Product Description
Whirling Of Shaft Demonstrator
We, Zoom Scientific World , Are Engaged In Engineering Lab Equipment . We , Zoom Scientific World , Are Offering You Whirling Of Shaft Demonstrator Which Is Used Under Theory Of Machine Lab . We Are Offering You This Unit At A Very Competitive Rate Which Cannot Be Beat Up In The Market By Any One Else.Also We Have Experts In This Field Having An Experience Of Over 15 Years .
Experiments:
- Both Ends Directionally Fixed
- One Ends Fixed And Other Free
- Both Ends Directionally Free
Modes Of Vibrations Can Be Studied And Frequency Can Be Measured In Each Case.
Utilities Required:
- Floor Area Of 2M X 0.5 M
- Electric Supply Of 230V, Ac
Features:
- Robust Construction
- High Functionality
- Excellent All Round Performance
Specifications:
- Table Size: 1500 X 300 X 300 Mm
- 1/6 Hp 6000 Rpm Motor With Controller
- No. Of Sleeve Weights: 4 Nos
- No. Of Shaft Of Different Diameter: 3 Nos
- Shaft End Configurations: Fixed And Free Ends
- Detailed Technical Manual And On-Site Training
Service Required:
- 230 V.A.C. Single Phase Supply
- Rigid Platform Or Sturdy Table With Preferably A Solid Foundation
- Hand Held Tachometer
Advanced Laboratory Tool for Shaft Whirling AnalysisThe Whirling of Shaft Demonstrator offers a robust method for studying critical speed and whirling phenomena in rotating shafts. Students and researchers can precisely control shaft speed and length to observe resonance and stability. The transparent safety shield and variable speed motor (03000 RPM) promote safe, interactive experimentation. With its reliable build and easy-to-use design, the demonstrator is a valuable addition to any mechanical engineering laboratory.
Flexible Coupling and Adjustable End SupportsTo simulate realistic industrial conditions, the demonstrator uses a flexible coupling for shaft mounting, accommodating shaft diameters between 8 mm and 12 mm. Adjustable end supports enable users to modify shaft length, allowing a wide range of experiments on vibration, resonance, and critical speed. The equipment is suitable for demonstration, testing, and analysis, fostering a comprehensive understanding of shaft dynamics.
Safety Features and User-Friendly OperationPrioritizing operator safety, the Whirling of Shaft Demonstrator includes a protective transparent shield over rotating components and features simple control panels with analog or digital RPM indicators. Its bench-top mount and 25 kg build enable stable and secure operation. Provided with a detailed instruction manual, the equipment ensures straightforward setup and experimentation for both students and professionals.
FAQs of Whirling of Shaft Demonstrator:
Q: How is the shaft mounted on the Whirling of Shaft Demonstrator?
A: The shaft is mounted using flexible couplings that accommodate diameters from 8 mm to 12 mm. Adjustable end supports allow for variation in shaft length, making it easy to configure the setup for different experiments.
Q: What laboratory experiments can be conducted with this demonstrator?
A: This equipment is designed for experiments on shaft whirling and critical speed analysis. It allows users to control shaft speed and length, enabling a range of studies on vibration characteristics and resonance phenomena.
Q: When should the transparent safety shield be used during operation?
A: The protective transparent shield should always be in place while the shaft is rotating to safeguard users from accidental contact with moving parts and to prevent the projection of debris during experiments.
Q: Where is this demonstrator typically used?
A: The Whirling of Shaft Demonstrator is mainly used in mechanical engineering laboratories of universities, technical institutes, and research facilities for teaching and experimental analysis of shaft dynamics.
Q: What is the process for varying shaft speed and length?
A: Shaft speed is adjusted using the variable speed control (03000 RPM), and shaft length is modified by repositioning the adjustable end supports. These features facilitate comprehensive studies of different shaft configurations and their critical speeds.
Q: How does the equipment ensure accurate measurements?
A: Accuracy is maintained through the use of self-aligning ball bearings, an FHP motor with 1% speed control accuracy, and either an analog or digital RPM indicator, ensuring dependable and repeatable experimental results.
Q: What are the main benefits of this demonstrator for laboratories?
A: Key benefits include its robust construction, user safety features, easy operation via a bench-top design, and versatility in adjusting shaft variables. These features provide both efficiency and reliability in shaft whirling and critical speed analysis.