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葉片損傷的聲學(xué)探測(cè)--古老的方法的現(xiàn)代升級(jí)版

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發(fā)表于 2009-4-27 21:32:21 | 只看該作者 回帖獎(jiǎng)勵(lì) |正序?yàn)g覽 |閱讀模式
Damage Detection in Wind Turbine Blades using two
Different Acoustic Techniques

Abstract

Facing the climate change the use of renewable energies gains in importance. Especially the wind
energy branch grows very fast. Bigger and more powerful wind mills will be built in the next
decades and the safety of the mills will play a major role. Wind turbines are treated as buildings
and therefore have to be inspected at regular intervals. Especially the turbine blades are highly
stressed during operation and a blade breakdown can cause a big economic damage.
The turbine blades consist of glass fiber reinforced plastics (GFRP) and sandwich areas
containing wood or plastic foam. The blades are manufactured as two halves and glued together
afterwards. Typical damages are delaminations within the GFRP or the sandwich and missing
adhesive or deficient bond at the bonding surfaces.
The regular inspections of wind turbine blades are done manually by experts and are limited
to visual appraisals and simple tapping tests. To improve the safety of wind turbine blades nondestructive
testing techniques using acoustic waves are being developed.
To detect delaminations within the laminates of the turbine blade a local resonance
spectroscopy is used. A small hammer is used to tap onto the blade and the excited sound is
recorded using a microphone. A structural change within the material is displayed in a change of
the frequency content. Furthermore the exciting signal is recorded and gives additional
information about the structural health of the wind turbine blade.
To detect missing or kissing bond areas from the outside of the blade the impulse-echotechnique
is used. An ultrasonic pulse is sent into the material and is reflected at flaws or material
boundaries. This pulse has to be strong because the GFRP are highly damping. It is difficult to
see through several centimeters of GFRP and the choice of the ideal transducer is very important.
To inspect bonding areas from outside the blade will be a great advance in wind turbine safety.

Damage Detection in Wind Turbine Blades using two.pdf

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14#
發(fā)表于 2009-7-15 16:45:13 | 只看該作者
找不到合適的圖片
13#
 樓主| 發(fā)表于 2009-7-15 16:43:49 | 只看該作者
呵呵,要博士搞就跟某公司一樣,東西做不出來(lái),質(zhì)量還差得離譜。


兄弟們是要看你們那個(gè)代替行車的gantry 系統(tǒng)。

搞個(gè)圖片或者3d 模型。
12#
發(fā)表于 2009-7-15 16:39:42 | 只看該作者
想自己做鋪層系統(tǒng),推薦先仔細(xì)研究此論文
博士級(jí)別的

1.JPG (143 KB, 下載次數(shù): 25)

1.JPG
11#
發(fā)表于 2009-7-14 16:11:12 | 只看該作者
贊一個(gè)!期待!
10#
 樓主| 發(fā)表于 2009-7-14 12:51:46 | 只看該作者
引用第7樓ktking于2009-07-14 08:20 AM發(fā)表的  :
還是不貼了吧
這個(gè)涉及的太敏感了

敏感個(gè)啥?

那么多細(xì)節(jié)沒(méi)有, 只要你做的好,別人模仿都難,是吧。

獻(xiàn)圖, 讓兄弟們瞅瞅。[s:4]
9#
發(fā)表于 2009-7-14 09:14:45 | 只看該作者
頂一個(gè) [s:1]
8#
發(fā)表于 2009-7-14 08:20:55 | 只看該作者
還是不貼了吧
這個(gè)涉及的太敏感了
7#
 樓主| 發(fā)表于 2009-7-13 21:44:05 | 只看該作者
呵呵,可以貼出來(lái)看看否?
6#
發(fā)表于 2009-7-12 16:49:47 | 只看該作者
UT自然有傳統(tǒng)方法代替
鋪層系統(tǒng)我們自己搞的
這個(gè)要有前瞻性的
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