Load |
Speed |
200N |
45mm/s |
150N |
80mm/s |
100N |
140mm/s |
50N |
230mm/s |
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ARF06 Tubular High-Speed Linear Actuator
Specifications
Input voltage: 12V/24 VDC
Max. Load: 200N
Max. Speed: 230mm/s
Stroke: 50mm~ 500mm, can produce as your request.
Minimum installation distance: stroke + 235mm
Diameter: 55mm
Duty Cycle: 10% or 2 minutes continuous use followed by 18 minutes not in use.
Limit Switches: Built-in (Not Adjustable)
Operation Temperature: -25℃~ +65℃
Noise decibel: ≤48dB
Protection Class: IP65
Certificates: CE&RoHS
ARF06 Electric Tubular High-Speed Linear Actuator is a high-speed linear actuator whose structure usually includes a motor, guide rail, slider and housing. As the driving force source, the motor uses a DC motor to provide power to promote linear motion. The guide rail is made of high-strength metal or alloy and is used to guide the linear movement of the actuator to ensure the stability and accuracy of the movement. The slider is responsible for converting the rotary motion of the motor into linear motion, using a high-precision screw or slider assembly. Shell As a protective shell of the overall structure, it is made of metal material and has good protection and beautiful appearance.
Load |
Speed |
200N |
45mm/s |
150N |
80mm/s |
100N |
140mm/s |
50N |
230mm/s |
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READ MOREWhen designing and manufacturing the ARF06 electric tubular high-speed linear actuator, we pay special attention to its performance under high load conditions to ensure that the actuator can maintain stable and reliable operation in various application scenarios. As a manufacturer, we have taken a series of precise design and manufacturing technical measures to ensure that the ARF06 actuator can work normally under high load conditions and achieve long-term reliable operation.
The load capacity of the ARF06 actuator mainly depends on its structural design and the materials used. We use high-strength materials such as reinforced aluminum alloys and special steels in the design of the actuator, which can provide excellent compression and bending resistance. By optimizing the internal structure of the actuator and enhancing the strength and stability of key components, we ensure that the actuator will not deform or damage when subjected to heavy loads.
Secondly, in order to improve stability and durability under high loads, we use high-precision ball screws or gear transmission mechanisms in the actuator's transmission system. These transmission mechanisms can effectively convert the rotary motion of the motor into linear motion and provide high load-bearing capacity. Ball screw systems are particularly suitable for high-load applications because their low friction and high transmission efficiency can reduce energy loss in motion and improve the overall stability of the system.
For electric drives, we selected high-performance servo motors, which not only provide sufficient power to support high loads, but also have excellent control accuracy and response speed. The design and control system of the servo motors enable the actuator to accurately control the movement of the load and quickly adjust when the load changes, ensuring smooth and accurate movement. In addition, the motor's efficient heat dissipation system can effectively reduce the temperature during high-load operation to avoid the impact of overheating on the motor performance.
To ensure the reliability of the actuator, we also conduct rigorous load testing. During the manufacturing process, we test each actuator under high-load conditions, including long-term operation tests to simulate the working environment in actual applications. These tests can verify the performance of the actuator under high loads and ensure that it will not fail prematurely or degrade in actual use.
During the manufacturing process, we also pay attention to the assembly accuracy and quality control of the actuator. Each actuator has undergone a rigorous assembly process and quality inspection to ensure that the matching accuracy and overall quality of all components meet the design requirements. These measures can effectively improve the stability of the actuator and reduce performance problems caused by poor assembly.
During the design and manufacturing process of the ARF06 electric tubular high-speed linear actuator, we fully considered its adaptability in various environmental conditions to ensure that the actuator can maintain stable operating performance in harsh environments such as high temperature, high humidity, and dust. As a manufacturer, we have taken a variety of design and technical measures to improve the environmental adaptability and durability of the ARF06 actuator.
In terms of material selection and structural design, we selected materials with excellent corrosion resistance and high temperature resistance. The housing and main structural parts of the actuator use specially treated aluminum alloy or stainless steel, which can effectively resist high temperature, high humidity and chemical corrosion. During the manufacturing process, we have carried out anti-corrosion treatment on the materials, such as spraying corrosion-resistant coatings or anodizing treatment, which can protect the actuator from moisture, salt spray and other corrosive substances.
Secondly, the sealing design of the ARF06 actuator has also been carefully optimized. The internal components of the actuator use high-quality seals, such as rubber seals and sealants, to prevent the ingress of dust, moisture and other external contaminants. The protection level of the actuator is usually IP65 or higher, which means that the actuator can effectively prevent the ingress of dust and can withstand water jets from any direction. This high level of protection design ensures that the actuator can still work normally in dusty, humid or rainy environments.
The design of the ARF06 actuator has also been optimized for high and low temperature environments. We have selected high and low temperature resistant lubricants to ensure that the moving parts of the actuator can still operate smoothly under extreme temperature conditions. In addition, the motor and control system are designed with effective heat dissipation devices to prevent overheating problems in high temperature environments. The materials and components of the actuator have undergone extensive temperature testing during the design process to ensure that they can maintain stable performance over a wide temperature range.
For high humidity environments, we have specially designed waterproof functions and moisture-proofed the electrical components. Waterproof materials and protective coatings are used on the circuit boards and connectors inside the actuator to prevent moisture from affecting the electronic components. This design ensures that the electrical performance of the actuator will not be affected in a high humidity environment, thereby maintaining a stable working state.