T-shaped chain conveyor line
Patent Information
- Application Number
- CN202522027013.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-19
- Publication Date
- 2026-09-22
- Estimated Expiration
- 2035-09-19
AI Technical Summary
[0003]本实用新型的实施方式的目的在于提供一种采用同方向进出的T字形链条输送线,改变现有链条输送线的占地面积都比较大的技术问题
[0069]本实用新型的实施方式同现有技术相比,采用了在T字形链条输送线中设置纵向进料输送链;在纵向进料输送链的一侧连接顶升装置;在顶升装置的一侧连接进料输送链;纵向进料输送链与进料输送链相互垂直设置;在顶升装置的另一侧连接出料输送链;出料输送链与纵向进料输送链相互垂直设置;进料输送链与出料输送链设置在同一直线上;纵向进料输送链与出料输送链使得货物进出方向呈倒T字形输送。采用同方向进出的方式,解决了在现有的瓶装线的链条输送线中,一般都采用一个方向进,一个方向出的设计,占地面积都比较大,在较小的场地上,没有办法进行布置,使得链条输送线的使用产生了局限性的技术问题。
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Figure CN224783152U_ABST
Abstract
Description
Technical Field
[0001] The embodiments of this utility model relate to a conveyor line, and more particularly to a T-shaped chain conveyor line. Background Technology
[0002] In existing bottling line chain conveyor lines, a design with one direction of entry and one direction of exit is generally adopted, which makes the entire chain conveyor line occupy a relatively large area. It is impossible to arrange in a small space, which limits the use of chain conveyor lines. Utility Model Content
[0003] The purpose of this utility model is to provide a T-shaped chain conveyor line that uses a unidirectional inbound and outbound direction, thereby addressing the technical problem that existing chain conveyor lines have a relatively large footprint.
[0004] To achieve the above objectives, an embodiment of this utility model designs a T-shaped chain conveyor line, comprising:
[0005] Longitudinal feed conveyor chain; the longitudinal feed conveyor chain is installed in the T-shaped chain conveyor line;
[0006] A lifting device is connected to one side of the longitudinal feed conveyor chain;
[0007] A feeding conveyor chain is connected to one side of the lifting device; the longitudinal feeding conveyor chain is arranged perpendicular to the feeding conveyor chain.
[0008] A discharge conveyor chain is connected to the other side of the lifting device;
[0009] A feeding machine is installed at the end of the discharge conveyor chain; the feeding machine lifts and feeds the goods.
[0010] The discharge conveyor chain and the longitudinal feed conveyor chain are arranged perpendicular to each other; the feed conveyor chain and the discharge conveyor chain are arranged on the same straight line; the longitudinal feed conveyor chain and the discharge conveyor chain make the goods transported in an inverted T-shape.
[0011] Furthermore, in the T-shaped chain conveyor line described in this utility model, the longitudinal feeding conveyor chain further includes:
[0012] The first frame is arranged on the longitudinal feed conveyor chain;
[0013] A chain structure is provided above the first frame;
[0014] A drive structure is fixed above the first frame; the drive structure drives the chain structure to run on the first frame.
[0015] Furthermore, in the T-shaped chain conveyor line described in this utility model, the longitudinal feeding conveyor chain further includes:
[0016] A first double-row conveyor roller chain is provided above the first frame;
[0017] A second double-row conveyor roller chain is provided above the first frame and on the opposite side of the first double-row conveyor roller chain;
[0018] The first double sprocket is connected to the sprocket below the first double-row conveyor roller chain;
[0019] The second double sprocket is connected to the sprocket below the second double-row conveyor roller chain;
[0020] The first shaft has the first double sprocket and the second double sprocket respectively connected to both ends of the first shaft by a flat key;
[0021] The first bearing housing is located on one side of the first double sprocket and is connected to the first shaft via a bearing.
[0022] The second bearing housing is located on one side of the second double sprocket and is connected to the first shaft via a bearing.
[0023] The first end redirecting sprocket is connected to the first end redirecting sprocket via a bearing above one end of the first frame; the first double-row conveyor roller chain is chain-linked to the first end redirecting sprocket.
[0024] The second end redirecting sprocket is located on the opposite side of the first end redirecting sprocket, above one end of the first frame, and is connected to the second end redirecting sprocket via a bearing; the second double-row conveyor roller chain is chain-linked to the second end redirecting sprocket.
[0025] The third end redirecting sprocket is connected to the other end of the first frame via a bearing; the first double-row conveyor roller chain is chain-linked to the third end redirecting sprocket.
[0026] The fourth end-redirecting sprocket is located on the opposite side of the third end-redirecting sprocket, above one end of the first frame, and connected to the fourth end-redirecting sprocket via a bearing; the second double-row conveyor roller chain is chain-linked to the fourth end-redirecting sprocket.
[0027] The first motor end sprocket is located on one side of the first double sprocket and is connected to the first shaft key.
[0028] The second motor end sprocket is keyed to the drive structure.
[0029] The first tensioning wheel is engaged with the first double-row conveyor roller chain between the first motor end sprocket and the second motor end sprocket.
[0030] The second tensioning wheel is located on the other side of the sprocket at the second motor end and is meshed with the first double-row conveyor roller chain.
[0031] A single-row drive roller chain is movably connected to the sprockets at the first motor end and the second motor end.
[0032] Furthermore, in the T-shaped chain conveyor line described in this utility model, the drive structure further includes:
[0033] A conveyor motor and a reducer are fixed on the first frame, and the conveyor motor and reducer are fixedly connected to the first motor end sprocket of the chain structure; the conveyor motor and reducer generate power and transmit it to the first motor end sprocket of the chain structure.
[0034] The first motor end sprocket drives the second motor end sprocket of the chain structure through the single-row drive roller chain of the chain structure. The single-row drive roller chain of the chain structure rolls on the first motor end sprocket and the second motor end sprocket of the chain structure, so that the second motor end sprocket and the first double sprocket of the chain structure rotate coaxially, thereby driving the first double-row conveyor roller chain of the chain structure to rotate. The first double-row conveyor roller chain of the chain structure first passes through the second tension wheel of the chain structure, then runs along the second end redirecting sprocket and the fourth end redirecting sprocket of the redirecting device, and then runs along the first end redirecting sprocket and the third end redirecting sprocket of the redirecting device, and finally returns to the second tension wheel of the chain structure. Through the connection at the other end of the first shaft, the second double-row conveyor roller chain of the chain structure moves in the same direction and at the same speed as the first double-row conveyor roller chain.
[0035] Furthermore, in the T-shaped chain conveyor line described in this utility model, the lifting device further includes:
[0036] A second frame is provided on one side of the longitudinal feeding conveyor chain, and is mounted on the lifting device; the second frame is provided with the same chain structure and drive structure as the longitudinal feeding conveyor chain.
[0037] A guide device, which is fixed on the second frame;
[0038] A reversing device, wherein the reversing device is mounted on the guiding device;
[0039] A lifting device chain structure is provided above the second frame; above the lifting device chain structure, a chain structure and a drive structure identical to the longitudinal feeding conveyor chain structure are provided.
[0040] The lifting device chain structure is guided by the guiding device; it is redirected by the redirecting device, enabling the lifting device chain structure to undergo multi-stage speed changes and synchronous positioning.
[0041] A pneumatic device is fixed at the bottom of the second frame; the pneumatic device is a lifting airbag; the pneumatic device drives the lifting device chain structure to rise through its telescopic movement, changing the material conveying height; at the same time, through the movement of the chain structure and drive structure of the lifting device chain structure, the material is reversed in a 90° direction and then conveyed.
[0042] Furthermore, in the T-shaped chain conveyor line described in this utility model, the redirection device includes:
[0043] A redirecting sleeve bracket is fixedly connected to both sides of the upper connecting rod of the guide device;
[0044] A number of redirecting sprocket shafts are fixedly connected to the main connecting frame of the machine frame;
[0045] The inner rings of bearings are fixedly connected to each of the aforementioned redirecting sprocket shafts;
[0046] A sprocket redirection sleeve is fixedly connected to the outer ring of the bearing; the bearing is located between the redirection sprocket shaft and the sprocket redirection sleeve; the inner ring of the bearing remains stationary, while the outer ring of the bearing rotates.
[0047] Positioning rings are fixed on several of the redirecting sprocket shafts.
[0048] Furthermore, in the T-shaped chain conveyor line described in this utility model, the guiding device includes:
[0049] A first guide rod, and several first guide rods are fixedly connected to the second frame;
[0050] The second guide rod is fixedly connected to the other side of the side plate and the main connecting plate of the frame.
[0051] The first linear bearing is movably connected to a plurality of the first guide rods respectively;
[0052] The second linear bearing is movably connected to several of the second guide rods;
[0053] A lifting platform is fixedly connected to the main connecting plate of the frame, on the first linear bearing and the second linear bearing;
[0054] The first chain track is fixed above the side plate and the main connecting frame of the second frame;
[0055] The second chain track is fixed above the side plate of the second frame and on one side of the first chain track;
[0056] The chain structure is installed on the main connecting frame of the second frame;
[0057] An upper connecting rod is fixedly connected between the first chain track and the second chain track.
[0058] Furthermore, in the T-shaped chain conveyor line described in this utility model, the feeding conveyor chain has the same mechanism as the longitudinal feeding conveyor chain; the inlet and outlet directions of the feeding conveyor chain and the longitudinal feeding conveyor chain are set at 90°.
[0059] Furthermore, in the T-shaped chain conveyor line described in this utility model, the discharge conveyor chain and the longitudinal feed conveyor chain have the same mechanism; the discharge conveyor chain and the longitudinal feed conveyor chain are arranged in a straight line.
[0060] The feeding machine also includes:
[0061] A frame is provided on the feeder;
[0062] A drive unit is fixed below the frame;
[0063] A lifting device is fixed on one side of the frame. The driving device drives the lifting device to lift and tilt the box to pour out the material in the box.
[0064] Furthermore, in the T-shaped chain conveyor line described in this utility model, a rotating platform device is provided below one side of the discharge conveyor chain;
[0065] The rotating platform device further includes:
[0066] A steering cylinder is movably connected to the bottom of the cylinder body below one side of the discharge conveyor chain;
[0067] A steering frame is movably connected at its bottom to one side of the discharge conveyor chain; the steering frame is movably connected to the steering frame via a piston connecting rod.
[0068] A turntable is fixed above the steering frame; the steering cylinder drives the steering frame and the turntable to rotate 90°.
[0069] Compared with the prior art, the embodiment of this utility model adopts a longitudinal feeding conveyor chain in a T-shaped chain conveyor line; a lifting device is connected to one side of the longitudinal feeding conveyor chain; a feeding conveyor chain is connected to one side of the lifting device; the longitudinal feeding conveyor chain and the feeding conveyor chain are arranged perpendicular to each other; a discharge conveyor chain is connected to the other side of the lifting device; the discharge conveyor chain and the longitudinal feeding conveyor chain are arranged perpendicular to each other; the feeding conveyor chain and the discharge conveyor chain are arranged on the same straight line; the longitudinal feeding conveyor chain and the discharge conveyor chain make the goods transported in an inverted T-shape. By adopting a same-direction inbound and outbound method, this solves the technical problem that existing bottling line chain conveyor lines generally use a design with one direction of inbound and one direction of outbound, which occupies a large area and cannot be arranged in small spaces, thus limiting the use of chain conveyor lines. Attached Figure Description
[0070] Figure 1 This is a top view schematic diagram of the present invention;
[0071] Figure 2 This is a schematic diagram of the longitudinal feeding conveyor chain of this utility model from the main view direction.
[0072] Figure 3 This is a top view of the structure of this utility model;
[0073] Figure 4 This is a schematic diagram of the left-side view of this utility model;
[0074] Figure 5 This is a schematic diagram of the longitudinal feeding conveyor chain structure in the main view direction of this utility model;
[0075] Figure 6 This is a top view of the longitudinal feeding conveyor chain of this utility model.
[0076] Figure 7 This is a schematic diagram of the feeding conveyor chain of this utility model from the main view direction;
[0077] Figure 8 This is a top view of the feeding conveyor chain of this utility model;
[0078] Figure 9This is a schematic diagram of the discharge conveyor chain of this utility model from the main view direction;
[0079] Figure 10 This is a top view of the discharge conveyor chain of this utility model;
[0080] Figure 11 This is a schematic diagram of the lifting device of this utility model from the main view direction;
[0081] Figure 12 This is a top view of the lifting device of this utility model;
[0082] Figure 13 This is a schematic diagram of the lifting device of this utility model from the left view. Detailed Implementation
[0083] To make the objectives, technical solutions, and advantages of this utility model clearer, the various embodiments of this utility model will be described in detail below with reference to the accompanying drawings. However, those skilled in the art will understand that many technical details have been provided in the various embodiments of this utility model to facilitate a better understanding of this application. However, the technical solutions claimed in the claims of this application can be implemented even without these technical details and with various variations and modifications based on the following embodiments.
[0084] The embodiments of this utility model relate to a T-shaped chain conveyor line, such as... Figures 1-13 As shown, it includes:
[0085] Longitudinal feed conveyor chain 100; In this embodiment, a longitudinal feed conveyor chain 100 is provided in the T-shaped chain conveyor line;
[0086] A lifting device 200 is connected to one side of the longitudinal feeding conveyor chain 100; the lifting device 200 is used to change the direction of material movement after lifting; in this embodiment, the material is a material frame containing waste bottles to be recycled.
[0087] A feeding conveyor chain 300 is connected to one side of the lifting device 200; the longitudinal feeding conveyor chain 100 and the feeding conveyor chain 300 are arranged perpendicular to each other;
[0088] A discharge conveyor chain 400 is connected to the other side of the lifting device 200;
[0089] A feeder 500 is installed at the end of the discharge conveyor chain 400; the feeder 500 lifts and feeds the goods; after being lifted, the feeder 500 dumps the material into the subsequent equipment.
[0090] The discharge conveyor chain 400 and the longitudinal feed conveyor chain 100 are arranged perpendicular to each other; the feed conveyor chain 300 and the discharge conveyor chain 400 are arranged on the same straight line; the longitudinal feed conveyor chain 100 and the discharge conveyor chain 400 make the goods transported in an inverted T-shape.
[0091] This embodiment adopts a unidirectional inlet and outlet method, which solves the technical problem that existing chain conveyor lines for bottling generally use a design with one direction inlet and one direction outlet, which occupies a large area and cannot be arranged in a small space, thus limiting the use of chain conveyor lines.
[0092] To achieve the aforementioned technical effects, the 1T-shaped chain conveyor line in this embodiment, such as... Figures 1-12 As shown, the longitudinal feed conveyor chain 100 also includes:
[0093] A first frame 10 is provided on the longitudinal feed conveyor chain 100; the first frame 10 serves as the frame of the longitudinal feed conveyor chain 100.
[0094] A chain structure 20 is installed above the first frame 10;
[0095] A drive structure 20 is fixed above the first frame 10; the drive structure 30 drives the chain structure 20 to run on the first frame 10.
[0096] To achieve the aforementioned technical effects, the 1T-shaped chain conveyor line in this embodiment, such as... Figures 1-13 As shown, the chain structure 20 also includes:
[0097] A first double-row conveyor roller chain 21 is installed above the first frame 10;
[0098] A second double-row conveyor roller chain 22 is provided above the first frame 10 and on one side of the first double-row conveyor roller chain 21; the first double-row conveyor roller chain 21 and the second double-row conveyor roller chain 22 form the structure of the chain structure 20.
[0099] The first double sprocket 23 is connected to the lower sprocket of the first double-row conveyor roller chain 21;
[0100] The second double sprocket 24 is connected to the sprocket below the second double-row conveyor roller chain 22; the first double sprocket 23 and the second double sprocket 24 respectively serve as chain drives.
[0101] The first double sprocket 23 and the second double sprocket 24 are respectively connected to the two ends of the first shaft 25 by a flat key; the first shaft 25 plays the role of transmitting power.
[0102] On one side of the first double sprocket 23, it is connected to the first bearing housing 26 via a bearing on the first shaft 25;
[0103] On one side of the second double sprocket 24, it is connected to the second bearing seat 27 via a bearing on the first shaft 25; the first bearing seat 26 and the second bearing seat 27 are used to support the first shaft 25.
[0104] A first end redirecting sprocket 28 is connected above one end of the first frame 10 via a bearing; a first double-row conveying roller chain 21 is chained to the first end redirecting sprocket 28;
[0105] On the opposite side of the first end redirecting sprocket 28, above one end of the first frame 10, the second end redirecting sprocket 29 is connected by a bearing; the second double-row conveyor roller chain 22 is chained to the second end redirecting sprocket 29.
[0106] A third end redirecting sprocket 31 is connected above the other end of the first frame 10 via a bearing; the first double-row conveyor roller chain 21 is chain-connected to the third end redirecting sprocket 31.
[0107] On the opposite side of the third end redirecting sprocket 31, the fourth end redirecting sprocket 32 is connected above one end of the first frame 10 via a bearing; the second double-row conveying roller chain 29 is chained to the fourth end redirecting sprocket 32; the first end redirecting sprocket 28, the second end redirecting sprocket 29, the third end redirecting sprocket 31 and the fourth end redirecting sprocket 32 enable the first double-row conveying roller chain 21 and the second double-row conveying roller chain 22 to form a closed-loop transmission, thereby driving the material, i.e., the material frame, to move.
[0108] On one side of the first double sprocket 23, the first motor end sprocket 33 is keyed to the first shaft 25;
[0109] The second motor end sprocket 34 is keyed to the drive structure 30; the first motor end sprocket 33 and the second motor end sprocket 34 constitute a transmission that drives the first double-row conveyor roller chain 21 and the second double-row conveyor roller chain 22 to form a closed loop.
[0110] Between the first motor end sprocket 33 and the second motor end sprocket 34, the first tensioning wheel 35 is engaged on the first double-row conveying roller chain 21;
[0111] On the other side of the second motor end sprocket 34, the second tensioning wheel 36 is engaged with the first double-row conveyor roller chain 21; the first tensioning wheel 35 and the second tensioning wheel 36 serve to tension the components.
[0112] A single-row drive roller chain 37 is movably connected to the first motor end sprocket 33 and the second motor end sprocket 35. The single-row drive roller chain 37 forms a chain drive between the first motor end sprocket 33 and the second motor end sprocket 35, thereby transmitting power.
[0113] To achieve the aforementioned technical effects, the 1T-shaped chain conveyor line in this embodiment, such as... Figures 1-13 As shown, the drive structure 30 also includes:
[0114] A conveyor motor and a reducer 38 are fixed on the first frame 10. The conveyor motor and reducer 38 are fixedly connected to the first motor end sprocket 33 of the chain structure 20. The conveyor motor and reducer 38 generate power and transmit it to the first motor end sprocket 33 of the chain structure 20.
[0115] The first motor end sprocket 33 drives the second motor end sprocket 34 of the chain structure 20 to rotate via the single-row drive roller chain 37. The single-row drive roller chain 37 of the chain structure 20 rolls on the first motor end sprocket 33 and the second motor end sprocket 34 of the chain structure 20, causing the second motor end sprocket 33 and the first double sprocket 23 of the chain structure 20 to rotate coaxially, thereby driving the first double-row conveyor roller chain 21 of the chain structure 20 to rotate. The conveyor roller chain 21 first passes through the second tensioner 36 of the chain structure 20, then runs along the second end redirecting sprocket 29 and the fourth end redirecting sprocket 32 of the redirecting device, and then runs along the first end redirecting sprocket 28 and the third end redirecting sprocket 31 of the redirecting device, finally returning to the second tensioner 36 of the chain structure 20; through the connection at the other end of the first shaft 25, the second double-row conveyor roller chain 22 of the chain structure 20 moves in the same direction and at the same speed as the first double-row conveyor roller chain 21.
[0116] To achieve the aforementioned technical effects, the T-shaped chain conveyor line in this embodiment, such as... Figures 1-13 As shown, the lifting device 200 also includes:
[0117] On one side of the longitudinal feeding conveyor chain 100, a second frame 201 is provided on the lifting device 200; the same chain structure 20 and drive structure 30 as the longitudinal feeding conveyor chain 100 are provided on the second frame 201.
[0118] The guide device 210 is fixed on the second frame 201;
[0119] A redirection device 220 is provided on the guide device 210;
[0120] A lifting device chain structure 70 is provided above the second frame 201; above the lifting device chain structure 70, a chain structure 20 and a drive structure 30 identical to the longitudinal feeding conveyor chain 100 are provided.
[0121] The lifting device chain structure 70 is guided by the guiding device 210; it is redirected by the redirecting device 220, enabling the lifting device chain structure 70 to change speed in multiple stages and be positioned synchronously.
[0122] Pneumatic device 230 is fixed at the bottom of the second frame 201; pneumatic device 230 is a lifting airbag; pneumatic device 230 drives the lifting device chain structure 70 to rise through telescopic movement, changing the material conveying height; at the same time, through the movement of the chain structure 20 and drive structure 30 of the lifting device chain structure 70, the material is conveyed after changing direction in the 90° direction.
[0123] To achieve the aforementioned technical effects, the 1T-shaped chain conveyor line in this embodiment, such as... Figures 1-13 As shown, the reversing device 220 includes:
[0124] The redirecting sleeve bracket 221 is fixedly connected to both sides of the upper connecting rod of the guide device 210;
[0125] Several redirecting sprocket shafts 222 are fixedly connected to the main connecting frame of the second frame 201;
[0126] The inner rings of bearings 223 are fixedly connected to several redirecting sprocket shafts 222 respectively;
[0127] A sprocket redirection sleeve 224 is fixedly connected to the outer ring of the third bearing 223; the bearing 223 is located between the redirection sprocket shaft 222 and the sprocket redirection sleeve 224; the inner ring of the bearing 223 remains stationary, while the outer ring of the bearing 223 rotates.
[0128] Several positioning rings 225 are fixed on several redirecting sprocket shafts 222.
[0129] To achieve the aforementioned technical effects, the 1T-shaped chain conveyor line in this embodiment, such as... Figures 1-13 As shown, the guide device 210 includes:
[0130] Several first guide rods 211 are fixedly connected to the second frame 201;
[0131] Several second guide rods 212 are fixedly connected to the side plate of the second frame 201 and the other side of the main connecting plate;
[0132] A first linear bearing 213 is movably connected to a number of first guide rods 211;
[0133] A second linear bearing 214 is movably connected to a number of second guide rods 212;
[0134] A lifting platform 215 is fixedly connected above the main connecting plate of the second frame 201, on the first linear bearing 213 and the second linear bearing 214;
[0135] The first chain track 216 is fixed above the side plate and the main connecting frame of the second frame 201;
[0136] A second chain track 217 is fixed above the side plate of the second frame 201 and on one side of the first chain track 216;
[0137] A chain structure 20 is installed on the main connecting frame of the second frame 201;
[0138] Several upper connecting rods 219 are fixedly connected between the first chain track 216 and the second chain track 217.
[0139] To achieve the aforementioned technical effects, the 1T-shaped chain conveyor line in this embodiment, such as... Figures 1-13 As shown, the feeding conveyor chain 300 has the same mechanism as the longitudinal feeding conveyor chain 100; the inlet and outlet directions of the feeding conveyor chain 300 and the longitudinal feeding conveyor chain 100 are set at 90°.
[0140] To achieve the aforementioned technical effects, the 1T-shaped chain conveyor line in this embodiment, such as... Figures 1-13 As shown, the discharge conveyor chain 300 has the same mechanism as the longitudinal feed conveyor chain 100; the discharge conveyor chain 300 and the longitudinal feed conveyor chain 100 are arranged in a straight line.
[0141] The 500 feeding machine also includes:
[0142] Frame 510, frame 510 is set on the feeding machine 520;
[0143] Drive unit 520, drive unit 520 is fixed below frame 510;
[0144] Lifting device 530 is fixed on one side of frame 510. Driving device 520 drives lifting device 530 to lift and tilt box, pour out material in box, and dump material into subsequent equipment.
[0145] To achieve the aforementioned technical effects, the 1T-shaped chain conveyor line in this embodiment, such as... Figures 1-13 As shown, a rotating platform device 60 is installed below one side of the discharge conveyor chain 300;
[0146] The rotating platform device 60 also includes:
[0147] The bottom of the cylinder body of the steering cylinder 61 is movably connected to one side of the discharge conveyor chain 300;
[0148] The bottom of the steering frame 62 is movably connected to the lower side of the discharge conveyor chain 300; the steering frame 62 is movably connected to the steering frame 62 via a piston connecting rod.
[0149] A turntable 63 is fixed above the steering frame 62; the steering cylinder 61 drives the steering frame 62 and the turntable 63 to rotate 90°.
[0150] Those skilled in the art will understand that the above embodiments are specific examples of implementing the present invention, and in practical applications, various changes can be made to them in form and detail without departing from the spirit and scope of the present invention.
Claims
1. A T-shaped chain conveyor line, characterized in that, include: Longitudinal feed conveyor chain; the longitudinal feed conveyor chain is installed in the T-shaped chain conveyor line; A lifting device is connected to one side of the longitudinal feed conveyor chain; A feeding conveyor chain is connected to one side of the lifting device; the longitudinal feeding conveyor chain is arranged perpendicular to the feeding conveyor chain. A discharge conveyor chain is connected to the other side of the lifting device; A feeding machine is installed at the end of the discharge conveyor chain; the feeding machine lifts and feeds the goods. The discharge conveyor chain and the longitudinal feed conveyor chain are arranged perpendicular to each other; the feed conveyor chain and the discharge conveyor chain are arranged on the same straight line; the longitudinal feed conveyor chain and the discharge conveyor chain make the goods transported in an inverted T-shape.
2. The T-shaped chain conveyor line according to claim 1, characterized in that, The longitudinal feed conveyor chain also includes: The first frame is arranged on the longitudinal feed conveyor chain; A chain structure is provided above the first frame; A drive structure is fixed above the first frame; the drive structure drives the chain structure to run on the first frame.
3. The T-shaped chain conveyor line according to claim 2, characterized in that, The chain structure also includes: A first double-row conveyor roller chain is provided above the first frame; A second double-row conveyor roller chain is provided above the first frame and on the opposite side of the first double-row conveyor roller chain; The first double sprocket is connected to the sprocket below the first double-row conveyor roller chain; The second double sprocket is connected to the sprocket below the second double-row conveyor roller chain; The first shaft has the first double sprocket and the second double sprocket respectively connected to both ends of the first shaft by a flat key; The first bearing housing is located on one side of the first double sprocket and is connected to the first shaft via a bearing. The second bearing housing is located on one side of the second double sprocket and is connected to the first shaft via a bearing. The first end redirecting sprocket is connected to the first end redirecting sprocket via a bearing above one end of the first frame; the first double-row conveyor roller chain is chain-linked to the first end redirecting sprocket. The second end redirecting sprocket is located on the opposite side of the first end redirecting sprocket, above one end of the first frame, and is connected to the second end redirecting sprocket via a bearing; the second double-row conveyor roller chain is chain-linked to the second end redirecting sprocket. The third end redirecting sprocket is connected to the other end of the first frame via a bearing; the first double-row conveyor roller chain is chain-linked to the third end redirecting sprocket. The fourth end-redirecting sprocket is located on the opposite side of the third end-redirecting sprocket, above one end of the first frame, and connected to the fourth end-redirecting sprocket via a bearing; the second double-row conveyor roller chain is chain-linked to the fourth end-redirecting sprocket. The first motor end sprocket is located on one side of the first double sprocket and is connected to the first shaft key. The second motor end sprocket is keyed to the drive structure. The first tensioning wheel is engaged with the first double-row conveyor roller chain between the first motor end sprocket and the second motor end sprocket. The second tensioning wheel is located on the other side of the sprocket at the second motor end and is meshed with the first double-row conveyor roller chain. A single-row drive roller chain is movably connected to the sprockets at the first motor end and the second motor end.
4. The T-shaped chain conveyor line according to claim 2, characterized in that, The driving structure also includes: A conveyor motor and a reducer are fixed on the first frame, and the conveyor motor and reducer are fixedly connected to the first motor end sprocket of the chain structure; the conveyor motor and reducer generate power and transmit it to the first motor end sprocket of the chain structure. The first motor end sprocket drives the second motor end sprocket of the chain structure through the single-row drive roller chain of the chain structure. The single-row drive roller chain of the chain structure rolls on the first motor end sprocket and the second motor end sprocket of the chain structure, so that the second motor end sprocket and the first double sprocket of the chain structure rotate coaxially, thereby driving the first double-row conveyor roller chain of the chain structure to rotate. The first double-row conveyor roller chain of the chain structure first passes through the second tension wheel of the chain structure, then runs along the second end redirecting sprocket and the fourth end redirecting sprocket of the redirecting device of the lifting device, and then runs along the first end redirecting sprocket and the third end redirecting sprocket of the redirecting device, and finally returns to the second tension wheel of the chain structure. Through the connection at the other end of the first shaft, the second double-row conveyor roller chain of the chain structure moves in the same direction and at the same speed as the first double-row conveyor roller chain.
5. The T-shaped chain conveyor line according to claim 1, characterized in that, The lifting device further includes: A second frame is provided on one side of the longitudinal feeding conveyor chain, and is mounted on the lifting device; the second frame is provided with the same chain structure and drive structure as the longitudinal feeding conveyor chain. A guide device, which is fixed on the second frame; A reversing device, wherein the reversing device is mounted on the guiding device; A lifting device chain structure is provided above the second frame; above the lifting device chain structure, a chain structure and a drive structure identical to the longitudinal feeding conveyor chain structure are provided. The lifting device chain structure is guided by the guiding device; it is redirected by the redirecting device, enabling the lifting device chain structure to undergo multi-stage speed changes and synchronous positioning. A pneumatic device is fixed at the bottom of the second frame; the pneumatic device is a lifting airbag; the pneumatic device drives the lifting device chain structure to rise through telescopic movement, changing the material conveying height; at the same time, through the movement of the chain structure and drive structure of the lifting device chain structure, the material is conveyed in a 90° direction.
6. The T-shaped chain conveyor line according to claim 5, characterized in that, The redirection device includes: A redirecting sleeve bracket is fixedly connected to both sides of the upper connecting rod of the guide device; A number of redirecting sprocket shafts are fixedly connected to the main connecting frame of the machine frame; The inner rings of bearings are fixedly connected to each of the aforementioned redirecting sprocket shafts; A sprocket redirection sleeve is fixedly connected to the outer ring of the bearing; the bearing is located between the redirection sprocket shaft and the sprocket redirection sleeve; the inner ring of the bearing remains stationary, while the outer ring of the bearing rotates. Positioning rings are fixed on several of the redirecting sprocket shafts.
7. The T-shaped chain conveyor line according to claim 5, characterized in that, The guiding device includes: A first guide rod, and several first guide rods are fixedly connected to the second frame; The second guide rod is fixedly connected to the other side of the side plate and the main connecting plate of the frame. The first linear bearing is movably connected to a plurality of the first guide rods respectively; The second linear bearing is movably connected to several of the second guide rods; A lifting platform is fixedly connected to the main connecting plate of the frame, on the first linear bearing and the second linear bearing; The first chain track is fixed above the side plate and the main connecting frame of the second frame; The second chain track is fixed above the side plate of the second frame and on one side of the first chain track; The chain structure is installed on the main connecting frame of the second frame; An upper connecting rod is fixedly connected between the first chain track and the second chain track.
8. The T-shaped chain conveyor line according to claim 1, characterized in that, The feeding conveyor chain has the same mechanism as the longitudinal feeding conveyor chain; the inlet and outlet directions of the feeding conveyor chain and the longitudinal feeding conveyor chain are set at 90°.
9. The T-shaped chain conveyor line according to claim 1, characterized in that, The discharge conveyor chain has the same mechanism as the longitudinal feed conveyor chain; the discharge conveyor chain and the longitudinal feed conveyor chain are arranged in a straight line. The aforementioned feeding machine also includes: A frame is provided on the feeder; A drive unit is fixed below the frame; A lifting device is fixed on one side of the frame. The driving device drives the lifting device to lift and tilt the box to pour out the material in the box.
10. The T-shaped chain conveyor line according to claim 9, characterized in that, A rotating platform device is installed below one side of the discharge conveyor chain; The rotating platform device further includes: A steering cylinder is movably connected to the bottom of the cylinder body below one side of the discharge conveyor chain; A steering frame is movably connected at its bottom to one side of the discharge conveyor chain; the steering frame is movably connected to the steering frame via a piston connecting rod. A turntable is fixed above the steering frame; the steering cylinder drives the steering frame and the turntable to rotate 90°.