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Vibratory Equipment Our range of vibrators and vibrating equipment are quality engineered and precision manufactured to meet heavy duty industrial requirements. Our years of engineering experience with vibrators and vibrating equipment assures our customers material handling success. We guarantee that all our products years of dependable service with low maintaining costs. |
| Rotary Electric Vibrators (Foot Mounted) Rotary Electric Vibrators are the quiet & energy efficient way to create powerful vibratory force, used for various applications like:
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Rotary Electric Vibrators (Flange Mounted) Rotary Electric Vibrators are the quiet & energy efficient way to create powerful vibratory force, used for various applications like:
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| Electro Magnetic Vibrators Vibrant electromagnetic vibrators are used for:
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Linear Feeders Vibratory feeders & conveyors are flexible enough to handle vide variety of materials, weather hot or cold, fine or coarse, light or heavy. They are available as per customer's requirement in any material of construction, size. The vibrations are generated using electromagnetic or un-balance motor. The amplitude and frequency of vibration is selected at factory for different applications. Different standard models are also available with output capacities ranging from 200 kg/hr to 200 tons/hr. Applications:
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| Volumetric Feeders Volumetric feeders are vibratory feeders supplied with hopper, hopper vibrator, controller and the support frame as an integral unit. The rate of flow of material can be controlled by regulating the depth of material on the feeder trough and by changing the vibration intensity using electronic controller. The depth of material can be changed by regulating the opening between the hopper and the feeder trough. The entire system can be integrated with timer, PLC controllers, load cells and many other process automation systems. Available in various standard and custom made versions. | ||||||||||
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Vibratory Bowl Feeder Vibratory bowl(part)feeder is ideal tool to get the required, oriented output of the components at specific feed rate. Bowl feeders are the main elements of any assembly engineering. They are available in various combination of custom made Bowls, auxiliary equipment (like counter, sensor, load cells etc.) and the vibratory drive unit along with the controllers. Designing proper bowl feeder for specific part feeding application is critical. Variety of factors such as part size and geometry, orientation required, feed rate, direction of output (clockwise, anti-clockwise) are just a few factors that affect the bowl design. We can design the bowl to suit your specific requirement, however standard vibratory drive units are available in six different models. Applications:
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| Horizontal & Circular Screen (Sifter) Vibratory screens are widely used for separation, classification and filter of powders, grains and many more items. They are used for both solid-solid and solid-liquid separation applications. Vibro sifters have gyratory motion and can be manufactured in multiple deck configuration to get more than one separation simultaneously. These screens are manufactured in various mesh size and material as per the customer's requirements. The proper selection of the vibrating screen depends on the material, mesh size, output required, method of input, abrasiveness of the material etc. Application:
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Vibrating Tables Vibrating tables are available in two different types:
The proper selection depends on the application, object or material to be handled, its reaction to vibration, the maximum weight etc. Typical application:
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| Package & Jolt Testing Machine The vibration simulator machine is designed to scientifically simulate the vibrations and jolts subjected to various filled containers during the transportation, within the laboratory. The machine is based on the guidelines provided an ASTM D-999, TAPPI T-817-pm, and IS7028 (part II). The packages (containers) intended for transportation of goods is required to fulfill the primary function of physical protection to the content within it. Normally the transportation is by road, rail, sea and air - in singular or in various combinations of these modes. Due to these the package is subjected to the various vibrations and jolts of varying intensities. It is very difficult to simulate these vibrations in totality, however, the machine is designed to simulate these conditions closely in the laboratory. The vibration test provides means to determine in advance, under standard laboratory conditions, how a filled package will fare in a given distribution system. This test is used to assess the performance of containers only, in terms of its strength and the protection that it provides to the content, when subjected to the vibrations during the transportation. The Machine: The machine is rigidly fabricated from mild steel structure. The upper tabletop is suspended for vibration by bearing blocks. The fixed amplitude of 25mm is generated using cam assembly. The frequency of vibration can be varied using the panel box from 2 Hz to 10 Hz. The machine can generate the vibrations in three modes viz.
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Vibration Simulators The goods manufactured are subjected to various types of vibrations, primarily generated due to rotating, pulsating or oscillating forces generated by handling of the material and by vehicular transport. The component or equipment may fail or malfunction, due to these vibrations, at the customer's end. Vibration simulation is the technique use to simulate these vibration conditions for testing of component or equipment, in the factory, before final despatch. A typical equipment consists of a vibrating table, the controller and the sensor. The equipment to be tested is mounted on the vibrating table. The vibrating table generates the sinusoidal vibration when fed with variable frequency through the controller. The state of vibration is sensed through a sensor and the signal is fed back to the controller to simulate the conditions as required. Various testing profiles are possible like, linear, logarithmic, random, octave etc. The entire testing process parameters can be logged with respect to time for quality assurance. Applications:
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| Vibratory Stress Relieving Equipment The majority of welded structures, castings, forgings and other fabricated of machined parts contained residual stress because of the different thermal gradient associated with the work piece. The existence of these residual stress is undoubtedly the cause of dimensional instability. The equipment STREL-Q is a portable VSR equipment. A typical STREL-Q equipment consist of an electro mechanical vibration exciter unit, and electronic vibration controller with monitor, a chart recorder, the vibration sensor and rubber cushion and clamps. The typical operation time can be maximum one hour for most jobs, irrespective of size, shape or weight of the job. Theory of VSR technique: Stress relieving by any method is associated with micro plastic deformation of atoms. These is achieved by injecting additional energy. In VSR technique the vibrations in the form of mechanical energy is injected into the work piece. This applied energy is super imposed on the existing residual stresses. Because of this the resultant stress energy crosses the yield boundary, and hence the material undergo micro plastic deformation effecting reduction of residual stress value. Advantages:
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Finishing Equipment Vibratory finishing equipment uses a bowl mounted on a sturdy frame. The component to be processed are loaded into the bowl along with the special deburring media and finishing chemical. The bowl is then vibrated to generate the spiral motion of media and material to achieve the required finish. These machines are widely used for:
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