The Precision Temperature-Controlled Vacuum Drying Oven DZ-4BCII is a state-of-the-art laboratory drying equipment specifically designed for scientific research, industrial, and pharmaceutical fields. It features a large capacity of 214.5L, a wide temperature control range from 10°C to 250°C, and a powerful vacuum ability of less than 133Pa.
Compared with other similar products in the market, the large capacity of 214.5L allows it to handle a significant amount of materials at one time. For example, in a polymer research laboratory, it can dry a large batch of polymer samples simultaneously, improving work efficiency. The wide temperature control range of 10°C to 250°C is much broader than many of its counterparts. This enables it to meet the diverse drying requirements of different materials. In contrast, some similar products may only have a temperature range of 50°C to 200°C, which limits their application scope.
The oven is equipped with four-wall stainless steel electric heating tubes that are evenly distributed. This design ensures rapid and uniform heating. The stainless steel material has excellent heat conductivity, and the four - wall distribution allows the heat to spread evenly throughout the chamber. For instance, when drying polymer materials, the even heating can prevent local over - heating or under - heating, which is crucial for maintaining the quality of the materials.
The intelligent control system of the DZ - 4BCII is another highlight. It is equipped with dual - temperature PID regulation, which can accurately control the temperature. This system also comes with multiple safety functions, such as over - temperature protection, over - current protection, and leakage protection. These safety features ensure the safety of operators and the equipment during operation. In a pharmaceutical production environment, where strict safety and quality standards are required, these safety functions are essential.
In the field of polymer materials, the DZ - 4BCII can play a vital role. Polymer materials often need to be dried to a certain moisture content to ensure their performance. The oven's precise temperature control and high - vacuum environment can effectively remove moisture from polymers. For example, when drying a certain type of polymer resin, setting the temperature to 120°C and the vacuum degree to 100Pa can achieve efficient drying within a short time. Compared with traditional drying methods, this can reduce the drying time by about 30%.
In the pharmaceutical industry, the oven can be used for drug extraction and catalyst preparation. In drug extraction, it can help remove solvents from the extracted substances, ensuring the purity of the drugs. In catalyst preparation, the precise temperature and vacuum control can affect the activity and selectivity of the catalysts. In industrial applications, such as the drying of electronic components, the high - quality drying environment provided by the DZ - 4BCII can improve the performance and reliability of the products.
A comparison table of the DZ - 4BCII with other similar products is shown below:
| Product | Capacity (L) | Temperature Range (°C) | Vacuum Degree (Pa) | Heating Method | Control System |
|---|---|---|---|---|---|
| DZ - 4BCII | 214.5 | 10 - 250 | <133 | Four - wall stainless steel electric heating tubes | Dual - temperature PID regulation, multiple safety functions |
| Product A | 150 | 50 - 200 | 200 | Single - wall heating | Single - temperature control |
| Product B | 180 | 30 - 220 | 150 | Central heating | Basic control functions |
From the table, it is clear that the DZ - 4BCII has significant advantages in terms of capacity, temperature range, vacuum degree, heating method, and control system.
In a polymer manufacturing company, after using the DZ - 4BCII, the drying time of polymer materials was reduced by 30%, and the product quality was improved. This led to a 20% increase in production efficiency and a 15% reduction in energy consumption. In a pharmaceutical research institute, the use of this oven in drug extraction improved the purity of the drugs by 10%, which is of great significance for drug development and production.
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