US 11,744,401 B2
Integrated automatic sea cucumber cooking and soaking system
Pengfei Jiang, Dalian (CN); Xiuping Dong, Dalian (CN); Hang Qi, Dalian (CN); Ming Du, Dalian (CN); Mingqian Tan, Dalian (CN); Huihui Wang, Dalian (CN); Liang Song, Dalian (CN); Jie Zheng, Dalian (CN); Yuxin Liu, Dalian (CN); Kaiyue Zhu, Dalian (CN); Qingguo Meng, Dalian (CN); and Beiwei Zhu, Dalian (CN)
Assigned to DALIAN POLYTECHNIC UNIVERSITY, Dalian (CN)
Filed by Dalian Polytechnic University, Dalian (CN)
Filed on Aug. 5, 2022, as Appl. No. 17/881,681.
Claims priority of application No. 202121864174.4 (CN), filed on Aug. 11, 2021.
Prior Publication US 2022/0369858 A1, Nov. 24, 2022
Int. Cl. A47J 36/32 (2006.01); A47J 27/10 (2006.01)
CPC A47J 36/32 (2013.01) [A47J 27/10 (2013.01)] 7 Claims
OG exemplary drawing
 
1. An integrated automatic sea cucumber cooking and soaking system, comprising a cabinet body (3) for holding sea cucumbers, wherein an external circulating water inlet (36) and a cold and hot pipe outlet (34) are formed in a top of the cabinet body (3); an external circulating water outlet (31) and a cold and hot pipe inlet (39) are formed in a bottom side wall of the cabinet body (3); both the external circulating water inlet (36) and the external circulating water outlet (31) are provided with a valve;
the external circulating water outlet (31) is communicated to a water inlet of a first water storage tank (6); a water outlet of the first water storage tank (6) is communicated to an inlet of a main filter (1) through a first filter (7), a first pump body (8), a first throttling valve (11) and a check valve successively;
an outlet of the main filter (1) is communicated to the external circulating water inlet (36) through a check valve and a first refrigeration device (2) successively;
the cold and hot pipe outlet (34) is communicated to a water inlet of a second water storage tank (10) through a check valve; a water outlet of the second water storage tank (10) is communicated to a second filter (12) and a second pump body (13) successively; the second pump body (13) is communicated to an inlet of a hot steam generator (4) and an input port of a second refrigeration device (5) respectively through valves; a steam output port of the hot steam generator (4) is communicated to a first input port of a three-way valve (16) through a check valve; an output port of the second refrigeration device (5) is communicated to a second input port of the three-way valve (16) through a check valve; an output port of the three-way valve (16) is communicated to an outer end of the cold and hot pipe inlet (39);
the cabinet body (3) comprises a cabinet body shell (318) and a cabinet door (33); the top of the cabinet body (3) is provided with a weighing device (35); the weighing device (35) is connected with a weighing bracket (314) arranged in the cabinet body (3) through a tension column (316); a plurality of groups of supporting holders (313) are arranged on the weighing bracket (314) along a vertical direction; a slotted hole drawer (32) for holding sea cucumbers is arranged on each group of the supporting holder (313) in a supported manner; a circulating water passing hole is formed in the slotted hole drawer (32);
an inner end of the cold and hot pipe inlet (39) is communicated with a vertical cold and hot pipe input pipeline (321) arranged inside the cabinet body (3); an inner end of the cold and hot pipe outlet (34) is communicated with a vertical cold and hot pipe output pipeline (320) arranged inside the cabinet body (3);
a cold and hot plate structure (319) formed by coiling a cold and hot pipe is arranged below each group of the supporting holder (313); a gas-liquid input port of each cold and hot plate structure (319) is communicated to the cold and hot pipe input pipeline (321); a gas-liquid output port of each cold and hot plate structure (319) is communicated to the cold and hot pipe output pipeline (320);
an internal circulating water outlet is formed in a bottom side wall of the cabinet body shell (318); an internal circulating water inlet is formed in a top side wall of the cabinet body shell (318); a bottom end of an internal circulating pipeline (312) arranged outside the cabinet body (3) is connected to the internal circulating water outlet; a top end of the internal circulating pipeline (312) is connected to the internal circulating water inlet; internal circulating filtering screens (310) are arranged at both the internal circulating water inlet and the internal circulating water outlet; an internal circulating water pump (311) is arranged on the internal circulating pipeline (312); and
an upper part and a lower part in the cabinet body (3) are both provided with a temperature sensor (317).