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The mixing basket can hold any form of container having a maximum volume of 2 liters. The containers are fastened in place by twisted rubber rings. The basket movement is driven by elastic drive belts and an eccentric drive gear. The speed can be varied by adjusting the position of the drive belts on its 5 step pulleys. The speed can also be adjusted optional frequency converter set up next to the machine
Company Strength: The company possesses 40 years of production experience and three large-scale factories, as well as exports to more than 160 countries. There are abundant hot-selling projects accessible to you.
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The mixing basket can hold up to 66 pounds in a 17 liter container. Twisted rubber clamping rings allow the use of smaller containers up to a maximum diameter of 220 mm. The movement of the mixing basket is controlled by a silent pendulum chain drive. The speed can be varied by adjusting the position of the round drive belt on the 4-step pulley
The mixing basket can hold up to 165 pounds in a 55 liter container. Special holders must be mounted for smaller containers. These inserts are custom designed to fit the dimensions of your mixing vessel. The movement of the mixing basket is controlled by a silent pendulum chain drive and the speed can be varied by adjusting the position of the V-belt on the 5-step pulley. An extra slow speed drive is used to bring the mixing basket into its loading position. A hand cart can be purchased to help with loading
Model equipped for both high speed revolution and a wide radius gyration, supporting for the production of high quality materials. The timing by which the revolving speed of rotation increases is controlled to improve the mixing rate of powders and liquids and sustains the generation of lumps
90 different revolution-rotation speed patterns are available by varying the ratio of revolution and rotation. A high function model for covering from research and development to small-scale production
A model with a vacuum reduced pressure function suited for medium-scale production. The individual revolution and rotation speed control system and wide radius gyration generate centrifugal force even at low revolving speeds, sustaining material of thermal elevation and composition change
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When handling of pulverized coal caused explosions and threatened lives, engineer Alonzo G. Kinyon of the Fuller-Lehigh Company invented what later became one of the greatest contributions to cement manufacture. That was more than one hundred years ago. Over the years, the award-winning Fuller-Kinyon® Pump has profoundly changed the layouts of cement plants. Today, ongoing developments and improvements to pump performance, operating life and maintenance requirements ensure our customers maximum efficiency, flexibility and reliability in the conveying of pulverised material.
FLSmidth’s legacy of quality crushers began with the Fuller-Traylor Gyratory Crushers of the early 1900’s. Due to the marked change in the sizes of stone required for concrete work and road surfacing, demand increased for a crusher that would produce large quantities of stone, one inch and under, without an excess of dust. The first Gyratory Crushers were designed and built to meet the need for large capacity, great strength and easy adjustment to maintain the size of product. The Gyratory Crusher gave Fuller-Traylor a reputation throughout the worldwide mining industry as a provider of reliable, high quality equipment. After acquiring Fuller, FLSmidth has taken this original design and expanded on it to develop the Gyratory Crusher NT
To help customers in the loading and unloading of materials, Fuller acquired the rights to the French Multi-Vane Rotary Compressor design in 1931. Compared to other compressors, this new Vane design had several distinct advantages, including compactness, negligible vibration and pulsation-free operation. Following World War II, Fuller became a manufacturer of its own Ful-Vane™ compressor. Today the Ful-Vane Air Compressor is still commonly found in pneumatic conveying applications, while the Ful-Vane Gas Compressor is widely used in both refrigeration and the oil and gas industries
Fuller was officially founded in 1926, but its history dates back even further to a foundry business in Lehigh Valley, Pennsylvania, USA. With 18 cement plants within a 75-mile radius, this industry heartland was an important centre of the American industrial revolution and the Fuller was instrumental in its development.
James W. Fuller III steered the company from foundry to full-service cement industry supplier, designing specialist products and processes for the cement and other industries, many of which are still sold today. In fact, the Fuller-Kinyon® pump and Ful-Vane™ compressor – two legacy Fuller products – have only grown in popularity since the company’s acquisition by FLSmidth.
With the acquisition of Traylor Engineering in 1959 came large-scale items such as kilns, mills, crushers, and other equipment suitable also for the mining industries. Fuller thereby achieved total plant capability, serving both the cement and mining industries. Fuller became part of FLSmidth in 1990. But according to industry histories the two companies were aware of each other as far back as the 1890s. The story goes that one of the founders of F.L. Smidth & Co, Poul Larsen, visited Pennsylvania to see the newly developed rotary kiln that Fuller-Lehigh installed at Atlas Cement. Poul took the idea back to Europe, where it was clearly a hit – but it’s unlikely he would have foreseen that these two industry giants would one day combine their expertise and equipment portfolio to become the world’s leading solutions provider for the cement and mining industries
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