How to reduce the power consumption of the glass washer

[China Glass Net] The glass washer converts the mechanical vibration of the same frequency through the piezoelectric inversion effect of the transducer, and intensively radiates forward in the cleaning solution in the form of super-audio longitudinal waves, generating tens of thousands of small bubbles. The cycle "blasting" is the formation and growth of these bubbles in the negative pressure zone. When the positive pressure zone is quickly closed, it is instantaneously blasted, forming a high-pressure bombardment on the surface, the gap and the space of the object to be cleaned, achieving the cleaning effect, resulting in rapid fouling. Peel off, so that the cleaning surface can be cleaned and purified.

The utility model comprises a stainless steel casing, a conveying wheel, a rubber roller, a brush, a conveying bracket and an electric control box. The side glass entrance of the stainless steel casing is provided with a guiding wheel, the transmission bracket is provided with a plurality of wheels, and the lower part of the conveying bracket is provided with parallel A plurality of sets of transfer wheels arranged and connected by a plurality of linkage sheets, the other side of the glass washer is provided with a rubber roller, a rubber brush is disposed on the left side of the rubber roller, and a tuyere is disposed near the glass outlet. The second cleaning is avoided, which effectively improves the efficiency of its use.

Mechanical properties The mechanical properties of the resin and the glass fiber phase can be seen from this. It is generally believed that the strength of FRP is mainly derived from glass fiber, but it is not comprehensive enough. In terms of tensile strength, the tensile strength of FRP is mainly derived from glass fiber, which is undoubted, but the effect of the resin cannot be completely ignored because the resin is bonded to the glass fiber as a whole and acts as a transfer load. And the role of the balanced load, if this role of the resin does not play well, it will inevitably affect the full strength of the glass fiber. In addition, the elongation at break of the resin is inconsistent with that of the glass fiber. When subjected to an external force, the elongation of the resin is low and the first cracking is broken, resulting in destruction of the entire FRP structure. That is, the magnitude of the elongation at break of the resin directly affects. The full play of the tensile strength of glass fiber. As far as the compressive strength of FRP is concerned, it is known that a rope can withstand considerable pulling force, but even a small amount of pressure can not afford it. Glass fiber can withstand a lot of tension, but it can only withstand the pressure of the resin. As for the interlaminar shear strength of FRP, it is more obvious that it does not depend on the strength of the glass fiber and mainly depends on the strength of the resin and the bonding property of the interface.

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