Multi-layer automatic feeding freezing equipment

The multi-layer automatic feeding freezing equipment enables multi-layer synchronous conveying of different types of quick-frozen foods. The use of lifting frames and unloading components solves the problem that existing equipment cannot transport different heights synchronously, thus improving conveying efficiency.

CN223721911UActive Publication Date: 2025-12-26NANTONG YUANZHENG FREEZING EQUIP LTD
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Patent Information

Application Number
CN202422414557.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-08
Publication Date
2025-12-26
Estimated Expiration
2034-10-08

AI Technical Summary

Technical Problem

Existing frozen food conveyor belts cannot lift different varieties of frozen foods to different heights, and cannot transport them separately and synchronously via conveyor belts of different heights.

Method used

A multi-layer automatic feeding and freezing device was designed, including a single-layer feeding conveyor belt, a vertical conveying mechanism, and multiple horizontal and vertical conveyor belts. The device achieves vertical conveying and multi-layer synchronous conveying of different types of quick-frozen foods through a lifting frame, and uses low-temperature resistant conveyor belts and unloading components for classified unloading.

Benefits of technology

It enables multi-layer synchronous conveying of different types of frozen foods, improves conveying efficiency, and solves the problem that existing equipment cannot transport different heights synchronously.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223721911U_ABST
Patent Text Reader

Abstract

The utility model relates to the technical field of quick-frozen food conveying, and discloses a multi-layer automatic feeding freezing device which comprises a single-layer feeding conveying belt, a discharging opening in the tail end of the single-layer feeding conveying belt is communicated with a first single-layer transverse conveying belt, and a vertical conveying mechanism is installed at a discharging opening in the tail end of the first single-layer transverse conveying belt. A discharging port in the upper portion of the vertical conveying mechanism communicates with a first multi-layer transverse conveying belt, a discharging port of the first multi-layer transverse conveying belt communicates with a first multi-layer longitudinal conveying belt, and a second multi-layer transverse conveying belt is installed on the left side of the first multi-layer longitudinal conveying belt. According to the multi-layer automatic feeding and freezing equipment disclosed by the utility model, different types of quick-frozen food can be transferred to the vertical conveying mechanism and lifted to the conveying belts with different heights, the different types of quick-frozen food can be synchronously conveyed in a multi-layer manner, and the conveying efficiency is high.
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Description

TECHNICAL FIELD

[0001] The utility model relates to quick frozen food transmission technical field, concretely is multilayer automatic feeding freezing equipment. BACKGROUND

[0002] Quick frozen food conveyor is a device used for producing and transporting quick frozen food. It is mainly used to move food efficiently in the production line to ensure the low temperature state of the product during processing, cooling and packaging.

[0003] The existing quick frozen food conveyor cannot lift different varieties of quick frozen food to different heights and transport them synchronously through conveyors of different heights. UTILITY MODEL CONTENT

[0004] The utility model discloses a multilayer automatic feeding freezing equipment, the multilayer automatic feeding freezing equipment disclosed by the utility model can transfer different kinds of quick frozen food to the vertical conveying mechanism, lift to the conveyor belt of different heights, and synchronously convey different varieties of quick frozen food in multiple layers, so that the conveying efficiency is high, thereby solving the problems in the above background technology.

[0005] To achieve the above object, the utility model provides the following technical scheme: multilayer automatic feeding freezing equipment, including single -layer feeding conveyor, the single -layer feeding conveyor tail end discharge port is connected with first single -layer horizontal conveying belt, the first single -layer horizontal conveying belt tail end discharge port is installed with vertical conveying mechanism, the vertical conveying mechanism upper part discharge port is connected with first multilayer horizontal conveying belt, and the first multilayer horizontal conveying belt discharge port is connected with first multilayer longitudinal conveying belt, and the first multilayer longitudinal conveying belt left side is installed with second multilayer horizontal conveying belt, and the second multilayer horizontal conveying belt tail end is installed with second multilayer longitudinal conveying belt, and the first multilayer horizontal conveying belt, first multilayer longitudinal conveying belt, second multilayer horizontal conveying belt and second multilayer longitudinal conveying belt are all installed on the lifting frame that can drive the vertical lifting of above-mentioned component, and the second multilayer longitudinal conveying belt tail end discharge port is installed with second single -layer horizontal conveying belt, and the second single -layer horizontal conveying belt left side is installed with third single -layer horizontal conveying belt, and the second single -layer horizontal conveying belt and third single -layer horizontal conveying belt are all with first single -layer horizontal conveying belt in the same horizontal line.

[0006] Preferably, the second single -layer horizontal conveying belt is a bidirectional transmission conveying belt driven by a forward and reverse motor.

[0007] Preferably, the vertical conveying mechanism includes a chain wheel driven by a motor, two vertically arranged chain wheels are externally meshed with a chain, and a plurality of material carrying pieces capable of lifting materials are installed on the chain at equal intervals along its own path.

[0008] Preferably, each of the material carrying pieces is provided with a discharging assembly at the top.

[0009] Preferably, the first multi-layer longitudinal conveying belt is provided with a pushing frame at the right end of each layer, and the power input end of the pushing frame is connected with the power output end of an electric telescopic rod.

[0010] Preferably, the single-layer feeding conveying belt, the first single-layer transverse conveying belt, the vertical conveying mechanism, the first multi-layer transverse conveying belt, the first multi-layer longitudinal conveying belt, the second multi-layer transverse conveying belt, the second multi-layer longitudinal conveying belt, the second single-layer transverse conveying belt and the third single-layer transverse conveying belt are low-temperature-resistant conveying belts.

[0011] Compared with the prior art, the multi-layer automatic feeding and freezing equipment has the advantages that:

[0012] The multi-layer automatic feeding and freezing equipment can transport different kinds of quick-frozen food to the vertical conveying mechanism and convey the quick-frozen food of different categories to different heights, so that the quick-frozen food of different categories can be conveyed synchronously, and the conveying efficiency is high. BRIEF DESCRIPTION OF DRAWINGS

[0013] Fig. 1 is a top view of the multi-layer automatic feeding and freezing equipment;

[0014] Fig. 2 is a side view of the multi-layer automatic feeding and freezing equipment.

[0015] In the drawings: 1, single-layer feeding conveying belt; 2, first single-layer transverse conveying belt; 3, vertical conveying mechanism; 4, first multi-layer transverse conveying belt; 5, first multi-layer longitudinal conveying belt; 6, pushing frame; 7, second multi-layer transverse conveying belt; 8, second multi-layer longitudinal conveying belt; 9, lifting frame; 10, second single-layer transverse conveying belt; 11, third single-layer transverse conveying belt. DETAILED DESCRIPTION

[0016] The technical solutions in the embodiments of the present application will be described clearly and completely below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative work fall within the protection scope of the present application.

[0017] Please refer to Figs. 1-2The utility model discloses a multilayer automatic feeding freezing equipment, including single -layer feeding conveyer 1, the single -layer feeding conveyer 1 end discharge port is connected with first single -layer transverse conveyer 2, and the first single -layer transverse conveyer 2 end discharge port is installed with vertical conveying mechanism 3, and the vertical conveying mechanism 3 upper discharge port is connected with first multilayer transverse conveyer 4, and the first multilayer transverse conveyer 4 discharge port is connected with first multilayer longitudinal conveyer 5, and the first multilayer longitudinal conveyer 5 left side is installed with second multilayer transverse conveyer 7, and the second multilayer transverse conveyer 7 end is installed with second multilayer longitudinal conveyer 8, and the first multilayer transverse conveyer 4, first multilayer longitudinal conveyer 5, second multilayer transverse conveyer 7 and second multilayer longitudinal conveyer 8 are all installed on the lifting frame 9 of drive above -mentioned component vertical lifting, and the second multilayer longitudinal conveyer 8 end discharge port is installed with second single -layer transverse conveyer 10, and the second single -layer transverse conveyer 10 left side is installed with third single -layer transverse conveyer 11, and the second single -layer transverse conveyer 10 and third single -layer transverse conveyer 11 are all with first single -layer transverse conveyer 2 at the same horizontal line, and the multilayer automatic feeding freezing equipment can can transport different kinds of quick -frozen food to vertical conveying mechanism 3, and is lifted to the conveyer of different height, and the multilayer synchronous conveyance different categories quick -frozen food, and the conveying efficiency is high.

[0018] Further, the second single -layer transverse conveyer 10 is the conveyer of two -way transmission driven by forward -reverse motor, facilitates the material to convey to different directions, further, the vertical conveying mechanism 3 includes the sprocket driven by motor, and the outer engagement of two vertical sprockets is connected with the chain, and the chain is installed with a plurality of the material carrying piece of lifting material along its own path equidistant array, facilitates the lifting and transportation material, further, the top of each material carrying piece is installed with the unloading assembly, and facilitates the material pushing and unloading, further, the right end of each layer of first multilayer longitudinal conveyer 5 is installed with the material pushing frame 6, and the power input end of material pushing frame 6 is connected with the power output end of electric telescopic rod, and facilitates the material pushing and unloading, further, the single -layer feeding conveyer 1, first single -layer transverse conveyer 2, vertical conveying mechanism 3, first multilayer transverse conveyer 4, first multilayer longitudinal conveyer 5, second multilayer transverse conveyer 7, second multilayer longitudinal conveyer 8, second single -layer transverse conveyer 10 and third single -layer transverse conveyer 11 are all low -temperature resistant conveyer, to ensure that in the quick -frozen environment will not be damaged.

[0019] The multi-layer automatic feeding freezing equipment can transport different types of quick-frozen food to the vertical conveying mechanism 3, and the quick-frozen food is lifted to the conveying belt at different heights, so that the different types of quick-frozen food are synchronously conveyed in multiple layers, and the conveying efficiency is high. The quick-frozen food is conveyed to the first single-layer transverse conveying belt 2 through the single-layer feeding conveying belt 1, and is conveyed to the object carrying piece at different heights of the vertical conveying mechanism 3 through the first single-layer transverse conveying belt 2. According to the types of the quick-frozen food, the unloading assembly installed on the top of each object carrying piece is used to unload the quick-frozen food to the first multi-layer transverse conveying belt 4 at the corresponding height. The unloading assembly is composed of an electric telescopic rod and a push plate, and can cooperate with unloading. The material on the first multi-layer transverse conveying belt 4 at the corresponding height is conveyed to the first multi-layer longitudinal conveying belt 5 at the corresponding height of the conveying belt, and then the material is pushed to the second multi-layer transverse conveying belt 7 at the corresponding height by the push material frame 6 driven by the electric telescopic rod. The material on the second multi-layer transverse conveying belt 7 at the corresponding height is conveyed to the second multi-layer longitudinal conveying belt 8. By controlling the driving assembly such as the electric telescopic rod in the lifting frame 9, the first multi-layer transverse conveying belt 4, the first multi-layer longitudinal conveying belt 5, the second multi-layer transverse conveying belt 7 and the second multi-layer longitudinal conveying belt 8 can be driven to rise to the required height, and the conveying belt at the layer that needs to be unloaded is adjusted to be horizontal with the second single-layer transverse conveying belt 10 respectively to unload. If the quick-frozen food is correctly classified, the external power supply is powered on, and the material is conveyed to the third single-layer transverse conveying belt 11 by the second single-layer transverse conveying belt 10 controlled by the external switch to unload. If the product is incorrectly classified, the material is conveyed to the first single-layer transverse conveying belt 2 by the second single-layer transverse conveying belt 10, and the above steps are repeated to re-classify and convey the material in layers.

[0020] It should be noted that, in the present document, the terms such as first and second, etc. are used merely to differentiate one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between such entities or operations. Also, the terms "comprises", "comprising", or any other variations thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but can include other elements not expressly listed or inherent to such process, method, article, or apparatus.

[0021] Although the embodiments of the present application have been shown and described, it should be understood by those skilled in the art that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the present application, and the scope of the present application is defined by the appended claims and their equivalents.

Claims

1. Multilayer automatic feed freezing apparatus comprising a single layer feed conveyor belt (1), characterized in that: The single-layer feeding conveyor belt (1) is communicated with a first single-layer transverse conveyor belt (2) at the end of the discharge port, the first single-layer transverse conveyor belt (2) is installed with a vertical conveying mechanism (3) at the end of the discharge port, the vertical conveying mechanism (3) is communicated with a first multi-layer transverse conveyor belt (4) at the upper discharge port, the first multi-layer transverse conveyor belt (4) is communicated with a first multi-layer longitudinal conveyor belt (5) at the discharge port, the first multi-layer longitudinal conveyor belt (5) is installed with a second multi-layer transverse conveyor belt (7) at the left side, the second multi-layer transverse conveyor belt (7) is installed with a second multi-layer longitudinal conveyor belt (8) at the end, the first multi-layer transverse conveyor belt (4), the first multi-layer longitudinal conveyor belt (5), the second multi-layer transverse conveyor belt (7) and the second multi-layer longitudinal conveyor belt (8) are all installed on a lifting frame (9), the second multi-layer longitudinal conveyor belt (8) is installed with a second single-layer transverse conveyor belt (10) at the end of the discharge port, the second single-layer transverse conveyor belt (10) is installed with a third single-layer transverse conveyor belt (11) at the left side, and the second single-layer transverse conveyor belt (10) and the third single-layer transverse conveyor belt (11) are all in the same horizontal line with the first single-layer transverse conveyor belt (2).

2. The multi-tiered automatic feed freezing apparatus according to claim 1, characterized by: The second single-layer transverse conveyor belt (10) is a bidirectional transmission conveyor belt driven by a forward and reverse motor.

3. The multi-tiered automatic feed freezing apparatus of claim 1, wherein: The vertical conveying mechanism (3) comprises a motor-driven chain wheel, two vertically arranged chain wheels are connected with a chain through external meshing, and a plurality of material lifting carriers are installed on the chain at equal intervals along the path of the chain.

4. The multi-tiered automatic feed freeze apparatus of claim 3, wherein: Each of the material lifting carriers is installed with a discharging assembly at the top.

5. The multi-tiered automatic feed freezing apparatus of claim 1, wherein: The first multi-layer longitudinal conveyor belt (5) is installed with a material pushing frame (6) at the right end of each layer, and the power input ends of the material pushing frames (6) are connected with the power output ends of electric telescopic rods.

6. The multi-tiered automatic feed freeze apparatus of claim 1, wherein: The single-layer feeding conveyor belt (1), the first single-layer transverse conveyor belt (2), the vertical conveying mechanism (3), the first multi-layer transverse conveyor belt (4), the first multi-layer longitudinal conveyor belt (5), the second multi-layer transverse conveyor belt (7), the second multi-layer longitudinal conveyor belt (8), the second single-layer transverse conveyor belt (10) and the third single-layer transverse conveyor belt (11) are all low-temperature-resistant conveyor belts.