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案例之老外做的手工計算與軟件分析相結(jié)合

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1#
發(fā)表于 2012-12-28 13:22:38 | 只看該作者 |只看大圖 |倒序瀏覽 |閱讀模式
人家沒把基礎(chǔ)丟了,全文轉(zhuǎn)載。& J% M; n/ O- R* c
2 k7 f& S+ P$ V. F1 |
For this post I decided to test out something that I learned in my mechanical vibrations class which is calculating the natural frequency of a semi-ring. This ring can be seen above with some of the basic dimensions. Below are my hand calculations to find the frequency. The subscript G is referring to the center of gravity whereas the subscript O is referring to the geometric center of the ring. Gravity is the restoring force that is acting on the ring when the center of gravity is past the geometric center of ring. I found the maximum kinetic and potential energy of the ring due to the fact that the total energy in the system is the kinetic plus the potential. When the ring is at is farthest position, the potential energy will be at the max and there will be no kinetic energy. When the ring is passing through its equilibrium the kinetic energy will be at its maximum and there will be no potential energy. Due to the fact that the total energy in the system is not changing they can be set equal to each other. Solving this for the natural frequency will result in a relatively simple formula that is seen at the bottom of my hand calculations.: k1 w8 w  ~9 K% z  q: ]
- g; k% x6 I3 X( a3 g) {
The next step was to create the model in SolidWorks and create a motion study. I used motion analysis to create a study using gravity and had an initial displacement of the ring. In the first study I just used a tangent mate to keep the contact but I also created another study in which I used solid body contact with friction. This acted as a damper and reduced the amplitude over time. Once I ran the study I plotted the y component of linear displacement selecting the upper edge of the ring and the base plate as a reference. This gave me the graph that you see below.
  ]  I. [( y. g8 z; N ' \+ n/ [$ N- l
To find the frequency of oscillation I right clicked in the graph and selected export CSV. This gave me data points that I was able to open in Excel. With this open I determined the number of cycles per second. This turned out to be approximately 1.1 Hz which is relatively close to the 1.04 Hz that was calculated using the equations. Feel free to check out the model below and try to calculate the natural frequency of a different sized ring but make sure to have motion analysis added in
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2#
發(fā)表于 2012-12-28 14:40:26 | 只看該作者
長見識了,老外真認真啊!計算書都寫得這么干凈!

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人家做的機械振動的作業(yè)  發(fā)表于 2012-12-30 09:33
3#
發(fā)表于 2012-12-28 14:54:46 | 只看該作者
需要學(xué)習啊
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4#
發(fā)表于 2012-12-30 08:23:40 | 只看該作者
長見識了,老外真認真啊!計算書都寫得這么干凈!
: d8 I! E0 l) G3 ?7 V

點評

那要分草稿還是留底用的正稿了,正稿的計算書我們的也很清晰。  發(fā)表于 2013-1-5 01:05
5#
發(fā)表于 2012-12-30 09:31:53 | 只看該作者
大俠,這是人家學(xué)生的作業(yè)而已。
6#
發(fā)表于 2012-12-30 09:32:10 | 只看該作者
國內(nèi)學(xué)生也可以做,沒做而已。
7#
發(fā)表于 2012-12-30 10:52:36 | 只看該作者
muziyou 發(fā)表于 2012-12-30 09:32 ' w; o$ V4 L7 N% `$ i: d
國內(nèi)學(xué)生也可以做,沒做而已。

7 T2 A5 U  y0 d3 m' J3 b/ b& L就沒有那勁吧,做出來再說,不能說自己能做,只是沒做而已。這就是差距!
0 [1 x) O! B$ r# F! Q

點評

這個就是作業(yè)而已啊,誰說國內(nèi)學(xué)生沒做啊,我當年都做過的  發(fā)表于 2013-1-4 16:56
很多人并不真正認識到基礎(chǔ)計算的重要性,一個真正的工程師需要具備什么樣的專業(yè)能力。你不動手算,現(xiàn)在可能大部分行業(yè)都專用的計算軟件,而對于計算中設(shè)計到的公式不思考其由來,這就很難提升自己。這是我的看法。  發(fā)表于 2013-1-2 00:28
為什么沒做? 1. 懶 2. 怕麻煩 3. 認為到時再算~~~~~~~~那功底是會從何而來?  發(fā)表于 2012-12-31 12:21
8#
發(fā)表于 2012-12-30 10:52:37 | 只看該作者
muziyou 發(fā)表于 2012-12-30 09:32
8 Q% F0 z7 u) N* Q$ _7 g; Q3 P國內(nèi)學(xué)生也可以做,沒做而已。
3 {! i9 R4 F, t# v
就沒有那勁吧,做出來再說,不能說自己能做,只是沒做而已。這就是差距!3 N# Q" m7 k5 F/ x: ?

點評

差距是要承認的。  發(fā)表于 2012-12-30 12:31
9#
發(fā)表于 2012-12-30 12:50:50 | 只看該作者
準備寒假搞基礎(chǔ),力學(xué) 數(shù)學(xué)!回老家潛心學(xué)

點評

寒假很忙的,如果平時沒有學(xué)的,寒假真的很難抽時間學(xué)。。。  發(fā)表于 2013-1-5 01:06
10#
發(fā)表于 2012-12-30 14:40:41 | 只看該作者
豎然起敬
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