紫外光冷凝老化試驗箱 紫外老化試驗機 Fluorescent UV Testing G154 UVA340 UVB313
熒光/紫外線測試
已經開發出具有特定光譜分布的熒光UV燈,其機械和電氣特性與用于住宅和商業照明的那些相似。這些光源被納入熒光紫外線聚光裝置,如HONGZHAN UV TestER。這些裝置可用于改變亮/暗循環,溫度,冷凝濕度,噴水和輻照度控制的測試中。
有幾種不同類型的熒光紫外燈具有獨特的光譜特性。熒光UV-B燈(F40和UVB-313)具有約313nm的峰值,其幾乎所有能量都集中在280nm和360nm之間。很大一部分波長比自然光照下的波長短。波長長于360nm的輻射很少。當加速試驗使用UV-B燈時,實驗室加速和室外試驗之間經常報告材料穩定性等級的逆轉。這是因為大量的短波紫外線和缺乏長波紫外線和可見光輻射;降解機制可能與“自然”測試的機制有很大不同。
熒光黑燈,稱為UV-A燈,可提供340nm-370nm的峰值發射(例如,UVA-340和UVA-351)。在1987年開發的UVA-340燈中,短波長輻照度模擬了325nm以下的直接太陽輻射。
由于UV-A燈不會發出低于自然陽光斬波的輻射,因此與室外風化的相關性有所改善,但測試時間比使用UV-B燈更長。然而,可以注意到,使用熒光燈的測試被廣泛實踐。這些測試對于特定條件下材料之間的相對等級比較非常有用,但與服務壽命性能或與室外暴露的相關性的比較可能無效。紫外燈的*&佳用途是用于一般的篩選測試,例如通過人為刺激的暴露檢查總配方錯誤。
與競爭對手的熒光紫外線設備相比,HONGZHAN UV TestER是一種新型儀器,在功能,易用性,準確性和安&全性方面具有更高的標準。
Fluorescent / UV Testing
Fluorescent UV lamps, similar in mechanical and electrical characteristics to those used for residential and commercial lighting, have been developed with specific spectral distributions. These sources are incorporated into fluorescent UV condensation devices such as the HONGZHAN UV TestER. These devices may be used in tests that vary light/dark cycles, temperature, condensing humidity, water sprays, and irradiance control.
There are several different types of fluorescent UV lamps that have unique spectral characteristics. Fluorescent UV-B lamps (F40 and UVB-313), with a peak around 313 nm, have nearly all of their energy concentrated between 280 nm and 360 nm. A large percentage is at wavelengths shorter than what is present in natural sunlight. There is very little radiation with wavelengths longer than 360 nm. Reversals in the stability ranking of materials have often been reported between laboratory accelerated and outdoor tests when the accelerated test uses UV-B lamps. This occurs because of the large amount of short wavelength UV and the lack of long wavelength UV and visible radiation; the mechanisms of degradation may be significantly different from those of the “natural” tests.
Fluorescent black lights, referred to as UV-A lamps, are available with peak emissions of 340 nm – 370 nm (e.g., UVA-340 and UVA-351). In the UVA-340 lamp, developed in 1987, the short wavelength irradiance simulates that of direct solar radiation below 325 nm.
Because UV-A lamps do not emit radiation below the cut-on of natural sunlight, correlation with outdoor weathering is somewhat improved, but test times are longer than with UV-B lamps. It may be noted, however, that tests using fluorescent lamps are widely practiced. These tests are useful for relative rank comparisons between materials under specific conditions, but the comparison to service lifetime performance or correlation to outdoor exposures may not be valid. The best use of the UV lamps is for general screening tests, such as checking for gross formulation errors with an artificially harsh exposure.
The HONGZHAN UV TestER is a new instrument, higher standard in terms of features, ease-of-use, accuracy and safety as compared to competitive fluorescent UV devices.
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