Shaft Output high payload speed variator Planetary Speed Reducer helical gearbox for servomotor
HangZhou Fubao Electromechanical Technology Co., Ltd. mechanical speed variator Planetary Speed Reducer helical gearbox is a new generation of practical products independently developed by our company:
Low noise: less than 65db.
Low back clearance: up to 3 arc minutes in a CHINAMFG and 5 arc minutes in a double stage.
High torque: higher than the standard planetary reducer torque.
High stability: high strength alloy steel, the whole gear after hardening treatment, not only the surface hard substitution.
High deceleration ratio: Modular design, planetary gearbox can be interlinked.
mechanical speed variator Planetary Speed Reducer helical gearbox characteristic:
1.Planetary reducer manufacturer-Fubao Electromechanical Technology adopts an integrated planetary carrier and output shaft, which can provide better torsional rigidity. After precision machining, the gear set is not easy to eccentric, which can reduce interference, reduce wear and noise, and at the same time use a large The bearings are arranged with a wide span to distribute the load of the bearings, and once again strengthen the torque rigidity and radial load capacity of the mechanical speed variator Planetary Speed Reducer helical gearbox. The output cover is made of aluminum alloy, which provides better heat dissipation capability for the product, so that the reducer produced by Fubao Electromechanical Technology can play an excellent role in the field of mechanical tools.
2.The planetary gear set is specially made of alloy steel. First, it undergoes quenching and tempering heat treatment to make the material hardness reach HRC30 degrees, and then undergoes nitriding surface treatment to HV860, so that the product has the characteristics of high surface hardness and high toughness in the center, and achieves the best product strength and service life. optimization.
3.The input shaft and the motor output shaft are connected by a bolted structure, with a round shaft seal design, and through dynamic balance analysis, it can ensure that there is no eccentric load at high speeds. After reducing unnecessary radial force, it can effectively Reduce the load on the motor side.
4.The material of the input cover/motor connection seat is made of aluminum alloy, which can provide better heat dissipation effect, and then provide good concentricity and verticality through professional lathe processing, so that the product can be stably combined with various motors, reducing the damage caused by insufficient precision. Unnecessary axial radial force makes the product have a longer life cycle.
Compared with other reduction machines, mechanical speed variator Planetary Speed Reducer helical gearbox machines have high rigidity, high precision (single stage can be achieved within 1 point), high transmission efficiency (single stage in 97-98%), high torque/volume ratio, lifetime maintenance free and other characteristics.
Because of these characteristics,mechanical speed variator Planetary Speed Reducer helical gearbox is mostly installed on the stepper motor and servo motor, used to reduce speed, increase torque, matching inertia.
|WVB/WVBL series parameters
|Rated output torque
|L1: 3, 4, 5, 7, 10
|L2: 12, 15, 20, 25, 30, 35, 40, 50, 70, 100
|Planetary gear backlash
|L1: P1≤3 P2≤5 L2: P1≤5 P2≤7
HangZhou Fubao Electromechanical Technology Co., Ltd. was established in 2008, the company has a complete precision reducer design, production capacity. Set R & D, manufacturing, assembly and sales, more in the field of gear manufacturing has more than 10 years of background, in the manufacturing equipment is equipped with Switzerland Riesenhahl gear grinding machine, domestic Qinchuan gear grinding machine, hamai gear hobbing machine and domestic Xihu (West Lake) Dis. gear hobbing machine, Japan Yasaki TLGmazak CNC lathe, CNC milling machine and other fully CNC equipment, In addition, it is equipped with other advanced measuring equipment such as Japanese TTI gear detector, 3 coordinate measurement, reducer backlash measurement instrument and so on. In a strong manufacturing capacity at the same time, can be stable, continuous manufacturing of high-quality precision reducer products.
The precision reducer produced by our company has the characteristics of high structural rigidity, small back backlash, precise transmission and so on. It is widely used in various industries. Companies adhering to the concept of let customers participate in manufacturing, and strive to provide customers with more personalized services. In the field of precision transmission has a unique achievements. It is our CHINAMFG pursuit to make far-reaching contributions.
Q: Speed reducer grease replacement time
A: When sealing appropriate amount of grease and running reducer, the standard replacement time is 20000 hours according to the aging condition of the grease. In addition, when the grease is stained or used in the surrounding temperature condition (above 40ºC), please check the aging and fouling of the grease, and specify the replacement time.
Q: Delivery time
A: Fubao has 2000+ production base, daily output of 1000+ units, standard models within 7 days of delivery.
Q: Reducer selection
A: Fubao provides professional product selection guidance, with higher product matching degree, higher cost performance and higher utilization rate.
Q: Application range of reducer
A: Fubao has a professional research and development team, complete category design, can match any stepping motor, servo motor, more accurate matching.
Estimated freight per unit.
|To be negotiated
|Motor, Machinery, Agricultural Machinery, Woodworking Machinery
|Hardened Tooth Surface
How do variator gearboxes contribute to optimizing the efficiency of conveyor systems?
Variator gearboxes play a crucial role in optimizing the efficiency of conveyor systems. They offer several advantages that contribute to improved performance, energy efficiency, and overall productivity. Here’s how variator gearboxes help optimize the efficiency of conveyor systems:
- Variable Speed Control: Variator gearboxes enable precise and continuous adjustment of the conveyor’s speed. This variable speed control allows operators to match the conveyor’s speed to the specific requirements of the material being transported or the production process. By running the conveyor at the optimal speed, energy wastage is minimized, and the system operates more efficiently.
- Load Adaptability: Conveyor systems often handle varying loads or different types of materials. Variator gearboxes offer load adaptability, allowing the conveyor to adjust its speed and torque output based on the applied load. This adaptability ensures that the conveyor operates at the appropriate power level, minimizing energy waste during periods of low load or when handling lighter materials.
- Smooth Starting and Stopping: Variator gearboxes provide smooth acceleration and deceleration capabilities, allowing the conveyor to start and stop gradually. This feature reduces stress on the conveyor components, minimizes jerky movements, and prevents material spillage. Smooth starting and stopping also contribute to energy efficiency by reducing power surges and mechanical stress on the system.
- Optimized Power Transmission: Variator gearboxes are designed to optimize power transmission efficiency. They utilize efficient power transfer mechanisms, such as belts or chains, along with well-engineered pulley systems. These systems minimize power losses due to friction and slippage, ensuring that a greater percentage of input power is effectively delivered to the conveyor belt, reducing power consumption.
- Customizable Gear Ratios: Variator gearboxes offer a wide range of gear ratios that can be adjusted based on the specific conveyor requirements. By selecting the optimal gear ratio, the variator gearbox ensures efficient power transfer and reduced power losses. The customizable gear ratios allow the conveyor to operate at the most favorable speed and torque combination, maximizing energy efficiency.
- Integrated Control Systems: Variator gearboxes can be integrated with advanced control systems and automation technologies. These systems enable precise control over the conveyor’s speed, acceleration, and deceleration profiles. By implementing intelligent control algorithms, variator gearboxes can optimize the conveyor’s operation based on real-time production demands, minimizing power consumption and maximizing productivity.
- Maintenance and Serviceability: Variator gearboxes often offer ease of maintenance and serviceability features. They may incorporate features like quick belt tension adjustment mechanisms, easy access to components for inspection and maintenance, and built-in condition monitoring systems. These features simplify maintenance tasks, reduce downtime, and ensure that the gearbox operates at its peak efficiency.
By leveraging the variable speed control, load adaptability, smooth starting and stopping, optimized power transmission, customizable gear ratios, integrated control systems, and maintenance features, variator gearboxes contribute to the overall optimization of conveyor system efficiency. They enable energy-efficient operation, reduce power consumption, enhance material handling capabilities, and improve the productivity and reliability of conveyor systems in various industries.
What considerations should be taken into account when choosing lubrication for variator gearboxes?
When choosing lubrication for variator gearboxes, several important considerations should be taken into account. The lubricant plays a critical role in ensuring smooth operation, reducing friction, dissipating heat, and protecting the internal components of the gearbox. Here are the key factors to consider when selecting lubrication for variator gearboxes:
The operating conditions of the variator gearbox are a primary consideration when choosing lubrication. Factors such as temperature, load, speed, and the environment in which the gearbox operates should be evaluated. Lubricants have specific viscosity and temperature ranges in which they perform optimally. It is essential to select a lubricant that can maintain its properties and provide adequate lubrication under the anticipated operating conditions.
Viscosity is a vital property of lubricants. It determines the lubricant’s resistance to flow and its ability to form a stable lubricating film between moving components. The viscosity of the lubricant should be selected based on the speed and load requirements of the variator gearbox. If the viscosity is too low, it may result in inadequate lubrication and increased wear. Conversely, if the viscosity is too high, it may create excessive friction and power losses. Manufacturers typically provide viscosity recommendations based on the gearbox’s design and intended application.
There are various types of lubricants available for variator gearboxes, including mineral oils, synthetic oils, and greases. Each type has specific characteristics and performance properties. Mineral oils are commonly used and offer good lubrication properties at a lower cost. Synthetic oils provide enhanced performance in terms of temperature stability, oxidation resistance, and load-carrying capacity. Greases are often used in applications where the gearbox operates in a sealed environment or requires extended lubrication intervals. The type of lubricant should be selected based on the specific requirements and operating conditions of the variator gearbox.
Additives and Properties:
Lubricants may contain additives to enhance their performance and provide additional benefits. These additives can include anti-wear agents, extreme pressure additives, antioxidants, and corrosion inhibitors. Consideration should be given to the presence of these additives and their compatibility with the gearbox components. Additionally, properties such as foaming tendency, air release, and water separation characteristics should be evaluated to ensure the lubricant can effectively perform its intended functions within the variator gearbox.
Compatibility between the lubricant and the materials used in the variator gearbox is crucial. Lubricants should be compatible with the gearbox’s seals, gaskets, o-rings, and other elastomeric components. Incompatible lubricants can cause swelling, degradation, or loss of functionality in these components. It is important to consult the gearbox manufacturer’s recommendations or seek expert advice to ensure the selected lubricant is compatible with all the materials used in the variator gearbox.
Maintenance and Service Intervals:
The maintenance requirements and recommended service intervals should be considered when choosing lubrication for variator gearboxes. Some lubricants may have longer service life and extended maintenance intervals, while others may require more frequent replenishment or change-outs. Evaluating the lubricant’s longevity and the gearbox’s maintenance schedule will help determine the most suitable lubrication option that meets the operational and maintenance requirements of the variator gearbox.
By considering the operating conditions, viscosity requirements, lubricant type, additives and properties, compatibility, and maintenance aspects, one can make an informed choice when selecting lubrication for variator gearboxes. Proper lubrication selection and regular maintenance will contribute to the longevity, efficiency, and reliable performance of the variator gearbox in various industrial applications.
What is a variator gearbox and how does it work in mechanical systems?
A variator gearbox, also known as a variable speed transmission, is a type of gearbox that allows for continuous and stepless variation of the output speed within a certain range. It is commonly used in mechanical systems where the output speed needs to be adjusted dynamically without fixed gear ratios. The variator gearbox achieves this by employing specific mechanisms such as belts, chains, or cones.
One common type of variator gearbox is the belt-and-pulley system. It consists of two variable-diameter pulleys connected by a belt. These pulleys can change their effective diameter by adjusting their position. The input pulley is connected to the power source, such as an engine or motor, while the output pulley is connected to the load. By varying the diameters of the pulleys, the speed ratio between the input and output can be continuously adjusted, allowing for a wide range of output speeds.
The variator gearbox works based on the principle of changing the effective radius of the pulleys. When the input pulley diameter increases or the output pulley diameter decreases, the belt is forced to ride higher on the pulley, resulting in a larger effective radius. This causes the output speed to decrease relative to the input speed. Conversely, when the input pulley diameter decreases or the output pulley diameter increases, the belt rides lower on the pulley, leading to a smaller effective radius and an increase in the output speed.
The variator gearbox can be controlled manually or automatically, depending on the application. In manual systems, the adjustment of the pulley diameters is done by the operator using mechanical or hydraulic mechanisms. In automatic systems, the adjustment is typically controlled by a computer or an electronic control unit (ECU) based on various parameters such as speed, load, or user inputs.
One of the key advantages of variator gearboxes is the ability to achieve smooth and stepless speed variation. Unlike traditional gearboxes with fixed gear ratios, variator gearboxes offer infinite possibilities for adjusting the output speed. This flexibility is particularly beneficial in applications where precise control of speed is required, such as in vehicles, industrial machinery, and power transmission systems.
However, it’s important to note that variator gearboxes may have limitations in terms of torque capacity and efficiency compared to traditional fixed-ratio gearboxes. The power transmission efficiency of variator gearboxes can vary depending on the specific design and operating conditions.
In summary, a variator gearbox is a type of gearbox that allows for continuous and stepless variation of the output speed. It uses mechanisms such as belts, chains, or cones to adjust the effective diameter of the pulleys, enabling dynamic speed control in mechanical systems.
editor by CX 2023-09-26