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Although there are numerous drying equipment manufacturers in China, the overall level of drying technology still lags significantly behind that of advanced countries. This is a widely accepted view within the industry. The challenge of improving China's drying technology quickly and effectively, especially after joining the WTO, has become a critical issue for the sector. Based on insights from multiple experts, the following recommendations aim to address the current state of China’s drying industry. Firstly, it is essential to strengthen basic research. For many years, domestic drying equipment has largely been based on imitation, lacking unique features and therefore limited competitiveness in the global market. The development of drying technology is the key to enhancing equipment performance. However, in China, there are more manufacturers than researchers dedicated to this field. In contrast, some foreign companies have more technical staff than production workers, focusing on innovation and high-tech solutions. To compete internationally, China must establish professional research bases with advanced facilities. One effective approach is to create integrated research and production institutions, where scientific research drives production and production supports research, ultimately raising the technical level of drying companies and boosting product quality and potential. In terms of research, several areas need attention: 1. **Fundamental theoretical research** – This is the foundation for new technologies. Establishing well-equipped laboratories in universities and research institutes will help deepen our understanding of drying mechanisms, paving the way for technological advancement and self-innovation. 2. **Material properties study** – Drying processes depend heavily on the physical characteristics of the materials involved. Many engineers treat drying equipment as purely mechanical, neglecting material properties, which can lead to design flaws. A successful dryer requires both a deep understanding of the material and sound mechanical design. 3. **Automation control research** – While automation is crucial, the challenge lies in integrating control systems with specific drying needs. The right control method must be selected based on the material and process, ensuring cost-effectiveness and efficiency. 4. **High-value special material drying** – New materials like ultrafine powders and nanomaterials require specialized drying techniques. These present new challenges and opportunities for innovation. 5. **Scaling-up research** – Scaling up drying equipment is not just about size; it involves complex interactions between various engineering disciplines. Experience, material knowledge, and predictive analysis are essential to avoid failures during the scaling process. Secondly, improving users' ability to evaluate drying equipment is crucial. Many factories produce similar products, but their survival often depends on the users’ ability to differentiate between them. Since drying equipment is highly specialized, users must carefully assess the manufacturer’s capabilities. Key factors include checking if the factory has experimental data, reviewing past work performance, evaluating the company’s reputation, examining similar machines, and assessing the drying results for comparable materials. In some cases, consulting with a drying expert can add significant value and reduce risks. By focusing on these areas, China’s drying industry can move toward greater innovation, quality, and competitiveness on the global stage.

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