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干式超声波清洗机应用领域有哪些?
来源:http://www.sinokohl.com/ 时间: 2023-01-04 浏览次数: 0
1、干式超声波清洗机在制药工业的应用
1. Application of dry ultrasonic cleaner in pharmaceutical industry
超声波清洗技术经过众多制药企业的应用而得到广泛使用,特别是对西林瓶、口服液瓶、安瓶、大输液瓶的清洗以及对丁基胶塞、天然胶塞的清洗方面,已经得到首肯。对于瓶类的清洗,是用超声波清洗技术代替原有的毛刷机,它经过翻转注水、超声清洗、内外冲洗、空气吹干、翻转等流程而实现的。
Ultrasonic cleaning technology has been widely used by many pharmaceutical enterprises, especially in the cleaning of penicillin bottles, oral liquid bottles, ampoules, large infusion bottles, and the cleaning of butyl rubber stoppers and natural rubber stoppers. For the cleaning of bottles, ultrasonic cleaning technology is used to replace the original brush machine, which is realized through such processes as flipping water injection, ultrasonic cleaning, internal and external washing, air drying, flipping, etc.
2、干式超声波清洗机在微粉业的应用
2. Application of dry ultrasonic cleaner in micro powder industry
众所周知,要取得不同大小的颗粒,是把破碎料放在球磨机内研磨后,经过不同规格筛子层层筛分而得的。筛子长时间使用后,筛孔会被堵塞(如金刚石筛),用其它方法刷洗会破坏筛子,且效果不理想,经过众多厂家的试验后,用超声波清洗,不仅不损坏筛子,而且筛子上面的堵塞颗粒完全被回收。
As we all know, to obtain particles of different sizes, crushed materials are ground in a ball mill and sieved layer by layer through sieves of different specifications. After the screen is used for a long time, the screen hole will be blocked (such as the diamond screen). Brushing with other methods will damage the screen, and the effect is not ideal. After many manufacturers' tests, ultrasonic cleaning will not only not damage the screen, but also the blocked particles on the screen will be completely recycled.
3、干式超声波清洗机技术在磷化处理中的应用
3. Application of dry ultrasonic cleaner technology in phosphating treatment
产品喷涂前处理工艺非常重要,一般的传统工艺使用酸液对工件进行处理,对环境污染较重,工作环境较差,同时,大的弊端是结构复杂零件酸洗除锈后的残酸很难冲洗干净。工件喷涂后,时间不长,沿着夹缝出现锈蚀现象,破坏涂层表面,严重影响产品外观和内在质量。超声波清洗技术应用到涂装前处理后,不仅能使物体表面和缝隙中的污垢迅速剥落,而且涂装件喷涂层牢固不会返锈。
The pretreatment process of product spraying is very important. Generally, the traditional process uses acid solution to treat the workpiece, which causes heavy environmental pollution and poor working environment. At the same time, the biggest disadvantage is that the residual acid after pickling and derusting of parts with complex structures is difficult to clean. After the workpiece is sprayed for a short time, corrosion occurs along the seam, which damages the coating surface and seriously affects the appearance and internal quality of the product. After the application of ultrasonic cleaning technology to the pretreatment of painting, not only can the dirt in the surface and gap of objects peel off quickly, but also the coating layer of painted parts is firm and will not rust back.
4、干式超声波清洗机对金属的清洗
4. Cleaning of metal by dry ultrasonic cleaner
众所周知,金属棒材经挤压成丝后,金属丝的外部往往有一层碳化膜和油,用酸清洗或其它清洗方法,很难让污物去除(尤其整盘丝),超声波洗丝机是根据实际生产需要而设计的一种连续走丝,清洗设备,粗洗部分由清洗液储槽、换能器、循环泵、过滤器及配套管道系统组成,金属丝经超声波粗洗精洗后,再经过吹干,从而完成整个清洗过程。整套设备集成控制,简洁、方便、效果好,广泛用于钽丝、钨丝、钼丝、铌丝、铜丝(绝缘漆涂覆前)等其它金属丝。
As we all know, after the metal bar is extruded into wire, there is often a layer of carbonization film and oil on the outside of the wire. It is difficult to remove the dirt (especially the whole coil of wire) by acid cleaning or other cleaning methods. The ultrasonic wire washing machine is a continuous wire walking and efficient cleaning equipment designed according to the actual production needs. The rough cleaning part consists of a cleaning solution storage tank, a transducer, a circulating pump, a filter and a supporting pipeline system, After ultrasonic rough washing and fine washing, the wire is dried to complete the whole cleaning process. The integrated control of the whole set of equipment is simple, convenient and effective. It is widely used for tantalum wire, tungsten wire, molybdenum wire, niobium wire, copper wire (before insulating paint coating) and other metal wires.
济南科尔超声波设备有限公司专注全自动超声波清洗机,超声波清洗机等产品的生产,更多的精彩内容请点击进入:http://www.sinokohl.com,我们会有更多精彩内容等您查看.
Jinan Keer Ultrasonic Equipment Co., Ltd. focuses on the production of full-automatic ultrasonic cleaners, ultrasonic cleaners and other products. For more highlights, please click here: http://www.sinokohl.com , we will have more wonderful content for you to check
1. Application of dry ultrasonic cleaner in pharmaceutical industry
超声波清洗技术经过众多制药企业的应用而得到广泛使用,特别是对西林瓶、口服液瓶、安瓶、大输液瓶的清洗以及对丁基胶塞、天然胶塞的清洗方面,已经得到首肯。对于瓶类的清洗,是用超声波清洗技术代替原有的毛刷机,它经过翻转注水、超声清洗、内外冲洗、空气吹干、翻转等流程而实现的。
Ultrasonic cleaning technology has been widely used by many pharmaceutical enterprises, especially in the cleaning of penicillin bottles, oral liquid bottles, ampoules, large infusion bottles, and the cleaning of butyl rubber stoppers and natural rubber stoppers. For the cleaning of bottles, ultrasonic cleaning technology is used to replace the original brush machine, which is realized through such processes as flipping water injection, ultrasonic cleaning, internal and external washing, air drying, flipping, etc.
2、干式超声波清洗机在微粉业的应用
2. Application of dry ultrasonic cleaner in micro powder industry
众所周知,要取得不同大小的颗粒,是把破碎料放在球磨机内研磨后,经过不同规格筛子层层筛分而得的。筛子长时间使用后,筛孔会被堵塞(如金刚石筛),用其它方法刷洗会破坏筛子,且效果不理想,经过众多厂家的试验后,用超声波清洗,不仅不损坏筛子,而且筛子上面的堵塞颗粒完全被回收。
As we all know, to obtain particles of different sizes, crushed materials are ground in a ball mill and sieved layer by layer through sieves of different specifications. After the screen is used for a long time, the screen hole will be blocked (such as the diamond screen). Brushing with other methods will damage the screen, and the effect is not ideal. After many manufacturers' tests, ultrasonic cleaning will not only not damage the screen, but also the blocked particles on the screen will be completely recycled.
3、干式超声波清洗机技术在磷化处理中的应用
3. Application of dry ultrasonic cleaner technology in phosphating treatment
产品喷涂前处理工艺非常重要,一般的传统工艺使用酸液对工件进行处理,对环境污染较重,工作环境较差,同时,大的弊端是结构复杂零件酸洗除锈后的残酸很难冲洗干净。工件喷涂后,时间不长,沿着夹缝出现锈蚀现象,破坏涂层表面,严重影响产品外观和内在质量。超声波清洗技术应用到涂装前处理后,不仅能使物体表面和缝隙中的污垢迅速剥落,而且涂装件喷涂层牢固不会返锈。
The pretreatment process of product spraying is very important. Generally, the traditional process uses acid solution to treat the workpiece, which causes heavy environmental pollution and poor working environment. At the same time, the biggest disadvantage is that the residual acid after pickling and derusting of parts with complex structures is difficult to clean. After the workpiece is sprayed for a short time, corrosion occurs along the seam, which damages the coating surface and seriously affects the appearance and internal quality of the product. After the application of ultrasonic cleaning technology to the pretreatment of painting, not only can the dirt in the surface and gap of objects peel off quickly, but also the coating layer of painted parts is firm and will not rust back.
4、干式超声波清洗机对金属的清洗
4. Cleaning of metal by dry ultrasonic cleaner
众所周知,金属棒材经挤压成丝后,金属丝的外部往往有一层碳化膜和油,用酸清洗或其它清洗方法,很难让污物去除(尤其整盘丝),超声波洗丝机是根据实际生产需要而设计的一种连续走丝,清洗设备,粗洗部分由清洗液储槽、换能器、循环泵、过滤器及配套管道系统组成,金属丝经超声波粗洗精洗后,再经过吹干,从而完成整个清洗过程。整套设备集成控制,简洁、方便、效果好,广泛用于钽丝、钨丝、钼丝、铌丝、铜丝(绝缘漆涂覆前)等其它金属丝。
As we all know, after the metal bar is extruded into wire, there is often a layer of carbonization film and oil on the outside of the wire. It is difficult to remove the dirt (especially the whole coil of wire) by acid cleaning or other cleaning methods. The ultrasonic wire washing machine is a continuous wire walking and efficient cleaning equipment designed according to the actual production needs. The rough cleaning part consists of a cleaning solution storage tank, a transducer, a circulating pump, a filter and a supporting pipeline system, After ultrasonic rough washing and fine washing, the wire is dried to complete the whole cleaning process. The integrated control of the whole set of equipment is simple, convenient and effective. It is widely used for tantalum wire, tungsten wire, molybdenum wire, niobium wire, copper wire (before insulating paint coating) and other metal wires.
济南科尔超声波设备有限公司专注全自动超声波清洗机,超声波清洗机等产品的生产,更多的精彩内容请点击进入:http://www.sinokohl.com,我们会有更多精彩内容等您查看.
Jinan Keer Ultrasonic Equipment Co., Ltd. focuses on the production of full-automatic ultrasonic cleaners, ultrasonic cleaners and other products. For more highlights, please click here: http://www.sinokohl.com , we will have more wonderful content for you to check
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