Fog/Dry Exposure:

8.2.1 Perform the cyclic salt fog/dry exposure according to Practice G 85, Dilute Electrolyte Cyclic Fog/Dry Test Annex.

 

8.2.2 Program a fog/dry cycle of 1-h fog at ambient temperature and 1-h dry-off at 35°C at the chamber’s reference temperature sensor.

8.2.3 Prepare the salt solution with 0.05 % sodium chloride and 0.35 % ammonium sulfate by weight.

8.2.4 Expose the specimens for a total of 168 h in the fog/dry chamber before transferring them back to the fluorescent V-condensation chamber.

8.2.5 Other cycles, temperatures, and electrolytes are acceptable if agreed upon prior to the test, and reported in compliance with Section 10.

NOTE 4—Higher temperatures usually produce faster degradation, but possibly at the expense of realism. Longer fog/dry cycles (for example, 2-h fog, 2-h dry) have been found to produce slower degradation.

8.3 Specimen Rotation—When moving the specimens from one chamber to another, reposition the specimens so that over the course of the test each specimen spends equal amounts of time in each area of the chamber: edges, center, top, bottom.

This will help minimize variation in degradation due to variations in conditions within the chamber.

8.4 Do not wash or clean specimens between tests or prior to completion of entire test, or as agreed upon between purchaser and seller prior to testing.

8.5 Evaluation of Corrosion—Methods that may be useful for evaluating the corrosion of the specimens are Test Methods

D 610, D 714, and D 1654. Practice D 4587 also references a number of other standards that may be used for evaluating the appearance change of the specimens.

8.5.1 Evaluate every 336 h or multiples thereof and after completion of testing. Perform evaluation after complete 2 step (V exposure and Salt Fog/Dry Exposure) cycles only.

9. Duration of Exposure

9.1 se one of the following methods to determine theduration of the exposure under this practice:

 

9.1.1 A mutually agreed upon specified number of total hours,

9.1.2 The exposure required to produce a mutually agreed upon amount of change in either the test specimens or an agreed upon standard reference specimen, and

9.1.3 If no information is available as to an appropriate exposure duration, expose the specimens for a total of 1008 h, or until significant differences in performance between specimens become apparent.

10. Report

10.1 Report the following information:

10.1.1 Test cycle,

10.1.1.1 V/condensation cabinet cycle (for example, 4-h V at 60°C and 4-h condensation at 50°C),

10.1.1.2 Fog/dry cabinet cycle (for example, 1-h fog at ambient temperature and 1-h dry-off at 35°C),

10.1.1.3 Hours spent in each cabinet before transfer from one cabinet to the other (for example, 168 h in the fog/dry cabinet and 168 h in the V/condensation cabinet),

10.1.1.4 The total hours of exposure,

10.1.2 Manufacturer’s designation and wavelength of peak emission for fluorescent lamps, if different than 8.1.4,

10.1.3 Electrolyte solution (for example, 0.05 % sodium chloride and 0.35 % ammonium sulfate by mass),

10.1.4 Specimen cleaning standards used or cleaning materials and procedures, and

10.1.5 Other information required in Report section of Practice G 85 and Periods of Exposure and Evaluation of Results section of Practice D 4587.

11. Keywords

11.1 accelerated aging/testing—paints; corrosion; cyclic corrosion; rust; salt spray; ultraviolet

上一篇:ASTM D6551

下一篇:ASTM D5894-16

返回列表>>
聯(lián)系人
在線客服
用心服務(wù) 成就你我

粵公網(wǎng)安備44190002001386號

北条麻妃精品无套内谢-色综久久 后入在线观看 四虎影库在线播放-国产成人午夜无码-美女大黄片 | 777777777亚洲大胆妇女-狼人综合干网-国产精品77777竹菊影视-亚色九九九视频 | 日哭老师免费在线观看视频-国产一区二区不卡三区-DVD在线播放 国产自偷在线拍精品热-国产AV熟女 | 北条麻妃中文magnet-91干逼-中国精品露脸-风间由美乳巨码无A片在观看 | 美女高潮自慰网站-搡东北老女人老熟女-自拍偷拍精品视频-亞洲av無碼一區二區三區觀看 | 妖精在线网站免费看-国产午夜福利精品一区二区三区-亚洲欧美日韩在线一区-日韩图色 | jizzjizz黄-自慰在线免费看-免费黄色网页大全-剧情片免费全集观看 久久久久精品日日国产成人精品第一区二区三区 | 黑人videos巨大hd粗暴的剧情简介-人妻熟妇91Porn 九色-大香蕉中文第三页-中文字幕150页 | 亚洲av自慰白浆喷水网站-国产剧免费高清观看 国产无码网页在线观看-人妻[21p]大胆 国产成人精品视频网站 BD神马影院在线-中国老老熟女 | BD英语神马影院手机在线-手机免费有坂深雪电影中文字幕亚洲区-jiZZjiZZji 欧美-男女又爽 又黄 免费蘑菇 | 黄频网站大全-不卡的影视大全-干日本少妇-欧美淫妇 | jizzjizz日本熟妇-成熟美妇高潮欲仙欲死-肥臀熟女乱伦-国产熟女情人口爆正在播放 | 偷窥自拍女人性爱的视频-gogogo免费完整国语版首叶i 日韩欧美亚洲国产精品字幕久久久-久久久久人妻一区精品-久久综合久久 | 熟女人妻偷人300部-中国熟妇ⅹ×-九七狠狠操-日本猛少妇BBB欧美一级毛片 | 北条麻妃人妻女教师2-大香蕉伊在人线-亚洲午夜精品久久久久久浪潮-伊人按摩电影 | 白嫩美在线自慰-日本迷J灌醉下药视频-久久熟女人妻-女色AV | 久久99久久99精品免观看-HD动漫在线观看 国产亚洲免费观看-人妻黑人一区二区三区-做受 高潮喷水片在线观看 | 日韩亚洲欧美www3344男同-中文小草第一夜-古风成人毛片-日本熟女乱交 | 自拍偷拍高清无码-美女自卫网站-女人操逼视频-中国性裸体熟女 | 日韩电影在线-BD英语全集在线观看 2782 6242 久久人人爽人人爽人人片-国产精品自在欧美一区-play欧美在线视频 | 久久综合色之久久综合-KTV做爰视频一区二区-探花HD精品-国产午夜精品理论片久久 | 中文字幕国产精品久久久-尤物久久99热国产综合-精品无码一区二区三区爱欲-欧韩日美黄色一级大片 美女被猛干网站-67194熟妇直接进入-东京狠狠干-色色色淫荡 | 青青青欧美在线观看视屏-四虎熟女-五十路AV女优电影-人妻理论片 台湾成人综合-久久九九九字幕-BBBWWW-国产乡下妇女做爰视频 | 亚洲爆乳无码一区二区三区-Chinese国产av-国产农村少妇性事-曰本毛茸茸性生话 | 蜜美杏中字HD在线观看-欧美美女被猛插内射的软件-久久综合桃花网中文字幕-性少妇厨房BBwBBwBBw | 欧美日老熟女-中国美女裸体自慰-青草免费打飞机76久-goinggo高清在线观看免费版下载 | 妃光莉无码-自慰女网红毛片-欧美老妇久久伊人网-中文字幕66页 | 老头大战三个农妇对白Av-中文字幕日韩片无码 日韩中文AV-正在播放熟妇大叫受不了-四虎影视精品 | 中文一本逼-午夜精品国产精品大乳美女-aa,看a级片-推荐吃瓜国产日韩海外猎奇乱伦 | 男女青青影院-日韩黄3atv 一级a片片2019-丰满老熟女毛片-在线无码精品秘?入口四色 | 国内揄拍国内精品对白-女人大乳被 免费看JaPan-性激烈的欧美暴力三级视频-亚洲熟女av中文字 | 动漫美女老师自慰-日B视屏-国产精品无码ThePorn-一级美女日逼视频 | 中文字幕22页-日本老女人性爱-国产成人无线视频不卡二-伊人影院95 | 青青青欧美在线观看视屏-四虎熟女-五十路AV女优电影-人妻理论片 台湾成人综合-久久九九九字幕-BBBWWW-国产乡下妇女做爰视频 | 黑人与女优爱爱-老男人色网-欧美日处影院-中文无码熟妇人妻av在线 | 2021亚洲国产精品无码-北条麻妃五十路-国产美女裸体无遮挡多久免费视频-免费追剧在线观看 久久91精品国产一区二区 | 色网操穴-摸奶插逼网站-国产操女老师视频-国产美女a做受大片在线观看 | 国产亚洲淫青年Gay-老司机操B-巨胸喷奶水WWWW贱多视频-赵丽颖av在线 | 超多超嫩国产-湿中文字幕日韩-China张开双腿露黑毛-播放月经期一级A片 | 高清完整在线观看 视频一区免费-色情故事ヘンリー冢本-精品一区二区三区欧美老妇喷浆-88无码 | 嗯∽啊~轻点禁 揉胸视频在线看-巨型怪物h粗暴3d-加勒比无码北条麻妃-伊人大香蕉在线观看 |