Home>>Products>>HPP Equipment>>10L desktop microjet homogenizer
10L desktop microjet homogenizer
10L desktop microjet homogenizer
10L desktop microjet homogenizer
10L desktop microjet homogenizer
10L desktop microjet homogenizer
10L desktop microjet homogenizer

10L desktop microjet homogenizer

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Min. Order: 1 Piece/Pieces
Product Attributes

BrandCTT

Packaging & Delivery
Selling Units : Piece/Pieces
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Product Description

The 10L ultra-high pressure microfluidizer is rather important in the area of scientific experimentation and research and development as its small and strong features enable scientific researchers to investigate the secrets of the microscopic world.
Though its size is small, this experimental homogenizer has design pressure as high as 420MPA. Under ultra-high pressure conditions, it may cause great pressure on the experimental samples at the microscopic level, thus enabling very fine homogenization of the materials and so laying a firm basis for obtaining precise and consistent experimental results. Its modest 3.7KW power consumption, 0.2L/min output flow, and 10L/H unit time output fit small batch requirements and high accuracy in experimental settings. Furthermore efficient in meeting sample processing needs in experimental settings is the one-way pressurizing approach.


It offers first-rate safety performance. Its many protective methods are layered layer by layer and provide sophisticated safety protection properties. From the startup self-check of the equipment to the real-time monitoring during operation, any possible safety risks are eliminated in all directions, so guaranteeing the absolute safety of the experimenters during the operation and so allowing every possible smooth running of the experiment in a worry-free environment.
Regarding energy use, it has clearly proven great benefits in high efficiency and energy conservation. Not only lowers energy expenses during the experiment, but also conforms to the era concept of green environmental protection and sustainable development and helps the green process of scientific research experiments by the very low power demand and the application of advanced energy-saving technologies.
PLC touch screen control drives the digital pressure display panel to provide before unheard-of ease for experimental procedures. Convenient for next in-depth analysis and research of the experimental process, all experimental data can be precisely monitored, copied and stored; this helps greatly support the summary and innovation of scientific research results. Experimenters can easily set and adjust parameters such as homogenization pressure by the touch screen.
Furthermore rather inexpensive is the homogenizer's maintenance cost. Reducing the danger of experimental interruption resulting from equipment failure, the robust and dependable design structure and high-quality components selection guarantee that the equipment can still keep a good operational condition throughout long-term and frequent experimental usage. Even if a failure happens, its straightforward and understandable maintenance design may enable experimenters or maintenance staff to rapidly fix the issue, thus saving a lot of time and effort and enabling scientific researchers to concentrate more on the actual experimental study.
Due to its special performance advantages, which provide a strong tool guarantee for the advancement and creativity of scientific research, the 10L ultra-high pressure microfluidizer has become an ideal equipment for many scientific research laboratories to conduct experimental research and sample processing in general.

Why Choose Us

16 Years Manufacturing Experience

Founded in 2009, CTT Technology is a global high-tech enterprise specializing in precision components. With branches in Europe, the US, and Southeast Asia, plus warehouses in North America and Europe, CTT serves industries including automotive, medical, energy, food equipment, photovoltaics, and compressors. Partnering with Fortune 500 companies such as DANAHER, EXFO, and KOHLER, we are certified to ISO9001, ISO14001, IATF16949, ISO13485, and more. As home to the Guangdong Stainless Steel Engineering Technology Research Center, we created the CBS digital platform to drive intelligent manufacturing. Guided by our mission, we advance “Made in China 2025,” showcasing Chinese brand strength worldwide.

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FAQ

1.
What are the new technologies in sheet metal
processing at present?


There is fiber laser cutting technology, which has faster cutting speed and
lower energy consumption than traditional laser cutting. There is also
intelligent bending technology, which improves bending accuracy and
efficiency through automated programming and sensor monitoring. In addition,
digital sheet metal processing technology uses CAD/CAM software to achieve
seamless connection from design to processing.

2.
How to deal with changes in sheet metal processing
orders?

When there is a change in the order, the customer should communicate with
the processor in a timely manner and provide detailed information after the
change, such as the revised drawings, the changed quantity or delivery time,
etc. The processor evaluates the impact of the change on the production
schedule, cost, etc., and negotiates with the customer to determine the
terms of the order after the change, such as price adjustment, extended
delivery period, etc.

3.
What are the safety precautions during sheet metal
processing?


When operating cutting equipment, prevent laser or plasma arc damage to the
eyes and skin, and wear protective glasses and protective clothing. When
operating the bending machine, pay attention to prevent your hands from
being pinched, and illegal operation is strictly prohibited. When welding,
ventilation should be done well to prevent the accumulation of harmful
gases, and wear welding protective masks, etc.

4.
What are the effects of sheet metal processing on the
environment?


Pollutants such as smoke and dust will be generated during cutting and
welding, and surface treatment may produce wastewater and waste gas, etc.
For example, spray painting will emit volatile organic compounds (VOCs), and
galvanizing may produce zinc-containing wastewater, etc.

5.
How to reduce the pollution of sheet metal processing
to the environment?


Install exhaust gas treatment equipment, such as smoke purifiers, activated
carbon adsorption devices, etc. to treat welding and spray painting exhaust.
Treat wastewater and use chemical precipitation, filtration and other
methods to remove heavy metals and other pollutants in wastewater. Optimize
processing technology and reduce the use of harmful materials, such as using
water-based paint instead of oil-based paint.

6.
What information do I need to provide when placing a
sheet metal processing order?


It is necessary to provide a two-dimensional or three-dimensional drawing of
the sheet metal product, clearly marking the size, tolerance, material
requirements, surface treatment requirements, quantity and other
information. It is also necessary to state the delivery time, delivery
location and quality acceptance standards.

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