A baffle-type high-efficiency new water-cooled jacket device for the feed hopper of a waste incinerator

By adopting an inner shell and outer liner structure and a baffle plate design in the water-cooled jacket of the waste incinerator feed, combined with a temperature sensor and a high-pressure water jet system, the problems of wear, low heat exchange efficiency and poor anti-combustion effect are solved, achieving efficient water-cooled jacket protection and safe operation.

CN224434416UActive Publication Date: 2026-06-30QINHUANGDAO CAPITAL STARLIGHT ENVIRONMENTAL TECH CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
QINHUANGDAO CAPITAL STARLIGHT ENVIRONMENTAL TECH CO LTD
Filing Date
2025-06-21
Publication Date
2026-06-30

AI Technical Summary

Technical Problem

Existing waste incinerator feed water-cooled jackets suffer from severe wear, water leakage, low heat exchange efficiency, and poor combustion prevention.

Method used

A baffle-type high-efficiency new water-cooled jacket device for the feed hopper of a waste incinerator was designed. It adopts an inner shell and an outer liner structure, and is equipped with guide plates and guide ports to extend the liquid path and increase flow stability. It also prevents combustion through temperature sensors and a high-pressure water jet system.

Benefits of technology

It improves the wear resistance, heat exchange efficiency, and fire prevention effect of the water-cooled jacket, avoiding equipment damage and fire risks, and reducing maintenance costs.

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Abstract

A baffle-type high-efficiency new water-cooled jacket device for a waste incinerator feed hopper includes an inner shell. An upper flange and a lower flange are fixed to the upper and lower ends of the inner shell, respectively. An outer liner is fitted around the outer side of the inner shell, with the upper end of the outer liner fixed to the upper flange and the lower end fixed to the lower flange. A support frame, an inlet pipe, and a outlet pipe are fixed to the outer side of the outer liner, with a temperature sensor fixed to the outlet pipe. A guide plate is fixed between the inner shell and the outer liner, with a guide opening on the guide plate. Several wear-resistant plates are fixed to the inner wall of the inner shell by a fixing assembly. A liquid delivery chamber is formed through the center of a bolt in the fixing assembly. This invention not only improves the stability of the liquid during flow and its temperature absorption effect, but also prevents wear on the inner shell plate. Furthermore, when the temperature of the liquid discharged from the outlet pipe is too high and reaches a critical value, it facilitates water spraying onto the waste to prevent combustion.
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