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Bearings are the product of social development, and bearings have a long history in China. Bearings...
Thank you for your long-term attention and support to Moumou Bearing!Our company will participate i...
Regarding the size parameters of 6202 bearings, many people don’t know about 6202, let’s take a loo...
Date:2022/12/08—11 Add:National Exhibition and Convention Center (Shanghai) 2022 China Internationa...
For small-sized motors, most of them use sealed bearings, which do not require special bearing caps...
In actual application, it is often found that the motor will vibrate significantly under no-load co...
1. The external dimensions are almost the same as the NMRV series.
2. The installation is no different from the NMRV series.
3. Compared to the standard NMRV series reducers, there is no difference in the diameter of the hollow output shaft.
4. All attachments of the NMRV series can be used.
5. Material: High grade alloy steel, high-quality synthetic lubricating oil, imported branded sealing components
Specification: 50/63/75
Reduction ratio i: 7.5-60 (secondary transmission), 80-300 (tertiary transmission)
Input speed n1:2800/1400/900
Input power P1: 0.18kw-4kw
Detailed selection parameters and size parameters:
1. Dimensional diagram of JHG series helical hypoid gear reducer
2. Dimension diagram of input flange for JHG series helical hypoid gear reducer
3. JHG series helical hypoid gear reducer rotation direction
4. Installation orientation of JHG series helical hypoid gear reducer
5. JHG series JHG50 performance parameters
6. JHG series JHG63 performance parameters
7. JHG series JHG75 performance parameters
1. The JHG primary transmission adopts hypoid gears, which have high transmission efficiency.
2. High output torque and high load-bearing capacity.
3. Smooth transmission and low noise.
4. The gear material is made of high-grade alloy steel, which has a long service life.
The use of deceleration motors is very extensive and can be used in the following scenarios
1. Roll up the load
2. Drive Inertial Body
3. Belt conveyor
4. Move the contact surface horizontally
5. Drive the guide screw to move horizontally
6. Drive the guide screw to move up and down
How to calculate the motor (motor) capacity in each of the above scenarios?
1. When rolling up a heavy object, it is important to know the load( ω, Kgf), speed (V, m/min), efficiency( η,%) These three factors
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