Embryo body conveying system and guide plectrum thereof
Patent Information
- Authority / Receiving Office
- TW · TW
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2022-03-07
- Publication Date
- 2023-09-16
Smart Images

Figure TWG2TA000924160_001 
Figure TWG2TA000924160_002 
Figure TWG2TA000924160_003
Abstract
Description
[Technical Field]
[0001] The present invention relates to a conveying system; in particular to a conveying system and its guide plate that is rotated so that the end of a guide plate pushes against a passing blank, causing it to tilt forward and be stacked upright in a stacking area. [Previous Technology]
[0002] With the rapid development of science and technology, various manufacturing equipment are constantly being updated and gradually moving towards mechanical automation in order to save labor and improve production efficiency. However, the existing conveying devices are used to transport the objects to be processed to the corresponding processing equipment for processing. When the objects to be processed are gathered and bagged, a certain number of objects to be processed are picked out and arranged by manpower before being bagged, which is very time-consuming and increases labor costs. [Summary of the Invention]
[0003] In order to solve the above-mentioned technical problems, the present invention provides an embryo transport system and its guide vane. Through the improvement of the present invention, the above-mentioned defects of the prior art can be effectively overcome.
[0004] The present invention proposes a guide paddle, which has a shaft hole through which the shaft of the guide device passes, and the periphery of the shaft hole is straight, while the periphery of the end portion of the guide paddle is arc-shaped.
[0005] The present invention further proposes a preform conveying system, comprising: a first conveying slope mounted on a system base, wherein a plurality of preforms to be processed slide along the first conveying slope; a conveying device mounted on the system base corresponding to the first conveying slope, the conveying device having a conveyor belt for conveying the plurality of preforms to be processed slid along the first conveying slope; a second conveying slope mounted on the system base corresponding to one end of the conveying device opposite to the first conveying slope; and a stacking area mounted on the system base corresponding to one end of the second conveying slope opposite to the conveying device. The preform conveying system has a plurality of guide preform grooves, each guide preform groove being sequentially fed by the first conveying slope. The slope, conveying device, and second conveying slope extend to the stacking area; a guiding device including a plurality of the aforementioned guide vanes is rotatably mounted on the system base below the second conveying slope. The guiding device includes a shaft. The second conveying slope is provided with a plurality of slots on the bottom surface of each guide slot. Each guide vane is provided corresponding to each slot and sleeved on the shaft. The shaft drives the plurality of guide vanes to rotate. When rotating, the two ends of each guide vane pass through the slots and push against the plurality of blanks to be processed passing through the second conveying slope. After being pushed, the plurality of blanks to be processed tilt forward along each guide slot toward the stacking area and are stacked upright in the stacking area.
[0006] Preferably, the embryo conveying system may further include a vibrating platform, which is installed on the system base at one end of the first conveying slope relative to the conveying device, and a plurality of embryos to be processed are displaced to the first conveying slope by vibration of the vibrating platform.
[0007] Preferably, a vibration element can be installed below the vibration platform.
[0008] Preferably, the embryo conveying system may further include a third conveying slope, which is installed on the system base at one end of the vibrating platform relative to the first conveying slope, and a plurality of embryos to be processed slide from the third conveying slope onto the vibrating platform.
[0009] As described above, the blank conveying system and its guide plate provided by the present invention can push the blank to be processed with its end when the guide plate rotates, so that the blank to be processed tilts forward and is stacked upright with the blank to be processed in front in the stacking area, so as to facilitate subsequent packaging operations and achieve the purpose of improving processing efficiency. [Simplified Explanation of the Diagram]
[0010] Figure 1 is a schematic diagram of the guide lever of the present invention.
[0010] Figure 2 is a schematic diagram of the embryo transport system of the present invention.
[0010] Figure 3 is a partial schematic diagram of the embryo transport system of the present invention.
Implementation Method
[0011] In order to enable those skilled in the art to better understand the technical features of the present invention, the present invention will be further described in detail below with reference to the drawings and embodiments.
[0012] Please refer to Figure 1. The present invention proposes a guide plate 11, which has a shaft hole 111 through which the shaft body 121 of the guide device 12 passes. The periphery 112 of the shaft hole is straight, and the corresponding side surface of the shaft body 121 is also a straight plane. That is, the cross-section of the shaft body 121 conforms to the shape of the shaft hole 111 so that it can be inserted and thereby stably drive the guide plate 11 to rotate. The periphery 113 of the end portion of the guide plate 11 is arc-shaped. The periphery of the opposite end portions of the guide plate 11 is arc-shaped, that is, the arc-shaped periphery portions of the two ends correspond to each other, and the shaft body 121 rotates in the arc-shaped forward rotation direction of the guide plate 11, so that the arc-shaped end can contact the blank to be processed, thereby reducing the risk of damage to the blank to be processed by its arc shape.
[0013] Please refer to Figures 2 and 3. In addition to the aforementioned guide paddle 11, this embodiment proposes a blank conveying system 1, which includes a first conveying slope 40, a conveying device 50, a second conveying slope 13, a stacking area 14 and a guiding device 12. The guiding device 12 further includes a plurality of the aforementioned guide paddles 11.
[0014] The first conveying slope 40 is installed on the system base 10, and a plurality of blanks to be processed slide along the first conveying slope 40.
[0015] The conveying device 50 is installed on the system base 10 corresponding to the first conveying slope 40. The conveying device 50 has a conveyor belt that conveys a plurality of blanks to be processed that slide by the first conveying slope 40.
[0016] The second conveying slope 13 is installed on the system base 10 at one end of the conveying device 50 relative to the first conveying slope 40, and the embryo to be processed is conveyed by the conveyor belt and slides along the second conveying slope 13.
[0017] The stacking area 14 is installed on the system base 10 at one end of the second conveying slope 13 relative to the conveying device 50. It is used to stop the blanks to be processed from sliding down the second conveying slope 13. The blanks to be processed that slide to the stacking area 14 will be stacked on each other for subsequent packaging processing.
[0018] The embryo conveying system 1 has a plurality of guide embryo grooves 131, each guide embryo groove 131 extending along the first conveying slope 40, the conveying device 50, and the second conveying slope 13 to the stacking area 14, that is, each guide embryo groove 131 starts from the first conveying slope 40, extends along the conveying device 50 and the second conveying slope 13, and finally ends at the stacking area 14.
[0019] A guiding device 12 comprising a plurality of the aforementioned guide paddles 11 is rotatably mounted on the system base 10 below the second conveying slope 13. The guiding device 12 has a shaft 121. The second conveying slope 13 has a plurality of slots 132 respectively provided on the bottom surface of each guide groove 131. Each guide paddle 11 is provided corresponding to each slot 132 and sleeved on the shaft 121. The shaft 121 drives the plurality of guide paddles 11 to rotate, and the two ends of each guide paddle 11 pass through during rotation. The multiple blanks to be processed are pushed through the slot 132 and pushed against the second conveying slope 13. Since the blanks to be processed originally slid on the second conveying slope 13 in a similar lying position, after the head ends of the multiple blanks to be processed are pushed against the second conveying slope 13 by the arc-shaped end of the guide plate, the tail ends of each blank to be processed are still in contact with the surface of the second conveying slope 13, but the head ends are pushed away from the surface of the second conveying slope 13. Then the blanks to be processed will tilt forward along each guide slot 131 towards the stacking area 14 and be stacked upright in the stacking area 14.
[0020] As shown in Figure 1, the embryo conveying system 1 may further include a vibrating platform 30. The vibrating platform 30 is mounted on the system base 10 at one end of the first conveying slope 40 relative to the conveying device 50. A plurality of embryos to be processed are displaced to the first conveying slope 40 by the vibration of the vibrating platform 30. More specifically, a vibrating element 31 may be provided below the vibrating platform 30. The vibration of the vibrating platform 30 is caused by the transmission of vibration through the vibrating element 31, thereby shaking apart the stacked embryos to be processed and allowing them to enter each guide embryo groove 131 more evenly.
[0021] Furthermore, the embryo transport system 1 may include a third transport slope 20, which is mounted on the system base 10 at one end of the vibration platform 30 relative to the first transport slope 40. A plurality of embryos to be processed after completing the previous processing procedure can slide from the third transport slope 20 onto the vibration platform 30. The subsequent displacement is carried out as described above, and will not be repeated here.
[0022] As described above, the blank conveying system 1 and its guide vane 11 provided by the present invention can push the blank to be processed at the arc end when the guide vane 11 rotates, so that the blank to be processed tilts forward and is stacked upright with the blank to be processed in front of it in the stacking area 14, so as to facilitate subsequent packaging operations and achieve the purpose of improving processing efficiency. However, the above is only an example and should not be limited thereto.
[0023] The above are merely preferred embodiments of the present invention. It should be noted that those skilled in the art can make various improvements and modifications without departing from the principle of the present invention, and these improvements and modifications should also be considered within the scope of protection of the present invention.
Claims
1. A guide paddle having a shaft hole through which a shaft of a guide device passes, wherein the periphery of the shaft hole is straight and the periphery of the end portion of the guide paddle is arc-shaped.
2. An embryo transport system, comprising: A first conveying slope is installed on a system base, and a plurality of embryos to be processed slide along the first conveying slope; A conveying device is installed on the system base in response to the first conveying slope. The conveying device has a conveyor belt that conveys the plurality of blanks to be processed that slide by the first conveying slope. A second conveying slope is installed on the system base at one end of the conveying device relative to the first conveying slope; A stacking area is mounted on the system base corresponding to one end of the second conveying slope opposite the conveying device. The blank conveying system has a plurality of guide slots, each of which extends sequentially from the first conveying slope, the conveying device, and the second conveying slope to the stacking area; and The guiding device, comprising a plurality of guide vanes as described in claim 1, is rotatably mounted on the system base below the second conveying slope. The guiding device includes the shaft. The second conveying slope has a plurality of slots on the bottom surface of each of the guide slots. Each guide vane is disposed corresponding to each slot and sleeved on the shaft. The shaft drives the plurality of guide vanes to rotate. When rotating, the two ends of each guide vane pass through the slot and push against the plurality of blanks to be processed passing through the second conveying slope. After being pushed, the plurality of blanks to be processed tilt forward along each of the guide slots toward the stacking area and are stacked upright in the stacking area.
3. The embryo transport system as claimed in claim 2 further includes a vibrating platform mounted on a system base opposite to one end of the first transport ramp relative to the transport device, wherein the plurality of embryos to be processed are displaced to the first transport ramp by vibration of the vibrating platform.
4. The embryo transport system as described in claim 3, wherein a vibrating element is disposed below the vibrating platform.
5. The preform conveying system as claimed in claim 3, further comprising a third conveying ramp mounted on the system base opposite one end of the vibrating platform to the first conveying ramp, wherein the plurality of preforms to be processed are slid onto the vibrating platform via the third conveying ramp.