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振動控制英語怎麼說及英文翻譯

發布時間: 2022-03-15 01:48:19

❶ 」振動控制系統程序流程圖「用英語怎麼翻譯地道的英語,符合英語習慣的,謝謝

Program Flow Chart of Vibration Control System

❷ 汽車振動與雜訊控制 用英文怎麼說

Auto Vibrate and Noises Control

❸ 振動磨用英語怎麼說

振動磨

[化工] vibromill;vibrating ball mill更多釋義>>

[網路短語]

  • 振動磨vibromill;Vibration mill;vibrating ball mill

  • 振動磨礦機vibrating mill;vibration grinding mill;vibrating grinding mill

  • 偏心振動磨eccentric vibration mill

❹ 控制用英語怎麼說

控制」的英語是:control;

音標:英[kən'trəʊl]、美[kən'trol]

❺ 控制的英語怎麼寫

控制的英語:control

control 讀法 英[kən'trəʊl]美[kən'trol]

1、n. 控制;管理;抑制;操縱裝置

2、vt. 控制;管理;抑制

短語:

1、control of對…的控制

2、quality control質量控制,質量管理

3、under control處於控制之下;情況正常

4、out of control失去控制

5、control method控制方法,檢查法

例句:

1、All the newspapers are under government control.

所有的報紙都處在政府控制之下。

2、The restructuring involves Mr. Ronson giving up control of the company.

公司重組需要羅森先生放棄對公司的控制。

(5)振動控制英語怎麼說及英文翻譯擴展閱讀

control的近義詞:bottle

bottle 讀法 英['bɒt(ə)l]美['bɑtl]

1、n. 瓶子;一瓶的容量

2、vt. 控制;把…裝入瓶中

3、vi. (街頭藝人演出後)收攏錢幣

短語:

1、hit the bottle酗酒

2、gas bottle氣瓶;洗氣瓶

3、thermos bottle 熱水瓶

4、bottle up隱藏,剋制;裝入瓶中控制,嚴密封鎖

5、spray bottle噴霧瓶;噴葯瓶

例句:

This is a large truck which has equipment to automatically bottle the wine.

這是輛有葡萄酒自動裝瓶設備的大卡車。

❻ 震動用英文怎麼說

shake
n:搖動,震動
vt:搖動,動搖,使震動,揮舞
vi:震動,發抖,動搖

❼ 對加以控制 英語怎麼說

對加以控制的英文翻譯_網路翻譯
對加以控制
To control
control_網路翻譯
control 英[kənˈtrəʊl] 美[kənˈtroʊl]

[例句]The restructuring involves Mr Ronson giving up control of the company
這次改組內涉及龍森先生放棄容對公司的控制權。
[其他] 第三人稱單數:controls 復數:controls 現在分詞:controlling過去式:controlled 過去分詞:controlled

❽ 簡諧振動、非簡諧振動 英語怎麼說

看一樓的樣子是字典查來的吧。

Simple Harmonic Motion是簡諧運動不是簡諧振動。即使不知道這個專業詞彙的用法也可以從字面看出,motion一詞的意思是運動。

簡諧振動英語應該是是harmonic oscillation,非簡諧振動是anharmonic oscillation。harmonic前加an變反義

oscillation是振動,擺動的意思,源自動詞oscillate。其另一名詞形式oscillator在物理中可表示振子,模電中表示振盪器,激光理論中表示諧振腔

至於vibrate確實也是振動意思,但不用在簡諧振動中, anharmonic vibration是不地道的用法。在物理的弦理論中說物質是由振動的能量組成,確切的英文就是vibrating string。

物理中有許多專有名詞是約定俗成的,並不能用其他中文翻譯相同的英文詞彙代替。了解地道的專有名詞用法只能通過閱讀外文專業書籍和論文

如果樓主需要其他普通物理中波動方面的專業詞彙,請參看MIT開放式課程的相關頁面

http://ocw.mit.e/OcwWeb/Physics/8-03Fall-2004/Calendar/index.htm

❾ 跪求振動方面的英文翻譯

Oscillation is the repetitive variation, typically in time, of some measure about a central value (often a point of equilibrium) or between two or more different states. Familiar examples include a swinging penlum and AC power. The term vibration is sometimes used more narrowly to mean a mechanical oscillation but sometimes is used to be synonymous with "oscillation." Oscillations occur not only in physical systems but also in biological systems and in human society.

Simplicity
The simplest mechanical oscillating system is a mass attached to a linear spring subject to no other forces. Such a system may be approximated on an air table or ice surface. The system is in an equilibrium state when the spring is static. If the system is displaced from the equilibrium, there is a net restoring force on the mass, tending to bring it back to equilibrium. However, in moving the mass back to the equilibrium position, it has acquired momentum which keeps it moving beyond that position, establishing a new restoring force in the opposite sense. If a constant force such as gravity is added to the system, the point of equilibrium is shifted. The time taken for an oscillation to occur is often referred to as the oscillatory period.

The specific dynamics of this spring-mass system are described mathematically by the simple harmonic oscillator and the regular periodic motion is known as simple harmonic motion. In the spring-mass system, oscillations occur because, at the static equilibrium displacement, the mass has kinetic energy which is converted into potential energy stored in the spring at the extremes of its path. The spring-mass system illustrates some common features of oscillation, namely the existence of an equilibrium and the presence of a restoring force which grows stronger the further the system deviates from equilibrium.

The harmonic oscillator offers a model of many more complicated types of oscillation and can be extended by the use of Fourier analysis.

Damped, driven and self-inced oscillations
In real-world systems, the second law of thermodynamics dictates that there is some continual and inevitable conversion of energy into the thermal energy of the environment. Thus, oscillations tend to decay (become "damped") with time unless there is some net source of energy into the system. The simplest description of this decay process can be illustrated by the harmonic oscillator. In addition, an oscillating system may be subject to some external force (often sinusoidal), as when an AC circuit is connected to an outside power source. In this case the oscillation is said to be driven.

Some systems can be excited by energy transfer from the environment. This transfer typically occurs where systems are embedded in some fluid flow. For example, the phenomenon of flutter in aerodynamics occurs when an arbitrarily small displacement of an aircraft wing (from its equilibrium) results in an increase in the angle of attack of the wing on the air flow and a consequential increase in lift coefficient, leading to a still greater displacement. At sufficiently large displacements, the stiffness of the wing dominates to provide the restoring force that enables an oscillation.

Coupled oscillations
The harmonic oscillator and the systems it models have a single degree of freedom. More complicated systems have more degrees of freedom, for example two masses and three springs (each mass being attached to fixed points and to each other). In such cases, the behavior of each variable influences that of the others. This leads to a coupling of the oscillations of the indivial degrees of freedom. For example, two penlum clocks (of identical frequency) mounted on a common wall will tend to synchronise.[citation needed] The apparent motions of the compound oscillations typically appears very complicated but a more economic, computationally simpler and conceptually deeper description is given by resolving the motion into normal modes.

Continuous systems - waves
As the number of degrees of freedom becomes arbitrarily large, a system approaches continuity; examples include a string or the surface of a body of water. Such systems have (in the classical limit) an infinite number of normal modes and their oscillations occur in the form of waves that can characteristically propagate.

❿ 「震動」的英語怎麼說

震動的英文:shake

詞彙解析

shake

英[ʃeɪk]美[ʃek]

vt. 動搖;搖動;震動

vi. 動搖;搖動;震動;發抖

n. 搖動;哆嗦

例:As soon as he got inside, the dog shook himself.

他一進去,那條狗就搖頭擺尾。

例:She picked up the bag of salad and gave it a shake.

她拿起了那袋沙拉搖了搖。

(10)振動控制英語怎麼說及英文翻譯擴展閱讀

近義詞

1、rock

英[rɒk]美[rɑk]

n. 岩石;搖滾樂;暗礁

vt. 搖動;使搖晃

vi. 搖動;搖晃

例:The hills above the valley are bare rock.

河谷上面的山是光禿禿的岩石。

2、wave

英[weɪv]美[wev]

vi. 波動;起伏;搖動

vt. 卷(燙)發;使成波浪形

n. 波動;波浪;揮手示意

例:The shock waves of the earthquake were felt in Teheran.

在德黑蘭感覺到了地震的震波。

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