Tianjin Diyuan Green Energy has obtained a patent for an advanced packing promotion device designed for tower equipment, ensuring a stable overall propulsion process.
Release date:
2024-12-21
On December 18, 2024, news emerged that Tianjin Diyuan Green Energy Chemical Technology Co., Ltd. has been granted a patent titled "A Promotional Device for Structured Packing in Tower Equipment," with authorization announcement number CN 222158938 U and an application date of May 2024, according to information released by the National Intellectual Property Administration.
On December 18, 2024, news emerged that Tianjin Diyuan Lvneng Chemical Technology Co., Ltd. has been granted a patent titled "A Promotional Device for Structured Packing in Tower Equipment," with authorization announcement number CN 222158938 U. The application was filed in May 2024.
The patent abstract reveals that this utility model pertains to the field of tower packing technology, specifically disclosing a streamlined packing propulsion device for towers. The device includes a material-pushing disc, as well as a propulsion mechanism designed to move the disc back and forth. The propulsion mechanism comprises a first propulsion component, which is equipped with a second propulsion component. The second propulsion component is rigidly connected to the material-pushing disc, while a cavity is formed on the end surface of the disc. By integrating the first and second propulsion components into the mechanism, rotating the first lead screw of the first component drives the entire assembly—comprising the first and second support frames—to push the material-pushing disc toward the packing side. Once the packing material comes into contact with the disc, the worm gear in the second propulsion component engages with the worm wheel, causing the worm wheel to rotate. This rotation, in turn, moves the second lead screw inward toward the tower interior. Supported by the second lead screw and guide posts, the material-pushing disc continues to advance the packing material deeper into the tower. Notably, the relative positions of the two components remain fixed throughout the process, ensuring stable and smooth operation with straightforward usability.
Previous page
Related News