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WB摆线针轮减速机

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WB摆线针轮减速机

功 率:0.04~3k
扭 矩:25~250N.m
传动比:9~1849
参数: 备 注:可底脚、法兰安装可配各类电机或双轴型
  • 基本资料
  • WB摆线针轮减速机是依照少齿差行星传动原理,摆线针齿啮合实现减速的一种机械。该机分卧式、立式、双轴型和直联型等装配方式,WB系列摆线针轮减速机已广泛应用于流体、冶金、矿山、电力、环保、橡胶塑料、纺织、印染、木材加工、陶瓷、电梯、风力、路桥码头、流水线、造纸、印刷、包装、食品、粮油加工、金属加工、缝纫、模具、高空作业、升降、起重等行业的机械设备领域。
    参数:
     功 率:0.04~3k
     扭 矩:25~250N.m
     传动比:9~1849
     参数: 备 注:可底脚、法兰安装可配各类电机或双轴型

    特点:
     1.结构原理:行星传动,采用摆线轮与针齿内啮合, 形成少齿差内啮合减速机构,把输入转速同轴 反向传出并进行减速。
     2.特点:速比高,采用行星传动原理体积小,无 轴向力。
     3.安装型式和输出方式:底座式、法兰式、实心 轴输出。
     4.输入方式:直联电机、实心轴、法兰式输入。
     5.减速比:一级9~87、二级99~5133。

     6.平均效率:一级90%、二级88%。


    The WB cycloidal pinwheel reducer is a mechanical device that uses the principle of planetary transmission with few tooth differences to achieve deceleration through cycloidal pinwheel meshing. The machine is divided into horizontal, vertical, double axis, and direct connection assembly methods. The WB series cycloidal pinwheel reducer has been widely used in fluid, metallurgy, mining, electricity, environmental protection, rubber and plastic, textile, printing and dyeing, wood processing, ceramics, elevators, wind power, roads, bridges, docks, production lines, papermaking, printing, packaging, food, grain and oil processing, metal processing, sewing, molds, high-altitude operations, lifting, etc The mechanical equipment field in the lifting and other industries.

    Parameters:
    Power: 0.04-3k
    Torque: 25~250N. m
    Transmission ratio: 9-1849
    Parameters: Remarks: Can be installed with feet or flanges, and can be equipped with various types of motors or dual shaft types
    Features:

    1. Structural principle: Planetary transmission uses cycloidal gears and needle teeth to mesh internally, forming a small tooth difference internal meshing reduction mechanism, which transmits the input speed coaxially in reverse and decelerates.
    2. Features: High speed ratio, using planetary transmission principle with small volume and no axial force.
    3. Installation type and output method: base type, flange type, solid shaft output.
    4. Input methods: direct motor, solid shaft, flange input.
    5. Reduction ratio: First stage 9-87, second stage 99-5133.
    6. Average efficiency: First level 90%, second level 88%.

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