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Energy Losses in Bend
Energy Losses in Bend

Energy Losses in Bend

MOQ : 1 Unit

Energy Losses in Bend Specification

  • Humidity
  • Up to 85% RH, non-condensing
  • Accuracy
  • 1% of reading
  • Gas Pressure
  • Ambient/Atmospheric
  • Measuring Range
  • Energy loss calculated per test cycle
  • Number of Specimens
  • 1 (single tube/pipe bend per test)
  • Frequency
  • 50 Hz
  • Test Range
  • Flow Rate: 0.5 to 50 LPM
  • Display Type
  • Analog/Graduated Scale
  • Usage
  • Fluid Machines Equipments
  • Max Height
  • 500 mm
  • Product Type
  • Energy Losses in Bend
  • Automation Grade
  • Manual
  • Resolution
  • 0.01 L/min for flow measurement
  • Operating Voltage
  • 220 V
  • Response Time
  • Instantaneous (for manometer)
  • Mounting Type
  • Bench-top
  • Application
  • Fluid Machines Equipments
  • Interface Type
  • Manual/Analog
  • Power Supply
  • 220 V AC, 50 Hz
  • Specimen Size
  • Pipe length: 600 mm; Diameter: 50 mm
  • Temperature
  • 5C to 40C
  • Features
  • Transparent pipes, quick connect valves, corrosion-resistant construction
  • Port Size
  • Standard 1 inch BSP
  • Capacity
  • Max fluid volume 10 Litres
  • Machine Weight
  • Approx. 35 kg
  • Test Speed
  • Variable (manual adjustment)
  • Test Width
  • 50 mm (standard pipe diameter)
  • Control Mode
  • Manual
  • Material Construction
  • Borosilicate glass and stainless steel
  • Installation
  • Ready-to-use, no plumbing required
  • Manometer Type
  • U-tube differential manometer
  • Fluid Type
  • Water (recommended)
  • Pipe Bends Included
  • Standard 90 and 180 bends
  • Equipment Type
  • Educational Laboratory Equipment
  • Calibration
  • Factory calibrated with test certificate
  • Colour
  • Transparent/White Finish
  • Safety Features
  • Pressure relief and anti-spillage design
 

Energy Losses in Bend Trade Information

  • Minimum Order Quantity
  • 1 Unit
  • Payment Terms
  • Cash Advance (CA), Telegraphic Transfer (T/T), Letter of Credit (L/C), Cheque, Cash in Advance (CID)
  • Supply Ability
  • 100 Units Per Month
  • 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 Energy Losses in Bend

Energy Losses in Bend

  • Microteknik are manufacturer and exporter of  Energy Losses in Bend Fitting Pipes. This Energy Losses in Bends and Fittings Model has been designed for students experiment on the investigation of energy losses in pipe bends and fittings including valves.
  • The equipment is mounted on a free-standing framework supporting the test pipe work and instrumentation. 


Durable Construction for Reliable Experiments

Manufactured using borosilicate glass and stainless steel, this apparatus offers long-lasting performance with excellent resistance to corrosion and mechanical stress. The transparent pipes allow easy observation of water flow and energy loss behavior, making it ideal for hands-on learning in laboratories.


Comprehensive Safety and Factory Calibration

Safety is prioritized with built-in pressure relief and anti-spillage features. Each unit comes factory-calibrated with a test certificate, ensuring accuracy and reliability in every measurement. Quick connect valves ensure setup and operation are hassle-free.


Versatile and User-Friendly Design

The system is plug-and-play, requiring no extra plumbing, and is suitable for various academic and industrial fluid mechanics labs. Variable manual control of flow rate and instant response through the U-tube manometer enables real-time analysis of fluid dynamics.

FAQs of Energy Losses in Bend:


Q: How is energy loss in pipe bends measured using this equipment?

A: Energy loss is determined by flowing water through the apparatuss standard 90 or 180 bend and reading the differential pressure using the integrated U-tube manometer. The calibrated analog scale provides accurate measurements, and losses are calculated per test cycle.

Q: What materials are used in the construction of the apparatus, and why?

A: The main components are made from borosilicate glass and stainless steel. Borosilicate glass provides clarity and chemical resistance, while stainless steel offers strength and corrosion resistanceensuring durability and visibility throughout experiments.

Q: When should the apparatus be used in a laboratory setting?

A: This product is designed for educational laboratories, particularly fluid mechanics and fluid machines courses, to demonstrate and analyze the impact of pipe bend geometry on energy losses. It is ideal for practical sessions where students need real-time, hands-on experience.

Q: Where does installation take place, and what setup is required?

A: Installation is performed on a bench-top in laboratory environments. The system is ready-to-use and requires no additional plumbing or extensive preparation, allowing for quick setup and immediate operation.

Q: What is the process for running a test using this equipment?

A: To run a test, fill the apparatus with water (max 10 liters), select the desired pipe bend, and manually adjust the flow rate (0.550 LPM). Monitor the pressure differential via the analog U-tube manometer, then record the readings for energy loss calculations.

Q: How does the anti-spillage and pressure relief features benefit users?

A: The anti-spillage and pressure relief mechanisms protect users and the laboratory environment from accidental leaks or pressure build-up, ensuring safe and clean operation throughout all testing procedures.

Q: What are the primary usage and application areas for this equipment?

A: It is primarily used as an educational tool in fluid machines equipment laboratories to teach and study the principles of fluid flow, energy loss due to pipe bends, and fundamental hydraulics. Its manual control and clear display make it ideal for training and research.

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