Food information display method and device based on block chain frozen bagged chicken traceability system
A food information and traceability system technology, applied in display cabinets, display hangers, instruments, etc., can solve problems such as the deterioration of chicken in frozen bags, affecting the display effect, and the display box not having an autonomous early warning function.
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Embodiment 1
[0048] see Figure 1-6 , in an embodiment of the present invention, a food information display device based on a blockchain frozen bagged chicken traceability system, including a display box 1, a blockchain traceability module 2, a bottom plate 3 and a freezer installation box 4,
[0049] Autonomous alarm components 5, the internal positions of the inner walls of each longitudinal side of the display box 1 near the top side of the bottom plate 3 are surrounded by a number of autonomous alarm components 5 that can automatically alarm after the temperature rises,
[0050] Each group of autonomous alarm components 5 includes an outer shell 501, an inner panel 502, an induction component 503 capable of sensing whether a temperature rise occurs, and an activation component 504 capable of initiating an alarm;
[0051] Here, the autonomous alarm assembly 5 is arranged around the inside of each longitudinal side inner wall near the top side of the base plate 3 of the display case 1, s...
Embodiment 2
[0058] see Figure 4 and Figure 7 Compared with Embodiment 1, this embodiment of the present invention differs from the induction assembly 503, and each induction assembly 503 includes a rotating shaft 5031, a folding plate 5032 and quicklime powder 5033.
[0059] In the embodiment of the present invention, each rotating shaft 5031 is located in the center of each first cavity, and each rotating shaft 5031 is installed in the upper center between the front and rear inner walls of each housing 501 in a horizontal direction. ;
[0060] Folded plate 5032, the outer surface of each rotating shaft 5031 is surrounded by fixedly installed folded plate 5032, each folded plate 5032 is in a static equilibrium state of left level and right downward inclination under normal conditions, and the inner angle of each folded plate 5032 is is 120°, the left end of each flap 5032 is attached to the top surface of the inner wall of the concave chute set in the middle of the left end of each in...
Embodiment 3
[0065] see Figure 4 and Figure 8 Compared with Embodiment 1, this embodiment of the present invention differs in that the activation components 504, and each set of activation components 504 includes an air bag 5041, a rotating rod 5042 and a baffle 5043.
[0066] In the embodiment of the present invention, the rotating rod 5042, the middle position of the inner bottom end of each shell 501 is rotated in the front and rear horizontal direction to install the rotating rod 5042;
[0067] The baffle 5043, the outer surface of the top side of each rotating rod 5042 is surrounded by a baffle 5043 fixedly installed, and each baffle 5043 is located at the middle end of each second cavity, and each baffle 5043 is normally All are in a vertical static equilibrium state, the top of each baffle 5043 is magnetic and is magnetically attached to the bottom outer wall surface of each inner plate 502 under normal conditions;
[0068] The baffle plate 5043 here is to block the air bag 5041...
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