Ultrasonic Nano-Disperser

The ultrasonic nano-disperser generates cavitation effects through high-frequency vibrations, which mechanically break up particle agglomerates in liquids into nanoscale particles. It is used for the uniform dispersion of nanomaterials in industries such as coatings and inks, preventing sedimentation and clumping.
Selection
When selecting, consider matching the power to the sample properties, corrosion resistance of the titanium alloy probe, temperature control accuracy, suitability of pulse mode for heat-sensitive materials, the relationship between acoustic energy density and processing capacity, as well as safety protection and ease of operation.

Terms

Standards

Instruments

With microwave and ultrasonic coordinated control function, 250ml container capacity with 1800W adjustable ultrasonic Power, infrared temperature sensor and magnetic stirring system, support a variety of reaction modes to expand applications.

$ 17178.00

Equipped with microwave and ultrasonic synergy function, 2000ml large-capacity reactor and 1800W ultrasonic power, support platinum resistance accurate temperature measurement and magnetic stirring, and realize multi-mode chemical reaction control.

$ 15887.00

With microwave and ultrasonic synergy function, support 500ml reaction vessel, ultrasonic Power 1800W can be fine-tuned, Frequency 20KHz, integrated infrared temperature control and magnetic stirring, suitable for a variety of synthesis conditions to accelerate the reaction.

$ 17178.00

It is equipped with ultrasonic and degassing cleaning modes, supports accurate temperature control within 80 ° C and 60-minute timing, and is designed with SUS304 stainless steel punching Tank without solder joints. The transducer has high conversion rate and ultrasonic power of 600W.

$ 315.00

Equipped with microwave ultrasonic individual and collaborative control functions, equipped with 2000ml reaction vessel and 1800W ultrasonic Power, supports infrared temperature measurement and magnetic stirring, and can achieve a variety of synthesis conditions.

$ 17178.00

With microwave ultrasonic separate control and coordination function, support 1000ml reaction capacity and 1800W ultrasonic Power, using infrared temperature sensor and magnetic stirringdevice, can realize multi-mode reaction operation.

$ 17178.00

With microwave ultrasonic separate and collaborative control function, using Platinum Resistance Sensor to achieve +/- 1 ℃ temperature control accuracy, equipped with 1800W adjustable ultrasonic Power and 1000W microwave output, support multi-stage program control and real-time response monitoring.

$ 15887.00

6 channel design with nano space insulation material, can work for 60 minutes in 300 ℃ environment, accuracy of +/- 0.3 ℃, support 200,000 data recording, to achieve high temperature environment stable temperature measurement.

$ 1184.00

8-Channel design supports multi-point simultaneous temperature measurement, using nano-space insulation material to ensure stable operation at 300 ℃ environment for 60 minutes, equipped with K-type Thermocouple to achieve +/- 0.3 ℃ High Accuracy measurement, suitable for high temperature process monitoring.

$ 1390.00

Using LCD and Button-Operated knob for easy operation, Nano Pottery and porcelain disc improve high temperature hardness and heat resistance Impact performance, support 0~ 1600rpm stepless speed regulation and 0~ 60 ℃ Temperature range, with independent safety circuit and temperature sensing monitoring.

$ 214.00

15 station synchronous processing, nano thermal energy technology implementation speed uniform heating, plate temperature of 200 ℃, sample temperature of 120 ℃, Microcrystalline Pottery and porcelain panel acid and alkali easy to clean, DC motor running smoothly and quietly.

$ 1684.00

With 20-25KHz Ultrasonic Frequency and 1800W Maximum Power, it supports ultrasonic, homogeneous emulsification and vortex mixing operation at the same time, provides over-temperature overload alarm and remote control function, Glass parts are resistant to corrosion and high and low temperature.

$ 8465.00

The noise at work is only 52 decibels, the exhaust volume is 118 liters/minute, the Nano coating cylinder liner system is adopted, no lubricating oil is required, the gas cleanliness is high, and the automatic design can realize unattended operation.

$ 557.00

15 Station Synchronous Stir, Nano heating technology implementation fast uniform heating, speed range 100-1100rpm continuously adjustable, Max.stirring Capacity 7.5L, Microcrystalline Pottery and porcelain panel acid and alkali easy to clean.

$ 1461.00

Nano thermal technology heating fast and uniform, can simultaneously process 10 samples, Max. stirring Capacity 5L, speed 100~ 1100rpm continuously adjustable, Microcrystalline Pottery and porcelain panel acid and alkali easy to clean.

$ 1259.00

Articles

Ultrasonic Thickness Gauge Selection: Technical Considerations for Probe Configuration and Measurement Modes
This article primarily introduces the technical factors to consider when selecting an ultrasonic thickness gauge. In terms of probe configuration, the frequency affects both resolution and penetration depth, while crystal size determines adaptability to curvature and surface conditions. Dual-element probes offer a smaller dead zone compared to single-element probes, and delay-line probes are suitable for thin-wall and high-temperature applications.
When selecting a laboratory disperser, it is essential to evaluate the dispersion capacity and the speed range.
When selecting a laboratory disperser, it is crucial to evaluate the dispersion capacity and speed range. The dispersion capacity should be determined based on parameters such as material viscosity and solid content to avoid uneven dispersion or localized overheating caused by excessive or insufficient capacity.
Capacity Matching for Laboratory Small Dispersers and Pilot Dispersers
This article primarily discusses how to select the appropriate disperser for laboratory research and process development.
Laboratory dispersers achieve efficient dispersion of paint pigments.
This article introduces how laboratory dispersers efficiently disperse paint pigments. They break up pigment agglomerates through mechanical actions such as shear force, involving three stages: wetting, dispersing, and stabilizing.
Selection of disperser speed range and matching of dispersing disc form with container
This article discusses the technical points in the selection of a disperser, including the speed range, the form of the dispersion disc, and the matching with the container.
The coating machine applies a conductive layer (silver nanowires) for flexible display screens onto a PET substrate.
This article introduces the technique of coating a silver nanowire conductive layer on PET substrates using a film applicator. Silver
Ultrasonic thickness gauge for detecting thick coatings and composite coatings.
Ultrasonic thickness gauges measure coating thickness using the principle of ultrasonic pulse reflection, calculating the result based on the propagation time of sound waves in the material and the speed of sound. When detecting thick coatings and composite coatings, challenges such as acoustic attenuation of the material, unknown sound speed, and signal recognition at multi-layer interfaces must be addressed.
Operating Specifications for the Determination of Hexavalent Chromium Content in Wastewater Using Colorimetric Titration Apparatus
This article introduces the standard operating procedure for determining hexavalent chromium content in wastewater using a colorimetric titrator. The method is based on the reaction between hexavalent chromium and diphenylcarbazide under acidic conditions to form a purplish-red complex, with the titration endpoint determined by monitoring changes in absorbance at a wavelength of 540 nanometers.
Ultrasonic Thickness Gauge Measures the Thickness of Flexible Packaging Materials
This article introduces the principles, technical points, and operational procedures for measuring the thickness of flexible packaging materials using an ultrasonic thickness gauge. It is based on the principle of ultrasonic pulse reflection, which calculates thickness by measuring the propagation time of sound waves through the material.
The principle of measuring dry film thickness with a coating thickness gauge
Coating thickness gauges measure dry film thickness through non-destructive methods, with commonly used principles including electromagnetic induction, eddy current, and ultrasonic methods.
The impact of the disperser impeller structure on dispersion effectiveness.
This article mainly discusses how the impeller structure of a disperser affects the dispersion effectiveness. The impeller is the core component of a disperser, and its design directly influences the uniformity and stability of the final mixture.
Application of High-Speed Disperser in the Preparation of Water-Based Inks
This article introduces the application of a high-speed disperser in the preparation of water-based inks. It first explains the working principle of the equipment, which involves generating shear forces through high-speed rotation to disperse particles.
Copper nanowire and zinc oxide thin film preparation coater
The coating machine is a key device for preparing copper nanowires and zinc oxide thin films, which uniformly coats slurry onto a substrate through methods such as blade coating to form a thin film.
Preparation of silver nanowire transparent conductive films by the wire bar coating method
The preparation of silver nanowire transparent conductive films using a coating method is an efficient and scalable production process. This article systematically elaborates on the technology from aspects such as principles, materials, processes, performance characterization, and standards.
How to achieve high uniformity in silver nanowire transparent conductive films through wire rod coating
This article introduces how to prepare uniform silver nanowire transparent conductive films using the wire rod coating technique. These films, which use silver nanowires as the conductive material, exhibit high transparency and conductivity, making them suitable for applications such as touch panels.