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HomeEngineering & Electronic Lab EquipmentsTheory of Machine Lab Slip Creep Measurement Apparatus
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Epicyclic Gear Train Holding Torque Apparatus
Epicyclic Gear Train Holding Torque Apparatus

Slip Creep Measurement Apparatus

The apparatus consists of a variable speed D.C. Motor, Driving pulley and Driven pulley of equal diameter. The pulleys are mounted on input shaft (Motor shaft) and output shaft. The driven pulley can slide on the base with bearing block to change initial tension in belt. Brake drum is mounted on output shaft helps to measure power output. The motor speed is varied by dimmerstat. A two channel RPM Indicator is provided to measure speeds of driven and driving pullies respectively.

Specifications:

1.D.C. Motor – 1 HP, 1500 RPM, variable speed.
2.Driving & Driven puilies of equal diameters.
3.Brake drum along with spring balance.
4.Fiat Belt of fixed length of following materials –
(i)Fabric Belt
(ii)Canvas Belt.
(iii)Rubber Belt.
5.Belt tightening arrangement.
6.Speed Controller unit.
7.Two Channel digital RPM Indicator.
8.Stroboscope.

Experimentation –

1. To measure co-efficient of friction between pulley material and different belt materials.
2. To measure power transmitted with varied belt tensions and plotting graph of (T1 – T2).Tension Characteristics.
3. To measure percentage slip at fixed belt tension by varying load on brake drum and plot graph of (T1-T2)
Vs.percentage slip.i.e. Slip Characteristics. Finding a creep zone from graph.
4. To measure belt slip speed and observe the limiting value float at constant speed when the slip just starts.

Service Required:

1.230 V.A.C. stabilized power supply
2.Space -. 1.5m x 1.5 m.

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Motorised Governor Apparatus

The unit consists of a base upon which the bearing holders and driving motor are bearing can be fitted in a holders to end conditions for test shafts, viz. Both end fixed and one end free, one end fixed. A Variac provided control of driving motor. The unit demonstrates the phenomenon of whirling of shafts with single rotor. As the test is destructive, after the test cannot be used, hence the unit only demonstrates the principle. However, results obtained are closer to theory, as compared to those with bare shafts. Also, It can be demonstrated that, after passing whirling speed, shaft again starts running true.

SPECIFICATIONS OF MOTORISED GOVERNOR APPARATUS:

1.Test shaft – 4.75 mm, 6.35 mm and 7.9 mm – 2 each. 2.Bearing to provided end conditions, (a) Both ends fixed, (b) One end fixed and one end free. 3.Drive motor 1/8 HP, 1500 rpm with control arrangement. 4.The whole unit is mounted on a sturdy base. 5.Rotor for each shaft of suitable size. 6.A technical manual accompanies the unit.

SERVICES REQUIRE FOR MOTORISED GOVERNOR APPARATUS:

Floor space area of 2m. X 1m. at working height. 230V, 15 A, AC electric supply connection.
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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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Whirling Of Shaft Apparatus

The unit consists of a main spindle driven by a variable speed motor. Three different governor assemblies can be mounted over the spindle. A with pointer measures the lift of the governor. Students can calculate characteristics of governor at and compare their performance viz. Sensitiveness, stability, governor effort etc.

SPECIFICATIONS OF WHIRLING OF SHAFT APPARATUS:

1.Governor assemblies – Hartnell, porter & propel governor assembly one each with rotating weights. 2.Variable speed FHP D.C. motor to drive the main spindle. 3.Sliding weights for porter & proell governor. 4.Scale & a pointer to measure governor lift. 5.Spring & Spring compression adjustment arrangement. 6.A technical manual accompanies the unit.

SERVICES REQUIRE FOR WHIRLING OF SHAFT APPARATUS:

1.230V, 5A, AC supply connection. 2.Bench area of 0. 75 x 1m. at working height.
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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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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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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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Lathe Tool Dynamometers

This is a strain gauge type two component lathe tool dynamometer designed to measure vertical and horizontal forces on the while orthogonal cutting process. The unit is in two parts one is mechanical sensing unit or tool holder, which can mounted on the top of the Ross slide after removing swivel base and compound slide of a lathe and digital force indicator. With this Dynamometer student can study the change in these forces by varying Speed, Cut and Feed.

FEATURES:

1.Rigid in construction 2.Sensitive transuding and amplifying system for accuracy in force measurement. 3.Compact Digital force indicator. 4.Use of cutting fluid during operation is possible.

SCOPE OF SUPPLY:

1.Mechanical sensing unit or Tool Holder with string gauges. With H.S.S. tool of ½ “ size. 2.Control panel housing digital force indicator to measure two forces simuletensiously, balancing potentiometers, connoting cable. 3.Necessary switches, fuses and polycarbonate front plate. Range o to 500 Kg. 4.Centre Height, P.C.D.of clamping bolt size, clamping Bolt size. Three component lathe tool dynometer is also available.
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Cam Analysis Apparatus

The apparatus is designed to study the cam profiles and performance of cam and follower system. The apparatus consists of a shaft supported by ball bearings upon which three different types of cams can be mounted. The push rod for follower is supported vertically, which can adopt three different types of followers. Cams and followers can be changed easily. A variable speed motor rotates the cam. A dial gauge permits plotting of follower displacement with respect to cam position. By operating the system at different Speeds, jump speed can be found and also the effect of weight and spring force on jump speed can be studied. Jump can be visualized also with the help of stroboscope (it is not supplied With the product).

SPECIFICATIONS OF CAM ANALYSIS APPARATUS:

1.Cam -Eccentric, tangent and circular ARC type – one each. 2.Follower- mushroom, flat faced and roller type – one each. 3.Cams and followers are hardened to reduce wear of the surfaces. 4.Variable speed motor coupled to camshaft of suitable range and Variac. 5.A dial gauge to note the follower displacement. 6.A technical manual accompanies the equipment.

SERVICES REQUIRE FOR CAM ANALYSIS APPARATUS:

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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5368, Cross Road No.2, Nicholson Road
Near Congress Bhawan,
Ambala Cantt. - 133001
+91 9996340500
adarshinternational@gmail.com
WhatsApp +91 98963 24793
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