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HomeEngineering & Electronic Lab EquipmentsTheory of Machine Lab Vibration Lab Complete 11 Experiment
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Generation Of Involute Gear Tooth Profile
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Vibration Lab Complete 11 Experiment

The VIBLAB is designed to help in conducting various experiments to illustrate and verify the principles and relations involved in the study of vibrations.
This apparatus enables a comprehensive range of Vibration Experiments to be conducted on single basic framework. The frame is robustly constructed from channel section. The experiments are specially designed for quick and easy assembly on to the framework using a minimum amount of common engineering tools. To reduce changeover time on tube more advanced free and forced vibration experiments, large knurled knobs are used to clamp components on the frame and many components are common to several experiments.
All of the referenced groups of experiments are available separately making it possible to procure them individually & if required to build up a complete set over a period of time.

Specifications:

1.Wide range of experiments.
2.Forced and Free Vibrations.
3.Damped and undamped vibrations.
4.Arrangements for variation of damping.
5.Sturdy storage cabinet.
6.Experiments easily assembled.
7.Covers experiments for undergraduate studies.
8.Scope for student projects.

Features:

[I] Pendulum Experiments:
1.Simple Pendulum.
2.Compound Pendulum.
3.Bi-filler Suspension.

[II] Longitudinal Vibration Expiariment.
1.Spring Mass System.
2.Eciuivalent Spring Mass study of undarrped
3.System free vibration

[III] Torsional Vibration Experiment.
1.Single Rotor Systern.
2.Two Rotor System.
3.Single Rotor with viscous darnping.

[IV] Damped Vibration Experiment.
1.Verification of Dukerleys Rule.
2.Forced rotor with viscous damping along with frictional HP Motor Strip chart recorder & control unit.
3.A technical manual accompanies the equipment.

Services required:

1.230 V, A.C. stabilized supply along with earthing connection.
2.Bench area 0.5m x 0.5m x 0.5m height.
3.Tachometer to measure the jumping speed, (can be supplied extra)

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Journal Bearing Apparatus

DESCRIPTION:

The apparatus consists of a plain steel shaft encased in a bearing and directly driven by a small electric motor. The bearing is freely supported on the shaft and sealed at motor end. The motor speed is precisely controlled by control unit and sealed at motor end. The motor speed is precisely controlled by control unit and can be run in both directions. The bearing contains twelve equi-spaced pressures tapping around circumference and four along the axis. All are connected by light flexible plastic tube to the manometer so that the pressure head of all sixteen point can be observed at a time. The bearing can be loaded by attaching weight to the arm supported beneath it.

SPECIFICATIONS:

1. Journal : 50 mm. dia. (nominal) 2. Bearing : 55 mm. dia. 3. Weights : 4 adjustable weights 4. Motor : D.C. shunt Motor, 3,000 RPM. 5. Control panel : For speed control of Motor 6. Manometer panel : 16 tube Manometer 7. Oil recommended : SAE 10

EXPERIMENTS:

1. Observation of the pressure profile at various conditions of load and speed. 2. Plotting the Cartesian and polar pressure curves. 3. Plotting the theoretical Summerfield curves.

SERVICE REQUIRED:

1. Electric Connections : A.C Single Phase, 230v. supply with ear thing. 2. Stand Alone Space : 1.5m X 1.5m X 4m Height.
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Dead Weight Pressure Gauge Tester

DESCRIPTION:-

Dead weight Pressure Gauge Tester is manufactured to measure the Pressure gauge up to the capacity of 25kg/cm2.The system is nickled chrome to protect from rust. The weights are Zink Iron for long term use.

EXPERIMENTS:-

• Study of the hydrostatic force on a plane surface under different submerged conditions

FEATURES:-

• Superb Painted structure • Simple to operate & maintain

UTILITIES REQUIRED:-

• Machine Oil.

SPECIFICATION:-

• Bourdon tube pressure gauge as manometer • Manometer with transparent scale • Manufactured from corrosion resistant materials • Components arranged on base plate. • Set of weights • Medium for transmitting pressure: hydraulic
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Epicyclic Gear Train Holding Torque Apparatus

It is a motorized unit consisting of SUN gear mounted on input shaft. Two plane gears mesh with the annular gear. These planet gears are mounted on a common arm to which output shaft is fitted. Loading arrangement is provided for loading the system and to measure Holding Torque.

Specifications:

1. External type Epicyclic Gear Train: a. Bearing blocks for input & output shafts. b. A gear train with Holding drum and handle. 2. Internal Type Epicyclic Gear Train: a. A compact Gear Train. b. Variable speed D.C. Motor c. Rope brake arrangement to measure output torque and holding torque. 3 Control Panel comprising of a. Digital Ammeter and Voltmeter. b. RPM Indicator. c. Speed Controller.

Experimentation –

1. To measure epicyclical gear ratio between Input shaft and Output shaft. 2. To measure epicyclical gear ratio between Input shaft and holding drum. 3. To measure Input torque, Holding torque and Output torque.

Service Required –

1. Floor Space – about 1.5m x 2m. 2. 230 V.AC stabilized power supply.
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Coriollis Component Of Acceleration

This set up is designed to study coriollis component of Acceleration of a slider crank Mechanism. The apparatus uses hydraulic analogy to represent the rotating slider. It consists of a rotating block with two arms in opposite direction. These tubes can be rotated at various speeds by using a swinging field motor, which also acts as a dynamometer to measure torque applied to rotating tubes. A Perspex window on top cover helps to visualize the process. Rotameter is used to measure water flow rate through tubes. Water is circulated by small monoblaock pump.

Specifications:

1.Main Tank with fiberglass lining. 2.Rotating Arms 9/6 mm dia, 300 mm long. 3.Motor – Swinging field, D.C., 0.5 HP. 4.Rotameter 5.Monoblock Pump 6.Control Panel comprising of – (i) Speed Control Unit. (ii) Speed Indicator. (iii) Necessary switches. 7.Rigid support frame.

Range of Experiment:

Coriollis Component of Acceleration can be determined at various speeds of rotation and water flow rates.

Service Required:

1.A.C. Single Phase .230 V. stabilized supply. 2.Floor Space -1.5 m X 1.5 m.
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Generation Of Involute Gear Tooth Profile

This board illustrates the process of cutting of involutes Gear Teeth, by use of rack type cutter It consists of 3 white acrylic discs A, B, C. having pitch circle diameter 450 mm, 300 mm & 200 mm respectively. A gear tooth profile with module 25mm can be traced out on a peace of paper placed between disc and cutter. An affect of Interference and Undercutting on correct profile of gear tooth can be studied from the profiles traced.
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Tool Dynamometers

A machine-tool dynamometer is a multi-component dynamometer that is used to measure forces during the use of the machine tool. Empirical calculations of these forces can be cross-checked and verified experimentally using these machine tool dynamometers. (1) Milling Tool Dynamometers
(2) Grinder Tool Dynamometers
(3) Lathe Tool Dynamometers
(4) Drilling Tool Dynamometers
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Motorised Gyroscope Apparatus

The apparatus consists of a rotor mounted in bearings. This rotor is free to rotate about (i) Its own axis i.e. axis of spin. (ii) Axis of precession. (iii) Axis of gyroscopic couple. The rotor is connected to the variable speed motor. The weight of the motor is balanced by another weight, which is on either side of the rotor. By putting weights on the weight platform torque can be supplied to rotor, which is also called gyroscopic couple.

SPECIFICATIONS OF MOTORISED GYROSCOPE APPARATUS:

1.Rotor dia. 250mm free about 3 axis of rotation driven by variable speed motor. 2.Dimmerstat to control the motor speed. 3.Stopwatch to measure the angular speed about the axis of precession. 4.Weights – 0.2 kg, 0.5 kg and 1 kg. 5.A technical manual accompanies the unit.

SERVICES REQUIRE FOR MOTORISED GYROSCOPE APPARATUS:

1.220v stabilized AC supply with earthing connection. 2.Bench area – 0.5 x 0.5m at working height. 3.Tachometer for speed measurement (can be supplied at extra cost).
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Static Dynamic Balancing Apparatus

This equipment is designed for carrying out the experiment for balancing a rotation mass system. The apparatus consists ofa stainless steel shaft fixed in a rectangular frame. A set of four blocks with a clamping arrangement is provided. For static balancing, each block is individually clamped on shaft and its relative weight is found out using cord and container system in terms of number of steel balls. For dynamic balancing, a moment polygon is drawn using relative weights and angular and axial position of blocks is determined. The block are clamped on shaft is rotated by a motor to check dynamic balance of the system. The system is provided with angular and longitudinal scales and is suspended with chains for dynamic balancing.

EXPERIMENTS OF STATIC & DYNAMIC BALANCING APPARATUS:-

1. To balance the masses statically and dynamically of a single rotating mass system. 2. To observation of effect of unbalance in a rotating mass system.

UTILITIES OF STATIC & DYNAMIC BALANCING APPARATUS:-

Electricity 0.5 kW, 220 V, Single Phase

TECHNICAL SPECIFICATION OF STATIC & DYNAMIC BALANCING APPARATUS:-

1. Drive Motor -- FHP Motor, variable speed, with speed controller 2. Balancing Weight -- 4 Nos. of Stainless Steel with different sized eccentric Mass for varying unbalance 3. Rotating Shaft -- Material Stainless Steel 4. The whole Set-up is well designed and arranged in a good quality painted Structure
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Near Congress Bhawan,
Ambala Cantt. - 133001
+91 9996340500
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