Laboratory Parallel Oscillator

The laboratory parallel shaker drives sample containers to perform reciprocating or rotational motion through a motor, ensuring thorough mixing of solutions. It is used for the dissolution, extraction, or reaction processes of samples such as coatings and inks, aiding in the uniform dispersion of materials during quality inspection.
Selection
When selecting, consider matching the sample container specifications to the oscillator plate size, ensuring the speed range covers experimental needs, and the timer function meets processing duration requirements. The material should be corrosion-resistant to suit the working environment, and operational stability can be assessed through amplitude uniformity.

Terms

Standards

Instruments

Using parallel illumination hemispherical scattering integrating sphere photoelectric receiving mode, the accuracy of light transmitance and haze display is 0.01%, equipped with thin film magnetic fixture and liquid sample Cup, and supports 2000 sets of data storage.

$ 3882.00

Parallel light path design can measure 100mm thickness material, accuracy +/- 1%, resolution of 0.001%, support field and fixed station two Measurement mode, suitable for a variety of Optical inspection material detection.

$ 390.00

Using parallel illumination hemispherical scattering integrating sphere photoelectric receiving mode, the light transmitter and haze measurement accuracy are 0.01%, support U disk storage and USB communication, equipped with thin film magnetic fixture and liquid sample Cup.

$ 2888.00

Imported linear slide rail to ensure parallel accuracy 0.1 +/- 0.01mm, blade Hardness can be cut steel, sampling thickness 0~ 5mm, special treatment die durable and easy to restore accuracy.

$ 937.00

Using parallel illumination hemisphere scattering integrating sphere photoelectric reception mode, light transmitance measurement range 0-100%, haze measurement range 0-99%, with open sample window design, not affected by environment light.

$ 2629.00

Adopt three-in-one parallel light path design, one measurement of visible light, infrared and ultraviolet transmittance; test aperture 1.3mm, suitable for small size and thick materials; Automatic calibration and large capacity storage function.

$ 361.00

Using dual motors and driving the male rotation independent control, compatible with a wide range of materials and a single Processing capacity; 20 sets of formulas can be set up with 10 segments in each group to adapt to a variety of materials; complete protection functions, data can be exported and traced.

$ 10143.00

16 200ml samples can be processed simultaneously, 4-sided Glass is easy to observe, independent heating prevents backflow to avoid cross-contamination, supports 0-350rpm Rotation speed and 0-100 ℃ water Bath heating, flexible operation to adapt to complex experimental needs.

$ 13306.00

Measurable six paraMeters including UV barrier rate, visible light transmittance, infrared 950nm, 1400nm, Full IR and SHGC, using parallel light design, test accuracy +/- 2%, suitable for large Film thickness Glass, with real-time dynamic self-calibrating function.

$ 364.00

The device places the test plate in parallel in the wind tunnel, the wind speed control accuracy is 3 +/- 0.3m/s, the drying time is automatically controlled, and the surface crazing can be visually inspected, which is suitable for the evaluation of coating anti-crack performance.

$ 490.00

Based on the principle of flow between parallel plates, it can quickly and accurately measure inks spread under low shear stress. The sample volume is 0.5 +/- 0.003 cubic centiMeters, and the maximum measurement range of the plate is 9cm. It is suitable for inks flowability evaluation.

$ 280.00

It adopts parallel light path design, supports 47mm Film thickness material test, and can simultaneously measure ultraviolet 365nm, infrared 940nm and visible light transmittance. It has real-time self-calibrating function, and the operation is simple and fast to display three results.

$ 341.00

The device provides 3 +/- 0.3m/s wind speed through axial flow fan in wind tunnel, Timer delay range of 0.01 seconds to 99 hours 99 minutes, can automatically control drying time and eye test plate surface crazing, support parallel test.

$ 364.00

Contains 1026 standard Colors, conforming to the National Standard for Architectural Color Representation Methods, displaying 6 color samples per page, suitable for architectural color selection and management.

$ 130.00

Frequency of 710 vibrations per minute, mixing in 30 seconds; can handle 0.5 to 20 liters of barrel paint, equipped with safety interlock and height adjustment functions, quiet operation and easy loading.

$ 1364.00

Articles

Application of Wet Film Wheel Gauge in Continuous Measurement of Wet Film Thickness for Large-Area Coatings
The wet film wheel gauge is a mechanical tool used to measure the thickness of wet coatings, operating based on the geometric relationship of three coaxial disks (two parallel outer wheels on the sides and an eccentric inner wheel in the middle).
Transmittance Tester Measures the Clarity of Optical Films
This article introduces how to use a transmittance tester to measure the clarity of optical films. Clarity refers to the fidelity of imaging after light passes through the film. The tester is based on the principle of light transmission, calculating the clarity value using a formula by measuring the intensity of parallel transmitted light and scattered light.
Visual color comparison method using colorimetric tubes to determine the color phase of varnish.
Colorimetric tube visual colorimetry is a method used to determine the color hue tendency of varnish samples by directly comparing them with a standard color scale using the human eye. During operation, samples and standard liquid columns should be prepared using colorimetric tubes of consistent specifications under standard lighting conditions, and the hue differences should be observed in parallel.
What are the differences between horizontal airflow and vertical airflow in a clean bench?
Purification workbenches primarily employ two types of air supply methods: horizontal and vertical. In horizontal air supply, the airflow is parallel to the work surface, while in vertical air supply, the airflow moves from top to bottom, forming a laminar barrier. The selection should be based on a comprehensive consideration of experimental needs, sample characteristics, and safety requirements.