Feeding auxiliary device
By designing an automated feeding auxiliary device, and utilizing the cooperation of power components and support plates, the problems of labor-intensive and uneven manual feeding were solved, realizing automated and uniform feeding of insulation boards, and improving production efficiency and stability.
Patent Information
- Application Number
- CN202423241001.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-26
- Publication Date
- 2025-12-09
- Estimated Expiration
- 2034-12-26
AI Technical Summary
The existing insulation board feeding device requires manual operation, which results in high labor costs, low production efficiency, and uneven feeding, affecting subsequent processing.
Design a feeding auxiliary device, including a conveying device and a storage bin. By cooperating with a power component and a support plate, the device can achieve automated and uniform feeding of insulation boards. Through precise control of the adjustment device and the discharge port, it can ensure that one insulation board is discharged each time, reducing manual intervention.
It achieves automated and uniform feeding of insulation boards, reduces manual labor intensity, improves production efficiency and feeding uniformity, and ensures the stability of subsequent processing.
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Figure CN223645852U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of insulation board processing, and specifically relates to a feeding auxiliary device. BACKGROUND
[0002] The insulation board of a new energy automobile is usually installed in the shell of a battery pack and is used to keep the battery pack working in a suitable temperature range, especially in winter or a cold environment. The insulation board reduces the heat loss of the battery pack and ensures that the battery performance is not affected by low temperature. During the production and processing of the insulation board, the insulation board needs to be placed on a conveying device for feeding and then subjected to the next production and processing.
[0003] The existing equipment has the following disadvantages: the existing insulation board feeding device needs to place the insulation boards on the conveying device one by one manually during use, which not only consumes a lot of manpower but also affects the production efficiency of the insulation board. In addition, manual feeding cannot guarantee the uniformity of the placement position of the insulation board, and the insulation board is prone to deviation during conveying, which affects the subsequent processing process.
[0004] Therefore, the present application proposes a feeding auxiliary device to solve the above problems. UTILITY MODEL CONTENTS
[0005] The utility model aims to provide a feeding auxiliary device to solve the problem that the insulation board needs to be placed on the conveying device one by one manually, which not only consumes a lot of manpower but also affects the production efficiency of the insulation board.
[0006] To achieve the above-mentioned purpose, the utility model provides the following technical scheme: a feeding auxiliary device, comprising a conveying device and a storage box for storing insulation boards arranged on one side of the conveying device, further comprising:
[0007] An adjusting device is arranged on the conveying device and connected to the storage box and is used to adjust the installation angle of the insulation board.
[0008] The adjusting device comprises:
[0009] A power component is arranged on the conveying device.
[0010] A support plate is arranged on the power component and located inside the storage box and is used to support the insulation board.
[0011] The power component comprises a second motor arranged on the conveying device, a connecting shaft arranged on the power output end of the second motor, and a fixed plate fixed to the upper end of the connecting shaft and located inside the storage box. The support plate is fixed to the upper end of the fixed plate, and the connecting shaft is arranged in the storage box.
[0012] The material storage box is provided with a discharging port, and the height of the discharging port is the same as the thickness of the thermal insulation plate.
[0013] The conveying device comprises side plates, supporting legs fixed to lower ends of the side plates, a first motor arranged on one side of the side plates, a rotating shaft arranged on a power output end of the first motor, and supporting rollers sleeved on the rotating shaft, and the supporting rollers are arranged at intervals between the side plates.
[0014] The two supporting rollers are connected through a belt, and the supporting rollers are provided with mounting grooves for placing the belt.
[0015] The upper end of the side plate is provided with a blocking frame for blocking the thermal insulation plate.
[0016] Compared with the prior art, the present application has the following advantages:
[0017] The supporting plate and the rotating member are arranged, so that the thermal insulation plates in the material storage box can be uniformly conveyed to the conveying device for feeding work, the lower end of the thermal insulation plate is arranged in a hollow manner on the side connected with the conveying device, the conveying device is in contact with the bottom wall of the thermal insulation plate during the rotation of the thermal insulation plate, the lowermost thermal insulation plate on the upper end of the supporting plate is pulled out under the friction of the power member on the conveying device, when one thermal insulation plate completely falls from the supporting plate, the thermal insulation plates in the material storage box are automatically moved to the next position, and then are connected with the power member on the conveying device, thereby realizing one-by-one and uniform feeding work. BRIEF DESCRIPTION OF DRAWINGS
[0018] Figure 1 It is a main structure schematic view of one embodiment of the present application;
[0019] Figure 2 It is a front view structure schematic view of one embodiment of the present application;
[0020] Figure 3 It is a sectional view structure schematic view of one embodiment of the present application;
[0021] Figure 4 It is a top view structure schematic view of one embodiment of the present application;
[0022] Figure 5 It is a structure schematic view of the inside of the material storage box in one embodiment of the present application;
[0023] Figure 6 It is a structure schematic view of the thermal insulation plate placed in the inside of the material storage box in one embodiment of the present application;
[0024] Figure 7 It is the structural schematic view of the adjusting device and the storage box connection in one embodiment of the utility model.
[0025] Figure 8 It is the structural schematic view of the adjusting device and the conveying device connection in one embodiment of the utility model.
[0026] In the drawing: 1, conveying device; 11, side plate; 12, support leg; 13, first motor; 14, rotating shaft; 15, support roller; 1501, mounting groove; 16, belt; 17, baffle; 2, storage box; 201, discharge port; 3, adjusting device; 31, second motor; 32, connecting shaft; 33, fixed plate; 34, support plate; 4, heat preservation plate. DETAILED DESCRIPTION
[0027] The technical scheme in the embodiments of the utility model will be described clearly and completely below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by the ordinary skill in the art without creative labor belong to the protection scope of the utility model.
[0028] Please refer to Figures 1-8 The utility model provides a kind of technical scheme: a feeding auxiliary device, including conveying device 1 and being arranged in conveying device 1 one side for the storage heat preservation plate 4 of storage box 2, still include:
[0029] Adjusting device 3 is arranged on conveying device 1 and is connected with storage box 2, for adjusting the installation angle of heat preservation plate 4;
[0030] Adjusting device 3 includes:
[0031] Power part is arranged on conveying device 1;
[0032] Support plate 34 is arranged on power part and is located in the inside of storage box 2, for supporting heat preservation plate 4.
[0033] It should be noted that during operation, a forklift is used to lift the insulation board 4 into the storage bin 2, and then the insulation board 4 is evenly stacked on the support plate 34 inside the storage bin 2. When the insulation board 4 needs to be processed, the power mechanism on the conveyor device 1 is activated, driving the conveyor device 1 to move. The rotating component is activated, causing the support plate 34 to rotate, so that the insulation board 4 at the upper end of the support plate 34 is tilted. Then, it is discharged from one side of the storage bin 2 onto the conveyor device 1 for loading. Through the arrangement of the support plate 34 and the rotating component, the insulation board 4 inside the storage bin 2 can be evenly transported onto the conveyor device 1 for loading. In the material feeding process, the lower end of the insulation board 4 is suspended on the side connected to the conveying device 1. This allows the conveying device 1 to contact the bottom wall of the insulation board 4 during its rotation. Under the friction of the power component on the conveying device 1, the bottommost insulation board 4 on the upper end of the support plate 34 is pulled out. When an insulation board 4 completely falls off the support plate 34, the insulation boards 4 inside the storage box 2 automatically move down one position and then connect with the power component on the conveying device 1, thereby achieving a one-by-one and uniform feeding process. By setting up this device, the intensity of manual labor can be reduced, and the uniformity of feeding the insulation board 4 can be improved.
[0034] In one embodiment, the power component includes a second motor 31 mounted on the conveying device 1, a connecting shaft 32 mounted on the power output end of the second motor 31, and a fixing plate 33 fixed to the upper end of the connecting shaft 32 and located inside the storage box 2. A support plate 34 is fixed to the upper end of the fixing plate 33, and the connecting shaft 32 passes through the storage box 2.
[0035] This design is for reference. Figures 4-8 Place the insulation board 4 on the support plate 34 inside the storage box 2. The second motor 31 drives the connecting shaft 32 to rotate, which in turn drives the fixing plate 33 to rotate, which in turn drives the support plate 34 to rotate. The insulation board 4 inside the storage box 2 is tilted. After the installation angle of the insulation board 4 is adjusted, turn off the second motor 31.
[0036] In one embodiment, the storage box 2 has a discharge port 201, the height of which is the same as the thickness of the insulation board 4.
[0037] This design is for reference. Figure 6 ,as well as Figure 7 Because the height of the discharge port 201 is precisely matched with the thickness of the insulation board 4, the amount of material discharged each time can be controlled more precisely when the material flows out of the storage box 2, so that the discharge port 201 outputs one insulation board 4 each time, thereby enabling the insulation board 4 to be continuously and stably output from the discharge port 201, thus realizing the continuous and stable feeding of the insulation board 4 and improving the overall production efficiency.
[0038] In an embodiment, the conveying device 1 comprises side plates 11, supporting legs 12 fixed at the lower ends of the side plates 11, a first motor 13 arranged at one side of the side plates 11, a rotating shaft 14 arranged at the power output end of the first motor 13, and supporting rollers 15 sleeved on the rotating shaft 14, which are arranged at intervals between the side plates 11.
[0039] In this way, referring to Figures 1-5 , and Figure 8 , the side plates 11 serve as the main supporting structure of the conveying device 1, are fixed to the ground through the supporting legs 12, and ensure the stability and reliability of the entire conveying device 1. The supporting rollers 15 are arranged at intervals between the side plates 11, providing continuous support for the conveying belt or the material. The first motor 13 serves as the power source, transmits power to the supporting rollers 15 through the rotating shaft 14, and drives the plurality of supporting rollers 15 to rotate. When the supporting plate 34 drives the heat preservation plate 4 to rotate, the heat preservation plate 4 is extracted from the discharge port 201 and then moved to the supporting rollers 15 for conveying work under the action of friction. The continuous driving of the supporting rollers 15 by the rotating shaft 14 enables the heat preservation plate 4 to maintain a stable speed and direction during conveying, thereby improving the transmission efficiency.
[0040] In an embodiment, the two supporting rollers 15 are connected through a belt 16, and the supporting rollers 15 are provided with mounting grooves 1501 for placing the belt 16.
[0041] In this way, referring to Figure 5 , and Figure 8 , the mounting grooves 1501 can ensure the accurate positioning of the belt 16 on the supporting rollers 15, avoid the belt 16 from deviating or sliding during operation, thereby enhancing the stability of transmission. The belt 16 connects the plurality of supporting rollers 15 and can drive the plurality of supporting rollers 15 to rotate, thereby uniformly conveying the heat preservation plate 4.
[0042] In an embodiment, the upper end of the side plate 11 is provided with a blocking frame 17 for blocking the heat preservation plate 4.
[0043] In this way, referring to Figures 1-5 , and Figure 8 , the blocking frame 17 can effectively block the heat preservation plate 4, prevent it from sliding or deviating out of the conveying track due to vibration, tilting or other external factors during conveying, and ensure the safe and stable operation of the production line.
[0044] In addition, if the description in the embodiments involves "first", "second", etc., the description of "first", "second", etc. is only for the purpose of description, and cannot be understood as indicating or implying the relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features defined as "first", "second" can explicitly or implicitly include at least one of the features.
Claims
1. A loading assisting device, comprising a conveying device (1) and a storage box (2) arranged on one side of the conveying device (1) for storing insulation boards (4), characterized in that, Also include: Adjusting device (3), set on the conveying device (1) and connected with the storage box (2), for adjusting the installation angle of the insulation board (4); The adjusting device (3) comprises: Power element, set on the conveying device (1); Supporting plate (34), set on the power element and located inside the storage box (2), for supporting the insulation board (4).
2. The loading aid of claim 1, wherein: The power element comprises a second motor (31) set on the conveying device (1), a connecting shaft (32) set on the power output end of the second motor (31) and a fixed plate (33) fixed on the upper end of the connecting shaft (32) and located inside the storage box (2), the supporting plate (34) is fixed on the upper end of the fixed plate (33), and the connecting shaft (32) is arranged on the storage box (2).
3. The loading aid of claim 1, wherein: The storage box (2) is provided with a discharge port (201), and the height of the discharge port (201) is the same as the thickness of the insulation board (4).
4. The loading aid of claim 1, wherein: The conveying device (1) comprises a side plate (11), a supporting leg (12) fixed on the lower end of the side plate (11), a first motor (13) arranged on one side of the side plate (11), a rotating shaft (14) arranged on the power output end of the first motor (13), and a supporting roller (15) sleeved on the rotating shaft (14), and the supporting rollers (15) are arranged between the side plates (11) in a spaced manner.
5. The loading aid of claim 4, wherein: Two supporting rollers (15) are connected by a belt (16), and the supporting rollers (15) are provided with mounting grooves (1501) for placing the belt (16).
6. The loading aid of claim 4, wherein: The upper end of the side plate (11) is provided with a blocking frame (17) for blocking the insulation board (4).