The dehydration rate of industrial washing machines will affect the moisture content of linen after washing. Before, we made a detailed data comparison: a medium-sized laundry plant that washes 2000 sets of linen a day chooses a washing machine with a dehydration rate of 400G dehydration factor, which saves more than 260,000 yuan of steam costs a year compared with a washing machine that uses 300G dehydration factor. So, what are the factors that affect the dehydration rate of the washing machine? Let's analyze it together.
Dehydration Rate
Generally, the dehydration rate of the washing machine is expressed by G-force, which represents the dewatering capacity of a device. It is said that the higher the G-force, the higher the dehydration rate and the lower the water content of linen. So what are the factors that determine the G-force of dehydration?
Let’s look at the formula for that. There are many formulas for calculating the value of G. The simplest formula is: G=0.00112rn², where r is the radius of the washing machine, and n is the speed. Therefore, we know that the larger the diameter of the washing machine, the higher the speed, and the higher the dehydration G value.
Kingstar 100kg Washing Machine Versus Normal Washing Machines
Let’s take a look at the G-force of our Kingstar 100kg washing machine. The diameter of the inner cylinder is 1310mm, the radius is 655mm, and the maximum speed at high speed is 745 RPM /min. The calculated G value is 407, that is, the maximum G-force of the dehydration can reach 407 G.
The dehydration G-force of most industrial washing machines on the market is mostly between 260-300. Maybe you will say: Then I can speed up the inverter a little. This is, of course, only one aspect, just like the cars we run on the highway. A low-configuration car, hard to press the accelerator, can also run 120 yards, but that is a big risk. Such a car would not be able to drive safely at 120 yards for long periods of time, because it is not strong and rigid enough to support it for long periods of 120 yards.
Kingstar Design
The strength design and transmission system design of the Kingstar 100kg washing machine is designed around a 400 G dehydration capacity.
● The transmission plate of the inner drum and the V-shaped bar adopt a stainless steel thickening design. The transmission plate thickness is up to 20mm. The thickest part of the main shaft is 160mm, and the thickest part of the main shaft of the normal washing machine is about 100mm, so there is no need to worry about the risk of shaft breakage at high speed.
● Bearings use imported high-quality large-diameter roller bearings and can withstand higher loads of high-speed operation.
● The thickest material of the Kingstar 100kg washing machine is 50mm, while the thickest part of the outer cylinder of the ordinary washing machine is only about 15mm. Some even use cement stones to increase the weight of the machine to achieve the role of high stability of the machine.
● In terms of shock absorption, the suspension quadruple shock absorption design is adopted. With the internal and external double-layer seat spring + rubber shock absorption spring + Angle rubber shock absorption + damping shock absorption design, the shock absorption rate is 98%. It can be used directly on any floor without making a foundation.
● Kingstar 100 kg washing machine’s weight is up to 4 tons, whose material is real and guaranteed. The weight of an ordinary 100kg washing machine is about 3 tons. Some even use cement to balance weight, so its other plate's weight is definitely less than 3 tons. Therefore, our washing machine supports the excellent performance of the machine under the operation of high intensity and high speed for a long time.
Conclusion
Therefore, when purchasing industrial washing machines, the dehydration rate is the main point of our concern. In addition, we also need to investigate whether an industrial washing machine can support long-term high-intensity operation from the structure of the equipment, hardware, material selection, and many other aspects.
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