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科爾解析清洗設(shè)備電源應(yīng)用原理
來(lái)源:http://ckjy.net.cn/ 時(shí)間: 2021-07-29 瀏覽次數(shù): 0
超聲波清洗設(shè)備是以超聲波作用于清洗工件,使得附著在工件上的顆粒、油污等隨超聲波的機(jī)械振動(dòng)而脫落或溶解或乳化等,達(dá)到洗凈工件的目的。從原理上說(shuō),超聲波清洗設(shè)備中核心部分應(yīng)該是超聲波的作用。
Ultrasonic cleaning equipment uses ultrasonic wave to clean the workpiece, so that the particles and oil stains attached to the workpiece fall off or dissolve or emulsify with the mechanical vibration of ultrasonic wave, so as to achieve the purpose of cleaning the workpiece. In principle, the core part of ultrasonic cleaning equipment should be the function of ultrasonic.
超聲波清洗設(shè)備中的超聲波部分分為兩大部件;一個(gè)是超聲波換能器{或稱(chēng)超聲波振頭);另一個(gè)是超聲波發(fā)生器,超聲波換能器是將超聲波發(fā)生器提供的電信號(hào)轉(zhuǎn)換為機(jī)械振動(dòng).這篇文章只討論超聲波發(fā)生器,不對(duì)超聲波換能器作討論.
The ultrasonic part of ultrasonic cleaning equipment is divided into two parts; One is ultrasonic transducer {or ultrasonic vibrator); The other is the ultrasonic generator. The ultrasonic transducer converts the electrical signal provided by the ultrasonic generator into mechanical vibration. This article only discusses the ultrasonic generator, not the ultrasonic transducer
超聲波發(fā)生器(以下簡(jiǎn)稱(chēng)發(fā)生器)實(shí)質(zhì)是一個(gè)功率信號(hào)發(fā)生器,它產(chǎn)生一定頻率的正弦(或類(lèi)似正弦)信號(hào),超聲波發(fā)生器的發(fā)展與電力電子器件發(fā)展密切相關(guān),一般可分為電子管、模擬式晶體管.開(kāi)關(guān)式晶體管這幾個(gè)階段,下面分別敘述。
The essence of ultrasonic generator (hereinafter referred to as generator) is a power signal generator, which generates sinusoidal (or similar sinusoidal) signals with a certain frequency. The development of ultrasonic generator is closely related to the development of power electronic devices. Generally, it can be divided into electron tube, analog crystal tube and switching transistor, which are described below.
超聲波清洗設(shè)備的原理:
Principle of ultrasonic cleaning equipment:
由信號(hào)發(fā)生器來(lái)產(chǎn)生一個(gè)特定頻率的信號(hào),這個(gè)信號(hào)可以是正弦信號(hào),也可以是脈沖信號(hào),這個(gè)特定頻率就是換能器的頻率,一般在超聲波設(shè)備中使用到的超聲波頻率為25KHz、28KHz、35KHz、40KHz;1OOKHz或以上現(xiàn)在尚未大量使用.但隨著以后精 密清洗的不斷發(fā)展。相信使用面會(huì)逐步擴(kuò)大.
Firstly, the signal generator generates a signal with a specific frequency, which can be sinusoidal signal or pulse signal. This specific frequency is the frequency of the transducer. Generally, the ultrasonic frequencies used in ultrasonic equipment are 25kHz, 28kHz, 35kHz and 40KHz; 1ookhz or above has not been widely used yet, but with the continuous development of precision cleaning in the future. It is believed that the application area will gradually expand
功率放大器可有多種形式,如電子管甲類(lèi)放大器.甲乙類(lèi)放大器;晶體管甲類(lèi)或乙類(lèi)放大器(均屬于模擬式):晶體管開(kāi)關(guān)式放大器等,功率一般從50W到5000W不等,由信號(hào)發(fā)生器產(chǎn)生的頻率信號(hào)經(jīng)過(guò)功率放大器后需經(jīng)過(guò)阻抗匹配,使得輸出的阻抗與換能器相符,推動(dòng)換能器將電信號(hào)轉(zhuǎn)換為機(jī)械振動(dòng).
There are many forms of power amplifier, such as class a amplifier of electron tube, class a amplifier and class B amplifier; Transistor class A or class B amplifier (both belong to analog type): transistor switching amplifier, etc. the power generally ranges from 50W to 5000W. The frequency signal generated by the signal generator needs impedance matching after passing through the power amplifier to make the output impedance consistent with the transducer, and promote the transducer to convert the electrical signal into mechanical vibration
比較完善的超聲波發(fā)生器還應(yīng)有反饋環(huán)節(jié),主要提供二個(gè)方面的反饋信號(hào):一個(gè)是提供輸出功率信號(hào),我們知道當(dāng)發(fā)生器的供電電源(電壓)發(fā)生變化時(shí).發(fā)生器的輸出功率也會(huì)發(fā)生變化,這時(shí)反映在換能器上就是機(jī)械振動(dòng)忽大忽小,導(dǎo)致清洗效果不穩(wěn)定.因此需要穩(wěn)定輸出功率,通過(guò)功率反饋信號(hào)相應(yīng)調(diào)整功率放大器,使得功率放大穩(wěn)定。
A relatively perfect ultrasonic generator should also have a feedback link, which mainly provides feedback signals in two aspects: one is to provide output power signal. We know that when the power supply (voltage) of the generator changes, the output power of the generator will also change. At this time, it is reflected in the mechanical vibration of the transducer, Therefore, it is necessary to stabilize the output power and adjust the power amplifier accordingly through the power feedback signal to stabilize the power amplification.
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