A chemical material collection and treatment device

By designing a chemical material collection and treatment device including a linear drive device, a flip device and a feeding box, the problems of dropping, residue and waste when materials are poured in the chemical material filling equipment are solved, and the stability and environmental protection of material pouring are achieved.

CN113277139BActive Publication Date: 2025-06-24ZHANYI INTELLIGENT TECH (DONGTAI) CO LTD +1
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Patent Information

Application Number
CN202110524619.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Priority Date
2021-05-12
Filing Date
2021-05-13
Publication Date
2025-06-24
Estimated Expiration
2041-05-13

AI Technical Summary

Technical Problem

Existing chemical material filling equipment is prone to problems of drops, residues and waste when the materials are poured into the packaging container, and it is difficult to effectively reduce the volatile flue gas of the material, affecting environmental protection.

Method used

A chemical material collection and processing device is designed, including a linear drive device, a flip device and a feeding box. The flip device realizes the power translation and overturning of the feeding box through the cooperation of the support plate, rotary rod and ear plate, ensuring that the material is reduced in residue and waste when poured into the packaging container, and prevents the material gun from colliding and material sputtering through the design of the pad and the material trough.

Benefits of technology

This device can effectively reduce material residues and waste, avoid material evaporation of flue gas, protect the environment, and ensure the stability and efficiency of material pouring into packaging containers.

✦ Generated by Eureka AI based on patent content.

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    Figure CN113277139B_ABST
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Abstract

The present invention provides a chemical material collection and processing device, which includes a linear drive device, a flipping device and a material receiving box. Specifically: The flipping device includes a support plate, a rotating rod and an ear plate. The support plate is used to be connected to the linear drive device and perform linear motion under the drive of the linear drive device. The rotating rod is fixedly installed on the support plate. As the support plate moves, the upper end of the ear plate is rotatably connected to the rotating rod, and the lower end is fixedly connected to the material receiving box. The material receiving box of the present invention can be translated and flipped with power, and can pour the received materials into a packaging container as needed, reducing residues, avoiding waste, and at the same time reducing the volatilized flue gas of the materials to protect the environment.
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Description

Technical Field

[0001] The present invention relates to the field of chemical material filling, and particularly to a chemical material collection and treatment device. Background Art

[0002] Filling equipment is mainly a type of product in packaging machines. From the perspective of packaging materials, it can be divided into liquid filling machines, paste filling machines, powder filling machines, and granule filling machines; from the degree of production automation, it is divided into semi-automatic filling machines and fully automatic filling production lines. Summary of the Invention

[0003] In order to solve the problems existing in the prior art, the present invention provides a chemical material processing device, which pours the received materials into a packaging container, avoiding dripping, reducing residue, and avoiding waste.

[0004] To achieve the above object, the following technical solutions are provided:

[0005] A chemical material collection and treatment device includes a linear driving device, a flipping device, and a material receiving box, wherein:

[0006] The flipping device includes a support plate, a rotating rod, and an ear plate. The support plate is used to be connected with the linear driving device and move linearly under the drive of the linear driving device. The rotating rod is fixedly installed on the support plate. As the support plate moves, the upper end of the ear plate is rotatably connected to the rotating rod, and the lower end is fixedly connected to the material receiving box.

[0007] There are two ear plates, which are fixedly connected to both sides of the material receiving box.

[0008] A knob is installed at the end of the rotating rod to axially limit the ear plate.

[0009] The rear end of the material receiving box is connected to one side of the ear plate, and the other side of the ear plate is connected to a counterweight. The torque of the counterweight on the ear plate is greater than the torque of the empty material receiving box on the ear plate and less than the torque of the full material receiving box on the ear plate, so that the full material receiving box can tilt towards the counterweight side. When the tilting is completed and it returns to the empty state, it resets under its own gravity and the action of the counterweight; correspondingly, a limiting plate is provided on the support plate, and the limiting plate is arranged on the side of the ear plate corresponding to the material receiving box to prevent the ear plate from tilting excessively towards the material receiving box side under the action of the counterweight and keep the material receiving box in a horizontal state.

[0010] A horizontally arranged adjustment shaft is further provided between the two ear plates. The adjustment shaft is arranged close to the upper end of the material receiving box. A cushion block is provided on the adjustment shaft, and the cushion block rotates around the adjustment shaft. The free end of the cushion block is supported by the front end of the material receiving box. A spacer sleeve is arranged on the adjustment shaft between the cushion block and the ear plate, and both ends of the adjustment shaft are locked with nuts.

[0011] The middle part of the cushion block is provided with a material passing groove, which is arranged in the longitudinal direction, with a length greater than the size of the nozzle of the material gun and a width smaller than the size of the nozzle of the material gun.

[0012] The linear driving device is a cylinder or a telescopic rod driven by a motor.

[0013] The cylinder drives the material receiving box to extend and retract through a support plate. A speed regulating valve is arranged on the cylinder to adjust the movement speed of the cylinder, so that the extension and retraction movement of the material receiving box is stable.

[0014] The front end of the material receiving box shrinks to form a tip, and the bottom surface of the front end is set as an inclined surface, so that the material inside the material receiving box can be poured out along the tip after the material receiving box is flipped.

[0015] The material receiving box is used to collect materials, and the counterweight is used to reset to the horizontal position by gravity after the material receiving box is overturned.

[0016] Compared with the prior art, the advantages of the present invention are as follows:

[0017] The material receiving box can be translated and overturned powerfully, and the received materials can be poured into the packaging container as needed, reducing residues, avoiding waste, and at the same time reducing the volatilized smoke of the materials, protecting the environment; a cushion block is also arranged on the ear plate of the material receiving box, which can effectively prevent the material gun from colliding with the material receiving box, avoiding the materials inside the material receiving box from being taken away by the material gun. At the same time, through the design of the material passing groove, it is ensured that the material gun injects the materials into the material receiving box, and when the material receiving box is flipped and poured, the cushion block rotates around the adjustment shaft with a larger amplitude under the action of gravity, so as to facilitate the pouring of the material receiving box. Description of the Drawings

[0018] Figure 1 It is a schematic structural diagram of the material processing device in the embodiment of the present invention.

[0019] Figure 2 It is a schematic structural diagram of the material receiving box in the embodiment of the present invention.

[0020] Wherein:

[0021] 1. Linear driving device; 2. Flipping device; 3. Material receiving box; 4. Counterweight;

[0022] 11. Speed regulating valve; 12. Flange;

[0023] 21. Support plate; 22. Rotating rod; 23. Ear plate; 24. Limiting plate; 25. Knob;

[0024] 31. Adjustment shaft; 32. Cushion block; 33. Sleeve; 34. Nut. Detailed Embodiment

[0025] To make the objectives, technical solutions, and advantages of the embodiments of the present invention clearer, the following will clearly and completely describe the technical solutions in the embodiments of the present invention with reference to the accompanying drawings in the embodiments of the present invention. Apparently, the described embodiments are some, but not all, of the embodiments of the present invention. Components of the embodiments of the present invention usually described and illustrated in the accompanying drawings here can be arranged and designed in various different configurations.

[0026] Embodiment 1

[0027] As Figure 1 shown, this embodiment provides a chemical material collection and processing device, including a linear drive device, a flipping device 2, and a material receiving box 3, where:

[0028] The flipping device 2 includes a support plate 21, a rotating rod 22, and an ear plate 23. The support plate 21 is used to connect to the linear drive device and move linearly under the drive of the linear drive device. The rotating rod 22 is fixedly installed on the support plate 21. As the support plate 21 moves, the upper end of the ear plate 23 is rotatably connected to the rotating rod 22, and the lower end is fixedly connected to the material receiving box 3.

[0029] The linear drive device drives the flipping device 2 to move linearly, and the flipping device 2 can flip to pour out the materials in the material receiving box 3. The material receiving box 3 is used to collect materials. Its working process is: translating and resetting for material receiving - the material receiving box translating to make way - the material receiving box translating to pour materials - the material receiving box translating to make way - the external filling system completing filling - the material receiving box translating to reset for material receiving.

[0030] There are two ear plates 23, which are fixedly connected to both sides of the material receiving box 3, providing support for the material receiving box 3 from both sides and making the structure of the material receiving box more stable.

[0031] A knob 25 is installed at the end of the rotating rod 22 to axially limit the ear plate 23.

[0032] The rear end of the material receiving box 3 is connected to one side of the ear plate 23, and the other side of the ear plate 23 is connected to a counterweight 4. The torque of the counterweight 4 on the ear plate 23 is greater than the torque of the empty material receiving box 3 on the ear plate 23 and less than the torque of the full material receiving box 3 on the ear plate 23, so that the full material receiving box 3 can tilt towards the counterweight side. When it returns to the empty state after pouring, it resets under its own gravity and the action of the counterweight; correspondingly, a limiting plate 24 is provided on the support plate 21, and the limiting plate 24 is arranged on the side of the ear plate 23 corresponding to the material receiving box to prevent the ear plate 23 from tilting excessively towards the material receiving box 3 side under the action of the counterweight and keep the material receiving box 3 in a horizontal state.

[0033] A horizontally arranged adjusting shaft 31 is also provided between two ear plates 23. The adjusting shaft 31 is arranged near the upper end of the material receiving box. A cushion block 32 is provided on the adjusting shaft. The cushion block 32 rotates around the adjusting shaft 31. The free end of the cushion block 32 is supported by the front end of the material receiving box 3. A spacer sleeve 33 is arranged on the adjusting shaft 31 between the cushion block 32 and the ear plate 23. Both ends of the adjusting shaft 31 are locked with nuts 34. The spacer sleeve 33 positions the cushion block 32, making the cushion block 32 centered on the upper part of the material receiving box 3 and preventing the cushion block 32 from axially moving along the adjusting shaft 31. A material passing groove is provided in the middle of the cushion block 32. The material passing groove is arranged in the longitudinal direction, with its length greater than the size of the nozzle of the material gun and its width less than the size of the nozzle of the material gun. When the material gun starts to fill downwards, the cushion block 32 supports the lower part of the nozzle of the material gun, preventing the material gun from hitting the bottom of the material receiving box 3 and effectively reducing the impact and sputtering of the material. When the material receiving box 3 is turned over, the cushion block 32 rotates around the adjusting shaft 31 under the action of gravity, and the rotation amplitude is greater than that of the material receiving box 3, so as to facilitate the dumping of the material in the material receiving box 3.

[0034] The linear driving device is a cylinder 1 or a telescopic rod driven by a motor.

[0035] The cylinder 1 drives the material receiving box 3 to extend and retract through a support plate. A speed regulating valve 11 is arranged on the cylinder 1 to adjust the movement speed of the cylinder and make the extension and retraction movement of the material receiving box 3 stable.

[0036] In the implementation mode using a motor, it can be selected to use the motor to drive a reducer, and then realize it through methods such as gear-rack transmission, slider-link transmission, chain transmission, belt transmission, etc. Such mechanical transmissions all belong to conventional technical means and will not be detailed here one by one.

[0037] The front end of the material receiving box 3 shrinks to form a tip, and the bottom surface of the front end is set as an inclined surface, so that the material inside the material receiving box can be poured out along the tip after the material receiving box is turned over.

[0038] The material receiving box 3 is used to collect materials, and the counterweight is used to reset to the horizontal position by gravity after the material receiving box is overturned.

[0039] Compared with the prior art, the advantages of the present invention are as follows:

[0040] The material receiving box can be translated and overturned dynamically, and the received materials can be poured into the packaging container as needed, reducing residues, avoiding waste, and at the same time reducing the volatilized smoke of the materials and protecting the environment. A cushion block is also arranged on the ear plate of the material receiving box, which can effectively prevent the material gun from colliding with the material receiving box, avoiding the materials inside the material receiving box from being taken away by the material gun. At the same time, through the design of the material passing groove, it is ensured that the material gun injects the materials into the material receiving box, and when the material receiving box is turned over and dumped, the cushion block rotates around the adjusting shaft with a greater amplitude under the action of gravity, thus facilitating the dumping of the material receiving box.

Claims

1. A chemical material collection and processing device, comprising a linear drive device, a flipping device and a material receiving box, characterized in that, Wherein: The flipping device includes a support plate, a rotating rod and an ear plate. The support plate is used to connect with the linear driving device and move linearly under the drive of the linear driving device. The rotating rod is fixedly installed on the support plate. As the support plate moves, the upper end of the ear plate is rotatably connected to the rotating rod, and the lower end is fixedly connected to the material receiving box; A horizontally arranged adjusting shaft is further provided between the two ear plates. The adjusting shaft is arranged close to the upper end of the material receiving box. A cushion block is provided on the adjusting shaft. The cushion block rotates around the adjusting shaft. The free end of the cushion block is supported by the front end of the material receiving box; a material passing groove is provided in the middle of the cushion block. The material passing groove is arranged in the longitudinal direction, its length is greater than the size of the nozzle of the material gun, and its width is less than the size of the nozzle of the material gun. When the material gun starts to fill downwards, the cushion block supports the lower part of the nozzle of the material gun to prevent the material gun from hitting the bottom of the material receiving box; There are two of the ear plates, which are fixedly connected to both sides of the material receiving box; A knob is installed at the end of the rotating rod to axially limit the ear plate; The rear end of the material receiving box is connected to one side of the ear plate, and the other side of the ear plate is connected to a counterweight. The torque of the counterweight on the ear plate is greater than the torque of the empty material receiving box on the ear plate and less than the torque of the full material receiving box on the ear plate, so that the full material receiving box can tilt towards the counterweight side. When it returns to the empty state after the tilting is completed, it resets under its own gravity and the action of the counterweight; correspondingly, a limiting plate is provided on the support plate. The limiting plate is arranged on the side of the ear plate corresponding to the material receiving box to prevent the ear plate from tilting excessively towards the material receiving box side under the action of the counterweight and keep the material receiving box in a horizontal state; A spacer sleeve is arranged on the adjusting shaft between the cushion block and the ear plate, and both ends of the adjusting shaft are locked with nuts; The linear driving device is a cylinder or a telescopic rod driven by a motor; The cylinder drives the material receiving box to extend and retract through the support plate. A speed regulating valve is provided on the cylinder to adjust the movement speed of the cylinder to make the extension and retraction movement of the material receiving box stable; The front end of the material receiving box shrinks to form a tip, and the bottom surface of the front end is set as an inclined surface so that the materials inside the material receiving box pour out along the tip after the material receiving box flips.

Citation Information

Patent Citations

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  • Controllable horizontal-pushing-type material receiving mechanism

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    CN108033064A