Material conveying device based on hinge type pushing and subpackaging mechanism
The material is actively pushed through the hinged pushing subcontracting mechanism, which solves the problem of passive adjustment of belt differential speed and material blockage during right-angle turns, and realizes efficient material steering and transmission.
Patent Information
- Application Number
- CN202422666532.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-01
- Publication Date
- 2025-10-10
- Estimated Expiration
- 2034-11-01
AI Technical Summary
In the prior art, when materials are turning at right angles, the belt differential speed at the turning point needs to be passively adjusted, which easily causes material blockage and has low transmission efficiency.
It adopts a hinged pushing subpackaging mechanism, including a subpackaging conveying mechanism, a material feeding component and a hinged push plate. The motor drives the slider to move along the guide rail to achieve active pushing and smooth steering of the material, reducing the contact area between the material to be processed and the subpackaging conveying mechanism.
It realizes the active pushing of materials during turning and changing direction, reduces the frequency of material blockage, and improves the transmission efficiency and stability of equipment operation.
Smart Images

Figure CN223421742U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to material conveying equipment manufacturing technical field, specifically is a kind of material conveying device based on hinge type pushing subpackaging mechanism, which can make material actively and smoothly enter the next conveying process in the process of turning and changing direction. BACKGROUND
[0002] The transfer of materials between two parallel conveyor belts on the market often uses right-angle turning belts or roller auxiliary turning forms. These methods are a passive turning method, so the turning radius needs to be adjusted for different materials during right-angle turning, and material blockage is likely to occur. SUMMARY
[0003] The utility model proposes a material conveying device based on hinge type pushing subpackaging mechanism, which can make material actively and smoothly enter the next conveying process in the process of turning and changing direction.
[0004] The utility model reaches the following measures:
[0005] A material conveying device based on hinge type pushing subpackaging mechanism includes a feeding conveyor line, a discharging conveyor line, and a subpackaging mechanism for transferring materials on the feeding conveyor line into the feeding end of the discharging conveyor line. The material conveying direction of the feeding conveyor line is the same as and parallel to the material conveying direction of the discharging conveyor line. The subpackaging mechanism includes a subpackaging conveying mechanism and a material pushing assembly. The feeding end of the subpackaging conveying mechanism is connected to the discharge port of the feeding conveyor line, and the discharge end of the subpackaging conveying mechanism is connected to the feeding port of the discharging conveyor line. The width of the subpackaging conveying mechanism is not less than the sum of the widths of the feeding conveyor line and the discharging conveyor line. The material pushing assembly is arranged above the subpackaging conveying mechanism along the width direction of the subpackaging conveying mechanism. The material pushing assembly includes a guide rail arranged in the width direction of the subpackaging conveying mechanism, a slider matched with the guide rail, a driving component, and a material pushing plate. The material pushing plate is fixed to the slider, and the driving component drives the slider to move linearly along the guide rail.
[0006] In the utility model, the material pushing plate is composed of a pushing plate body and a pushing plate support. The upper end of the pushing plate support is connected to the slider, and the pushing plate body is hingedly connected to the lower end of the pushing plate support. When the material pushing plate returns and encounters materials, the hinge bends the material pushing plate to smoothly bypass the materials above.
[0007] The subpackaging conveying mechanism uses a roller type conveying mechanism, and the material conveying direction is the same as the conveying directions of the feeding conveyor line and the discharging conveyor line. Through the roller type conveying mechanism, the contact area between the materials to be processed and the subpackaging conveying mechanism can be significantly reduced, thereby reducing the obstacles during subpackaging and improving the subpackaging efficiency.
[0008] The unloading conveyor line of the utility model is arranged below the sub-packaging conveying mechanism, so that the material delivered to the right position by the material delivery component is pushed down to the unloading conveyor line under the push of the sub-packaging conveying mechanism.
[0009] When the utility model is working, after the material reaches the sub-packaging conveying mechanism through the loading conveyor line, the material conveying assembly mounted on the sub-packaging conveying mechanism starts to work. The material conveying assembly is provided with a motor, a reducer, a guide rail, a slider, and a hinged material dividing push plate. Driven by the motor, the hinged material dividing push plate is driven to move along the width direction of the sub-packaging conveying mechanism to push the material to the front of the unloading conveyor line. Since the mechanism can discharge a maximum of one bag at a time, the unloading conveyor line can be started and stopped at any time by controlling the unloading conveyor line. When one bag of material is discharged, the unloading conveyor line is paused, and the second bag of material stops on the unloading conveyor line. When the two bags of material are all transported, the next two bags of material enter the sub-packaging conveyor line to continue material distribution.
[0010] Compared with the existing technology, the utility model can realize active turning and pushing of materials. Through the repeated movement of the pushing plate, the materials can be continuously and orderly fed into the unloading conveyor line, and the passive turning form is converted into an active turning form, thereby reducing the frequency of material blockage of the equipment. Description of the drawings:
[0011] Attachment Figure 1 It is a structural diagram of the present utility model.
[0012] Attachment Figure 2 It is a structural schematic diagram of an implementation method of the utility model.
[0013] Attachment Figure 3 It is a structural diagram of the hinged push plate in the utility model.
[0014] Figure numerals: loading conveyor line 1, subpackage conveying mechanism 2, unloading conveyor line 3, material push plate 4, material feeding assembly 5, material 6, guide rail 7, hinge 8, push plate bracket 9, push plate body 10. Specific implementation method:
[0015] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0016] As attached Figure 1As shown, the utility model proposes a material conveying device based on a hinged push subcontracting mechanism, comprising a loading conveyor line 1, a unloading conveyor line 3, and a subcontracting mechanism for transferring the material on the loading conveyor line 1 to the feeding end of the unloading conveyor line 3. The material conveying direction of the loading conveyor line 1 is in the same direction and parallel to the material conveying direction of the unloading conveyor line 3. The subcontracting mechanism comprises a subcontracting conveying mechanism 2 and a material feeding assembly 5. The feeding end of the subcontracting conveying mechanism 2 is connected to the discharge port of the loading conveyor line 1. The discharge end is connected to the feed port of the unloading conveyor line 3. The width of the subpackage conveying mechanism 2 is not less than the sum of the width of the loading conveyor line 1 and the width of the unloading conveyor line 3. The material conveying component 5 is erected above the subpackage conveying mechanism 2 along the width direction of the subpackage conveying mechanism 2. The material conveying component 5 includes a guide rail 7 erected in the width direction of the subpackage conveying mechanism 2, a slider, a driving component, and a material push plate 4 cooperating with the guide rail 7, wherein the material push plate 4 is fixed to the slider, and the driving component drives the slider to make a linear reciprocating motion along the guide rail 7.
[0017] In the present invention, the material push plate 4 is composed of a push plate body 10 and a push plate bracket 9. The upper end of the push plate bracket is connected to the slider, and the push plate body 10 is hinged to the lower end of the push plate bracket 9 through a hinge 8. When the material push plate encounters the material during the return stroke, the hinge drives the material push plate to bend to smoothly bypass the top of the material.
[0018] The subpackage conveying mechanism 2 of the present invention adopts a roller conveying mechanism. The material conveying direction is the same as the conveying direction of the loading conveyor line 1 and the unloading conveyor line 3. Through the roller conveying mechanism, the contact area between the material to be processed and the subpackage conveying mechanism can be significantly reduced, thereby reducing obstacles during subpackage delivery and improving subpackage efficiency.
[0019] The unloading conveyor line 3 of the present invention is arranged below the sub-package conveying mechanism, so that the material delivered to the position by the material delivery assembly is pushed down to the unloading conveyor line under the push of the sub-package conveying mechanism.
[0020] Example:
[0021] As attached Figure 2 As shown, this example provides a material conveying device based on a hinged push subcontracting mechanism. In this example, two sets of the above-mentioned loading conveyor lines 1 and unloading conveyor lines 3 are provided. The two sets of conveyor mechanisms share the same set of the above-mentioned subcontracting mechanism. The width of the subcontracting mechanism must not be less than the maximum width of the two sets of loading conveyor lines 1 and the two sets of unloading conveyor lines 3.
[0022] When the utility model is working, after the material reaches the sub-packaging conveying mechanism through the loading conveyor line, the material conveying assembly mounted on the sub-packaging conveying mechanism starts to work. The material conveying assembly is provided with a motor, a reducer, a guide rail, a slider, and a hinged material dividing push plate. Driven by the motor, the hinged material dividing push plate is driven to move along the width direction of the sub-packaging conveying mechanism to push the material to the front of the unloading conveyor line. Since the mechanism can discharge a maximum of one bag at a time, the unloading conveyor line can be started and stopped at any time by controlling the unloading conveyor line. When one bag of material is discharged, the unloading conveyor line is paused, and the second bag of material stops on the unloading conveyor line. When the two bags of material are all transported, the next two bags of material enter the sub-packaging conveyor line to continue material distribution.
[0023] Compared with the existing technology, the utility model can transform the original passive turning of materials into active pushing turning, which can effectively reduce the probability and frequency of material blockage at right-angle turns, thereby reducing the overall equipment shutdown time and improving the overall transportation efficiency.
Claims
1. A material conveying device based on a hinged push subcontracting mechanism, comprising a loading conveyor line, a unloading conveyor line, and a subcontracting mechanism for transferring materials on the loading conveyor line to the feeding end of the unloading conveyor line. The material conveying direction of the loading conveyor line is in the same direction and parallel to the material conveying direction of the unloading conveyor line, and is characterized in that: The subcontracting mechanism includes a subcontracting conveying mechanism and a material feeding assembly. The feed end of the subcontracting conveying mechanism is connected to the discharge port of the loading conveyor line, and the discharge end of the subcontracting conveying mechanism is connected to the feed port of the unloading conveyor line. The width of the subcontracting conveying mechanism is not less than the sum of the width of the loading conveyor line and the width of the unloading conveyor line. The material feeding assembly is erected above the subcontracting conveying mechanism along the width direction of the subcontracting conveying mechanism. The material feeding assembly includes a guide rail erected in the width direction of the subcontracting conveying mechanism, a slider, a driving component, and a material push plate cooperating with the guide rail, wherein the material push plate is fixed to the slider, and the driving component drives the slider to perform linear reciprocating motion along the guide rail.
2. The material conveying device based on the hinged pushing and subpackaging mechanism according to claim 1 is characterized in that: The material push plate consists of a push plate body and a push plate bracket. The upper end of the push plate bracket is connected to the slider, and the push plate body is hinged to the lower end of the push plate bracket through a hinge. When the material push plate encounters the material during the return stroke, the hinge drives the material push plate to bend to smoothly bypass the top of the material.
3. The material conveying device based on the hinged pushing and subpackaging mechanism according to claim 1 is characterized in that: The subpackage conveying mechanism adopts a roller conveying mechanism, and the material conveying direction is the same as the conveying direction of the loading conveyor line and the unloading conveyor line. Through the roller conveying mechanism, the contact area between the material to be processed and the subpackage conveying mechanism can be significantly reduced, thereby reducing obstacles during subpackage delivery and improving subpackage efficiency.
4. The material conveying device based on the hinged pushing and subpackaging mechanism according to claim 1 is characterized in that: The unloading conveyor line is arranged below the sub-packaging conveying mechanism, so that the material delivered to the position by the material delivery component is pushed down to the unloading conveyor line under the push of the sub-packaging conveying mechanism.