Feeding mechanism for deoxidizing agent production

By setting up an adjustment chamber on the vibrating plate and sliding along the discharge groove with a driving mechanism, the problem of the inability to adjust the loading speed of the traditional vibrating plate is solved, and a more efficient loading process is achieved.

CN222892582UActive Publication Date: 2025-05-23HEBI RICH ALLOY TECH CO LTD
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Patent Information

Application Number
CN202421998023.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-16
Publication Date
2025-05-23
Estimated Expiration
2034-08-16

AI Technical Summary

Technical Problem

During the loading process of traditional vibrating disk, the feeding speed cannot be adjusted because the discharge silo is fixed from the discharge trough of the vibrating disk, resulting in the material falling too fast or too slow, resulting in the problem of material escaping or the loading efficiency being reduced.

Method used

The driving mechanism drives the adjustment chamber on the vibrating plate to slide along the discharge groove, adjust the amount of material in the adjustment groove, and adjust the loading speed and efficiency.

Benefits of technology

The feeding speed and efficiency are improved, and the material escape or loading efficiency is avoided. The flexible adjustment of the feeding speed is achieved through the control of the telescopic push rod.

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Abstract

The utility model provides a feeding mechanism for deoxidizing agent production, which comprises a rack, a vibrating disc arranged on the rack, an adjusting bin sleeved on a discharge chute of the vibrating disc, a discharge bin arranged at the end part of the adjusting bin, a shock absorber arranged at the lower part of the discharge bin, an adjusting block arranged at the lower part of the shock absorber, and a placing table arranged on the rack, a sliding rail is arranged on the containing table, the adjusting block is arranged in the sliding rail in a sliding mode, and a driving mechanism used for driving the adjusting block to slide along the sliding rail is arranged in the sliding rail. And the feeding speed and efficiency are greatly improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of feeding equipment, in particular to a feeding mechanism for deoxidizer production. Background Art

[0002] Deoxidizer, also known as oxygen absorber or deoxidizer, is a chemical mixture that can absorb oxygen and slow down the oxidation of food. Deoxidizer is often used to maintain food quality. It can also be used for the preservation and rust prevention of grains, feed, medicines, clothing, fur, precision instruments and other items.

[0003] In the process of feeding the deoxidizer, a vibrating feeding tray is usually required for the feeding operation.

[0004] During the operation of a traditional vibrating plate, the distance between the discharge bin and the discharge chute of the vibrating plate is fixed, which makes it impossible to adjust the feeding speed, resulting in the material leaking out due to the material falling too fast through the discharge chute of the vibrating plate, or reducing the feeding efficiency due to the material falling too slowly. Utility Model Content

[0005] In view of this, the utility model provides a feeding mechanism for deoxidizer production, which can slide the adjusting bin on the vibrating plate along the discharging trough through the driving mechanism, so as to adjust the effective material guiding amount of the adjusting trough, greatly improving the feeding speed and efficiency, and solving the problem that during the operation of the traditional vibrating plate, the distance between the discharging bin and the discharging trough of the vibrating plate is fixed, resulting in the inability to adjust the feeding speed, causing the material discharged through the discharging trough of the vibrating plate to escape due to the material falling too fast, or the material falling too slowly, resulting in reduced feeding efficiency.

[0006] In order to solve the above technical problems, the utility model provides a feeding mechanism for deoxidizer production, comprising a frame, a vibrating plate is arranged on the frame, an adjusting bin is sleeved on the discharging trough of the vibrating plate, a discharging bin is arranged at the end of the adjusting bin, a shock absorber is arranged at the lower part of the discharging bin, an adjusting block is arranged at the lower part of the shock absorber, a placing table is arranged on the frame, a slide rail is arranged on the placing table, the adjusting block is slidably arranged inside the slide rail, and a driving mechanism for driving the adjusting block to slide along the slide rail is arranged inside the slide rail. The utility model can drive the adjusting bin on the vibrating plate to slide along the discharging trough through the driving mechanism, so as to adjust the effective material guiding amount of the adjusting trough, greatly improving the feeding speed and efficiency, and solving the problem that the distance between the discharging bin and the discharging trough of the vibrating plate is fixed during the operation of the traditional vibrating plate, resulting in the inability to adjust the feeding speed, resulting in the material escape caused by the material discharged through the discharging trough of the vibrating plate falling too fast, or the feeding efficiency being reduced due to the material falling too slowly.

[0007] The driving mechanism includes a telescopic sleeve rod arranged on the side wall of the slide rail, the other end of the telescopic sleeve rod is fixedly arranged with the adjusting block, two push rods are arranged on the other side of the adjusting block, and a fixing plate is arranged at the ends of the two push rods, a through hole is opened on the geometric center of the fixing plate, a push-pull rod is arranged on the axis where the through hole is located, and a fixing disk is arranged at both ends of the push-pull rod, the diameter of the fixing disk is larger than the diameter of the through hole, and the fixing disk is respectively located at the front and rear sides of the fixing plate, and a telescopic push rod is arranged on the fixing disk on the side away from the adjusting block. The utility model can push the fixing disk and the push-pull rod to push the adjusting block by the action of the output rod of the telescopic push rod being started to extend. The material guide path is shortened and the material loading speed is increased. When the material loading speed is too fast, the output rod of the telescopic push rod is retracted to pull the fixed plate, and the push-pull rod pushes the adjustment block with the shock absorber and the material guide bin to slide along the slide rail with the adjustment bin to increase the overlapping area between the adjustment bin and the vibration plate. The effective material guide area of ​​the adjustment bin is increased, which achieves the purpose of increasing the material guide path and reducing the loading speed, and the operation is more convenient.

[0008] The telescopic sleeve includes a fixed cylinder arranged on the side wall of the slide rail, a spring is arranged in the fixed cylinder, a fixed rod is arranged at the other end of the spring, and the other end of the fixed rod is fixed together with the adjusting block. The utility model can limit the axial swing of the spring through the fixed cylinder, and can compress the spring under the action of external force so that the spring enters the fixed cylinder, which is more convenient and stable.

[0009] The telescopic push rod is an electric telescopic rod or a hydraulic telescopic rod.

[0010] The fixed end of the telescopic push rod is fixed on the outer side wall of the slide rail. A through hole for the output rod of the telescopic push rod to pass through is provided on the outer side wall of the slide rail and on the axis where the fixed rod of the telescopic push rod is located.

[0011] The shock absorber is an elastic shock absorbing plate, the lower part of the elastic shock absorbing plate is fixed together with the upper part of the adjusting block, and the upper part of the elastic shock absorbing plate is fixed together with the lower part of the discharge bin. The utility model can effectively absorb and buffer the vibration generated by the discharge bin under the driving effect of the vibration of the vibration plate through the elastic shock absorbing plate, thereby increasing the stability of the adjusting block moving in the slide rail.

[0012] In summary, compared with the prior art, the present application includes at least one of the following beneficial technical effects:

[0013] 1. The utility model can drive the adjusting bin on the vibrating plate to slide along the discharging chute through the driving mechanism, so as to adjust the effective material guiding amount of the adjusting chute, greatly improving the speed and efficiency of feeding, and solving the problem that the distance between the discharging bin and the discharging chute of the vibrating plate is fixed during the operation of the traditional vibrating plate, which makes it impossible to adjust the feeding speed, resulting in the material escaping due to the material discharged through the discharging chute of the vibrating plate falling too fast, or reducing the feeding efficiency due to the material falling too slowly.

[0014] 2. The utility model can start the output rod of the telescopic push rod to extend, push the fixed plate, the push-pull rod pushes the adjusting block with the shock absorber, and the discharge bin brings the adjusting bin to slide along the slide rail until the overlapping area between the adjusting bin and the discharge bin of the vibrating disk is increased, thereby reducing the effective material guiding area of ​​the adjusting bin, achieving the purpose of shortening the material guiding path and increasing the feeding speed. When the feeding speed is too fast, the output rod of the telescopic push rod is started to retract to pull the fixed plate, the push-pull rod pushes the adjusting block with the shock absorber, and the discharge bin brings the adjusting bin to slide along the slide rail until the overlapping area between the adjusting bin and the discharge bin of the vibrating disk is reduced, thereby increasing the effective material guiding area of ​​the adjusting bin, achieving the purpose of increasing the material guiding path and reducing the feeding speed, and the operation is more convenient.

[0015] 3. When the vibration plate is loaded with materials, the vibration operation is stopped. Since the distance between the discharge bin and the discharge trough of the vibration plate is too far, some materials will remain on the discharge bin. At this time, the output rod of the telescopic push rod is extended to push the fixed plate, the push-pull rod pushes the adjusting block with the shock absorber, and the discharge bin and the adjusting bin slide along the slide rail to the fixed plate close to the adjusting block. The adjusting block slides along the slide groove until the fixed rod is pushed into the fixed cylinder to compress the spring. Then the output rod of the telescopic push rod is started to retract to the appropriate distance. At this time, the compressed spring will push the fixed rod and the adjusting block at the end of the fixed rod due to its own restoring elastic force, and move the discharge bin back and forth along the slide rail, thereby realizing the shaking off of the materials remaining on the upper part of the storage bin, avoiding unnecessary waste of materials and making the operation more convenient.

[0016] 4. The utility model can limit the axial swing of the spring through the fixing tube, and the fixing rod can compress the spring under the action of external force so that it enters the fixing tube, which is more convenient and stable. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 This is a schematic diagram of the structure of the feeding mechanism for the deoxidizer production of the utility model;

[0018] Figure 2 For this utility model Figure 1 A magnified view of the structure at center;

[0019] Figure 3 It is a structural schematic diagram of another perspective of the feeding mechanism for deoxidizer production of the utility model;

[0020] Figure 4 For this utility model Figure 3 Enlarged view of the structure at point B in the middle.

[0021] Explanation of the reference numerals: 100, frame; 101, placement table; 200, vibration plate; 201, discharge chute; 300, adjustment bin; 400, discharge bin; 500, shock absorber; 600, adjustment block; 700, slide rail; 800, driving mechanism; 810, telescopic sleeve rod; 820, push rod; 830, fixing plate; 831, through hole; 840, push-pull rod; 850, fixing plate; 860, telescopic push rod; 870, through hole. DETAILED DESCRIPTION

[0022] In order to make the purpose, technical scheme and advantages of the embodiment of the utility model clearer, the following will be combined with the appended drawings of the embodiment of the utility model. Figure 1-4 , the technical scheme of the embodiment of the utility model is clearly and completely described. Obviously, the described embodiment is a part of the embodiment of the utility model, not all of the embodiments. Based on the described embodiment of the utility model, all other embodiments obtained by ordinary technicians in this field belong to the scope of protection of the utility model.

[0023] like Figure 1-4 As shown: This embodiment provides a feeding mechanism for deoxidizer production, including a frame 100, a vibration plate 200 is arranged on the frame 100, an adjustment bin 300 is sleeved on the discharge trough 201 of the vibration plate 200, a discharge bin 400 is arranged at the end of the adjustment bin 300, a shock absorber 500 is arranged at the lower part of the discharge bin 400, an adjustment block 600 is arranged at the lower part of the shock absorber 500, a placing table 101 is arranged on the frame 100, a slide rail 700 is arranged on the placing table 101, the adjustment block 600 is slidably arranged inside the slide rail 700, and the slide rail 700 is provided inside for driving the adjustment block 600 to move along the slide rail 700 00 is a driving mechanism 800 for sliding. The utility model can use the driving mechanism 800 to carry the adjusting bin 300 on the vibration plate 200 to slide along the discharge chute 201, so as to adjust the effective material guiding amount of the adjusting chute, thereby greatly improving the speed and efficiency of feeding. It solves the problem that in the traditional vibration plate 200, the distance between the discharge bin 400 and the discharge chute 201 of the vibration plate 200 is fixed during operation, resulting in the inability to adjust the feeding speed, causing the material discharged through the discharge chute 201 of the vibration plate 200 to escape due to falling too fast, or reducing the feeding efficiency due to falling too slowly.

[0024] According to one embodiment of the utility model, Figure 1-4As shown, the driving mechanism 800 includes a telescopic sleeve rod 810 arranged on the side wall of the slide rail 700, the other end of the telescopic sleeve rod 810 is fixedly arranged with the adjusting block 600, and two push rods 820 are arranged on the other side of the adjusting block 600, and a fixing plate 830 is arranged at the end of the two push rods 820, and a through hole 831 is opened at the geometric center of the fixing plate 830, and a push-pull rod 840 is arranged on the axis where the through hole 831 is located, and a fixing plate 850 is arranged at both ends of the push-pull rod 840, respectively. The diameter of the fixing plate 850 is larger than the diameter of the through hole 831, and the fixing plates 850 are respectively located at the front and rear sides of the fixing plate 830, and a telescopic push rod 860 is arranged on the fixing plate 850 away from the side of the adjusting block 600. The utility model can push the fixing plate 850 and the push-pull rod 860 by the output rod of the telescopic push rod 860 being extended. 840 pushes the adjusting block 600 with the shock absorber 500 and the discharging bin 400 with the adjusting bin 300 to slide along the slide rail 700 until the overlapping area between the adjusting bin 300 and the discharging bin 400 of the vibration disk 200 is increased, thereby reducing the effective material guiding area of ​​the adjusting bin 300, thereby shortening the material guiding path and increasing the feeding speed. When the feeding speed is too fast, the output rod of the telescopic push rod 860 is started to retract to pull the fixed plate 850, and the push-pull rod 840 pushes the adjusting block 600 with the shock absorber 500 and the discharging bin 400 with the adjusting bin 300 to slide along the slide rail 700 until the overlapping area between the adjusting bin 300 and the discharging bin 400 of the vibration disk 200 is reduced, thereby increasing the effective material guiding area of ​​the adjusting bin 300, thereby increasing the material guiding path and reducing the feeding speed, and the operation is more convenient.

[0025] According to another embodiment of the present invention, Figure 1 and Figure 2 As shown, the telescopic sleeve 810 includes a fixed cylinder arranged on the side wall of the slide rail 700, a spring is arranged in the fixed cylinder, a fixed rod is arranged at the other end of the spring, and the other end of the fixed rod is fixed together with the adjustment block 600. The utility model can limit the axial swing of the spring through the fixed cylinder, and can compress the spring under the action of external force so that the fixed rod enters the fixed cylinder, which is more convenient and stable.

[0026] According to another embodiment of the present invention, Figure 1 and Figure 3 As shown, the telescopic push rod 860 is an electric telescopic rod or a hydraulic telescopic rod. The fixed end of the telescopic push rod 860 is fixed to the outer wall of the slide rail 700. A through hole 870 for the output rod of the telescopic push rod 860 to pass through is provided on the outer wall of the slide rail 700 and on the axis where the fixed rod of the telescopic push rod 860 is located.

[0027] According to another embodiment of the present invention, Figure 1 and Figure 4As shown, the shock absorber 500 is an elastic shock absorbing plate, the lower part of the elastic shock absorbing plate is fixed together with the upper part of the adjustment block 600, and the upper part of the elastic shock absorbing plate is fixed together with the lower part of the discharge bin 400. The utility model can effectively absorb and buffer the vibration generated by the discharge bin 400 driven by the vibration of the vibration plate 200 through the elastic shock absorbing plate, thereby increasing the stability of the adjustment block 600 moving in the slide rail 700.

[0028] The use of the utility model:

[0029] First of all, it should be made clear that the feeding mechanism involved in the utility model is mainly used for feeding operations of various granular and columnar materials. The utility model takes the feeding of deoxidizer as an example to explain its method of use in detail. When it is necessary to feed the deoxidizer, start the vibration plate 200 to work, pour the deoxidizer to be fed into the vibration plate 200, and the vibration of the vibration plate 200 will lead the material out through the discharge trough 201 of the vibration plate 200, so as to realize the automatic feeding operation of the material. When the feeding speed is too fast, start the output rod of the telescopic push rod 860 to retract to pull the fixed plate 850, the push-pull rod 840 to push the adjusting block 600 with the shock absorber 500 and the discharge bin 400 with the adjusting bin 300 to slide along the slide rail 700 to the adjusting position. The overlapping area between the section bin 300 and the discharge bin 400 of the vibration plate 200 is reduced, thereby increasing the effective material guiding area of ​​the regulating bin 300, achieving the purpose of increasing the material guiding path and reducing the loading speed. When the loading speed is too slow, the output rod of the telescopic push rod 860 is extended to push the fixed plate 850, the push-pull rod 840 pushes the adjustment block 600 with the shock absorber 500 and the discharge bin 400 with the regulating bin 300 to slide along the slide rail 700 until the overlapping area between the regulating bin 300 and the discharge bin 400 of the vibration plate 200 is increased, thereby reducing the effective material guiding area of ​​the regulating bin 300, achieving the purpose of shortening the material guiding path and increasing the loading speed. When the vibration plate 200 stops vibrating after loading, the discharge bin 400 is too far away from the discharge trough 201 of the vibration plate 200, and some materials will remain on the discharge bin 400. At this time, the output rod of the telescopic push rod 860 is extended to push the fixed plate 850, the push-pull rod 840 pushes the adjusting block 600 with the shock absorber 500 and the discharge bin 400 with the adjusting bin 300 to slide along the slide rail 700 to the fixed plate 850 on the side close to the adjusting block 600, and pushes the adjusting block 600 to slide along the slide groove until the fixed rod is pushed into the fixed cylinder to compress the spring, and then the output rod of the telescopic push rod 860 is retracted to the appropriate distance. At this time, the compressed spring will push the fixed rod and the adjusting block 600 at the end of the fixed rod due to its own restoring elastic force, carrying the discharge bin 400 along The slide rail 700 moves back and forth, thereby shaking off the material remaining on the upper part of the storage bin, avoiding unnecessary waste of materials and making the operation more convenient. The utility model can drive the adjusting bin 300 on the vibration plate 200 to slide along the discharge chute 201 through the driving mechanism 800, so as to adjust the effective material guide amount of the adjustment chute, greatly improving the speed and efficiency of feeding, and solving the problem that the traditional vibration plate 200 cannot adjust the feeding speed due to the fixed distance between the discharge bin 400 and the discharge chute 201 of the vibration plate 200 during operation, resulting in the material escape caused by the material discharged through the discharge chute 201 of the vibration plate 200 falling too fast, or the feeding efficiency being reduced due to the material falling too slowly.

[0030] In addition, it should be noted that in the description of the present invention, unless otherwise clearly specified and limited, the terms "installation", "connection" and "connection" should be understood in a broad sense, for example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection, or it can be indirectly connected through an intermediate medium, or it can be the internal communication of two components. For those skilled in the art, the specific meanings of the above terms in the present invention can be understood according to the specific circumstances.

[0031] The above is a preferred embodiment of the present invention. It should be pointed out that, for ordinary technicians in this technical field, several improvements and modifications can be made without departing from the principles of the present invention. These improvements and modifications should also be regarded as the protection scope of the present invention.

Claims

1. A feeding mechanism for deoxidizer production, comprising a frame (100), wherein a vibration plate (200) is arranged on the frame (100), characterized in that: An adjusting bin (300) is sleeved on the discharge chute (201) of the vibration plate (200), a discharge bin (400) is arranged at the end of the adjusting bin (300), a shock absorber (500) is arranged at the lower part of the discharge bin (400), an adjusting block (600) is arranged at the lower part of the shock absorber (500), a placing table (101) is arranged on the frame (100), a slide rail (700) is arranged on the placing table (101), the adjusting block (600) is slidably arranged inside the slide rail (700), and a driving mechanism (800) is arranged inside the slide rail (700) for driving the adjusting block (600) to slide along the slide rail (700).

2. The feeding mechanism for deoxidizer production according to claim 1, characterized in that: The driving mechanism (800) comprises a telescopic sleeve rod (810) arranged on the side wall of the slide rail (700), the other end of the telescopic sleeve rod (810) is fixedly arranged with the adjustment block (600), the other side of the adjustment block (600) is provided with two push rods (820), the ends of the two push rods (820) are provided with a fixing plate (830), a through hole (831) is opened at the geometric center of the fixing plate (830), a push-pull rod (840) is arranged on the axis where the through hole (831) is located, and fixing plates (850) are respectively arranged at both ends of the push-pull rod (840), the diameter of the fixing plate (850) is larger than the diameter of the through hole (831), and the fixing plates (850) are respectively located at the front and rear sides of the fixing plate (830), and a telescopic push rod (860) is arranged on the fixing plate (850) on the side away from the adjustment block (600).

3. The feeding mechanism for deoxidizer production according to claim 2, characterized in that: The telescopic sleeve rod (810) comprises a fixing tube arranged on the side wall of the slide rail (700), a spring is arranged in the fixing tube, a fixing rod is arranged at the other end of the spring, and the other end of the fixing rod is fixedly arranged with the adjustment block (600).

4. The feeding mechanism for deoxidizer production as claimed in claim 3, characterized in that: The telescopic push rod (860) is an electric telescopic rod or a hydraulic telescopic rod.

5. The feeding mechanism for deoxidizer production as claimed in claim 4, characterized in that: The fixed end of the telescopic push rod (860) is fixed on the outer wall of the slide rail (700), and a through hole (870) for the output rod of the telescopic push rod (860) to pass through is provided on the outer wall of the slide rail (700) and located on the axis where the fixed rod of the telescopic push rod (860) is located.

6. The feeding mechanism for deoxidizer production according to claim 5, characterized in that: The shock absorber (500) is an elastic shock absorbing plate, the lower part of the elastic shock absorbing plate is fixedly arranged with the upper part of the adjustment block (600), and the upper part of the elastic shock absorbing plate is fixedly arranged with the lower part of the discharge bin (400).