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RANKCONN - Spring Testing Machine RC-206
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Video Demonstrate RANKCONN RC-206 Spring Testing Machine
RANKCONN - Spring Testing Machine RC-206
Brand : Rankconn Instruments
Model : RC-206
Product Descriptions
This testing machine is manufactured in accordance with the technical requirements specified in JB/T7796-1995 ''Technical Conditions for Spring Tension and Compression Testing Machines''. It is mainly used for testing the strength of various precision coil springs and elastic elements. Specifically, it measures the test force of the spring under a certain amount of deformation or determines the test force at a specified height.
The machine can be customized to meet various testing requirements based on user needs.
Technical Specifications
Hardware:
Software Calibration:
Safety Functions:
Data Printing Description:
Control Software System
The control and measurement software consists of functional modules including dynamic communication, data acquisition, result observation, record query, data processing, and printing. It ensures high efficiency and accuracy in data acquisition, with convenient and fast output of results.
From a user interface perspective, the software features a clear, user-friendly, and visually appealing design, making operation simple and intuitive.
The system allows users to create various test plans as needed. Within a single plan, multiple batch numbers can be created for batch testing. During testing, the system collects data and plots curves in real time. Data is stored in a large Access database, facilitating resource sharing and re-analysis.
Once testing is completed, data is automatically processed and saved. Users can view results or print test reports at any time. Report formats can be customized according to user requirements. All data processing fully complies with spring testing machine standards.
Control Modes:
Multiple control modes are supported, including:
Brand : Rankconn Instruments
Model : RC-206
Product Descriptions
This testing machine is manufactured in accordance with the technical requirements specified in JB/T7796-1995 ''Technical Conditions for Spring Tension and Compression Testing Machines''. It is mainly used for testing the strength of various precision coil springs and elastic elements. Specifically, it measures the test force of the spring under a certain amount of deformation or determines the test force at a specified height.
The machine can be customized to meet various testing requirements based on user needs.
Technical Specifications
Item | Specification |
---|---|
Test Force | 10 kgf (100 N) |
Resolution | 0.01 N |
Accurate Measurement Range | 1%FS – 100%FS |
Indication Repeatability Error | Better than ±0.5% |
Indication Relative Error | Better than ±0.5% |
Test Stroke | 120 mm |
Speed Range | 0.1 – 250 mm/min (stepless speed adjustment) |
Transmission Mechanism | High-precision ball screw |
Compression Plate Diameter | Φ30 mm |
Display Mode | Large LCD, Chinese character display |
Drive Motor | High-precision servo motor and drive system |
Data Processing | Auto data acquisition, processing, saving, query, print |
Machine Dimensions | Approx. W420 × D650 × H660 mm |
Machine Weight | 70 kg |
Power Supply | 220V |
Product Features
-
Main Unit:
Utilizes a single-arm, three-column structure. The main frame is analyzed using finite element mechanics to ensure sufficient rigidity and strength. The transmission system adopts a zero-backlash ball screw pair to ensure accuracy and durability of test results. The main frame is guided by guide columns to further guarantee rigidity. -
Transmission System:
Composed of a synchronous toothed belt, precision ball screw pair, and guiding components. -
Drive System:
A stepper motor drives the system.
-
Measurement & Control System:
- The force measurement control system includes a high-precision load sensor, measurement amplifier, A/D converter, and regulated power supply.
- The displacement measurement control system includes a photoelectric encoder, frequency-doubling shaping circuit, and counting circuit.
- Through signal processing, the system supports computer-based display, control, and data processing functions.
-
Safety Protection Devices:
Includes: - 10% overload protection over the rated load
- Beam limit position protection
- Over-current, over-voltage, and overspeed protection
-
Force Calibration:
Uses a three-point calibration method for more accurate and higher precision force values. -
Displacement Compensation:
Deformation caused by the sensor can be compensated. That is, deformation caused by the sensor and machine stiffness will not affect displacement accuracy.
-
High-speed plate alignment function:
The upper compression plate automatically aligns with the lower one at a speed of 300 mm/min, then automatically sets the displacement to zero—defining the lower plate as the zero point. The system then retracts to 50 mm above the lower plate and stops. This improves accuracy and reduces operator error in manual alignment. -
Limit Protection:
Limit switches at both tensile and compression extremes prevent misoperation. -
Force Limit Setting:
Prevents damage from spring overloads in unexpected scenarios. - Displacement Protection Setting
- Deformation Protection Setting
-
Emergency Stop Function:
Allows for an immediate stop if an unexpected situation occurs during testing.
- Allows classification and printing of test data from different testing modes.
Control Software System
The control and measurement software consists of functional modules including dynamic communication, data acquisition, result observation, record query, data processing, and printing. It ensures high efficiency and accuracy in data acquisition, with convenient and fast output of results.
From a user interface perspective, the software features a clear, user-friendly, and visually appealing design, making operation simple and intuitive.
The system allows users to create various test plans as needed. Within a single plan, multiple batch numbers can be created for batch testing. During testing, the system collects data and plots curves in real time. Data is stored in a large Access database, facilitating resource sharing and re-analysis.
Once testing is completed, data is automatically processed and saved. Users can view results or print test reports at any time. Report formats can be customized according to user requirements. All data processing fully complies with spring testing machine standards.
Multiple control modes are supported, including:
- a) Set test force (P) → measure spring deformation (F)
- b) Set deformation (F) → measure spring test force (P)
- c) Set test force (P) → measure spring remaining height (H)
- d) Set remaining height (H) → measure spring test force (P)