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Displacement function of manual adjusting frame on transmiss
2019-12-10 09:22
The manual adjusting frame is the function of moving and positioning the manual differential head. The manual adjusting frame is an adjusting table composed of micro head, guide rail, gear, rotating nut and other parts. The function of manual adjusting frame is fast moving speed, low positioning accuracy, large travel, large bearing weight, diversified rotation mode, etc. Manual adjustment rack can be combined into different multi-dimensional adjustment racks according to different choices of customers. The application of this function mainly includes gear displacement, guide rail movement, cargo handling, cargo lifting, parts positioning processing and so on.
 
Characteristics and application of manual adjustment frame:
 
2. Precision: achieve the precision required by customers at a reasonable price. The precision is generally between 5um and 0.5um. Customers can choose products according to different needs, and the precision of electric products can be achieved.
 
3. Diversification: in order to meet the different needs of different customers, our adjustment platform travel and table size are different in length and size. Table size has a series of larger products, such as 25 * 25, 40 * 40, 60 * 60, 80 * 80, 120 * 120, etc. the travel has different products between 6.4mm-350mm, and single axis (X Y Z axis linear platform, rotating platform, arc moving platform) platform can be grouped Synthesis of two-dimensional, three-dimensional, four-dimensional, five-dimensional, six-dimensional multi-dimensional platform to meet different directions and different angles of adjustment;
 
The high rigidity of the material. The material of low seat and table top is made of 6061 hard aluminum alloy, which is difficult to machine but with high hardness, so as to ensure the accuracy requirements in the use process.
 
Good stability. By using the product structure and surface pressing and fastening method of clamping the buckle inward and outward, the decay amplitude can be controlled within 0.01-0.02dpm in 24 hours in the standard clean space through optical fiber experiment detection.
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