Processing, manufacturing, and machine drive systems require reliability and high performance. Providing this level of performance in a right-angle gearbox requires high precision gears as well as quality materials and construction.
Flexibility and quality make Zero-Max's Crown Gear Right Angle Gearboxes an excellent option for low or high-volume applications as well as those involving steep or varying planes. All units are precision machined, carefully inspected, and come pre-lubricated for a long, maintenance-free operating life. Zero-Max offers a full range of sizes, as well as IP65-Rated Crown Gear Drives, from stock.
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Crown Gear right-angle gearboxes from Zero-Max deliver a dependable and economical 90-degree transfer of rotation, speed, and power in an efficient compact design with quiet operation. Our right-angle gearboxes feature high-quality spiral bevel gears mounted to the input and output shafts, precision sealed bearings, stainless-steel shafts, versatile mounting, cast aluminum housings, and maintenance-free operation. In addition, the IP65-Rated Crown Drives feature shaft seals, nickel-plating on the housing, and H1 rated food-grade grease.
What are the steps necessary to select the right motor-gearbox combination for an application and calculate its final torque and speed to help predict performance? When paired with a motor, gearboxes offer a number of mechanical and economic advantages. For instance, they increase output torque while reducing output speed to improve operational efficiency and overall performance. They help match motor inertia to load inertia to optimize system response. And they offer a cost-effective and compact solution for space-constrained applications.
Typically, it is advantageous to incorporate a gearbox with a motor when system speeds are low and torques are high. Low speeds are defined as anything under 100 RPM (about 10.5 rad/sec), and high torques are defined as those over 100 oz-in (about 0.706 Newton-meters).
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Selecting a Motor
With numerous motors to choose from, each offering different capabilities and characteristics, it’s important to determine which one will best suit your application’s requirements. A few motors to consider include permanent magnet DC (PMDC) brush and brushless motors, stepper motors, AC induction motors and synchronous AC motors.
Selecting a Gearbox
Like motors, gearbox selection also requires careful consideration. With various gearbox choices, including spur, planetary and right angle, think about the following questions when making a decision:
Calculating Torque and Speed: An Example
After considering the above and selecting the appropriate motor and gearbox for an application, it’s time to start calculating. The first step is determining how much output power is needed. To do this, multiply torque by speed. In this example the torque is expressed in oz-in and speed in RPM. For these units, use a multiplying factor of 7.4 x 10-4 to yield the appropriate watts output. To satisfy the low speed/high torque criteria stated earlier (under 100 RPM and torque over 100 oz-in [0.706 Nm]), let’s use 40 RPM at a torque of oz-in. With these numbers, the output power required by the device is calculated as follows:
Output Power = 40 x x 7.4 x 10-4 = 41.44 watts
Next, determine the rated motor power by multiplying the above power output by 150%, which is a good starting point when trying to allow for gearbox friction and operational efficiency in a calculation.
Rated Motor Power = 41.44 x 1.5 = 62.16 watts
Now it’s time to consider and select specific components for this example application. Based on the criteria described in “Selecting a Motor,” the PMDC brush motor was selected for the application in this example. This example also uses AMETEK Pittman solutions because there are both brush and brushless motors to choose from, as well as spur and planetary gearboxes.
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