Conveying device

The conveying device addresses space and adhesion issues by using a compact C-shaped path with sprockets and scrapers, enhancing efficiency and reducing interference.

JP7836075B2Active Publication Date: 2026-03-26TOA KIKAI IND
View PDF 6 Cites 0 Cited by

Patent Information

Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Filing Date
2022-04-22
Publication Date
2026-03-26

AI Technical Summary

Technical Problem

Conventional conveying devices face issues with large installation space requirements and the adhesion of powders and granules to scrapers, leading to potential interference with sprockets during conveyance.

Method used

A conveying device design featuring a case with forward and return path sections, a pair of sprockets, and an endless chain with scrapers, allowing for compact installation and preventing material adhesion by guiding objects through a C-shaped path that avoids the return section.

Benefits of technology

The design reduces installation space and simplifies the supply and discharge configurations, while lifting and conveying materials efficiently, minimizing material adhesion and interference with sprockets.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure 0007836075000001
    Figure 0007836075000001
  • Figure 0007836075000002
    Figure 0007836075000002
  • Figure 0007836075000003
    Figure 0007836075000003
Patent Text Reader

Abstract

To provide a conveyance device having a compact installation area and having a simple configuration of a supply port.SOLUTION: An outgoing path portion 3 of a conveyance device 100 includes: a first outgoing portion 31 having a supply port 36 located at an upstream end in a conveyance direction, extending in a horizontal direction, and disposed on an upper surface of a case 1; an outgoing path second portion 32 that curves and extends upward as it goes downstream in the conveyance direction; a third outgoing path portion 33 that curves and extends in the horizontal direction as it goes downstream in the conveyance direction; a fourth outgoing portion 34 that is located at a downstream end in the conveyance direction, extends in an opposite direction to the conveyance direction of the first outgoing portion 31, and has a discharge port 37 disposed on a lower surface of the case 1, in which the first outgoing portion 31 to the fourth outgoing portion 34 are arranged in an order from an upstream side to a downstream side in the conveyance direction, and a return portion 4 includes a first return portion 41 located above the fourth outgoing portion 34 and a second return portion 42 located below the first outgoing portion 31.SELECTED DRAWING: Figure 1
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present invention relates to a conveying device.

Background Art

[0002] Conventionally, a conveying device has been known (see, for example, Patent Document 1).

[0003] This conveying device includes a conveying surface that extends linearly in the conveying direction, a chain conveyor that moves an article on the conveying surface, and an opening formed in the conveying surface. Further, a transfer device is disposed above the upstream end of the chain conveyor. This transfer device drops the article to be conveyed from above the upstream end of the chain conveyor and transfers it to the conveying device. The dropped article passes through between the scrapers located in the return path portion and falls, is placed on the upstream end of the conveying surface, and is accommodated in the accommodating portion located in the forward path portion. Thereby, articles such as powders and granules can be appropriately conveyed.

Prior Art Documents

Patent Documents

[0004]

Patent Document 1

Summary of the Invention

Problems to be Solved by the Invention

[0005] However, the conveying device described in Patent Document 1 has a problem that it cannot convey the object to be conveyed while lifting it, and also has a large installation space. Further, since the object to be conveyed dropped from the transfer device passes through between the scrapers located in the return path portion and falls, powders and granules are likely to adhere to the scrapers and the like located in the return path portion, and there is a problem that the adhered powders and granules are likely to be bitten into the sprocket on the upstream side in the conveying direction.

Means for Solving the Problems

[0006] To solve the above problems, a conveying device according to one aspect of the present invention comprises a case having a forward path section extending in the conveying direction and a return path section extending along the forward path section, a pair of sprockets provided on the upstream and downstream sides in the conveying direction, an endless chain wound around the pair of sprockets and circulating within the case, and a plurality of scrapers attached in parallel to the endless chain, wherein the forward path section is located at the upstream end in the conveying direction, extends horizontally, and has a first forward path section having a supply port provided on the upper surface of the case, and extends toward the downstream side in the conveying direction The transporter has a second forward section that curves upward, a third forward section that curves horizontally as it moves downstream in the transport direction, and a fourth forward section located at the downstream end in the transport direction, extending in the opposite direction to the transport direction of the first forward section, and having an outlet provided on the lower surface of the case. The first to fourth forward sections are arranged in order from the upstream side to the downstream side in the transport direction, and the return section has a first return section located above the fourth forward section and a second return section located below the first forward section.

[0007] This configuration allows for a more compact installation area for the conveying device. Furthermore, it simplifies the configuration of the supply port. [Effects of the Invention]

[0008] This invention offers the advantages of reducing the installation area of ​​the conveying device and simplifying the configuration of the supply port. [Brief explanation of the drawing]

[0009] [Figure 1] This figure shows an example of the configuration of the conveying device according to Embodiment 1. [Figure 2] Figure 1 is a cross-sectional view showing an example of the configuration of the downstream turning section of the conveying device. [Figure 3] Figure 1 is a cross-sectional view showing an example of the configuration of the upstream turning section of the conveying device. [Figure 4] Figure 1 is a cross-sectional view showing an example of the configuration of the transport device case. [Figure 5]Figure 1 is a plan view showing an example of the configuration of the discharge port of the conveying device. [Figure 6] This is a plan view showing an example of the configuration of the conveying device according to Embodiment 2. [Figure 7] Figure 6 is a plan view showing an example of the configuration of the gate plate of the conveying device. [Modes for carrying out the invention]

[0010] The embodiments will be described below with reference to the drawings. However, the present invention is not limited to the embodiments described below. Furthermore, throughout the following drawings, the same or corresponding elements are denoted by the same reference numerals, and redundant descriptions thereof are omitted.

[0011] (Embodiment 1) Figure 1 shows an example of the configuration of the transport device 100 according to Embodiment 1.

[0012] The conveying device 100 is a conveying device for conveying materials such as powders and granules. The materials to be conveyed are not particularly limited as long as they can be conveyed using this conveying device 100. Examples of powders and granules include grains such as rice, wheat, and corn, as well as sugar and bone meal, but are not limited to these. For the sake of explanation, in the following, the downstream side in the conveying direction will be referred to as downstream, and the upstream side in the conveying direction will be referred to as upstream.

[0013] Figure 4 is a cross-sectional view showing an example configuration of case 1 of the conveying device 100. As shown in Figures 1 and 4, the conveying device 100 has a case 1. Case 1 has a forward path section 3 extending in a predetermined conveying direction and a return path section 4 extending along the forward path section 3. The downstream ends of the forward path section 3 and the return path section 4 in the conveying direction are connected by a downstream turning section 51, and the upstream ends of the forward path section 3 and the return path section 4 in the conveying direction are connected by an upstream turning section 52. As shown in Figure 4, the forward path section 3 and the return path section 4 are separated by a partition wall 13. In addition to the partition wall 13, case 1 also has a forward path side outer wall 11 that surrounds the forward path section 3 together with the partition wall 13 and defines a roughly elongated rectangular cross-section in the main part of the conveying path, and a return path side outer wall 12 that surrounds the return path section 4 together with the partition wall 13 and defines a roughly elongated rectangular cross-section in the main part of the conveying path. Thus, the forward section 3 and the return section 4 are each formed in a tubular shape. The forward section 3 functions to guide the endless chain 21 (described later) and the object to be conveyed along the forward section 3. The return section 4 functions to guide the endless chain 21 (described later) along the return section 4. Case 1 is provided with a window 55 made of transparent material at any location, allowing the contents of Case 1 to be seen.

[0014] The forward path section 3 forms the transport path for goods and includes a first forward path section 31, a second forward path section 32, a third forward path section 33, and a fourth forward path section 34. The first forward path section 31 to the fourth forward path section 34 are arranged in this order from the upstream side to the downstream side in the transport direction. The first forward path section 31 to the fourth forward path section 34 may be continuous, or other sections may be interposed between them. In this embodiment, an intermediate section 35 extending in the vertical direction is interposed between the second forward path section 32 and the third forward path section 33.

[0015] The first forward passage portion 31 is located at the upstream end of the forward passage section 3 in the transport direction and extends substantially horizontally. The first forward passage portion 31 has a supply port 36 provided on the upper surface (forward passage side outer wall 11) of the case 1. The supply port 36 is an opening for supplying the transported material to the forward passage section 3. In the first forward passage portion 31, the partition wall 13 is located on the bottom side of the forward passage section 3, and the forward passage side outer wall 11 is located on the upper side of the forward passage section 3.

[0016] The forward path second part 32 is a part that curves and extends upward as it goes downstream in the conveyance direction. That is, the forward path second part 32 extends substantially horizontally at the upstream end and extends substantially vertically at the downstream end.

[0017] The forward path third part 33 is a part that curves and extends horizontally as it goes downstream in the conveyance direction. That is, the forward path third part 33 extends substantially vertically at the upstream end and extends substantially horizontally at the downstream end.

[0018] FIG. 5 is a plan view showing a configuration example of the discharge port 37 of the conveyance device 100. The forward path fourth part 34 is located at the downstream end in the conveyance direction of the forward path part 3 and is a part that extends in the direction opposite to the conveyance direction of the forward path first part 31. That is, the forward path fourth part 34 is a part that extends substantially horizontally and extends parallel to the forward path first part 31. The forward path fourth part 34 has a discharge port 37 disposed on the lower surface of the case 1 (the forward path side outer wall 11). The discharge port 37 is an opening for discharging the conveyed object from the forward path part 3, and a scraper dropout prevention member 37a extending in the conveyance direction is provided. Thus, the forward path part 3 extends as a whole so as to draw a C shape in a vertical plane. In the forward path fourth part 34, the positional relationship between the forward path side outer wall 11 and the partition wall 13 is vertically inverted with respect to the forward path first part 31, the partition wall 13 is located on the upper surface side of the forward path part 3, and the forward path side outer wall 11 is located on the bottom surface side of the forward path part 3.

[0019] The return path part 4 extends along the forward path part 3 as described above and extends as a whole so as to draw a C shape in a vertical plane outside the forward path part 3. Thereby, the case 1 can be configured compactly. More specifically, the return path part 4 has a return path first part 41 located above the forward path fourth part 34 and a return path second part 42 located below the forward path first part 31.

[0020] The conveying device 100 has a chain conveyor mechanism for moving the conveyed object in the conveying direction. FIG. 2 is a cross-sectional view showing a configuration example of the downstream turning portion 51 of the conveying device 100. FIG. 3 is a cross-sectional view showing a configuration example of the upstream turning portion 52 of the conveying device 100.

[0021] As shown in FIGS. 2 and 3, the chain conveyor mechanism includes a pair of sprockets 26 and 27 provided on the upstream and downstream sides in the conveying direction, an endless chain 21, a plurality of scrapers 22, and a drive unit 20.

[0022] The downstream sprocket 26 is disposed in the downstream turning portion 51, and the upstream sprocket 27 is disposed in the upstream turning portion 52. The sprockets 26 and 27 are each rotatably supported on a horizontal rotation axis and rotate around the axis of this rotation axis. The downstream sprocket 26 is a driving-side sprocket connected to the drive unit 20 which is an electric motor and is rotationally driven in one direction by the drive unit 20, and the upstream sprocket 27 is a driven-side sprocket. In addition to an electric motor, a known actuator can be used for the drive unit 20.

[0023] On the outer peripheral edges of the sprockets 26 and 27, a plurality of pin fitting portions 28 and a plurality of scraper fitting portions 29 are formed at equal intervals in the circumferential direction. The pin fitting portion 28 is a recess that fits with a pin 24 described later, and an even number of them are provided. The scraper fitting portion 29 is a recess that fits with the scraper 22 described later. The scraper fitting portion 29 is formed every other one of the portions between adjacent pin fitting portions 28. Also, on the portion on the opposite side of the rotation direction of the pin fitting portion 28 located in front of the rotation direction of the scraper fitting portion 29, a protruding portion 25 that protrudes radially outward of the sprockets 26 and 27 is formed. In the present embodiment, 8 pin fitting portions 28 are formed, and 4 scraper fitting portions 29 and protruding portions 25 are formed.

[0024] The endless chain 21 is formed to form an annular shape as a whole, is wound around a pair of sprockets 26 and 27, and circulates within the case 1. The endless chain 21 is, for example, a well-known roller chain and includes a plurality of links 23 arranged in an annular shape and a plurality of pins 24 that pivotably connect adjacent links 23. More specifically, the links 23 include a plurality of outer links and the same number of inner links as the outer links. Each inner link is connected by a bushing that also functions as a spacer, with both ends of the bushing opening on the outer surface of each inner link body. Each outer link includes a pair of outer link bodies. Each outer link body is a plate-like body extending in one direction, with insertion openings formed at both ends for inserting the pins 24. The plurality of inner links are arranged in an annular shape in a row with spacing between them, and the outer links connect adjacent inner links. Specifically, the pin 24 is a rivet and is inserted in the following order: through hole in one outer link body, bushing, and then through hole in the other outer link body. The tip of the pin 24 is flattened, and the outer link and inner link are riveted together. This allows the outer link and inner link to swing around the axis of the pin 24, enabling the endless chain 21 to bend. Note that the endless chain 21 is not limited to the above configuration and may be replaced by, for example, an annular belt.

[0025] Each scraper 22 is a plate-like body attached to an endless chain 21 so as to traverse the forward path section 3 and the return path section 4, and is transported by pushing the object to be transported through the circulating motion of the endless chain 21. Multiple scrapers 22 are attached to the endless chain 21 in parallel at predetermined intervals. Each scraper 22 extends from both sides of the link 23 in a direction intersecting the transport direction, that is, on the cross-section of the forward path section 3 and the return path section 4. More specifically, each scraper 22 is attached to each outer link of the endless chain 21 in a position extending on a plane perpendicular to the extending direction of the endless chain 21. As a result, multiple scrapers 22 are configured to be aligned in the extending direction of the endless chain 21, and the space between adjacent scrapers 22 forms a storage section in which the transported article is contained. The material of the scrapers 22 is, for example, ultra-high molecular weight polyethylene, which has excellent wear resistance and sliding properties.

[0026] [Example of operation] Next, an example of the operation of the conveying device 100 will be described. When conveying an object using the conveying device 100, the object to be conveyed is first fed into the supply port 36. The object fed into the supply port 36 falls into the forward path section 3 and is contained, and rests on the partition wall 13. At this time, since the first forward path section 31 of the conveying device 100 is located above the second return path section 42, the object fed into the supply port 3 is fed directly into the forward path section 3 without passing through the return path section 4, thus simplifying the configuration of the supply port 36.

[0027] Then, when the drive unit 20 rotates the downstream sprocket 26 with its driving force, the pin 24 engages with the pin fitting portion 28, and the protruding portion 25 pushes the pin 24 of the endless chain 21 that is fitted into the pin fitting portion 28, causing it to rotate along the outer edge of the downstream sprocket 26. At this time, the upper part of the scraper 22 engages with the scraper fitting portion 29, preventing interference between the scraper 22 and the sprockets 26 and 27. The endless chain 21 located in the forward path 3 is then pulled by the endless chain 21 that engages with the downstream sprocket 26, and moves in the transport direction along the extending direction of the forward path 3. Furthermore, in the upstream turning portion 52, the upstream sprocket 27 rotates in a driven motion, causing the endless chain 21 located in the return path 4 to rotate toward the forward path 3. Then, the endless chain 21 located in the return path section 4 is pulled by the endless chain 21 that engages with the upstream sprocket 27 and moves in the opposite direction to the transport direction along the extending direction of the return path section 4. In this way, the endless chain 21 circulates due to the driving force of the drive unit 20.

[0028] Then, the object to be transported, which is placed on the bulkhead 13 of the forward passage section 3, is pushed by the scraper 22, which circulates together with the endless chain 21, and is transported downstream in the transport direction. The object to be transported is guided by the first forward passage section 31 and transported horizontally. Next, the object to be transported is guided by the second forward passage section 32, and the transport direction is changed from horizontal to upward and lifted. Next, the object to be transported is guided by the third forward passage section 33, and the transport direction is changed again from upward to horizontal. Next, the object to be transported is guided by the fourth forward passage section 34 in the opposite direction to the transport direction of the first forward passage section 31. That is, in a plan view, the object to be transported is guided toward the supply port 36. When the object to be transported reaches the discharge port 37, it is dropped out from the opening of the discharge port 37. In this case, since the fourth forward section 34 of the conveying device 100 is located below the first return section 41, the material to be conveyed does not pass through the return section 4 but is dropped from the forward section 3, thus simplifying the configuration of the discharge port 37. Furthermore, since the fourth forward section 34 extends in the opposite direction to the conveying direction of the first forward section 31, the installation area of ​​the conveying device 100 can be made compact.

[0029] Then, the subsequent processing of the dropped transported object proceeds. At this time, since the transported object is lifted by the transport device 100, gravity can be used to move the transported object in the subsequent process, making it easier to proceed with the subsequent processing.

[0030] As described above, the conveying device 100 comprises a case 1 having a forward path section 3 extending in the conveying direction and a return path section 4 extending along the forward path section 3, a pair of sprockets 26 and 27 provided on the upstream and downstream sides in the conveying direction, an endless chain 21 wound around the pair of sprockets 26 and 27 and circulating within the case 1, and a plurality of scrapers 22 attached in parallel to the endless chain 21. The forward path section 3 is located at the upstream end in the conveying direction, extends horizontally, and has a first forward path section 31 having a supply port 36 provided on the upper surface of the case 1, and as it moves toward the downstream side in the conveying direction The transporter has a forward path second section 32 that curves upward, a forward path third section 33 that curves horizontally as it moves downstream in the transport direction, and a forward path fourth section 34 located at the downstream end in the transport direction, extending in the opposite direction to the transport direction of the forward path first section 31, and having an outlet 37 disposed on the lower surface of the case 1. The forward path first section 31 to the forward path fourth section 34 are arranged in that order from the upstream side to the downstream side in the transport direction, and the return path section 4 has a return path first section 41 located above the forward path fourth section 34, and a return path second section 42 located below the forward path first section 31. This makes it possible to make the installation area of ​​the transporter 100 compact. In addition, the configuration of the supply port 36 can be simplified.

[0031] The first forward section 31 may have multiple supply ports 36. This allows for proper multi-point feeding.

[0032] Outbound journey 4 part 3 4 The device may have multiple discharge ports 37. This allows for proper multi-point discharge.

[0033] The endless chain 21 comprises a plurality of links 23 arranged in a ring and pins 24 that pivotably connect adjacent links 23. The scraper 22 extends from both sides of the links 23 in a direction intersecting the conveying direction. The sprockets 26 and 27 have a plurality of pin fitting portions 28 that engage with the pins 24, formed at equal intervals in the circumferential direction, and may also have a plurality of scraper fitting portions 29 that engage with the scraper 22, formed at equal intervals in the circumferential direction between adjacent pin fitting portions 28. This prevents interference between the scraper 22 and the sprockets 26 and 27.

[0034] The forward passage section 3 has an opening 111 and is slidable between a closed position and an open position. It includes a gate plate 104 having a closed region 141 that closes the opening 111 in the closed position, and an open region 142 where an article drop-off port 143 is formed and located at the opening 111 in the open position. The gate plate 104 may also have a support portion 144 that supports the scraper 22 over the entire area of ​​the open region 142 in the conveying direction. This prevents the scraper 22 from falling into the opening 111 and prevents the conveyed article from remaining between the scraper 22 and the conveying surface.

[0035] (Embodiment 2) Figure 6 is a plan view showing an example of the configuration of the conveying device according to Embodiment 2. Figure 7 is a plan view showing an example of the configuration of the gate plate 104 of the conveying device according to Embodiment 2.

[0036] In the above embodiment 1, the conveyed material is configured to be discharged from the discharge port 37. In this embodiment, the conveyed material can be discharged not only from the discharge port 37 but also from the gate plate 104.

[0037] In this embodiment, an opening 111 is formed on the surface of the outward-side outer wall 11 facing the partition wall 13, i.e., on the bottom surface of the outward-side outer wall 11, in the portion of the fourth outward-path section 34 upstream of the discharge port 37 in the transport direction. The gate plate 104 is disposed in this opening 111. Note that the position of the opening 111 is not limited to the position described above.

[0038] The gate plate 104 is a plate-like body with a closed region 141 and an open region 142 on its upper surface. The gate plate 104 is supported by a slider (not shown) that allows it to slide between a closed position and an open position. The closed region 141 is located at the opening 111 in the closed position and closes the opening 111. The open region 142 is located at the opening 111 in the open position and opens the opening 111. The closed region 141 and the open region 142 are regions of the same shape as the opening 111 and are located side by side in a direction that crosses the forward path 3. Therefore, the opening 111 can be opened and closed by sliding the gate plate 104 in the direction in which the closed region 141 and the open region 142 are aligned. Thus, the conveying device according to this embodiment has two discharge paths, the discharge port 37 and the opening 111, and the discharge path can be switched by switching the open / closed state of the opening 111.

[0039] The open area 142 of the gate plate 104 has a drop port 143 and a support section 144. The support section 144 is arranged to support the scraper 22 over the entire area in the transport direction. That is, the support section 144 has, for example, a pair of side edge support sections 144a, a central support section 144b, and a pair of oblique support sections 144c. The pair of side edge support sections 144a each extend from the upstream end of each side edge of the open area 142 toward the downstream side in the transport direction along the side edge of the open area 142, and extend to the midpoint between the upstream and downstream ends of the open area 142. The central support section 144b extends from the upstream end of the central part in the direction traversing the forward path 3 of the open area 142 toward the downstream side in the transport direction, and extends to a position slightly upstream of the downstream end of the side edge support section 144a. The pair of oblique support sections 144c extend from the downstream end of the central support section 144b toward the downstream ends of each side edge of the open area 142, traversing the forward path section 3. The drop port 143 is opened in the remaining portion of the open area 142 where the support section 144 is formed.

[0040] As a result, when the scraper 22 sliding on the open area 142 is located in the transport direction from the upstream end of the open area 142 to the downstream end of the central support 144b, it is supported by the side edge support 144a and the central support 144b, preventing it from falling into the drop port 143. Furthermore, when the scraper 22 is located in the transport direction from the downstream end of the central support 144b to the downstream end of the side edge support 144a, it is supported by the side edge support 144a and the oblique support 144c, preventing it from falling into the drop port 143. Moreover, when the scraper 22 is located in the transport direction from the downstream end of the side edge support 144a to the downstream end of the open area 142, it is supported by the oblique support 144c, preventing it from falling into the drop port 143. Thus, the support portion 144 of the scraper 22 that slides over the open region 142 is configured to support the scraper 22 over the entire area of ​​the open region 142 in the transport direction. Note that the configuration of the support portion 144 is illustrative and not limited to the above-described form.

[0041] Furthermore, the drop port 143 is open over the entire area in the direction that crosses the forward path 3 of the open region 142 (the direction perpendicular to the transport direction). That is, in the area where the side edge support portion 144a is formed in the direction that crosses the forward path 3, the drop port 143 is open downstream of the downstream end of the side edge support portion 144a. Also, in the area where the central support portion 144b is formed in the direction that crosses the forward path 3, the drop port 143 is open downstream of the upstream end of the oblique support portion 144c. In other areas in the direction that crosses the forward path 3, the drop port 143 is open downstream of the upstream end of the open region 142. Therefore, the scraper 22 moving on the open region 142 passes over the drop port 143 at all points in the direction that crosses the forward path 3. Therefore, almost all items contained in the space between adjacent scrapers 22 are dropped into the drop port 143 by passing over the open area 142.

[0042] (Embodiment 3) In Embodiment 1, the conveying device 100 has one supply port 36. However, it is not limited to this, and the conveying device may be configured to have multiple supply ports 36 arranged in the direction of conveying. This allows for proper multi-point feeding.

[0043] (Embodiment 4) In Embodiment 2, the conveying device has one opening 111. However, it is not limited to this, and the conveying device may be configured to have multiple openings 111 arranged in the conveying direction. This allows for more appropriate multi-point discharge.

[0044] From the above description, many improvements and other embodiments of the present invention will be apparent to those skilled in the art. Therefore, the above description should be interpreted as illustrative only and is provided for the purpose of teaching those skilled in the art the best mode of carrying out the invention. The details of its structure and / or function can be substantially modified without departing from the spirit of the invention. [Explanation of symbols]

[0045] 1 case 3. Outbound journey 4. Return journey 21 Endless chain 22 Scrapers 23 links 24 pins 26 Downstream sprocket 27 Upstream sprocket 31 Outbound journey, part 1 32 Outbound journey, part 2 33 Outbound journey, part 3 34 Outbound journey, part 4 36 supply ports 37 Outlet 41 Return trip 1st part 42 Return trip 2nd part 100 Conveying device

Claims

1. A case having a forward path section extending in the transport direction and a return path section extending along the forward path section, A pair of sprockets provided on the upstream and downstream sides in the conveying direction, An endless chain that is wound around the pair of sprockets and circulates within the case, The endless chain comprises a plurality of scrapers attached in parallel to the endless chain, The forward passage section comprises: a first forward passage portion located at the upstream end in the conveying direction, extending horizontally and having a supply port provided on the upper surface of the case; a second forward passage portion that curves upward as it proceeds downstream in the conveying direction; a third forward passage portion that curves horizontally as it proceeds downstream in the conveying direction; and a fourth forward passage portion located at the downstream end in the conveying direction, extending in the direction opposite to the conveying direction of the first forward passage portion, and having a discharge port provided on the lower surface of the case. The forward passage portions 1 through 4 are arranged in order from the upstream side to the downstream side in the conveying direction. The return section comprises a first return section located above the fourth forward section and a second return section located below the first forward section. The endless chain comprises a plurality of links arranged in a ring and pins that swingably connect adjacent links. The scraper extends from both sides of the link in a direction intersecting the conveying direction, A conveying device wherein the sprocket has a plurality of pin fitting portions formed at equal intervals in the circumferential direction for fitting with the pin, and a plurality of scraper fitting portions formed at equal intervals in the circumferential direction between adjacent pin fitting portions for fitting with the scraper.

2. The transport device according to claim 1, wherein the forward first portion has a plurality of supply ports.

3. The transport device according to claim 1, wherein the fourth forward passage portion has a plurality of discharge ports.

4. The forward section has an opening, The gate plate is slidable between a closed position and an open position, and comprises a closed region that closes the opening in the closed position, and an open region that is located at the opening in the open position, where an article drop-off port is formed. The conveying device according to claim 1, wherein the gate plate has a support portion that supports the scraper over the entire area of ​​the open region in the conveying direction.

Citation Information

Patent Citations

  • Ultrahigh-distance negative-pressure efficient material conveying system

    CN113493088A

  • Flash recovery scraper

    CN202481674U

  • Charging device and discharging device for grain in grain drier

    JP1992106389A

  • Intermediate discharging port structure of pipe conveyor

    JP1999208852A

  • Transfer device

    JP2013237559A