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Supplier: Wilcoxon Sensing Technologies
Description: Electromagnetic shaker, 20 lb force output, ring-shaped permanent magnet shaker
- Technology: Other
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Supplier: Wilcoxon Sensing Technologies
Description: Electromagnetic shaker, 10 lb force output, compact, ring-shaped permanent magnet shaker
- Technology: Other
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Supplier: Wilcoxon Sensing Technologies
Description: Electromagnetic shaker, 0.75 lb force output, cylindrical, permanent magnet, reaction-type shaker
- Technology: Other
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Supplier: Wilcoxon Sensing Technologies
Description: Electromagnetic shaker, 10 lb force output, anodized aluminum center core
- Technology: Other
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Supplier: Cole-Parmer
Description: • Two-way sieving action effectively separates any dry material Sift heavy minerals, light organic samples, and fine pharmaceutical powders with this electromagnetic shaker. It has no motor and no moving parts—making it virtually maintenance free. The shaker provides
- Motion: Other
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Supplier: Cole-Parmer
Description: • Two-way sieving action effectively separates any dry material Sift heavy minerals, light organic samples, and fine pharmaceutical powders with this electromagnetic shaker. It has no motor and no moving parts—making it virtually maintenance free. The shaker provides
- Motion: Other
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Supplier: Fritsch GmbH - Milling and Sizing
Description: . Areas of application The Vibratory Sieve Shaker ANALYSETTE 3 SPARTAN is the ideal instrument for quantitative particle size analysis according to the known and proven sieving method. The particle size distribution of solids and suspensions of all kinds can be measured through dry or wet
- Display Type: Digital Numerical Display
- Local Interface: Digital Front Panel
- Maximum Load: 2 kg
- Speed: Variable
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Supplier: Fritsch GmbH - Milling and Sizing
Description: instrument in test equipment monitoring according to ISO 9001 and much more. Areas of application The Vibratory Sieve Shaker ANALYSETTE 3 PRO is the ideal instrument for quantitative particle size analysis according to the known and proven sieving method. The particle size distribution
- Display Type: Digital Numerical Display
- Local Interface: Digital Front Panel
- Maximum Load: 2 kg
- Programmable: Yes
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Description: 3 Axis High Frequency Electromagnetic Vibration Shaker is widely used in defense, aviation, aerospace, communications, electronics, automobiles, home appliances, and other industries. This type of equipment is used for discovering the early faults, simulating the actual working
- Application: Accelerometer Calibration, Mechanical Impedance Measurements, Product Qualification / Testing, Reliability / Durability Testing, R&D / Product Design Verification, Seismic Simulation, Semiconductors / Electronics Screening, Structural Fatigue Testing, Transportation / Aerospace Simulation
- Displacement: 0.9843 to 5.91 inch
- Frequency Range: 1 to 3500 Hz
- Peak Acceleration: 0.0 to 102 g
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Supplier: Spectral Dynamics, Inc.
Description: stinger apparatus. The shaker design employs an AlNiCo permanent magnet completely encased in a low carbon steel bowl to create a magnetic field in the gap of 13000 gauss. Moving in this field is a three inch diameter electromagnetic coil, approximately 20 mm (3/4 in) long. The static
- Application: Modal Excitation Source, Other
- Displacement: 0.7559 inch
- Frequency Range: 4500 Hz
- Peak Acceleration: 80 g
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Supplier: Cole-Parmer
Description: • Quiet, electromagnetic vibratory action for small samples • 0 to 100% amplitude control for fine particle separation This sieve shaker accommodates up to seven full-height 3''-diameter sieves and is ideal for small samples of chemicals, minerals, pharmaceuticals, powered
- Motion: Other
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Supplier: Gilson Company, Inc.
Description: The new Ro-Tap ® E Sieve Shakers from W.S.Tyler ™ are available for 8in (203 mm) or 12in (305mm) test sieves. Both are for light to medium duty applications in the size range of No.10 (2mm) to No.635 (20¼m). Electromagnetic vibration produces controlled, constant amplitude and
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Supplier: Gilson Company, Inc.
Description: The new Ro-Tap ® E Sieve Shakers from W.S.Tyler ™ are available for 8in (203 mm) or 12in (305mm) test sieves. Both are for light to medium duty applications in the size range of No.10 (2mm) to No.635 (20¼m). Electromagnetic vibration produces controlled, constant amplitude and
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Supplier: Gilson Company, Inc.
Description: The new Ro-Tap ® E Sieve Shakers from W.S.Tyler ™ are available for 8in (203 mm) or 12in (305mm) test sieves. Both are for light to medium duty applications in the size range of No.10 (2mm) to No.635 (20¼m). Electromagnetic vibration produces controlled, constant amplitude and
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Supplier: Gilson Company, Inc.
Description: • Quiet, electromagnetic vibratory action. • 0-100% amplitude control. • Switchable tapping action. • Precise digital timing. The Gilson Performer III’s compact size, small footprint, and quiet
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Description: electromagnetic vibration testing machine is dedicated to high quality, high performance and high reliability, precision and accuracy, and convenient operation. It is a test platform that meets all kinds of test specifications, and can be executed including IEC, MIL-STD, JIS, ASTM and other
- Application: Accelerometer Calibration, Mechanical Impedance Measurements, Product Qualification / Testing, Reliability / Durability Testing, R&D / Product Design Verification, Seismic Simulation, Semiconductors / Electronics Screening, Structural Fatigue Testing, Transportation / Aerospace Simulation
- Displacement: 0.9843 to 5.91 inch
- Frequency Range: 1 to 3500 Hz
- Peak Acceleration: 0.0 to 102 g
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Description: Electromagnetic vibration table is widely used in defense, aviation, aerospace, communications, electronics, automobiles, home appliances, and other industries. This type of equipment is used for discovering the early faults, simulating the actual working condition and the structure strength
- Application: Accelerometer Calibration, Mechanical Impedance Measurements, Product Qualification / Testing, Reliability / Durability Testing, R&D / Product Design Verification, Seismic Simulation, Semiconductors / Electronics Screening, Structural Fatigue Testing, Transportation / Aerospace Simulation
- Displacement: 0.9843 to 5.91 inch
- Frequency Range: 1 to 3500 Hz
- Integral Slip Table / Multi-Axis Capability: Yes
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Description: applies to transducers such as loudspeakers, headphones, shakers, and other actuators using either an electro-dynamical or electro-magnetic motor coupled with a mechanical suspension. The measurement results are needed for engineering design purposes and for quality control.
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Description: IEC 62458:2010 applies to transducers such as loudspeaker drive units, loudspeaker systems, headphones, micro-speakers, shakers and other actuators using either an electro-dynamical or electro-magnetic motor coupled with a mechanical suspension. The large signal behaviour of the
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Supplier: CSA Group
Description: IEC 62458:2010(E) applies to transducers such as loudspeaker drive units, loudspeaker systems, headphones, micro-speakers, shakers and other actuators using either an electro-dynamical or electro-magnetic motor coupled with a mechanical suspension. The large signal behaviour of the
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Supplier: Fritsch GmbH - Milling and Sizing
Description: FRITSCH Vibratory Micro Mill PULVERISETTE 0 grinds your sample through impact and friction by which the mortar vibrates electromagnetically and the grinding material transfers the vibrations to the grinding ball. At the beginning of the grinding, the comminution of the coarse particles is
- Additional Capabilities: Milling
- Capacity: 3.53E-5 to 3.53E-4 cubic feet
- Display Type: Digital Numerical Display
- Media Type: Suspensions, Slurries, Pastes, Colloids, Powders or Granules
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Supplier: Fritsch GmbH - Milling and Sizing
Description: FRITSCH Vibratory Micro Mill PULVERISETTE 0 grinds your sample through impact and friction by which the mortar vibrates electromagnetically and the grinding material transfers the vibrations to the grinding ball. At the beginning of the grinding, the comminution of the coarse particles is
- Equipment Types: Ball / Media Mill, Impact Mill / Crusher / Breaker
- Feed: Batch
- Industry or Material Processed: Abrasives / Ceramics, Chemicals / Fertilizers, Construction Materials / Cement, Food Processing / Grain, Pharmaceutical / Cosmetics, Metallurgical / Foundry, Mining / Ores / Minerals, Paints / Adhesives, Power / Coal & Coke, Sanitary, Waste / Recycling
- Process Type: Dry, Wet
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Finite-element-model Updating Using Computional Intelligence Techniques
Figure 1.2 shows three major components of the measurement procedure employed: • The excitation of the structure: a modal hammer is used to excite the structure e.g., a cylinder or an electromagnetic shaker can be used to excite the cylinder.
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http://repositories.lib.utexas.edu/bitstream/handle/2152/ETD-UT-2012-08-6333/KIM-DISSERTATION.pdf?sequence=1
… Tip Used in the Seismic Cone in this Research; Dimensions follow the Ideal Dimension of ASTM D5778-07 ...........................................................................................................52 Figure 3.10: Geophones in Seismic Cone Calibrated Using an Accelerometer and Proximitor as references on an Electromagnetic Shaker ..................53 Figure 3.11 …
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Modal Analysis Topics, Volume 3
A Study of Mechanical Impedance in Mechanical Test Rigs Performing Endurance Testing Using Electromagnetic Shakers .
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Piezoelectric Energy Harvesting
The bimorph cantilever is clamped onto a small electromagnetic shaker (TMC Model TJ-2).
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Non-Contact Eddy Current Excitation Method for Vibration Testing
In the present study, a permanent magnet will be mounted to the tip of an electromagnetic shaker such that the motion of the magnet relative to the structure will cause a time changing field and the formation of eddy currents.
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https://digital.lib.washington.edu/researchworks/bitstream/handle/1773/22553/Park_washington_0250E_10899.pdf?sequence=1&isAllowed=y
(a) Assembly system consists of a water container on a linear electromagnetic shaker , and a stepper motor.
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Modeling the dynamics of removable and reusable piezoelectric patch-type actuators
For example, an electromagnetic shaker could be used to actuate a structure, and the experimentalist could determine from that information the desired piezoelectric actuator location.
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http://www.scientific.net/AMM.13-14.281.pdf
A selection of blades, both industrial examples and simplified planar laboratory specimens, are excited at their natural vibration frequencies using both electromagnetic shakers and piezoelectric stack actuators, in order to develop a cyclic displacement of the blade surface and hence a cyclic …
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http://calhoun.nps.edu/public/bitstream/handle/10945/5952/02Jun_Cahill.pdf?sequence=1
The Wilcoxon Research Model F4 Electromagnetic Shaker ..........................
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Topics in Modal Analysis II, Volume 6
For the base excitation, the hair and mounting material were placed in an aluminum fixture, which was then attached to a Labworks ET 132–2 electromagnetic shaker , using the attached mounting screw.
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