Finished product transfer device for material packaging
By using laser ranging sensors and hair dryers to detect empty boxes, combined with push modules and vibration motors, the empty boxes in the finished product transfer device for material packaging can be quickly removed, solving the problem of frequent position transfers affecting efficiency and improving overall transfer efficiency.
Patent Information
- Application Number
- CN202422823017.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-19
- Publication Date
- 2025-09-09
- Estimated Expiration
- 2034-11-19
AI Technical Summary
Existing finished product transfer devices for material packaging need to be frequently relocated when handling empty boxes, which affects transfer efficiency.
A finished product transfer device for material packaging was designed. It used a laser ranging sensor, a blower and a push module to detect whether the packaging box was empty and automatically removed the empty box from the conveyor. The vibration motor and guide module were used to guide the empty box to the blanking chute for rapid removal.
It improves the overall efficiency of material packaging box transfer, reduces the frequency of location transfer, and improves the convenience and efficiency of handling empty boxes.
Smart Images

Figure CN223315847U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of material packaging, and in particular relates to a finished product transfer device for material packaging. Background Art
[0002] During the packaging and processing of materials, a transfer device is required to transfer the packaged finished products. Modern finished product packaging mostly uses mechanized means, which inevitably leads to empty boxes. Traditional transmission belts only have a conveying function and cannot effectively remove empty boxes.
[0003] The existing finished product transfer device for material packaging can not only meet the basic needs of transferring packaged material products, but also can effectively reject empty boxes. However, during use, it is usually necessary to transfer the packaging box from the conveying device to the weighing structure for weighing. If the packaging box is found to be empty, the empty box can be rejected by using the rejection structure. If the packaging box is found to be not empty, it is necessary to transfer the packaging box from the weighing structure to the conveying device for transportation again. Since the packaging box needs to be frequently transferred between the conveying device and the weighing structure, it is not only very troublesome, but also affects the overall efficiency of the packaging box transfer processing. Utility Model Content
[0004] In view of this, the present invention aims to address the shortcomings of the existing technology and provide a finished product transfer device for material packaging, which not only meets the basic needs of transferring packaged material products, but also can quickly and conveniently remove empty boxes from the transfer device, thereby improving the overall efficiency of transferring and processing finished product packaging boxes.
[0005] The lifting mechanism comprises a lifting mechanism, a lifting mechanism, a lifting mechanism, a lifting mechanism on the lifting mechanism, and a lifting mechanism of the lifting mechanism being lifted up and down. The lifting mechanism comprises a lifting mechanism, a lifting mechanism on the lifting mechanism and a lifting mechanism of the lifting mechanism. The lifting mechanism comprises a lifting mechanism, a lifting mechanism, a lifting mechanism of the lifting mechanism and a lifting mechanism of the lifting mechanism. The lifting mechanism comprises a lifting mechanism, a lifting mechanism, a lifting mechanism, a lifting mechanism, a lifting mechanism, a lifting mechanism, a lifting mechanism, a lifting mechanism, a lifting mechanism, a lifting mechanism
[0006] As a further improvement of the present invention, the guide module includes a first telescopic push rod vertically arranged on the top of the mounting frame, and the lower end of the output shaft of the first telescopic push rod is provided with a U-shaped guide groove with an opening facing downward and capable of covering the outer side of the upper end of the packaging box.
[0007] As a further improvement of the present invention, the pushing module includes a second telescopic push rod laterally arranged on the vertical portion of the mounting frame, and a pushing plate is provided on the output shaft of the second telescopic push rod.
[0008] As a further improvement of the present invention, a first guide insert is vertically provided on the mounting frame, and a first guide insert rod is provided on the top of the guide groove and is plug-connected to the first guide insert.
[0009] As a further improvement of the present invention, a second guide insert is provided transversely through the vertical portion of the mounting frame, and a second guide insert rod is provided on the push plate to be plug-connected with the second guide insert.
[0010] As a further improvement of the present invention, a third guide insert is vertically provided on the top of the fixed plate, and a third guide insert rod plug-connected to the second guide insert is provided at the bottom of the blanking chute.
[0011] As a further improvement of the present invention, a first reinforcing rod is provided between the fixing plate and the ground, and a second reinforcing rod is further provided between the top of the mounting frame and the top of the rack.
[0012] As a further improvement of the present invention, the conveying device is a roller conveyor or a belt conveyor.
[0013] Compared with the prior art, the beneficial effects of the present invention are as follows:
[0014] First, the user can place multiple packaging boxes at equal intervals on a conveying device running at a uniform speed for transportation. When a packaging box is transported to the bottom of the mounting rack, the guide module will quickly limit the packaging box, causing it to pause and run with the conveying device, and then the packaging box will be blown by the blowing device. If the laser ranging sensor detects that the packaging box has moved away from the vertical part of the mounting rack under the blowing of the blowing device, it means that the packaging box is empty. Then the empty packaging box will be pushed from the conveying device to the blanking chute through the pushing module. If the laser ranging sensor detects that the distance of the packaging box relative to the vertical part of the mounting rack has not changed under the blowing of the blowing device, it means that the packaging box is not empty, and the pushing module will not be started. Then the guide module will be reset, and the conveying device will continue to transport the non-empty packaging box.
[0015] Secondly, through the first telescopic push rod and the guide groove, the packaging box to be detected whether it is empty or not can be limited, so that the packaging box can be parked below the horizontal part of the mounting frame while the conveying device continues to operate until the detection of whether it is empty or not is completed; the empty packaging box can also be guided in the process of moving under the blowing action of the blowing device to avoid its deviation along the running direction of the conveying device, and the pushing module can be guided in the transfer process of pushing the empty packaging box to the blanking chute to avoid deviation during the transfer process.
[0016] Third, by vertically plugging in the first guide rod and the first guide cylinder, the first telescopic push rod can be prevented from being deformed and damaged by non-vertical forces; by horizontally plugging in the second guide cylinder and the second guide rod, the second telescopic push rod can be prevented from being deformed and damaged by non-lateral forces; by vertically plugging in the third guide cylinder and the third guide rod, multiple springs can be prevented from being deformed and damaged by non-vertical forces.
[0017] Fourthly, the first reinforcing rod can enhance the connection firmness between the fixing plate and the frame, and the second reinforcing rod can enhance the connection firmness between the mounting frame and the frame. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] The present invention will be further described in detail below with reference to the accompanying drawings and specific implementation methods.
[0019] Figure 1 It is a structural diagram of the utility model;
[0020] Figure 2 This is a schematic structural diagram of the frame, mounting frame and second reinforcing rod of the present invention;
[0021] Figure 3 This is a structural diagram of the hair dryer, laser distance sensor, guide module, push module, first guide plug, first guide plug rod, second guide plug and second guide plug rod of the utility model;
[0022] Figure 4 It is a structural schematic diagram of the fixed plate, spring, blanking chute, vibration motor, feed port, discharge port, third guide insert cylinder, third guide insert rod and first reinforcing rod of the utility model.
[0023] In the figure: 101, frame; 102, conveying device; 103, mounting frame; 104, fixing plate; 105, spring; 106, blanking chute; 107, vibration motor; 108, feed port; 109, discharge port; 110, blower; 111, laser ranging sensor; 201, first telescopic push rod; 202, guide groove; 301, second telescopic push rod; 302, push plate; 401, first guide plug; 402, first guide plug; 403, second guide plug; 404, second guide plug; 405, third guide plug; 406, third guide plug; 407, first reinforcing rod; 408, second reinforcing rod. DETAILED DESCRIPTION
[0024] To better understand the present invention, the following examples further illustrate the present invention. However, the present invention is not limited to the following examples. In the following description, numerous specific details are provided to provide a more thorough understanding of the present invention. However, it is obvious to those skilled in the art that the present invention can be practiced without one or more of these details.
[0025] like Figure 1 、 2 As shown in FIG3 , a finished product transfer device for material packaging includes a frame 101, a conveying device 102 for conveying packaging boxes is provided on the frame 101, an L-shaped mounting frame 103 with an open left end is further provided at the top side end of the frame 101, a fixed plate 104 is tiltedly provided at the left end of the frame 101, a plurality of springs 105 are provided on the fixed plate 104, a U-shaped blanking chute 106 adapted to the conveying device 102 is provided on the top of the plurality of springs 105, a plurality of vibration motors 107 are further provided at the side end of the blanking chute 106, and the blanking chute 106 is close to the frame 101. A feed port 108 is provided at one end, and a discharge port 109 is provided at the end of the blanking chute 106 away from the frame 101. A blower 110 is provided on the vertical portion of the mounting frame 103 for blowing empty packaging boxes to move them along the conveyor 102. A laser ranging sensor 111 adapted for the packaging boxes is also provided on the vertical portion of the mounting frame 103. A guide module is provided on the top of the mounting frame 103 for guiding the movement of the empty packaging boxes. A push module is also provided on the vertical portion of the mounting frame 103 for transferring the empty packaging boxes from the conveyor 102 to the blanking chute 106. The laser ranging sensor 111 is a Keyence LR-X series laser sensor.
[0026] like Figure 1 As shown, the conveying device 102 is a belt conveyor. In another embodiment, the conveying device 102 is a roller conveyor, which will not be described in detail here.
[0027] like Figure 1 、 3 As shown, the guide module includes a first telescopic push rod 201 vertically arranged on the top of the mounting frame 103, and the lower end of the output shaft of the first telescopic push rod 201 is provided with a U-shaped guide groove 202 with an opening facing downward and capable of covering the outer side of the upper end of the packaging box.
[0028] like Figure 1 、 3 As shown, the pushing module includes a second telescopic push rod 301 arranged horizontally on the vertical portion of the mounting frame 103 , and a pushing plate 302 is arranged on the output shaft of the second telescopic push rod 301 .
[0029] The user can place multiple packaging boxes at equal intervals on the uniformly running conveying device 102 for conveying. When a packaging box is conveyed to the bottom of the mounting frame 103, the output shaft of the first telescopic push rod 201 can be extended downward by a certain length, so that the guide groove 202 is sleeved on the outer side of the upper end of the packaging box, thereby quickly limiting the packaging box and making it pause as the conveying device 102 runs. Then, the blowing device can be started to blow the packaging box. If the laser ranging sensor 111 detects that the packaging box is moving relative to the mounting frame 103 under the blowing of the blowing device, the packaging box will be moved back to the mounting frame 103. 3. If the distance between the vertical parts is far away, it means that the packaging box is empty. Then the empty packaging box will be pushed from the conveying device 102 to the blanking chute 106 by the pushing module. If the laser ranging sensor 111 detects that the distance between the packaging box and the vertical part of the mounting frame 103 does not change under the blowing of the blowing device, it means that the packaging box is not empty. The pushing module will not be started. Then the output axis of the first telescopic push rod 201 can be shortened by a certain length, so that the guide groove 202 is reset upward. The non-empty packaging box that has completed the detection will continue to be transported on the conveying device 102.
[0030] After the empty packaging box is pushed from the feed port 108 into the blanking chute 106, it will slide down the blanking chute 106; in order to make the empty packaging box slide smoothly on the blanking chute 106, the vibration motor 107 can be started, and the blanking chute 106 can be vibrated with the cooperation of multiple springs 105, so that the blanking chute 106 can slide more smoothly on the blanking chute 106 and leave the discharge port 109.
[0031] Through the first telescopic push rod 201 and the guide groove 202, the packaging box to be checked for being non-empty can be limited, so that the packaging box can be parked below the horizontal part of the mounting frame 103 while the conveying device 102 continues to operate until the non-empty detection is completed; the empty packaging box can also be guided during the movement under the blowing action of the blowing device to avoid it from deviating along the running direction of the conveying device 102, thereby avoiding affecting and guiding the transfer process of the pushing module to push the empty packaging box to the blanking chute 106, avoiding deviation during the transfer process, so that the empty packaging box can be ready to be pushed into the blanking chute 106.
[0032] According to another embodiment of the present invention, Figure 1 、 3 As shown, a first guide insert 401 is vertically provided on the mounting frame 103, and a first guide rod 402 is provided at the top of the guide slot 202, which is plugged into the first guide insert 401. When the output shaft of the first telescopic push rod 201 is adjusted to telescopically adjust the vertical position of the guide slot 202, the vertical plug-in connection between the first guide rod 402 and the first guide insert 401 can prevent the first telescopic push rod 201 from being deformed and damaged by non-vertical forces.
[0033] According to another embodiment of the present invention, Figure 1 、 3 As shown, a second guide insert 403 is provided transversely through the vertical portion of the mounting frame 103, and a second guide rod 404 is provided on the push plate 302 to be plugged into the second guide insert 403. When the output shaft of the first telescopic push rod 201 is telescopically adjusted to thereby adjust the lateral position of the push plate 302, the transverse plug-in engagement between the second guide insert 403 and the second guide rod 404 prevents the second telescopic push rod 301 from being deformed and damaged by non-lateral forces.
[0034] According to another embodiment of the present invention, Figure 4 As shown, a third guide insert 405 is vertically mounted on the top of the fixed plate 104, and a third guide rod 406 is disposed at the bottom of the blanking chute 106, plugged into and connected to the second guide insert 403. When the blanking chute 106 vibrates vertically through the cooperation of the multiple springs 105 and the multiple vibration motors 107, the vertical plug-in cooperation between the third guide insert 405 and the third guide rod 406 prevents the multiple springs 105 from being deformed and damaged by non-vertical forces.
[0035] According to another embodiment of the present invention, Figure 2 、 4As shown, a first reinforcing rod 407 is provided between the fixing plate 104 and the ground, and a second reinforcing rod 408 is welded between the top of the mounting bracket 103 and the top of the rack 101. The first reinforcing rod 407 can enhance the connection between the fixing plate 104 and the rack 101, and the second reinforcing rod 408 can enhance the connection between the mounting bracket 103 and the rack 101.
[0036] 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 scope of protection of the present invention.
Claims
1. A finished product transfer device for material packaging, comprising a frame (101), a conveying device (102) for conveying packaging boxes provided on the frame (101), characterized in that: The top side end of the frame (101) is also provided with an L-shaped mounting frame (103) with an open left end, the left end of the frame (101) is tiltedly provided with a fixing plate (104), a plurality of springs (105) are provided on the fixing plate (104), a U-shaped blanking chute (106) adapted to the conveying device (102) is provided on the top of the plurality of springs (105), a plurality of vibration motors (107) are also provided on the side end of the blanking chute (106), a feeding port (108) is provided at one end of the blanking chute (106) close to the frame (101), and a blanking chute (106) is provided away from the frame One end of the mounting frame (101) is provided with a discharge port (109), the vertical portion of the mounting frame (103) is provided with a blower (110) for blowing the empty packaging box to move on the conveying device (102), the vertical portion of the mounting frame (103) is also provided with a laser distance sensor (111) adapted to the packaging box, the top of the mounting frame (103) is provided with a guide module for guiding the movement process of the empty packaging box, and the vertical portion of the mounting frame (103) is also provided with a push module for transferring the empty packaging box from the conveying device (102) to the blanking chute (106).
2. The finished product transfer device for material packaging according to claim 1, characterized in that: The guide module comprises a first telescopic push rod (201) vertically arranged on the top of the mounting frame (103); the lower end of the output shaft of the first telescopic push rod (201) is provided with a U-shaped guide groove (202) with an opening facing downward and capable of covering the outer side of the upper end of the packaging box.
3. The finished product transfer device for material packaging according to claim 2, characterized in that: The pushing module comprises a second telescopic push rod (301) arranged transversely on the vertical portion of the mounting frame (103), and a pushing plate (302) is arranged on the output shaft of the second telescopic push rod (301).
4. The finished product transfer device for material packaging according to claim 3, characterized in that: A first guide plug-in cylinder (401) is vertically provided on the mounting frame (103), and a first guide plug-in rod (402) plug-connected to the first guide plug-in cylinder (401) is provided on the top of the guide groove (202).
5. The finished product transfer device for material packaging according to claim 4, characterized in that: A second guide plug (403) is provided transversely through the vertical portion of the mounting frame (103), and a second guide plug rod (404) plug-connected to the second guide plug (403) is provided on the push plate (302).
6. The finished product transfer device for material packaging according to claim 5, characterized in that: A third guide insert (405) is vertically provided on the top of the fixed plate (104), and a third guide insert rod (406) plug-connected to the second guide insert (403) is provided on the bottom of the blanking chute (106).
7. The finished product transfer device for material packaging according to claim 6, characterized in that: A first reinforcing rod (407) is provided between the fixing plate (104) and the ground, and a second reinforcing rod (408) is provided between the top of the mounting frame (103) and the top of the machine frame (101).
8. The finished product transfer device for material packaging according to claim 1, characterized in that: The conveying device (102) is a roller conveyor or a belt conveyor.