High Precision Slew Rate Control Driver 555kN Static Axial Load For Solar Tracker

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High Precision Slew Rate Control Driver 555kN Static Axial Load For Solar Tracker
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Features
Specifications
Material: 50Mn Or 42CrMo
Delivery: 20 Working Days
Application: Solar Tracker And Wind Turbine Or Contruction Machines Or Equipment
Range: 50~500mm
Production Ability: 20000pcs/month
Market: Spain,USA,Russia,etc
Keywords: Slewing Drive For Construction Machinery
High Light:

slew rate control driver

,

hydraulic slew drive

Basic Infomation
Place of Origin: LUOYANG
Brand Name: MONTON
Certification: ISO9001 or CE certificate
Model Number: WEA17
Payment & Shipping Terms
Packaging Details: Single box/Wooden case
Delivery Time: 7-35 days
Payment Terms: TT
Supply Ability: 1000/pcs/week
Product Description

Model:SE14-85-H-25R
Rated Output Torque:8 kN.m
Tilting Moment Torque:67.8kN.m
Static Axial Load:555kN
Static Radial Load:222kN
Dynamic Axial Load:133kN
Dynamic Radial Load:117kN
Gear Ratio:85:1
Tracking Precision:≤0.20
Weight:70 KG

High Precision Slew Rate Control Driver 555kN Static Axial Load For Solar Tracker 0

A dual axis solar tracker is provided.The moving platform is supported by the serial chain and driven by the parallel chain, forming a parallel tracking mechanism. slew drive for dual axis solar tracker is configured to drive the parallel chain to motion so as to drive the moving platform to rotate around vertical and horizontal axes. The dual axis solar tracker slewing drive of the present disclosure has a larger workspace, a better tracking performance and advantages of high rigidity, low energy consumption, small driving torque and low inertia, etc.This product has a long history, process technology has been very mature now.
Slew drive for solar tracking system,slewing drive movement can reduce power consumption, since the security role. In addition to the field of use in the daily solar power systems are usually used for Special vehicle steering Taiwan, heavy-duty flat-panel truck, container cranes, truck mounted crane, automobile crane and aerial vehicles, cranes, gantry cranes, small wind power stations, space communications, satellite receiver, etc. . The Slewing drive in the solar photovoltaic industry, the general configuration DC planetary reduction motor or AC geared motors; main configuration of the hydraulic motor as a power-driven construction machinery.


principle of the large transmission ratio of the deceleration device to transmit motion and power between the two axes staggered in space. The Slewing drive transmission is usually the case of the main components of the worm and wheel bearings, shell, and the power source.

As the core component of turntable bearings, can withstand the axial load, radial load and overturning moment. Slewing drive and rotary products, compared with the ease of installation, ease of maintenance, Installation space savings advantages to a greater extent.


Cone Drive Slew Drive Small for Solar Tracker Mobile

open housing slew drive for construction machinery

 

Solar trackers are the devices used to adjust photovoltaic panels toward the sun to utilize more sunlight. They enable solar modules to remain in the best position to accumulate maximum energy from the sun. The application of tracking technology allows solar panels to follow the movement of the sun and increase electricity production as compared to a stationary array. Solar trackers are attached to solar panels to adjust their positioning against the daily passage of the sun throughout the year as the weather and seasons change.

By adopting slewing bearing as its core component, slewing drive can bear axial force, radial force and tilting moment simultaneously. Slewing drive is widely applied in solar tracking systems.

The solar tracking system is divided into Horizontal single-axis solar tracking system, Tilted Single-Axis Tracker and Dual axis solar tracking system.

The slewing drives which are used in solar tracking systems are mainly single axis (SE series), dual axis (SDE series) and vertical type (VE series). And the most common used models are SE3, SE5, SE7, SE9; SDE3 and VE7, VE9.

In order to maintain product quality and its performance, below listed methods are applied.

1. High quality raw material and advance production technology and equipment;

2. Professional engineer and software for model selection;

3. Complete testing equipment to ensure the performance.

Solar Tracking System Enclosed Housing Slew Drive With tilting moment capacitySlewing drive’s mainly consists of a slewing bearing, a worm shaft&motors(AC,DC,hydraulic).It can also bear axial load, radial load and tilting moment.The main advantage is easily to install,maintain and save installation space.help power movement across industries and are perfect for situations requiring both load-holding and rotational torque from the same gearbox. Typical applications include solar trackers, wind turbines, satellite and radar dishes, truck cranes, man lifts, utility equipment, hydraulic equipment attachments, oil tool equipment, tire handlers, digger derricks, and automotive lifts.


Enclosed Housing Slew Drive provide load support and controlled rotational torque in both single and dual-axis solar trackers.Our in-house solar tracker is used for accelerated life cycle tests of applied torque, radial, and axial loads, and overturning movement. There is a special weighted cage structure so that we can mimic up to 120 square meter PV panel.
Dual axis solar tracking system is " altitude angle + azimuth" full-tracking system, it moves along two rotation axes with two rotational degrees to completely track the sun's orbit and maximize solar energy reception. This kind of slewing drive is suitable for high-latitude areas and the efficiency of power generation will be increased over 35%, which significantly improve the efficiency of solar power generation system.

SE Enclosed Slew Drives help power movement across industries and are perfect for situations requiring both load-holding and otational torque from the same gearbox. The slewing drive is a modernized take on the worm drive mechanism that dates back many centuries and was widely used during the Renaissance Era. Pappus of Alexandria (3rd century AD), a Greek mathematician is credited for an early version of the endless screw, which would later evolve into the worm drive.

slewing drive for construction machinery

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