The Huxing B.X series cycloidal pinwheel reducer is a novel transmission machinery based on JB/T2982, which adopts the principle of planetary transmission with few tooth differences and cycloidal pinwheel meshing. It is widely used in the fields of textile printing and dyeing, light industry and food, metallurgy and mining, petrochemicals, lifting and transportation, and engineering machinery as a driving and reducing device.
1) High speed ratio and high efficiency
Single stage transmission can achieve a reduction ratio of 1:87, with an efficiency of over 90%. If multi-stage transmission is used, the reduction ratio is even greater
2) Compact structure and small volume
Adopting the principle of planetary transmission, the input shaft and output shaft are on the same axis, with a compact structure and small volume.
3) Easy to assemble and disassemble, easy to maintain
Reasonable structural design, simple disassembly and easy maintenance
4) Smooth and low-noise operation with a large number of meshing teeth, high overlap coefficient, and a mechanism of smooth mechanical parts, minimizing vibration and noise control.
5) Make the lifespan long
The main transmission meshing parts are made of bearing steel, with good mechanical performance, smooth rolling friction, and longer durability and service life.
6) Strong overload capacity, impact resistance, and low inertia moment, suitable for frequent starting and forward/reverse rotation situations.
The models of single-stage cycloidal gear reducers (BW.BWY.BWD, BL.BLY, BLD) for the Huxing cycloidal pinwheel reducer include: 12, 15, 18, 22, 27, 33, 39, 45, 55, and 65
Transmission ratios: 9, 11, 17, 23, 29, 35, 43, 59, 71, 87 Double stage Cycloid (BWE. BWEY.BWED, BLE.BLEY, BLED) Machine models include: 1510, 1512, 1812, 1815, 2212, 2215, 2218, 2715, 2718, 3318, 3322, 3922, 4527, 5527, 5533, 6533 Transmission ratios: 121 (11 × 11), 187 (17 × 11), 253 (23 × 11), 289 (17 × 17), 385 (35 × 11), 391 (23 × 17), 473 (43 × 11), 493 (29 × 17). 595 (35 × 17), 731 (43 × 17), 841 (29 × 29) Cycloid pinwheel reducer torque calculation Cycloid pinwheel reducer torque=9550 × Electric power ÷ Motor power input speed × Speed ratio × Efficiency (65% -75%)