Mechanics Lab in Bangladesh
EDIBON teaching and research units for the mechanics laboratory, supplied, installed and commissioned in Bangladesh by Vvon with faculty training included. 62 units available.
62 products from 1 manufacturer: EDIBON.
Products
- LIMEBA: Basic Mechanics Integrated Laboratory — EDIBON: LIMEBA is an integrated bench for teaching basic mechanics, built around a common panel and a set of interchangeable experiment cases. It covers statics, load elevation mechanisms, transmissions, dynamics, friction and special mechanisms in one workspace.
- MEMB2: Unit for studying Equilibrium of Moments on a Two Arm Lever — EDIBON: MEMB2 is a bench lever unit used to verify the principle of moments. Weights are hung at measured distances on both arms of a pivoted beam so students can balance clockwise and anticlockwise moments. It suits first year statics teaching.
- MDFC: Coriolis Force Demonstration Unit — EDIBON: MDFC demonstrates the Coriolis effect on a rotating system. Water is fed through radial tubes on a rotating arm so the deflecting force acting on a mass moving in a rotating frame can be observed and measured. It is used in dynamics teaching.
- MFCE: Centrifugal Force Unit — EDIBON: MFCE lets students measure the centrifugal force acting on rotating masses. Masses of different value are set at different radii on a driven rotor and the resulting force is read against speed, showing how force varies with mass, radius and angular velocity.
- MIF: Inertia Flywheel Unit — EDIBON: MIF is used to determine the moment of inertia of a flywheel and to study angular acceleration. A falling mass on a cord drives the flywheel while fall time and drop height are recorded. It also allows bearing friction losses to be estimated.
- MRYE1: Wheel and Axle Unit — EDIBON: MRYE1 demonstrates the wheel and axle as a simple machine. Load and effort cords are wound on two drums of different diameter fixed to a common shaft, so mechanical advantage, velocity ratio and efficiency can be measured in introductory statics teaching.
- MRYE2: Wheel and Differential Axle Unit — EDIBON: MRYE2 extends the wheel and axle experiment to a differential axle with two drums of different diameter on one shaft. Students measure effort against load to obtain the velocity ratio, mechanical advantage and efficiency of the arrangement.
- MELH: Unit for studying Hooke's Law — EDIBON: MELH is a bench unit for verifying Hooke's law on helical springs. Calibrated weights are added to a suspended spring and the extension is read on a graduated scale, giving the spring constant. Springs of different stiffness can be compared.
- MSHU: Simple Harmonic Motion Unit — EDIBON: MSHU is used to study simple harmonic motion with spring and mass systems and pendulums. Students measure the period of oscillation against mass, stiffness and length and compare the results with theory. It suits first year mechanics teaching.
- SRI: Unit to Study Rotational Inertia — EDIBON: SRI allows the moment of inertia of different rotating bodies to be found experimentally. A falling weight drives the test body through a cord and pulley, and the measured acceleration gives the inertia. Discs, rings and rods can be compared.
- BCM: Unit to Study a Bearing Cutaway Model — EDIBON: This mechanical component, essential in industry for supporting loads while enabling relative motion between two contacting surfaces, is the focus of the Unit to Study a Bearing Cutaway Model, "BCM", designed by EDIBON.
- BDCM: Unit to Study a Variable Speed Trapezoidal Belt Drive Cutaway Model — EDIBON: This transmission system, which provides a continuous variation of speed ratio, can be studied with the Unit to Study a Variable Speed Trapezoidal Belt Drive Cutaway Model, "BDCM", designed by EDIBON.
- CGCM: Unit to Study a Control Gear Cutaway Model — EDIBON: Used to precisely adjust tooth spacing, this type of gear is the subject of the Unit to Study a Control Gear Cutaway Model, "CGCM", designed by EDIBON.
- CMTM: Cutaway Models of Transmission of Motion Units — EDIBON: To study different types of transmissions with all their components clearly observable, EDIBON designed the Cutaway Models of Transmission of Motion Unit, "CMTM".
- DCCM: Unit to Study a Multiple-Disc Clutch Cutaway Model — EDIBON: Used to transmit higher torques in mechanical systems, this multiple-disk clutch system can be studied with the Unit to Study a Multiple-Disc Clutch Cutaway Model, "DCCM", designed by EDIBON.
- MGCM: Unit to Study a Mitre Gear Cutaway Model — EDIBON: This type of transmission, which uses bevel gears to transmit motion between two perpendicular shafts, can be studied with the Unit to Study a Mitre Gear Cutaway Model, "MGCM", designed by EDIBON.
- PGCM: Unit to Study a Planetary Gear Cutaway Model — EDIBON: One or more external or planet gears that revolve about a central or sun gear can be studied with the Unit to Study a Planetary Gear Cutaway Model, "PGCM", designed by EDIBON.
- SGCM: Unit to Study a Spur Gear Cutaway Model — EDIBON: This mitre gear is the Unit to Study a Spur Gear Cutaway Model, "SGCM", designed by EDIBON.
- SGCM/2: Unit to Study a Two-Stage Spur Gear Cutaway Model — EDIBON: This type of transmission, the simplest and most widely used in mechanical systems for motion and power transmission, can be studied with the Sectioned Model of a Spur Gear Transmission, "SGCM/2", designed by EDIBON.
- WGCM: Unit to Study a Worm Gear Cutaway Model — EDIBON: A helical worm screw and a circular cogwheel can be studied with the Unit to Study a Worm Gear Cutaway Model, "WGCM", designed by EDIBON.
- CGA: Combined Gear Assembly Unit — EDIBON: The practical assembly and operation of an industrial gear, using easy devices and tools, is the focus of study for the Combined Gear Assembly Unit, "CGA".
- HJBA: Unit to Study a Hydrodynamic Journal Bearing Assembly — EDIBON: A horizontally sectioned hydrodynamic bearing makes up the Unit to Study a Hydrodynamic Journal Bearing Assembly, "HJBA".
- SGA: Spur Gear Assembly Unit — EDIBON: Designed by EDIBON, the Spur Gear Assembly Unit, "SGA", allows the practical assembly and dismantling of a spur gear to be studied with simple tools. Its adjustment devices are designed for manual assembly.
- SJBA: Unit to Study a Shaft with Journal Bearings Assembly — EDIBON: Designed by EDIBON, the Unit to Study a Shaft with Journal Bearings Assembly, "SJBA", enables the study of practical assembly and disassembly, as well as maintenance and repair tasks, of a simple slide bearing. Through it, the student will come to know both the unit's operation and all of its components thoroughly.
- ADSG: Drive, Shaft, and Gear Alignment Unit — EDIBON: Coupling and uncoupling, maintenance, repair of the related units, and checking the operation can all be studied with the Drive, Shaft, and Gear Alignment Unit, "ADSG".
- MDSU: Basic Unit of Mechanical Drive Systems — EDIBON: A main frame holding a series of accessories and elements, arranged in modules of different levels to introduce the user to the field of mechanical systems and their components, makes up the Basic Unit of Mechanical Drive Systems, "MDSU".
- MDU: Machine Diagnosis — EDIBON: Belonging to EDIBON's Machine Diagnosis Unit family, "MDU" enables vibration measurement practical exercises, measuring the displacement, velocity and acceleration of vibrations in the time-frequency range.
- MDU-BLU: Break and Load Unit — EDIBON: Belonging to EDIBON, the Break and Load Unit, "MDU-BLU", consists of a magnetic particle brake, a display unit, and an electrical control. The braking moment can be precisely adjusted, and the excitation current, used as a measurement of that moment, can be displayed through a console.
- MDU-MLB: Mobile Structure for MDU — EDIBON: Built to quickly and easily assemble the various elements of the MDU Base Unit, "MDU-UB", or the Computer Controlled Machine Diagnosis Unit, "MDUC", the Mobile Structure for MDU, "MDU-MLB", is a sturdy structure that forms a mobile test bench for machine diagnosis.
- MDU-SBD: Set of Belt Drive — EDIBON: The conditions that cause vibrations or slip in belts can be studied with the Set of Belt Drive, "MDU-SBD".
- MDU-SCM: Set of Crank Mechanism — EDIBON: To simulate vibrations, the Set of Crank Mechanism, "MDU-SCM", allows adjustment of the stroke, mass compensation, bearing clearance, and speed.
- MDU-SCO: Set of Couplings — EDIBON: Curved tooth, bolt, flange and claw couplings are among the different couplings whose properties can be compared with the Set of Couplings, "MDU-SCO".
- MDU-SD: Displacement Sensors for MDU Unit — EDIBON: Together with the Set of Elastic Shaft, "MDU-SES", and the Software, Sensors and Control for MDU Unit, "MDU-SSC", these two displacement sensors allow subcritical and supercritical shaft orbits in resonance to be represented.
- MDU-SES: Set of Elastic Shaft — EDIBON: Belonging to EDIBON, the Set of Elastic Shaft, "MDU-SES", allows the behaviour of an elastic rotor subjected to imbalance, and the balance of elastic rotors in operation, to be studied. With the Displacement Sensors for MDU Unit, "MDU-SD", it is also possible to study resonance and the phenomena that occur in subcritical and supercritical regimes.
- MDU-SEV: Set of Electromechanical Vibrations — EDIBON: Able to adjust an asymmetric air gap or disconnect a winding, the Set of Electromechanical Vibrations, "MDU-SEV", generates an electromagnetic asymmetry so that its vibrational behaviour can be studied.
- MDU-SM: Top Table Structure for MDU — EDIBON: Anodized aluminum frames measuring 1100 x 770 x 820 mm make up this bench-top structure's slotted table.
- MDU-SRBF: Set of Roller Bearings with Faults — EDIBON: The slow variation of the vibration spectrum is analysed to determine the remaining life cycle of a roller bearing and decide on its replacement. From the spectral distribution, accurate conclusions can be drawn about the type of defect and its location.
- MDU-SRS: Set of Rotating Shaft with Crank — EDIBON: Two shafts of different lengths make up the Set of Rotating Shaft with Crank, "MDU-SRS": the short shaft simulates a projecting shaft end, with its load transmitted through the belt drive of the Set of Belt Drive, "MDU-SBD". The long shaft, meanwhile, is used with a protective bearing from the Set of Elastic Shafts, "MDU-SES", and a flywheel, in order to study a shaft fissure in the case of an elastic rotor.
- MDU-SSC: Software, Sensors and Control for MDU Unit — EDIBON: All measurements and vibration analysis can be performed with the Software, Sensors and Control for MDU Unit, "MDU-SSC".
- MDU-SSCP: Set to Study Cavitation in Pumps — EDIBON: The cavitation phenomenon can be produced, and its vibrational response studied, with the Set to Study Cavitation in Pumps, "MDU-SSCP".
- MDU-SSDG: Set to Study Damage in Gears — EDIBON: The vibrational behaviour of gears with typical defects can be studied with the Set to Study Damage in Gears, "MDU-SSDG".
- MDU-SSVF: Blower Vibration Set for MDU — EDIBON: Vibrations are magnetically induced in the Blower Vibration Set for MDU, "MDU-SSVF". Three impellers with a different number of movable vanes can be studied, and the gyroscopic effect can also be examined by mounting the flywheel plate at an oblique angle.
- MDUC: Computer Controlled Machine Diagnosis Unit — EDIBON: Belonging to EDIBON, the Computer Controlled Machine Diagnosis Unit, "MDUC", enables vibration measurement practical exercises, measuring the displacement, velocity and acceleration of vibrations in the time-frequency range.
- MSCT: Screw Joint Testing Unit — EDIBON: Measuring the tightening torque of a screw with a particular metric, related to a strain produced in both bars, is the function of the Screw Joint Testing Unit, "MSCT", designed by EDIBON.
- MSLG: Unit to Study Lathe Gears — EDIBON: Designed by EDIBON, the Unit to Study Lathe Gears, "MSLG", is built for the practical study of the operation of gear systems used in conventional lathes.
- RGT: Rigging Training Unit — EDIBON: Designed by EDIBON, the Rigging Training Unit, "RGT", is intended for the study of techniques for moving loads of various shapes, sizes and types safely.
- VMSC: Computer Controlled Unit to Study Vibrations in Machine Supporting Structures — EDIBON: Designed by EDIBON, the Computer Controlled Unit to Study Vibrations in Machine Supporting Structures, "VMSC", is used to study the problems of vibration isolation and the construction of supporting structures through practical exercises.
- MECA/EC: Panel and Common Elements Case for LIMEBA — EDIBON: Serving as the supporting structure on which each module's elements are mounted to carry out the experiments, this base panel is necessary alongside any module.
- MECA1: Statics Experiments — EDIBON: The part of Mechanics devoted to studying any kind of structure or element in balance-equilibrium is Statics.
- MECA2: Load Elevation Mechanisms Experiments — EDIBON: The most important load lifting mechanisms are explored here through experimentation.
- MECA3: Transmissions Experiments — EDIBON: To obtain the desired mechanical result, most recent machines require the transmission of motion between elements.
- MECA4: Dynamics Experiments — EDIBON: The part of Mechanics that analyses the motion of an element or mechanism caused by a force is Dynamics.
- MECA5: Friction Experiments — EDIBON: Friction, the most important phenomenon of Dynamics, is the subject of this module. It manifests as energy loss due to contact, an effect present in every real-world mechanism.
- MECA6: Special Mechanisms Experiments — EDIBON: Various mechanisms frequently used in industrial processes, without which some operations would not be possible with the same efficiency, are considered in this module. Their function is shown and analysed here.
- MCF/A: Belt Friction Unit with Dynamometers — EDIBON: The friction coefficient for a given contact angle of a flat belt and a V-belt can be compared through studies and investigations carried out with the Belt Friction Unit with Dynamometers, "MCF/A", designed by EDIBON.
- MEMT-1: Radial Pressure Distribution in a Journal Bearing — EDIBON: The radial pressure distribution in a journal bearing with hydrodynamic lubrication can be visualised with the Radial Pressure Distribution in a Journal Bearing unit, "MEMT-1".
- MEMT-2: Dynamic Friction of a Cylinder on a Roller — EDIBON: Friction forces between several cylinders of different materials and a roller, under different lubrication conditions, can be demonstrated with the Dynamic Friction of a Cylinder on a Roller unit, "MEMT-2".
- MEMT-3: Dynamic Friction of a Pin on a Disc — EDIBON: Friction forces between several vertical friction pins of different materials and a rotating friction disc can be studied with the Dynamic Friction of a Pin on a Disc unit, "MEMT-3".
- MEMT-4: Rolling Friction in Wheels — EDIBON: Slip forces between two rotating friction discs in contact can be determined with the Rolling Friction in Wheels unit, "MEMT-4".
- MEMT-5: Elastohydrodynamic Lubrication — EDIBON: The thickness and characteristics of a lubricant film on a rolling sphere can be investigated with the Elastohydrodynamic Lubrication unit, "MEMT-5".
- MEMT-6: Friction Vibration — EDIBON: Static friction, sliding friction, the related friction vibrations, and slip-stick effects can all be demonstrated with the Friction Vibration unit, "MEMT-6".
- MEMT-UB: Drive Unit for Tribological Tests — EDIBON: Different cases of rolling and sliding friction, along with the pressure distribution in a journal bearing, can be studied with the Drive Unit for Tribological Tests unit, "MEMT-UB".
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