超聲波清洗機的技術(shù)的“用武之地”在哪里?實際上多個領(lǐng)域中都有它使用的身影,比如:機電行業(yè)、輕紡行業(yè)、表面處理行業(yè)等等,下面來具體講解一番吧。
Where is the "use" of ultrasonic cleaning technology? In fact, it has been used in many fields, such as mechanical and electrical industry, light textile industry, surface treatment industry, etc. Let's explain it in detail.
超聲波清洗在機電行業(yè)中的應(yīng)用
Application of ultrasonic cleaning in electromechanical industry
機電行業(yè)中,從機械零件到機械部件,從電器零件到電器部件都有清洗的要求,如齒輪、曲軸乃至齒輪箱,又如電器零件上機械和電器的組合件,還有一些精密機械零件和電器零件,這些都離不開清洗,大多數(shù)企業(yè)采用的是傳統(tǒng)的清洗方法,諸如浸潤清洗、噴淋清洗。這種清洗方法不但勞動強度大,而且易造成環(huán)境污染和水資源浪費。目前,不少企業(yè)開始進行技術(shù)改造,采用超聲波清洗以消除傳統(tǒng)清洗的弊端,特別是一些形狀復(fù)雜的機械零件,是傳統(tǒng)清洗所無能為力的。
In the electromechanical industry, from mechanical parts to mechanical parts, from electrical parts to electrical parts, there are cleaning requirements, such as gears, crankshafts and even gear boxes, as well as mechanical and electrical components on electrical parts, and some precision mechanical parts and electrical parts. These are inseparable from cleaning. Most enterprises use traditional cleaning methods, such as immersion cleaning and spray cleaning. This cleaning method is not only labor-intensive, but also easy to cause environmental pollution and waste of water resources. At present, many enterprises have begun to carry out technical transformation and adopt ultrasonic cleaning to eliminate the disadvantages of traditional cleaning, especially some mechanical parts with complex shapes, which are beyond the power of traditional cleaning.
超聲波清洗在輕紡行業(yè)中的應(yīng)用
Application of ultrasonic cleaning in light textile industry
輕工行業(yè),如空調(diào)、冷柜、冰箱中的壓縮機;鐘表零件、手表元件等;紡織行業(yè),如精密紡織器材、噴絲嘴等;珠寶行業(yè),如金銀首飾、珠寶玉器等,都需要清洗,有些零件、部件和組件,如壓縮機、噴絲嘴等或形狀復(fù)雜,或盲孔、微孔,只能由超聲波清洗,有些規(guī)模生產(chǎn)廠甚至采用超聲波鏈?zhǔn)交蛏凳匠商自O(shè)備。
Light industry, such as air conditioners, refrigerators, compressors in refrigerators; Watch parts, watch components, etc; Textile industry, such as precision textile equipment, spinneret, etc; The jewelry industry, such as gold and silver jewelry, jewelry and jade articles, all need to be cleaned. Some parts, components and components, such as compressors, spinnerets, etc., or have complex shapes, or blind holes and micropores, can only be cleaned by ultrasonic. Some large-scale manufacturers even use ultrasonic chain or lifting complete sets of equipment.
超聲波清洗在表面處理行業(yè)的應(yīng)用
Application of ultrasonic cleaning in surface treatment industry
表面處理是輕工行業(yè)的組成部分,包含機械零件電鍍、金屬和非金屬機箱柜涂覆、光學(xué)玻璃或鏡片鍍膜等,電鍍前后或涂覆前的清洗采用超聲波清洗技術(shù)已成為一種新的典型工藝,特別是軍工電子產(chǎn)品中的一些多芯插座,因質(zhì)量要求須進行電鍍,而電鍍后其質(zhì)量要求多芯之間須絕緣,往往因電鍍后致使多芯間不絕緣,采用丙酮、酒精等方法浸潤清洗后測試其阻值要求無窮大,但達不到質(zhì)量要求,而采用超聲波清洗,經(jīng)烘干后,則完全達到質(zhì)量要求。將超聲波直接引入電鍍還可提高鍍液的勻度和鍍層的密度。
Surface treatment is an integral part of the light industry, including electroplating of mechanical parts, coating of metal and non-metallic cabinets, coating of optical glass or lens, etc. The ultrasonic cleaning technology used for cleaning before and after electroplating or before coating has become a new typical process, especially for some multi-core sockets in military electronic products, which must be plated due to quality requirements, and the quality requirements of the multi-core sockets after electroplating must be insulated, The multi-core is often uninsulated after electroplating. The resistance value of the multi-core after soaking and cleaning with acetone, alcohol and other methods is infinite, but it can not meet the quality requirements. However, after ultrasonic cleaning and drying, it can fully meet the quality requirements. Direct introduction of ultrasonic wave into electroplating can also improve the uniformity of the plating solution and the density of the coating.
超聲波清洗機的清洗效果和質(zhì)量與清洗時間有關(guān)。清洗時間太短會達不到清洗的質(zhì)量要求;但清洗時間過長,不僅降低工效,而且由于超聲波對被清洗件表面的空化腐蝕作用而影響了零件的表面質(zhì)量。對此您有了解嗎?可以關(guān)注網(wǎng)站
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The cleaning effect and quality of ultrasonic cleaning machine are related to the cleaning time. The cleaning time is too short to meet the quality requirements of cleaning; However, the cleaning time is too long, which not only reduces the work efficiency, but also affects the surface quality of the parts due to the cavitation and corrosion effect of ultrasonic on the surface of the parts to be cleaned. Do you know anything about this? You can follow the website fdcyxzx.com to view the information!