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Coriolis Component of Acceleration Apparatus
Coriolis Component of Acceleration Apparatus

Coriolis Component of Acceleration Apparatus

Price 100 INR/ Unit

MOQ : 1 Piece

Coriolis Component of Acceleration Apparatus Specification

  • Measuring Range
  • 0-3000 RPM
  • Interface Type
  • Analog/Digital
  • Max Height
  • 600 mm
  • Hardness
  • Metal chassis: 50 HRC
  • Power Supply
  • 230 V AC, 50 Hz
  • Test Range
  • 0-3000 RPM
  • Humidity
  • Up to 95% RH
  • Operating Voltage
  • 230 V
  • Temperature
  • 5C to 40C
  • Usage
  • Theory of Machine Lab Equipments
  • Specimen Size
  • Standard Sample
  • Frequency
  • 50 Hz
  • Application
  • Theory of Machine Lab Equipments
  • Automation Grade
  • Semi-Automatic
  • Number of Specimens
  • 1
  • Features
  • Heavy Duty Frame, Anti-Corrosive Parts, Easy Specimen Mount
  • Product Type
  • Coriolis Component of Acceleration Apparatus
  • Resolution
  • 1 RPM
  • Mounting Type
  • Table Top
  • Display Type
  • Digital
  • Accuracy
  • 2 RPM
  • Response Time
  • <2 seconds
  • Capacity
  • Single Specimen Test
  • Machine Weight
  • Approx. 45 Kg
  • Test Speed
  • 0-3000 RPM variable
  • Test Width
  • 150 mm
  • Test Stroke
  • 50 mm
  • Control Mode
  • Manual/Automatic
 

Coriolis Component of Acceleration Apparatus Trade Information

  • Minimum Order Quantity
  • 1 Piece
  • Payment Terms
  • Cash Advance (CA), Telegraphic Transfer (T/T), Letter of Credit (L/C), Cash in Advance (CID), Cheque
  • Supply Ability
  • 100 Pieces Per Week
  • Delivery Time
  • 1 Week
  • Sample Available
  • Yes
  • Sample Policy
  • Sample costs shipping and taxes has to be paid by the buyer
  • Packaging Details
  • carton box, export quality also available
  • Main Domestic Market
  • All India
  • Certifications
  • ISO 9001, 14001 ,CE
 

About Coriolis Component of Acceleration Apparatus

Coriolis Component of Acceleration

We are Offering a wide range of Coriolis Component  Acceleration. This entire set up is designed to study various coriolis components of a slider crank mechanism. In this process the continuous stream of water which is flowing through a steady rotating pair of tubes replaces mechanical slider system. The tubes of the system can be easily rotated in various speeds with the usage of a swinging field motor which also serves a dynamometer. There is a Perspex window located on the top of the tank. This window assures complete clear view of the process. It also prevents the splashing of water over the side of the tank. The in-built dynamometer continuously measures the torque which is applied to the various rotating tubes. This entire equipment is self-contained. The re-circulating of the water is assisted with a own speed control unit and water circulating pump which is separate.

Experimentation 

 To determine Coriolis Component of Acceleration at various speeds of rotation and water flow rates

Utilities Required

  • Electricity
  • 0.5 kW, 220 V, Single Phase
  • Drain
  • Water Supply
  • Technical Details:
  • Swinging field type, variable speed
  • Pump
  • FHP
  • The whole set-up is well designed and arranged in a good quality painted structure
  • Fabricated out of stainless steel
  • Rotating arms
  • 9mm/6mm orifice diameter, length 300 mm
  • Rotameter
  • Electric motor
  • Main tank
  • Control Panel comprises of:
  • Speed control unit
  • Standard make On/Off switch, mains indicator
  • RPM indicator with proximity sensor
  • RPM measurement

 




Exceptional Measurement Precision

This apparatus offers high accuracy (2 RPM) with a rapid response time of less than 2 seconds. The digital display provides clear readings in real time, ensuring reliable experimental results for educational purposes. With a measuring range of up to 3000 RPM, variable test speeds, and a resolution of 1 RPM, it accommodates a wide spectrum of laboratory experiments.


User-Friendly and Safe Operation

Designed for ease of use, the system features manual or automatic control modes, an easy specimen mounting mechanism, and overload protection for enhanced safety. The blue and white metal chassis is highly durable, boasting a hardness of 50 HRC and anti-corrosive properties. Its compact, table-top structure ensures easy integration within laboratory environments.


Tailored for Academic Excellence

Ideal for Theory of Machines labs, this apparatus supports both teaching and research applications. It simplifies complex concepts through direct demonstration, enabling students to better grasp the impact of the Coriolis component in rotating systems. Data can be documented manually or digitally, supporting thorough analysis and learning outcomes.

FAQs of Coriolis Component of Acceleration Apparatus:


Q: How is data recorded and monitored with this Coriolis Component of Acceleration Apparatus?

A: Data can be recorded manually through observation or, optionally, via a USB connection for digital archiving. Measurements such as RPM and water flow are displayed directly on a digital screen, allowing for precise and straightforward monitoring during experiments.

Q: What safety features are included to protect users and equipment during operation?

A: The apparatus is equipped with overload protection for the drive motor, helping prevent equipment damage or hazards in case of excessive load. Its powder-coated, anti-corrosive metal frame also contributes to long-term safety and durability in laboratory conditions.

Q: When is this equipment typically used in an academic setting?

A: This apparatus is primarily utilized during practical demonstrations and experiments related to the Theory of Machines, specifically for topics involving the Coriolis acceleration component. It is most relevant during undergraduate mechanical engineering coursework or laboratory sessions.

Q: Where should the apparatus be installed for optimal performance?

A: The equipment is designed for indoor use and should be placed on a sturdy laboratory table within an environment that maintains temperatures between 5C and 40C and humidity up to 95% RH. Factory alignment ensures minimal on-site setup for immediate use.

Q: What process does the apparatus follow to simulate Coriolis acceleration?

A: A specimen is mounted onto the rotor, and the variable-speed motor is engaged to rotate the sample. The self-contained water circulation system flows through the rotor, with flow and RPM directly measured digitally. The systems direct feedback allows users to analyze Coriolis acceleration phenomena in real-time.

Q: How does the apparatus benefit engineering education and research?

A: By providing direct, visual, and quantitative demonstrations of Coriolis acceleration, the apparatus enhances conceptual understanding and supports hands-on learning. Its precise measurement capabilities and user-friendly design make it valuable for both instructional purposes and experimental research.

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