Full-automatic feeding mechanism of bone sawing machine

By designing the coordination of storage components, conveying components, limiting components and correction components, the problem of aggregate sliding in the feeding mechanism of the sawing machine is solved, and the stable movement and automatic cutting of aggregate on the conveyor belt is achieved.

CN223040863UActive Publication Date: 2025-07-01XINING XINJINXI FOOD CO LTD
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Patent Information

Application Number
CN202422283933.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-19
Publication Date
2025-07-01
Estimated Expiration
2034-09-19

AI Technical Summary

Technical Problem

In the feeding mechanism of the existing bone sawing machine, the aggregate is likely to slide under the bone sawing machine after being transported by the conveyor belt, and the posture needs to be adjusted manually, affecting the automation process.

Method used

A fully automatic feeding mechanism including storage components, conveying components, limiting components and correction components is designed. The oblique blocks and movable blocks are used to restrict the movement of aggregates with springs, and the attitude of aggregates is adjusted in combination with cylinders and toggle plates to ensure that the aggregates are cut stably under the sawing machine.

Benefits of technology

The aggregate is stable in motion on the conveyor belt, avoiding manual adjustment, and improving automation process and cutting efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of food processing equipment, in particular to a full-automatic feeding mechanism of a bone sawing machine, which comprises a storage component, a conveying component, a bone sawing component, a limiting component and a correction component, the correction component is fixedly connected with the bone sawing component, the bone sawing component is fixedly connected with the conveying component, and the other side of the conveying component is fixedly connected with the storage component. The limiting assembly comprises an inclined block, a movable block and two spring pieces, the inclined block and the movable block are matched with the two spring pieces with the telescopic function to play a role in limiting movement of the aggregate, the situation that the aggregate moves along with inertia and is not convenient to control is avoided, after extrusion, the inclined block descends, and subsequent movement of the aggregate is not affected; the design solves the problems that the aggregate is easy to directly slide to the lower part of the bone sawing machine after being transported by the conveyor belt, the posture is inconvenient to adjust, workers still need to manually adjust, and the automation process is influenced.
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Description

Technical Field

[0001] The utility model relates to the technical field of food processing equipment, in particular to a full-automatic feeding mechanism for a bone sawing machine. Background Art

[0002] When the existing commercially available bone cutting machines send the to-be-processed bone materials to the bone cutting knives and blocks, most of them adopt manual methods, which not only affect the personal safety of the operators, but also easily make the sizes and lengths of the processed bone materials cut out uneven, and require frequent manual feeding, reducing the work efficiency.

[0003] In the prior art, the patent (CN215455062U) proposed a full-automatic feeding mechanism for a bone sawing machine, including a storage bin, a conveyor belt, a workbench, a bone sawing machine. Multiple rollers are arranged inside the storage bin, and the multiple rollers are of a slope structure. A through groove is arranged on one side at the lower end of the rollers inside the storage bin. A conveyor belt is arranged outside the through groove. Support frames are arranged on both sides of the conveyor belt. A guide plate is arranged on one side of the support frame. The conveyor belt is located at one end far from the storage bin and is provided with a separated workbench. A push plate and a first telescopic motor with the top connected to the push plate are arranged on the side of the workbench connected to the conveyor belt. A second telescopic motor is arranged on the side of the workbench opposite to the first telescopic motor. A positioning plate is connected to the top of the second telescopic motor. A slide rail is arranged on the top of the positioning plate, and a pushing block is connected to the slide rail. The workbench is located at the middle position of the bone sawing machine, and the bone sawing machine passes through the workbench and a cutting chain is arranged inside the bone sawing machine.

[0004] However, in the above prior art, the bone materials are likely to directly slide under the bone sawing machine after being transported by the conveyor belt, which is not convenient for adjusting the posture and still requires manual adjustment by the staff, affecting the automation process. Summary of the Utility Model

[0005] The purpose of the utility model is to provide a full-automatic feeding mechanism for a bone sawing machine, which solves the problems in the prior art that the bone materials are likely to directly slide under the bone sawing machine after being transported by the conveyor belt, which is not convenient for adjusting the posture and still requires manual adjustment by the staff, affecting the automation process.

[0006] To achieve the above object, the utility model provides a full-automatic feeding mechanism for a bone sawing machine, which includes a material storage component, a conveying component, a bone sawing component, a limiting component and a correction component. The correction component is fixedly connected to the bone sawing component and is located above the bone sawing component. The bone sawing component is fixedly connected to the conveying component and is located on one side of the conveying component. The other side of the conveying component is fixedly connected to the material storage component and is located on one side of the material storage component. The limiting component includes an inclined block, a movable block and two spring members. The lower ends of the two spring members are fixedly connected to the bone sawing component and are located above the bone sawing component. The upper ends of the two spring members are fixedly connected to the movable block and are located below the movable block. The movable block is fixedly connected to the inclined block and is located below the inclined block.

[0007] Among them, the material storage component includes a material storage box, multiple supporting rollers and multiple feet. Each foot is fixedly connected to the material storage box and is located below the material storage box. Each supporting roller is rotatably connected to the material storage box and is located on the inner wall of the material storage box.

[0008] Among them, the conveying component includes a conveying frame, a full-automatic conveyor belt, a support rod and a guiding rod. The guiding rod is fixedly connected to the support rod and is located at one end of the support rod. The support rod is fixedly connected to the conveying frame and is located on one side of the conveying frame. The full-automatic conveyor belt is rotatably connected to the conveying frame and is located above the conveying frame. The conveying frame is fixedly connected to the material storage box and is located on one side of the material storage box.

[0009] Among them, the bone sawing component includes a base, a bone sawing machine and a cutting chain. The cutting chain is fixedly connected to the output end of the bone sawing machine. The bone sawing machine is fixedly connected to the base and is located above the base. The base is fixedly connected to the conveying frame and is located on the lower side of the conveying frame.

[0010] Among them, the correction component includes an installation frame, a sliding seat, an electric telescopic rod, a correction plate and multiple correction wheels. Each correction wheel is rotatably connected to the correction plate and is located on one side of the correction plate. The other side of the correction plate is fixedly connected to the electric telescopic rod and is located at one end of the electric telescopic rod. The electric telescopic rod is fixedly connected to the sliding seat and is located on one side of the sliding seat. The sliding seat is slidably connected to the installation frame and is located above the installation frame. The installation frame is fixedly connected to the base and is located above the base.

[0011] The full-automatic feeding mechanism of a bone sawing machine of the present utility model is provided with the inclined block and the movable block, which cooperate with two spring members having a telescopic function, to restrict the movement of the bone material, avoiding the bone material moving along with inertia and being inconvenient to control. After being extruded, the inclined block descends in height without affecting the subsequent movement of the bone material. This design solves the problem that the bone material is likely to directly slide under the bone sawing machine after being transported by the conveyor belt, making it inconvenient to adjust the posture and still requiring manual adjustment by the staff, thus affecting the automation process. BRIEF DESCRIPTION OF THE DRAWINGS

[0012] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the following will briefly introduce the drawings required for use in the description of the embodiments or the prior art.

[0013] Figure 1 is the overall structural schematic diagram of the full-automatic feeding mechanism of a bone sawing machine of the present utility model.

[0014] Figure 2 is of the present utility model Figure 1 partial enlarged view of the structure at A.

[0015] Figure 3 is the left view of the full-automatic feeding mechanism of a bone sawing machine of the present utility model.

[0016] Figure 4 is of the present utility model Figure 3 sectional view taken along line B-B.

[0017] Figure 5 is of the present utility model Figure 4 partial enlarged view of the structure at C.

[0018] 101 - Material storage assembly, 102 - Conveying assembly, 103 - Bone sawing assembly, 104 - Limiting assembly, 105 - Correction assembly, 106 - Inclined block, 107 - Movable block, 108 - Spring member, 109 - Material storage box, 110 - Roller, 111 - Foot post, 112 - Conveying frame, 113 - Full-automatic conveyor belt, 114 - Support rod, 115 - Guide rod, 116 - Base, 117 - Bone sawing machine, 118 - Cutting chain, 119 - Installation frame, 120 - Slide seat, 121 - Electric telescopic rod, 122 - Correction plate, 123 - Correction wheel. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0019] The following will describe in detail the embodiments of the present utility model. The examples of the embodiments are shown in the drawings. The embodiments described below with reference to the drawings are exemplary and are intended to explain the present utility model and should not be construed as limiting the present utility model.

[0020] Please refer to Figures 1-5 , in whichFigure 1 It is a schematic diagram of the overall structure of a fully automatic feeding mechanism of a bone sawing machine of the present utility model. Figure 2 It is of the present utility model Figure 1 An enlarged view of the partial structure at position A of Figure 3 It is a left view of a fully automatic feeding mechanism of a bone sawing machine of the present utility model. Figure 4 It is of the present utility model Figure 3 A sectional view taken along line B-B of Figure 5 It is of the present utility model Figure 4 An enlarged view of the partial structure at position C of

[0021] The present utility model provides a fully automatic feeding mechanism for a bone sawing machine 117, which includes a material storage component 101, a conveying component 102, a bone sawing component 103, a limiting component 104 and a correction component 105. The limiting component 104 includes an inclined block 106, a movable block 107 and two spring members 108. The material storage component 101 includes a material storage box 109, multiple supporting rollers 110 and multiple supporting columns 111. The conveying component 102 includes a conveying frame 112, a fully automatic conveyor belt 113, a support rod 114 and a guiding rod 115. The bone sawing component 103 includes a base 116, a bone sawing machine 117 and a cutting chain 118. The correction component 105 includes a mounting frame 119, a sliding seat 120, an electric telescopic rod 121, a correction plate 122 and multiple correction wheels 123.

[0022] According to this specific embodiment, the correction component 105 is fixedly connected to the bone saw component 103, the bone saw component 103 is fixedly connected to the conveying component 102, the other side of the conveying component 102 is fixedly connected to the storage component 101, the lower ends of the two spring members 108 are fixedly connected to the bone saw component 103, the upper ends of the two spring members 108 are fixedly connected to the movable block 107, the movable block 107 is fixedly connected to the inclined block 106, each of the foot columns 111 is fixedly connected to the storage box 109, each of the rollers 110 is rotatably connected to the storage box 109, the guide rod 115 is fixedly connected to the support rod 114, the support rod 114 is fixedly connected to the conveying frame 112, the fully-automatic conveyor belt 113 is rotatably connected to the conveying frame 112, the conveying frame 112 is fixedly connected to the storage box 109, and the cutting chain 118 is fixedly connected to the output end of the bone sawing machine 117 The bone saw 117 is fixedly connected to the base 116, and the base 116 is fixedly connected to the conveying frame 112. Each of the correction wheels 123 is rotatably connected to the correction plate 122. The other side of the correction plate 122 is fixedly connected to the electric telescopic rod 121, and the electric telescopic rod 121 is fixedly connected to the slide 120. The slide 120 is slidably connected to the mounting frame 119, and the mounting frame 119 is fixedly connected to the base 116. The inclined block 106 and the movable block 107 are now arranged to cooperate with the two spring members 108 with telescopic function to limit the movement of the aggregate, so as to prevent the aggregate from moving in accordance with inertia and being inconvenient to control. After being squeezed, the inclined block 106 drops in height without affecting the subsequent movement of the aggregate. This design solves the problem that the aggregate is easily slid directly to the bottom of the bone saw 117 after being transported by the conveyor belt, which is inconvenient to adjust the posture and still requires manual adjustment by the staff, affecting the automation process.

[0023] Among them, the correction component 105 is located above the bone saw component 103, the bone saw component 103 is located on one side of the conveying component 102, and the other side of the conveying component 102 is located on one side of the storage component 101, the lower ends of the two spring components 108 are located above the bone saw component 103, and the upper ends of the two spring components 108 are located below the movable block 107, and the movable block 107 is located below the inclined block 106, and the movable block 107 and the two spring components 108 are arranged below the inclined block 106. After being squeezed, the inclined block 106 descends in height, and the aggregate realizes the function of moving above the base 116, and the aggregate is moved and cut through the cylinder and the toggle plate.

[0024] Secondly, each of the foot columns 111 is located below the storage box 109, each of the rollers 110 is located on the inner wall of the storage box 109, the guide rod 115 is located at one end of the support rod 114, the support rod 114 is located on one side of the conveying frame 112, the fully automatic conveyor belt 113 is located above the conveying frame 112, and the conveying frame 112 is located on one side of the storage box 109. The aggregate to be cut is placed in the storage box 109, and the multiple rollers 110 arranged in a sloped shape are gravity-fed. The function is to transport the aggregate to the outlet of the storage box 109, and then transport the aggregate to the fully automatic conveyor belt 113 on the conveying frame 112 through the outlet. Due to the height limit at the outlet, aggregates cannot pass through in batches, ensuring that only one aggregate can pass through the fully automatic conveyor belt 113 at a time. The position of the aggregate is adjusted on the fully automatic conveyor belt 113 by the guide rod 115 supported by the support rod 114 whose length can be adjusted, and finally falls onto the base 116, and is stopped by the inclined block 106.

[0025] At the same time, the bone saw 117 is located above the base 116, the base 116 is located at the lower side of the conveying frame 112, each of the correction wheels 123 is located on one side of the correction plate 122, the other side of the correction plate 122 is located at one end of the electric telescopic rod 121, the electric telescopic rod 121 is located on one side of the slide 120, the slide 120 is located above the installation frame 119, the installation frame 119 is located above the base 116, and a cylinder and a toggle plate are also provided below the bone saw 117, the toggle plate is fixedly connected through the output end of the cylinder, and is moved when the aggregate falls to the The aggregate is started after it moves above the inclined block 106, and moves the aggregate toward the cutting chain 118. The baffle on the inner side of the toggle plate and the multiple correction wheels 123 work together to ensure that the posture of the aggregate will not deflect or shake during movement, and then it is cut by the cutting chain 118. During the recovery process of the toggle plate through the cylinder, the slide seat 120 will be driven to move together, thereby driving the movement of each correction wheel 123 and the electric telescopic rod 121, and the aggregate is always kept wrapped. After the aggregate is cut, the cylinder drives the toggle plate back to the side of the inclined block 106 to prepare for another move.

[0026] In this embodiment, the inclined block 106 and the movable block 107 are provided with two spring members 108 with telescopic functions to limit the movement of the aggregate, so as to prevent the aggregate from moving in accordance with inertia and being inconvenient to control. After being squeezed, the inclined block 106 is lowered in height without affecting the subsequent movement of the aggregate. This design solves the problem that the aggregate is easy to slide directly under the bone saw 117 after being transported by the conveyor belt, which is inconvenient to adjust the posture and still requires manual adjustment by the staff, affecting the automation process. The bottom of the inclined block 106 The movable block 107 and the two spring members 108 are provided. After being squeezed, the inclined block 106 is lowered, and the aggregate realizes the function of moving above the base 116, and the aggregate is moved and cut through the cylinder and the toggle plate, and the aggregate to be cut is placed in the storage box 109, and the aggregate is transported to the outlet of the storage box 109 by gravity through the plurality of rollers 110 arranged in a slope, and is transported to the fully automatic conveyor belt 113 on the conveying frame 112 through the outlet. Since the height of the outlet is limited, The aggregate cannot pass through in batches, ensuring that only one aggregate can pass through the fully automatic conveyor belt 113 at a time. The position of the aggregate is adjusted on the fully automatic conveyor belt 113 by the guide rod 115 supported by the support rod 114 which can adjust the length, and finally falls on the base 116, and stops moving after being stopped by the inclined block 106. A cylinder and a toggle plate are also provided below the bone saw 117, and the toggle plate is fixedly connected through the output end of the cylinder, and is started after the aggregate falls above the inclined block 106, and the aggregate is moved toward the cutting chain. The aggregate is moved in the direction of 118, and the baffle plate on the inner side of the toggle plate and the multiple correction wheels 123 work together to ensure that the posture of the aggregate will not deflect or shake during movement, and then the cutting chain 118 is used for cutting. During the recovery process of the toggle plate through the cylinder, the slide seat 120 is driven to move together, thereby driving the movement of each correction wheel 123 and the electric telescopic rod 121 to keep the aggregate wrapped at all times. After the aggregate is cut, the cylinder drives the toggle plate back to the side of the inclined block 106 to prepare for another move.

[0027] What is disclosed above is only one or more preferred embodiments of the present application, and cannot be used to limit the scope of rights of the present application. Ordinary technicians in this field can understand that all or part of the processes of implementing the above embodiments and equivalent changes made according to the claims of the present application are still within the scope covered by the present application.

Claims

1. A fully automatic feeding mechanism for a bone sawing machine, comprising a material storage component, a conveying component, a bone sawing component and a correction component, wherein the correction component is fixedly connected to the bone sawing component and is located above the bone sawing component, the bone sawing component is fixedly connected to the conveying component and is located on one side of the conveying component, and the other side of the conveying component is fixedly connected to the material storage component and is located on one side of the material storage component, characterized in that: It also includes a limiting assembly, which includes an inclined block, a movable block and two spring members, the lower ends of the two spring members are fixedly connected to the bone saw assembly and are located above the bone saw assembly, the upper ends of the two spring members are fixedly connected to the movable block and are located below the movable block, and the movable block is fixedly connected to the inclined block and is located below the inclined block.

2. The fully automatic feeding mechanism of the bone sawing machine according to claim 1, characterized in that: The material storage assembly includes a material storage box, a plurality of rollers and a plurality of legs, each of the legs is fixedly connected to the material storage box and is located below the material storage box, and each of the rollers is rotatably connected to the material storage box and is located on the inner wall of the material storage box.

3. The fully automatic feeding mechanism of the bone sawing machine according to claim 2, characterized in that: The conveying assembly includes a conveying frame, a fully automatic conveyor belt, a support rod and a guide rod, the guide rod is fixedly connected to the support rod and is located at one end of the support rod, the support rod is fixedly connected to the conveying frame and is located at one side of the conveying frame, the fully automatic conveyor belt is rotatably connected to the conveying frame and is located above the conveying frame, and the conveying frame is fixedly connected to the storage box and is located at one side of the storage box.

4. The fully automatic feeding mechanism of the bone sawing machine according to claim 3, characterized in that: The bone sawing assembly includes a base, a bone sawing machine and a cutting chain, wherein the cutting chain is fixedly connected to the output end of the bone sawing machine, the bone sawing machine is fixedly connected to the base and is located above the base, and the base is fixedly connected to the conveying frame and is located at the lower side of the conveying frame.

5. The fully automatic feeding mechanism of the bone sawing machine according to claim 4, characterized in that: The correction assembly includes a mounting frame, a slide, an electric telescopic rod, a correction plate and a plurality of correction wheels, each of the correction wheels is rotatably connected to the correction plate and is located on one side of the correction plate, the other side of the correction plate is fixedly connected to the electric telescopic rod and is located at one end of the electric telescopic rod, the electric telescopic rod is fixedly connected to the slide and is located on one side of the slide, the slide is slidably connected to the mounting frame and is located above the mounting frame, and the mounting frame is fixedly connected to the base and is located above the base.

Citation Information

Patent Citations

  • Full-automatic feeding mechanism of bone sawing machine

    CN215455062U