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Front Open, Hydraulic Grips Universal Testing Machines

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Front Open, Hydraulic Grips Universal Testing Machines

We are Dealer,Provider and Treaders of Front Open, Hydraulic Grips Universal Testing Machines and our setup is situated In Thane In Navi Mumbai, in Mumbai and In India.

Product Details:
Measuring Range Up to 5 mm & resolution of 0.001 mm
Capacity 100 kN to 2000 kN
Resolution 0.1 mm
Gauge Lengths 25 mm & 50 mm

We are a unique name in the industry to provide our precious clients an exclusive range of Universal Testing Machine Front Open Hydraulic Gripping. Offered machines are exclusively manufactured using optimum grade components and modern technology in compliance with the set industry standards. Owing to their less maintenance and optimum performance, these machines are widely demanded by our valuable clients.

Universal Testing Machines:
  • Automatic Data capture, storage & graphic display
  • Recording, storage & retrieval of results & details
  • On line display of load & extension
  • Fully automatic, on screen calculations based on the delivered data
  • Out put to digital printer of test data, test results & graphs
  • Auto detection of over load, over travel & specimen break, on detection of the above conditions, the machine is automatically switched off
  • Load resolution - 0.01% of machine capacity for entire range
  • Accurate and Users friendly software & all other facilities mentioned under Model: TUN
Extra (Optional) Accessories such as:
  • Electronic Extensometer (Model: FEE-5): This is specially used to measure proof stress & Young's modulus values.
  • Straining Rate: Our machine has a hydraulic cylinder for loading the specimen. Hence the test speed can be infinitely varied by means of flow control valve (Right Hand Valve). The speed can be varied from 0 to 300 mm / min (for Ex - 100 kN Universal Testing Machine). We shall show current test speed on computer monitor. Operator has to operate the Right hand Valve so that the current speed approaches to the desired test speed.
  • Load-Stabilizer, Attachments for Brinell test, Tensile test for shouldered and threaded, Single & Double shear test, Bolts-Nuts & Washer test, Rope test, Flat Belt test, Bend-Rebend test, 180° Bend test, Pull-Out test, etc. are available.
  • Various Computer Based Models: TUE-C-100, TUE-C-200, TUE-C-400, TUE-C-600, TUE-C-1000 & TUE-C-2000.
  • Loading accuracy well with in ±1% from 2% to 100% of capacity of the machine, conforms to IS:1828 / BS:1610.
Features for WinUTM Software:
  • The Win UTM Software can run a variety of mechanical tests, recall data from previous test & prepare test report
  • Menu driven software for easy of use
  • Test Reports & Graphs can be sent directly to the printer via parallel port or USB Port Storage & retrieval of test parameters
  • Display of load elongation (stress & strain are optional) at any instant through out the test
  • On line display of load Vs elongation or Stress Vs Strain characteristics during conduction of test. The plot is auto scaled & displayed
  • Selectable units (kN, kgf, lbf, mm, inch)
  • Variable sample break detection
  • Load is indicated with a resolution of 0.01% of machine capacity for the entire measurement range of 2% to 100% of machine capacity
  • Provision of auto - Zeroing of Elongation at set preload
  • Tare load and Reset elongation facilities available
  • Auto - Detection of over load, over travel and specimen break. On detection of any of these conditions, the machine is automatically switched off
  • High precision sensors and encoders used for load and elongation measurement
  • Large storage capacity for storing data (up to 50,000 sets) on the computer
  • Provision for calculations of parameters such as load and elongation at yield, peak load and load at break. Veld stress, Ultimate stress etc. The Parameters to be calculated are user selectable

  • Electronic Extensometer

    Model: FEE-5

    Introduction

    This device is used for the determination of proof stress and Young's Modulus values. With the Extensometer, it is possible to measure correct strain values within the gauge length marks during a tensile test. In the case of ductile materials, the stress-strain curve is well defined, clearly showing the yield point, i.e., the departure from the straight portion of the curve.

    However, in certain materials like high carbon steels, aluminium, and magnesium alloys, the straight portion of the curve gradually follows a curve entering into the plastic region, making it difficult to determine the yield point. For such cases, it is advised to find the proof stress value. The proof stress is the stress corresponding to a certain amount of plastic deformation after the proportional limit is passed.

    FEE-5 is specially suitable for the determination of Young's modulus and 0.1% to 1.0% proof stress values. It is suitable for almost all types of materials. The measurement accuracy satisfies all requirements of IS:12872-1990, ISO: 9513-1989 & ASTM-E-83 class B2. Its reliable construction guarantees maximum safety of operation and longer working life, even under raised application conditions.

    Specifications
    • Accuracy Type: Class 1 as per IS 12872 / ISO 9513
    • Output: 0.3 mV/V/mm (approx)
    • Excitation: 10V, DC Nominal
    • Measuring Range: 5 mm
    • Nominal Resistance of Bridge: 350 ohms
    • Gauge Lengths: 25 mm & 50 mm by means of extender (2 fixed G.L.)
    • Resolution: 0.001 mm
    Extensometer Calibration

    FEE-5 is calibrated on a calibrator manufactured by FASNE, which uses a Baker digital dial gauge. The calibrator can be offered as an optional accessory on request.

    Digital Indicator & Software (Optional)

    FASNE offers a separate digital indicator with a resolution of one micron. The Extensometer FEE-5, along with this digital indicator, can be used with any mechanical/electronic machine.

    Note: If the Extensometer is ordered with an FASNE Make Electronic Machine, FASNE supplies a special menu-driven application software that accepts load and extension values and evaluates important parameters like 0.1% or 0.2% proof stress values, etc. A graph of load vs strain can also be printed on a printer.

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