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Lab Code: ALABS-A169-001
Whitworth Quick Return Apparatus Whitworth’s quick return is used to generate uneven reciprocating motion with slow fe...
Lab Code: ALABS-A169-002
Slotted Link Apparatus The experimental unit is used to generate and investigate pure harmonic reciprocating motion. An anodised al...
Lab Code: ALABS-A169-003
Gear Train Apparatus This apparatus is used to demonstrate belt drives, wheel and disk drives, and gear trains. Basic termin...
Lab Code: ALABS-A169-004
Hookes Coupling Apparatus The table model demonstrates the transmission of angular motion to joint shafts, the related gimba...
Lab Code: ALABS-A169-005
Four Bar Chain Using the four bar chain model, rotary motion is converted into oscillatory motion. An anodised aluminium dis...
Lab Code: ALABS-A169-006
Crank and Connecting Rod Apparatus This experimental unit demonstrates the conversion of smooth rotary motion into reciprocating mot...
Lab Code: ALABS-A169-007
Photoelastic Demonstration Photoelasticity can be used to demonstrate distribution of stress and stress concentrations in component models. ...
Lab Code: ALABS-A169-008
Stress and Strain Analysis Thick Walled Cylinder In contrast to thin-walled vessels, when designing thick-walled vessels allowance must ...
Lab Code: ALABS-A169-009
Photoelastic Experiments with Transmission Polariscope Photoelasticity is a tried and proven method of analysing and recording mechanica...
Lab Code: ALABS-A169-010
Stress and Strain Analysis Thin Walled Cylinder The findings obtained from the experiments using demonstrate the calculation and design method...
Lab Code: ALABS-A169-011
Stress and Strain Analysis Membrane In experimental stress and strain analysis, strain gauges are used to determine stresses and strains ...
Lab Code: ALABS-A169-012
Determining Gauge Factor of Strain Gauges As universal aids to experimental stress and strain analysis, strain gauges enable mechanical ...
Lab Code: ALABS-A169-013
Strain Gauge Training System Strain gauges are used extensively in sensor systems to detect forces, moments and deformations. The e...
Lab Code: ALABS-A169-014
Verification of Stress Hypotheses Stress hypotheses are applied in the science of the strength of materials when calculating comp...
Lab Code: ALABS-A169-015
Unsymmetrical Bending Symmetrical bending of a beam – also known as uniaxial bending - occurs when the load plane coincides w...
Lab Code: ALABS-A169-016
Buckling Behaviour of Bars In technical mechanics, loss of stability is known as buckling. Under the effects of compressive forces, and u...
Lab Code: ALABS-A169-017
Demonstration of Euler Buckling In stability theory, the four cases of Euler buckling represent the elastic flexural buckling of str...
Lab Code: ALABS-A169-018
Investigation of Simple Stability Problem Buckling is a stability problem which occurs in practice when slim components are ...
Lab Code: ALABS-A169-019
Hookes Law Apparatus Hooke’s law describes the elastic behaviour of components where deformation is proportional ...
Lab Code: ALABS-A169-020
Deformation of Trusses When a component is placed under load it undergoes elastic deformation. This deformation can be calculated by det...
Lab Code: ALABS-A169-021
Deformation of Frames A frame is a bent beam with rigid corners which creates a so-called structure gauge. This means that it sp...
Lab Code: ALABS-A169-022
Deformation Curved Axis Beam In construction engineering, a distinction is made between beams and arches. An arch is a statically indete...
Lab Code: ALABS-A169-023
Deformation of Bars under Bending or Torsion Bending and torsion are typical loads to which components are subjected. The resultant stre...
Lab Code: ALABS-A169-024
Torsion of Bar Torsion occurs primarily on axles and drive shafts in motor vehicles and machines. The torsion occurring in the shaft c...
Lab Code: ALABS-A169-025
Method to Determine the Elastic Line Beams are key structural elements in mechanical engineering and in construction which are subject t...
Lab Code: ALABS-A169-026
Parabolic Arch Parabolic arches are popular elements in construction engineering. They can be employed as bridges or beams for ex...
Lab Code: ALABS-A169-027
Deformation of Straight Beam Beams are key structural elements in mechanical engineering and in construction. A beam is a bar-shap...
Lab Code: ALABS-A169-028
Shear Force and Bending Moment Diagram Statics observes the effect of forces on a rigid body, ignoring any possible deformations which m...
Lab Code: ALABS-A169-029
Supplementary Set Gear Wheel Supplementary set Gear Wheel extends the scope of experiments which can be performed with Fundamentals of ...
Lab Code: ALABS-A169-030
Bending Moment Diagram This consists of a beam mounted on two supports which is subjected to point loads. The beam is cut at...
Lab Code: ALABS-A169-031
Shear Force Diagram Shear Force Diagram consists of a beam mounted on two supports which is subjected to point loads. ...
Lab Code: ALABS-A169-032
Cable Under Dead Weight Free-hanging cables and ropes are often used to support a structure, such as stay cables. On suspen...
Lab Code: ALABS-A169-033
Forces Suspension Bridge Suspension bridges are among the oldest of all bridge designs. Their main supporting element is a flexible cable...
Lab Code: ALABS-A169-034
Gerber Beam Many bridges are executed as Gerber beams. Bridges are subjected to moving loads. Consequently, it is important to take th...
Lab Code: ALABS-A169-035
Three Hinged Arch Bridges are often constructed as three-hinged arches. This type of construction is particularly suitable when compres...
Lab Code: ALABS-A169-036
Friction on Inclined Plane Friction experiments on the inclined plane help students to understand the fundamentals of mechan...
Lab Code: ALABS-A169-037
Forces Various Single Plane Trusses The object of the experiment is to measure the bar forces in a single plane truss subjected to ...
Lab Code: ALABS-A169-038
Bearing Friction Bearing Friction provides experiments relating to friction on sliding and rolling bearings. Bearing shells in various ...
Lab Code: ALABS-A169-039
Forces Overdeterminate Truss Overdeterminate trusses are employed where overdimensioning is purposely required because safety must be ma...
Lab Code: ALABS-A169-040
Forces in a Howe Truss As light-weight structures offering a high degree of rigidity, trusses are employed...
Lab Code: ALABS-A169-041
Truss Beam Warren Girder Warren truss beams are frequently used on steel constructions.Experiments with the truss Warr...
Lab Code: ALABS-A169-042
Fundamentals of Mechanical Friction The unit is used to determine coefficients of friction, it provides fundamental experiments relating...
Lab Code: ALABS-A169-043
Dry Friction Friction is a key factor in mechanical engineering. Static friction needs to be adequate to fix components to each other, ...
Lab Code: ALABS-A169-044
Supplementary Set Pulley Blocks Supplementary set Pulley Blocks extends the scope of experiments which can ...
Lab Code: ALABS-A169-045
Forces in a Crane Jib Based on the example of a crane jib, forces are determined graphically and experimentally: resultant cable ...
Lab Code: ALABS-A169-046
Equilibrium Moments Two Arm Lever This is used to investigate the fundamentals of the equilibrium of moments based on the ex...
Lab Code: ALABS-A169-047
Forces Simple Bar Structure In the single plane system the bars are only subjected to compression and tensio...
Lab Code: ALABS-A169-048
Equilibrium Single Plane, Statically Determinate System The experiment is an example of the application of static cond...
Lab Code: ALABS-A169-049
Inclined Plane and Friction Supplementary set extends the scope of experiments which can be performed with elastic deflectio...
Lab Code: ALABS-A169-050
Fundamentals of Statics The experimental unit demonstrates fundamental principles of statics such as the equilibrium of forces and momen...
Lab Code: ALABS-A169-051
Statics and Vibrations This apparatus is intended to represent a simple application of a suspended beam and may be used to...
Lab Code: ALABS-A169-052
Mechanical and Automotive Mechanism The Sanderson Universal Bench Mounted Frame provides a very sensible alternative to to w...