Recently learned from Hefei University of Technology, the school research team in the yttrium aluminum garnet series of LED fluorescent materials and light color control mechanism has made important achievements in order to further improve the performance of LED fluorescent material provides an important means.

High-power LED devices are widely used in public lighting and home and outdoor, however, when the LED lighting source is used for a long time, there will be dim brightness and color drift. Hefei University of Technology Materials Science and Engineering Associate Professor Chen Lei and Professor Jiang Yang task force on the issue of scientific research. Through a series of experimental methods combined with theoretical calculations, they provide a completely new explanation for the intrinsic mechanism of spectral red-shift, intensity reduction and thermal stability deterioration caused by Gd ion substitution. Due to the large Gd ion radius, the electron cloud is squeezed and deformed in the rigid structure of yttrium aluminum garnet, resulting in the enhancement of the crystal field, the reduction of the effective electron mass, the expansion of the electron spreading range and the reduction of the band gap, which leads to the decrease of the luminous efficiency And thermal stability is reduced. Recently, the research results published in the British "Nature" magazine, "Science Report" on.

According to reports, this theory not only scientifically explained the Gd substituted yttrium aluminum garnet phosphors luminescence phenomenon, but also for the development of new rigid structure of fluorescent material has an important guiding significance. "In the future, we can guide the development of man-made gemstone crystals with a specific color to give more brilliant colors, such as various artificial diamonds, sapphires and rubies, which not only show high light transmittance and reflectance, but also can be customized to make them bright and fresh Eye-catching. "Associate Professor Chen Lei introduction.

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Anatomy of the Disk Damper


NOTE:
1. Please contact the corresponding product engineer for specific torque products. 
2. Max. rotation speed: 50r/min
3. Max. circle rate: 6 cycle/min ( Clockwise360 °, 360 ° anti-clockwise for 1 cycle)
4. Operating temperature: -10~50℃
5. Storage temperature:-30~80℃

  NO. Description Material
1 Shell SPFC
2 Cover SPFC
3 Shaft PA/POM
Disk Damper


Disk Damper Characteristics

Applied torque:(T)
Test Temperature: 23+/-5℃
Rotating speed: 20r/min
Durability test Metho: Clockwise 360 °, 360 °anti-clockwise
Rotating speed: 20r/min
Test Frequency: (1cycle/min)
Test Temperature: 23±5℃
Durability test cycle: 50000 cycle
Test result criteria: Store in the room temperature for 24 hours or more after the test, recording to the torque T=T±30%T.

Disk Damper Square Hole


The damper square hole coordinateswith the rotation axis dimension tolerance.


Disk Damper

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