50L Jacketed Reactor
(1)1L/2L/3L/5L---Standard
(2)10L/20L/30L/50L/100L---Standard/EX-proof/Lifting Kettle
(3)150L/200L---Standard/EX-proof
***Price List for whole above, inquire us to get
2. Customization:
(1)Design support
(2)Directly supply the Senior R&D organic intermediate, shorten your R&D time and cost
(3)Share the advanced purifying technology with you
(4)Supply the high quality chemicals and analysis reagent
(5)We want to assist you on Chemical Engineering (Auto CAD, Aspen plus etc.)
3. Assurance:
(1)CE and ISO certification Registered
(2)Trademark: ACHIEVE CHEM(since 2008)
(3)Replacement parts within 1-year for free
Description
Technical Parameters
The 50l jacketed reactor is also a type of reactor. Shaanxi Chupeng Chemical produces many different types of reactors and other chemical instruments. According to the different materials, the 50l reactor is also divided into three different specifications. The first type is a 50l jacket glass reactor, the second type is a 50l jacket stainless steel reactor, and the third type is a 50l jacket ceramic reactor. At present, glass is the most commonly used material in the laboratory, but in industrial applications, stainless steel is mainly used. The reactor is also composed of a kettle body and a jacket. In the process of scientific development, the agitators inside the kettle have gradually changed from manual to electric, greatly improving the mixing rate and mixing the materials more evenly. A stirrer is a device used for mixing, stirring, and dispersing liquids. It has extensive applications in chemical, pharmaceutical, food, and other industrial fields.
Product Introduction
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The structure of the mixer
The structure of a stirrer generally includes a stirring shaft, stirring blades, and a container. The mixing shaft is a component that connects the motor and blades, and it can be straight or curved. The mixing blade is a component installed on the mixing shaft, which can be made of metal, plastic, or other materials. A container is the workplace of a stirrer, which can be made of glass, metal, or other materials.
The working principle of the mixer
A stirrer is a device used for mixing and dispersing various liquids. It transfers liquid from one container to another by rotating the agitator blades, or evenly distributes the liquid from one part to another. Agitators can also be used to evenly disperse solid particles in liquids.
The working principle of the stirrer is based on Newton's fluid dynamics principle, which means that when a moving object moves in a fluid, it will be subject to fluid resistance and viscous resistance. When the agitator blades enter the fluid, they will experience resistance, causing the blades to stop rotating. However, due to the inertia of the blade, it will continue to move forward, thereby driving the fluid. In this way, the fluid will form a "stirring layer" around the blade, and the fluid in this layer will be subjected to shear force, thereby achieving mixing and dispersion. According to different application needs, different agitators and operating parameters can be selected, such as speed, time, temperature, etc.
Various Types of Mixers
Pushing stirrer: Pushing stirrer consists of a rotating blade, whose rotation direction is parallel to the axis. It can push liquid from one side of the container to the other side, thereby achieving liquid mixing and stirring.
Brook stirrer: Brook stirrer is composed of multiple curved blades, with the rotation direction of the blades perpendicular to the axis. It can push the liquid upwards to form a vortex, thereby achieving liquid mixing and stirring.
Anchor stirrer: The anchor stirrer is composed of two curved blades, with the rotation direction of the blades perpendicular to the axis. It can generate large liquid flow in the container, thereby achieving liquid mixing and stirring.
Disk stirrer: A disk stirrer consists of a disk with a rotation direction parallel to the axis. It can push liquid from one side of the container to the other and form vortices in the container, thereby achieving liquid mixing and stirring.
A mechanical stirrer mixes and disperses liquids by rotating the blades of the stirrer. It is usually driven by an electric motor and reduced to the desired speed through a reducer. Mechanical mixers can be used for various liquids, including viscous liquids and solid particles.
The pneumatic stirrer is driven by compressed air to drive the blades of the stirrer. It can be used for various liquids, including high viscosity and low viscosity liquids. The advantage of a pneumatic stirrer is that it can work under different pressures and does not generate too much heat, thereby avoiding overheating of the liquid.
The electromagnetic stirrer drives the blades of the stirrer through an electromagnetic field. It can be used for various liquids, including high conductivity and low conductivity liquids. The advantage of an electromagnetic stirrer is that it can achieve precise speed control without generating mechanical noise.
The ultrasonic stirrer drives the blades of the stirrer through ultrasonic waves. It can be used for various liquids, including high viscosity and low viscosity liquids. The advantage of an ultrasonic stirrer is that it can achieve more efficient mixing and dispersion, and can avoid liquid overheating.
Applications
Chemical equipment disassembly and assembly comprehensive practical training device in the chemical industry plays a pivotal role in professional education and training. This device not only provides students with an intuitive, realistic learning environment, but also an important tool for cultivating their practical skills and deepening their understanding of theoretical knowledge. Below, we will discuss in detail the design, function, application scenarios and the cultivation of students' ability from the design of the practical training device.
1. Design of practical training device
The design of chemical equipment disassembly and assembly comprehensive practical training device needs to follow the principle of combining teaching and practice. The device should cover the typical equipment in chemical production, such as reactors, towers, heat exchangers, etc., and at the same time, the detachability of the equipment should be considered, so as to facilitate the practical operation of students. In the selection of materials, priority should be given to their safety, durability and ability to simulate real working conditions. In addition, the practical training device should be equipped with the corresponding control system, so that students can understand the operating principle and operation process of the equipment.
2. the function of the training device
Chemical equipment disassembling and assembling comprehensive practical training device has a variety of functions, mainly including the following aspects:
- Equipment disassembly practice: students can disassemble chemical equipment on the training device to understand its structure, principles and assembly requirements. Through practical operation, students can deepen their understanding of the structure and working principle of the equipment and improve their practical operation ability.
- Process simulation: the training device can simulate the real chemical production process, so that students can learn and master the basic operation of chemical production in practice. At the same time, students can also understand the optimization and improvement of the process through simulation.
- Troubleshooting and diagnosis: The practical training device can be set up with various failure modes, so that students can learn troubleshooting and diagnosis methods in practice. This helps to cultivate students' practical operation ability and problem solving ability.
3. the application of practical training device scene
Chemical equipment disassembly and assembly comprehensive practical training device is widely used in chemical, petrochemical, pharmaceutical, environmental protection and other fields of education and training. In colleges and universities, vocational schools and corporate training centers, this device plays an important role. Through the study and practice of the practical training device, students can better adapt to the needs of future professional positions and improve employment competitiveness.
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