Analysis of chain structure of parallel axle speed-reducing machines
Analysis of the chain structure of the parallel axle decelerator. The operation of a chain-based pump: powered by an electric generator, driven by a slowdown in the f series ofreducing machines, and a parallel axle-reducing machine, which in turn drives a vertically deployed ring-locked conveyor chain that leads back and forth to the guidance tracks for movement up and down. the work process of the parallel axle decelerator shows that the pump requires a reliable switch to a body that transforms the one-way rotation of the generator into a rotational one-way, leading to up-to-down movement of the pump poles, the parallel axes aboveGeared motorThe essence of the difference is that of the switcher, and in general, there are three types of switcher for the f series, i. E. reducer, hydraulic and mechanical. Mechanical conversions are achieved through a fixed mechanical structure, which is commonly used to transfer to institutions with inert wheels, warp-stomping poles, twist-sliding blocks, etc. The lower beams of the f series ofreducing machines are connected to the balance chain and drive the balance column in the balancing tank back and forth to balance. The upper beams on the back and back shelf are connected to the steel line, the parallel axlereducing steel line is linked to the wheel and the pump, and the rolling of the electric power is transferred through a series of mechanical devices to the up-to-down line of the pump, which boosts the well pump. The parallel axle hydraulic pressure switch to the end of the device is light weight, the transmission system is simple and powery. Frequent shifts would significantly reduce the life of the electric power, and while better-functioning electric power is now being designed in response to this situation, the parallel axle deceleration is more expensive and still of less practical value. the power switch is through controlInduction motorIt is a positive reverse to achieve the fundamental composition of the rolling roller and pump up and down. There are three alternative ways to pre-empt. hydraulic-to-roller pumps control the movement of the f-seriesreducing motors by switching to valves to achieve a positive inverting of the rollers and a back-up movement of the pump poles。

The disadvantage is that hydraulic transmission systems are very expensive, easily leak oil, that hydraulic controls are often complex, and that hydraulic systems are less reliable when they are frequently diverted. A chain-based oil pumper is well-moveable and energy-efficient, achieves super-long-stretching, is the type of machine that is commonly used today for super-long-stretching, but has a lot of disadvantagesHorizontal reducerThe complex structure of the gas-dynamic balance sector and the high rate of failure caused the oil pump to be unbalanced, resulting in early wear and tear of spare parts and even early wear and tear of the pump poles when severe, and premature damage to electrical andreducing units. It is more feasible to use a parallel axle-reducing machine to achieve a positive reverse of the roller than the first two. The structure of the parallel axle decelerator, which is dedicated to the chain pump, consists mainly of five sectors, namely, the stifling system, the switch system, the rack, the balancing system and the transmission system. Thereducing machines for series f are divided into three categories: switch, soft switch and no switch. the double-magnetic perturbator pump, as described above, is an electric switch, while the thorn rotation of the transmission to the energy-efficient pump is a hydraulic drive to thereducing box。Gearbocthe chain-type switcher is a system consisting of a lower chain wheel, a back and back shelf, a moving chain, an upper chain wheel and a mechanical shift. http://boserlgearreducer.com/product/list-pingxzoujiansuji-cn.html
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标签:  Chain structure analysis for speed-reducing machines
