Cheersonic Ultrasonics Co.,Limited

Products / Services : Cheersonic Ultrasonics Co.,Limited

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1. Ultrasonic systems allow to weld the edge of fabric in one single operation ! Our technology is based on the piezoelectric principle, to transform an electrical signal in mechanical vibration. 2. These oscillations will be amplified by the booster and converter, thus creating a hammer. The converter converts electricity into high frequency mechanical vibration. The active elements are usually piezoelectrics ceramics. The booster (optional) serves as an amplitude transformer. Amplitude magnification or reduction is achieved by certain design features or the geometrical shape of the booster. 3. The sonotrode, or horn, is the active part of the ultrasonic unit. It is in contact with the fabric and acts as a hammer against the counter-tool. This system will enable to melt the fibers within the fabric by mechanical action only (hammering), enabling to obtain a very clean and flexible melting without any burning or color change. The sonotrode and counter-tool design will be adapted to the operation to be performed. 4. The most simple way of welding thermoplastic materials is to use the ultrasonic manual welding device. This is particularly well suited for applications in prototype design, for processing of single products, small series and repairs. Regardless of caulking, swaging, staking, cutting, or spot welding, the HSG ultrasonic manual welding device is easy to use, provides variable power rating, and can be equipped with all types of conventional sonotrodes.

Webbaniya.com - B2B MarketPlace

1.Ultrasonic cutting is an efficient way to cut, slice, divert, align or transfer a variety of products. It involves a vibrating blade producing a nearly frictionless surface with the influence of ultrasonic which does not deform products and to which they do not stick. The vibrating frictionless blade cuts or slits products cleanly such as nuts, raisins, dried fruit or chocolate morsels without displacement or plowing. 2.Ultrasonic vibration reduces friction resistance between the blade and mterial, and it makes the blade cut smoothly without deformation.The cutting blade is made of titanium (or the material according to your requirement ). It is completely inert and enduring material. 3.The use of ultrasonic cutting , incision aesthetic integrity, trimming neatly smooth, without Burr, to leave the border areas, not black, not burned, not the hardware products to feel very good shear results 4.It can be used for rubber,fabric,plastic,etc.

Webbaniya.com - B2B MarketPlace

Product Description 1. Ultrasonic systems allow to weld the edge of fabric in one single operation ! Our technology is based on the piezoelectric principle, to transform an electrical signal in mechanical vibration. 2. These oscillations will be amplified by the booster and converter, thus creating a hammer. The converter converts electricity into high frequency mechanical vibration. The active elements are usually piezoelectrics ceramics. The booster (optional) serves as an amplitude transformer. Amplitude magnification or reduction is achieved by certain design features or the geometrical shape of the booster. 3. The sonotrode, or horn, is the active part of the ultrasonic unit. It is in contact with the fabric and acts as a hammer against the counter-tool. This system will enable to melt the fibers within the fabric by mechanical action only (hammering), enabling to obtain a very clean and flexible melting without any burning or color change. The sonotrode and counter-tool design will be adapted to the operation to be performed. 4. Advantages: repeatable results, quick cooling and easy hermetic sealing ; frequencies available include 15kHz, 20kHz, 30kHz and 40kHz for any size job, from the smallest electronic components to large scale instrument panels in the automotive industry; a smooth, clean joint; save money with quick drying times and fewer raw materials.; no separate screws or other fasteners and never need touch-ups.

Webbaniya.com - B2B MarketPlace

1. The ultrasonic power supply converts 50/60 Hz to high frequency electrical energy. This electrical energy is transmitted to the piezoelectric transducer within the converter, where it is changed to mechanical vibrations. The ultrasonic vibrations are intensified by the probe and focused at the tip where the atomization takes place. The liquid travels through the probe and spreads out as a thin film on the atomizing surface. The oscillating tip disintegrates the liquid into micro-droplets, and ejects them to form a gentle, low velocity spray. 2.Drop size is primarily a function of frequency, and the higher the frequency, the smaller the drop diameter. A wide variety of coatings, chemicals, lubricants, and particulate suspensions can readily be atomized. However, factors such as viscosity, miscibility, and solid content deserve consideration. For optimum atomization, the viscosity should be under 500 cps and the solid concentration kept below 30%. 3.The applications include: Coating non-woven fabric, paper, etc.; laboratory spray drying; injecting moisture into a gas stream; applying minute amount of oil, fragrance or flavor onto a product; injecting small volume of reagents into a reactor;

Webbaniya.com - B2B MarketPlace

1. Upon irradiation with high intensity sound or ultrasound, acoustic cavitation usually occurs. Cavitation – the formation, growth, and implosive collapse of bubbles irradiated with sound — is the impetus for sonochemistry and sonoluminescence. Bubble collapse in liquids produces enormous amounts of energy from the conversion of kinetic energy of the liquid motion into heating the contents of the bubble. The compression of the bubbles during cavitation is more rapid than thermal transport, which generates a short-lived localized hot-spot. 2. Sonochemical reaction is an attractive method for preparing novel materials with unusual properties. The advantages of using sonochemical methods for sample preparation include high purity, narrow size distributions, controllable reaction conditions and the ability to form nanoparticles with uniform shapes and rapid reaction rate. It also improves the performance of phase transfer catalysts and reactivity of catalysts or reagents. 3.Ultrasonic mixing equipment is widely used in cosmetic industry for producing, degassing and homogenizing of emulsions.Ultrasonic devices are used for extracting algae oil and other compounds from the continuous algae reactors. They are also employed in dispersing and reducing the size of pigments in printing inks and inkjet inks.

Webbaniya.com - B2B MarketPlace

1. Upon irradiation with high intensity sound or ultrasound, acoustic cavitation usually occurs. Cavitation – the formation, growth, and implosive collapse of bubbles irradiated with sound — is the impetus for sonochemistry and sonoluminescence. Bubble collapse in liquids produces enormous amounts of energy from the conversion of kinetic energy of the liquid motion into heating the contents of the bubble. The compression of the bubbles during cavitation is more rapid than thermal transport, which generates a short-lived localized hot-spot. 2. Sonochemical reaction is an attractive method for preparing novel materials with unusual properties. The advantages of using sonochemical methods for sample preparation include high purity, narrow size distributions, controllable reaction conditions and the ability to form nanoparticles with uniform shapes and rapid reaction rate. It also improves the performance of phase transfer catalysts and reactivity of catalysts or reagents. 3. Ultrasonic mixing equipment is widely used in cosmetic industry for producing, degassing and homogenizing of emulsions.Ultrasonic devices are used for extracting algae oil and other compounds from the continuous algae reactors. They are also employed in dispersing and reducing the size of pigments in printing inks and inkjet inks.

Webbaniya.com - B2B MarketPlace

1. Upon irradiation with high intensity sound or ultrasound, acoustic cavitation usually occurs. Cavitation – the formation, growth, and implosive collapse of bubbles irradiated with sound — is the impetus for sonochemistry and sonoluminescence. Bubble collapse in liquids produces enormous amounts of energy from the conversion of kinetic energy of the liquid motion into heating the contents of the bubble. The compression of the bubbles during cavitation is more rapid than thermal transport, which generates a short-lived localized hot-spot. 2. Sonochemical reaction is an attractive method for preparing novel materials with unusual properties. The advantages of using sonochemical methods for sample preparation include high purity, narrow size distributions, controllable reaction conditions and the ability to form nano particles with uniform shapes and rapid reaction rate. It also improves the performance of phase transfer catalysts and reactivity of catalysts or reagents. 3. Ultrasonic mixing equipment is widely used in cosmetic industry for producing, degassing and homogenizing of emulsions.Ultrasonic devices are used for extracting algae oil and other compounds from the continuous algae reactors. They are also employed in dispersing and reducing the size of pigments in printing inks and inkjet inks.



 

 

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