Made in China Superior Quality FWA Series FWA14-2 Reducer Slewing Drive for Solar Industry
Products DescriptionFactory Sale Various FWA Series FWA12 Reducer Slewing gearbox For Satellite AntennaSlewing Drive For Solar Industry This article will discuss the market size and technology of slewing drive in solar industry. This product is used in solar tracking systems. These systems help in g......
Factory Sale Various FWA Series FWA12 Reducer Slewing gearbox For Satellite Antenna
Slewing Drive For Solar Industry This article will discuss the market size and technology of slewing drive in solar industry. This product is used in solar tracking systems. These systems help in generating power from the sun. The drive helps in generating power by rotating the solar panels. There are several benefits of using this product. In addition, the drive is also cost-efficient. So, it is an excellent choice for solar tracking systems. However, its application in solar power generation may not be the most lucrative market. Slewing drive for solar power generation The slewing drive for solar power generation is a mechanical device used to rotate the payload of a solar panel. This device allows the solar panel to follow the sun's movement. In this way, solar power can be generated at the optimal angle. The solar tracker also uses a slewing drive to rotate the solar panel. The slewing drive improves efficiency and reduces the cost of the solar power system. Slewing drives are used in a variety of applications. Manufacturers are continually developing and improving slewing drives. These devices are also becoming more robust and low-maintenance, which reduces on-site labor costs. Increasing development activity and the rise of renewable power generation plants are also contributing to the growth of the slewing drive market. The following sections provide an overview of the key players in the slewing drive market. Technology of slewing drive In the present, slewing drives are used in many industrial sectors, including the solar industry. However, they are very expensive, requiring frequent maintenance and lubrication. Furthermore, they are often expensive to replace and remanufacture. However, with the increasing demand for solar energy, the market for slewing drives is expected to grow. This article will discuss some of the major factors influencing the market. Slewing drives are used in many industries, including mining, construction, and metalworking. They can handle high loads while still providing smooth and consistent positioning. These drives can be simple or complex, featuring pneumatic or hydraulic motors. They are also versatile and can be used in horizontal or vertical positions. For maximum efficiency, these drives can withstand high temperatures and high pressure. In addition, they can withstand extreme temperatures. Cost of slewing drive in solar power generation In solar power generation, a slewing drive is a motor that allows the solar panel to rotate with the sun. The slewing drive is used in a solar power system with a panel that is three to five m2 in size. For larger solar panels, a nine-inch or ten-inch slewing drive is recommended. For solar panels that are between forty and sixty square meters, a 14-inch or sixteen-inch slewing drive is recommended. The global slewing drive market is expected to reach USD 2 billion by 2020 and is projected to grow at 4.5% CAGR during the period of 2022-2027. This growth is mainly due to the growing construction sector and the adoption of solar-powered energy alternatives in various countries. Asia Pacific is one of the most lucrative regions for the slewing drive market. In 2020, single axis slewing drives dominated the regional market. The slewing drive is a gearbox that transmits torque to rotate an object and safely hold axial and radial loads. Market size of slewing drive in solar power generation The market for slewing drives is estimated to reach USD 2177.9 million by 2026, at a CAGR of 2.8%. The market is expected to benefit from the increasing use of solar trackers, R&D activities, and a shift towards sustainable energy. Furthermore, the increasing popularity of self-locking planetary gearboxes and solar trackers will spur growth of this market. The demand for slewing drives is projected to be high in the Asia Pacific region. Demand is also high in the Gulf Cooperation Council (GCC) nations, which is driving new prospects for this market. The other regions include North America, Europe, and the Middle East and Africa. The report also includes a competitive landscape, including key players and key company projects. Further, the report includes a regional analysis of global markets and provides a detailed analysis of the global market. The report provides data from secondary and primary sources, as well as from industry experts. It also covers the impact of COVID-19 and the precautionary lockdowns on the market. In addition, the report includes an analysis of the impact of the COVID-19 pandemic and potential new market entrants. The global market for slewing drives is forecast to grow at a 5.2% CAGR during the next five years.
Output torque
Lifting moment torque
Holding torque
Axial load
Radial load
Ratio
Backlash
Weight
16.2 KN.M
71.2 KN.M
74 KN.M
956 KN
363 KN
86:1
≤0.17°
90kg
11956 LBF.FT
62.6*10³ LBF.FT
54.6*10³ LBF.FT
216.9*10³ LBF
81.6*10³ LBF
Front View
Top View
Installation size
Note: customized design can be carried out according to customer requirements
Application
Raydafon rotary drive is a gearbox designed to handle radial or axial loads with high rotational torque. In addition, the slewing bearing is located in the center of the transmission, which enables it to withstand high overhang or moment loads. As the offspring of "worm" screw, rotary drive is widely used in engineering machinery, manufacturing industry, equipment and many other applications requiring strength and accuracy. The physical characteristics of rotary drive make it a universal solution for many applications. In operation, the axial movement of the rotary drive or the movement about its axis interacts to generate a radial torque. This action occurs by meshing the groove of the horizontal screw with the teeth of the vertical gear. When rotating, the axial movement of the worm gear transmits the amplified torque to the radial gear. The number of threads on the horizontal screw and the number of interacting gears will determine the set speed ratio. Depending on the task at hand, the swing drive has a variety of configurations. These can be single axis or double axis rotation. The hourglass structure extends the ability of a single gear tooth to up to 11 to generate rotational torque by contacting the worm. Multiple gear teeth interact at the same time, making the equipment more efficient and generating more torque. Rotary drive is most suitable for applications where high torque can achieve precise positioning and rotation accuracy. This design enables the device to work smoothly and forcefully with minimal clearance. Due to the power and reliability generated by the rotary drive technology, the functions of this engineering technology are applicable to various types of equipment. For example, a special use of solar energy technology is to track the movement of the sun in a perfect time to produce the maximum energy output. Any work requiring high load capacity and reliable positioning may require swing drive engineering. Solid, stable and consistent rotary drives have a special position in manufacturing, construction and many other places. Based on hundreds of years of engineering concepts, the rotary drive operation equipment can be simple or complex, depending on the requirements. Adding hydraulic, pneumatic or electric motors to single, double or hourglass designs depends on the application. Other functions, such as opening or closing the chassis brake or self-locking function, are one of many options. The active application list of swing drive is very wide. Some industries need some form of rotary drive to improve their operational efficiency. Equipment used in mining, construction, metal processing and other applications requires uninterrupted strength and perfect accuracy, and rotary technology is used to ensure safety and accuracy. Powerful equipment such as high-altitude lift, rotary forklift, truck mounted crane, cable winch, fire truck, hydraulic machinery and public equipment depends on the safety and strength of the slewing drive device. Precision equipment, such as equipment, satellite antenna, solar tracker, printing press and telescope equipment, benefit from the sufficient precision provided by rotary drive. In order to determine which kind of rotary drive you need, you must specify the configuration of the rotary drive and the purpose of the equipment; Each unit will have a different specification. When defining the type and capacity of the swing drive, the following variables are calculated: *Transmission ratio*Accurate*Weight*Output*Tilting moment*Torque*Dynamic and static axial*Radial dynamics
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FAQ
Q: Are you trading company or manufacturer ? A: Our group consists in 3 factories and 2 abroad sales corporations. Q: Do you provide samples ? is it free or extra ? A: Yes, we could offer the sample for free charge but do not pay the cost of freight. Q: How long is your delivery time ? What is your terms of payment ? A: Generally it is 40-45 days. The time may vary depending on the product and the level of customization. For standard products, the payment is: 30% T/T in advance ,balance before shippment. Q: What is the exact MOQ or price for your product ? A: As an OEM company, we can provide and adapt our products to a wide range of needs.Thus, MOQ and price may greatly vary with size, material and further specifications; For instance, costly products or standard products will usually have a lower MOQ. Please contact us with all relevant details to get the most accurate quotation. If you have another question, please feel free to contact us.
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