Double-deck lifting cross transfer machine
By setting up a double-layer working area and lifting transport mechanism inside the transfer machine, the problem of low transport efficiency of existing transfer machines has been solved, achieving efficient double-layer transport and improved transport efficiency with a small footprint.
Patent Information
- Application Number
- CN202311317526.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-10-12
- Publication Date
- 2025-10-21
- Estimated Expiration
- 2043-10-12
Smart Images

Figure CN117302940B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of mechanical equipment, and more specifically, to a double-layer lifting and transverse transporting transfer machine. Background Art
[0002] Currently, conveying equipment plays a vital role in industrial production operations. For example, in machining processes and product inspection, conveying equipment can improve production efficiency, save significant manpower and material resources, and reduce production costs. Roller hearth kilns are lightweight, continuous industrial furnaces widely used for the rapid firing of products such as chemical powders, ceramic substrates, and lithium battery electrode powders. They offer advantages such as low energy consumption, short firing cycles, and low labor intensity.
[0003] Publication number: CN109489416A, an in-and-out transfer machine for a roller kiln, comprising a frame, a transverse conveying device, and a longitudinal conveying device, wherein the transverse conveying device comprises two groups of first conveying assemblies, and the longitudinal conveying device can be lifted and lowered between the two groups of first conveying assemblies, and a second conveying assembly is provided at the top of the longitudinal conveying device, and the longitudinal conveying device comprises a longitudinal conveying bracket, which can be lifted and lowered on the frame through a connecting rod mechanism; the driving device comprises an output shaft for driving the movement of the first output assembly, and the main connecting rod is coaxially arranged with the rotation axis of the output shaft relative to the rotation axis of the frame, and the longitudinal conveying bracket is provided with a transmission shaft for driving the movement of the second conveying assembly, and the main connecting rod is coaxially arranged with the rotation axis of the transmission shaft relative to the rotation axis of the longitudinal conveying bracket; a transmission mechanism is provided between the output shaft and the transmission shaft, and energy consumption and equipment costs are reduced by optimizing the driving structure.
[0004] Existing transfer machines can only transport through a single layer, with low transportation efficiency, and cannot meet the needs of efficient transportation.
[0005] Therefore, how to effectively improve the transport efficiency of the transfer machine is an urgent problem to be solved by those skilled in the art. Summary of the Invention
[0006] In view of this, in order to solve the problem of low transportation efficiency of existing transfer machines, the present invention proposes a double-layer lifting and transverse transport transfer machine, which is provided with a first working area 2 at the bottom of the transfer machine body 1, and a second working area 3 above the first working area 2. The output ends of the first working area 2 and the second working area 3 are both tightly connected to the processing equipment, and a lifting and transporting mechanism 4 is provided above the second working area 3, which is used to receive the saggers and transport them to the first working area 2 and the second working area 3 respectively. It has a vertical multi-station arrangement, occupies a small area, has high transportation efficiency, and meets the needs of efficient production.
[0007] A double-layer lifting and transverse conveying transfer machine includes a transfer machine body 1, the input end and the output end of the transfer machine body 1 are both tightly connected to the processing equipment, and is characterized in that: a first working area 2 is provided at the lower part of the transfer machine body 1, and a second working area 3 is provided above the first working area 2. The output ends of the first working area 2 and the second working area 3 are both tightly connected to the processing equipment, and a lifting and transporting mechanism 4 is provided above the second working area 3, which is used to receive the saggers and transport them to the first working area 2 and the second working area 3 respectively.
[0008] Furthermore, the lifting and transporting mechanism 4 includes a longitudinal transport mechanism 5, a first driving mechanism 6, and a synchronous wheel assembly 7. The first driving mechanism 6 is provided above the second working area 3, the synchronous wheel assembly 7 is provided on the side of the first driving mechanism 6, and the longitudinal transport mechanism 5 is provided below the synchronous wheel assembly 7. The first driving mechanism 6 drives the synchronous wheel assembly 7 to drive the longitudinal transport mechanism 5 to perform vertical lifting and lowering movements.
[0009] Furthermore, the first driving mechanism 6 includes a driving motor 61, a first steering gear 62, and a second steering gear 63. The first steering gear 62 is provided on one side of the driving motor 61, and the second steering gear 63 is provided on the other side of the driving motor 61. The driving end of the driving motor 61 is connected to the input ends of the first steering gear 62 and the second steering gear 63 through a first connecting shaft 64, and the output ends of the first steering gear 62 and the second steering gear 63 are connected to the synchronous wheel assembly 7 through a second connecting shaft 65.
[0010] Furthermore, the synchronous wheel assembly 7 includes a first synchronous wheel 71, a second synchronous wheel 72, a third synchronous wheel 73, and a counterweight assembly 74. The first synchronous wheel 71 is provided on the side of the first diverter 62, and the third synchronous wheel 73 is provided on one side of the first synchronous wheel 71. The counterweight assembly 74 is provided on the other side of the first synchronous wheel 71, and the second synchronous wheel 72 is provided on the side of the second diverter 63. The belt connects one end of the longitudinal transport mechanism 5, the first synchronous wheel 71, the counterweight assembly 74, the third synchronous wheel 73, the second synchronous wheel 72, and the other end of the longitudinal transport mechanism 5 in sequence.
[0011] Furthermore, a tensioning wheel assembly 75 is provided between the second synchronous wheel 72 and the third synchronous wheel 73 for tensioning the belt.
[0012] Furthermore, linear guide rails 11 are provided on all four sides of the inner side of the transfer machine body 1, and the counterweight assembly 74 and the longitudinal transport mechanism 5 are connected to the linear guide rails 11 through guide shoes 12. The first drive mechanism 6 drives the synchronous wheel assembly 7 and then drives the longitudinal transport mechanism 5 and the counterweight assembly 74 to reciprocate along the linear guide rails 11.
[0013] Furthermore, the longitudinal transport mechanism 5 includes a transport frame 51 and a transverse transport mechanism 52. The top of the transport frame 51 is connected to the first synchronous wheel 71 through a belt, and the other top of the transport frame 51 is connected to the second synchronous wheel 72 through a belt. The bottom of the transport frame 51 is spaced apart with a transverse transport mechanism 52 for longitudinally transporting the sagger.
[0014] Furthermore, a plurality of photoelectric sensors are provided at intervals on the side of the carrier frame 51 for monitoring the position of the sagger.
[0015] Furthermore, a limiting mechanism 8 is provided on the side of the longitudinal transport mechanism 5 away from the input end of the transfer machine body 1 for limiting the position of the sagger. The limiting mechanism 8 includes a connecting column 82, an adjusting plate 83, and a limiting roller 84. An adjusting plate 83 is detachably provided above the connecting column 82, and a U-shaped adjusting port 831 is provided on the adjusting plate 83 for adjusting the limiting distance. The top of the connecting column 82 is detachably connected to the U-shaped adjusting port 831, and a limiting roller 84 is provided on the side of the adjusting plate 83 for assisting in limiting the position of the sagger.
[0016] The connection is detachable, and a limiting roller 84 is provided on the side of the adjusting plate 83 to assist in limiting the position of the sagger.
[0017] Furthermore, an oil cup 13 is provided above the connection between the guide shoe 12 and the linear guide rail 11 . The oil cup 13 is correspondingly connected to the linear guide rail 11 for lubricating the linear guide rail 11 .
[0018] Furthermore, a first anti-fall buffer 21 is provided in parallel at intervals below the first working area 2. There are at least two first anti-fall buffers 21. The first anti-fall buffer 21 is composed of a spring 211 and an oil pressure buffer 212. A spring 211 is provided below the first working area 2, and oil pressure buffers 212 are provided on the left and right sides of the spring 211; a second anti-fall buffer 22 is provided below the counterweight assembly 74, and the second anti-fall buffer 22 is made of polyurethane.
[0019] Furthermore, the first working area 2 includes a first buffer storage area 23 and a first transport area 24. A first output port 232 is provided on one side of the first buffer storage area 23 for outputting the saggers transported by the longitudinal transport mechanism 5. A first transport area 24 is provided on the other side of the first buffer storage area 23 for receiving the saggers to enter the longitudinal transport mechanism 5. A first transverse transport mechanism 231 is provided below the first buffer storage area 23 for transversely transporting the saggers; a first transport area 24 is provided on the other side of the first buffer storage area 23 for receiving the saggers to enter the longitudinal transport mechanism 5. A first transverse transport mechanism 231 is provided below the first buffer storage area 23 for transversely transporting the saggers; the second working area 3 includes a second buffer storage area 31. A second output port 312 is provided on the side of the second buffer storage area 31 for outputting the saggers transported by the longitudinal transport mechanism 5. A second transverse transport mechanism 311 is provided below the second buffer storage area 31 for transversely transporting the saggers.
[0020] Furthermore, the first output port 232 and the second output port 312 are connected to the input end of the processing equipment. An accordion cover 9 is also provided at the connection between the first output port 232 and the second output port 312 and the input end of the processing equipment for auxiliary sealing.
[0021] The working principle of the present invention is as follows: the sagger enters the lifting and transporting mechanism 4 through the first transport area 24, and enters the input end corresponding to the processing equipment (roller kiln) through the first horizontal transport mechanism 231 and the first output port 232 in turn. When there is sagger material being processed at the input end, the sagger enters the first buffer storage area 23 for caching. When the first working area 2 is fully transported, the sagger enters the lifting and transporting mechanism 4 through the first transport area 24. The first driving mechanism 6 drives the longitudinal transport mechanism 5 to perform vertical lifting movement by driving the synchronous wheel assembly 7 to lift the sagger to the second working area 3. The sagger enters the input end corresponding to the processing equipment (roller kiln) through the second horizontal transport mechanism 311 and the second output port 312 in turn. When there is sagger material being processed at the input end, the sagger enters the second buffer storage area 31 for caching. The lifting and transporting mechanism 4 reciprocates on the transfer machine body 1 to transport the sagger.
[0022] Beneficial effects of the present invention: The present invention proposes a double-layer lifting and transverse transporting transfer machine, which is provided with a first working area 2 at the lower part of the transfer machine body 1, and a second working area 3 above the first working area 2. The output ends of the first working area 2 and the second working area 3 are both tightly connected to the processing equipment, and a lifting and transporting mechanism 4 is provided above the second working area 3, which is used to receive the saggers and transport them to the first working area 2 and the second working area 3 respectively. It has a vertical multi-station arrangement, occupies a small area, has high transportation efficiency, and meets the needs of efficient production. BRIEF DESCRIPTION OF THE DRAWINGS
[0023] Figure 1It is a structural schematic diagram of the double-layer lifting and transverse transporting transfer machine of the present invention.
[0024] Figure 2 It is a structural schematic diagram of the double-layer lifting and transverse transporting transfer machine of the present invention.
[0025] Figure 3 It is a structural schematic diagram of the double-layer lifting and transverse transporting transfer machine of the present invention.
[0026] Figure 4 It is a side view of the double-layer lifting and transverse transporting transfer machine of the present invention.
[0027] Figure 5 It is a structural schematic diagram of the lifting and transporting mechanism of the double-layer lifting and transverse transporting transfer machine of the present invention.
[0028] Figure 6 It is a structural schematic diagram of the longitudinal transport mechanism and the limiting mechanism of the double-layer lifting and transverse transporting transfer machine of the present invention.
[0029] Figure 7 It is a partially enlarged structural schematic diagram of the longitudinal transport mechanism and the limiting mechanism of the double-layer lifting and transverse transporting transfer machine of the present invention.
[0030] Description of main component symbols
[0031]
[0032]
[0033] The following specific embodiments will further illustrate the present invention in conjunction with the above-mentioned drawings. DETAILED DESCRIPTION
[0034] like Figure 1 As shown, it is a structural diagram of the double-layer lifting and transverse transporting machine of the present invention; Figure 2 As shown, it is a structural diagram of the double-layer lifting and transverse transporting machine of the present invention; Figure 3 As shown, it is a structural diagram of the double-layer lifting and transverse transporting machine of the present invention; Figure 4 As shown, it is a side view of the double-layer lifting and transverse transporting machine of the present invention; Figure 5 As shown, it is a structural diagram of the lifting and transporting mechanism of the double-layer lifting and transverse transporting transfer machine of the present invention; Figure 6 As shown in FIG, it is a structural diagram of the longitudinal transport mechanism and the limiting mechanism of the double-layer lifting and transverse transporting machine of the present invention; Figure 7 FIG. 1 is a partially enlarged structural diagram of the longitudinal transport mechanism and the limiting mechanism of the double-layer lifting and transverse transporting transfer machine of the present invention.
[0035] A double-layer lifting and transverse conveying transfer machine includes a transfer machine body 1, the input end and the output end of the transfer machine body 1 are both tightly connected to the processing equipment, and is characterized in that: a first working area 2 is provided at the lower part of the transfer machine body 1, and a second working area 3 is provided above the first working area 2. The output ends of the first working area 2 and the second working area 3 are both tightly connected to the processing equipment, and a lifting and transporting mechanism 4 is provided above the second working area 3, which is used to receive the saggers and transport them to the first working area 2 and the second working area 3 respectively.
[0036] The lifting and transporting mechanism 4 includes a longitudinal transport mechanism 5, a first driving mechanism 6, and a synchronous wheel assembly 7. The first driving mechanism 6 is provided above the second working area 3, and the synchronous wheel assembly 7 is provided on the side of the first driving mechanism 6. The longitudinal transport mechanism 5 is provided below the synchronous wheel assembly 7. The first driving mechanism 6 drives the longitudinal transport mechanism 5 to perform vertical lifting and lowering movements by driving the synchronous wheel assembly 7.
[0037] The first driving mechanism 6 includes a driving motor 61, a first steering gear 62, and a second steering gear 63. The first steering gear 62 is provided on one side of the driving motor 61, and the second steering gear 63 is provided on the other side of the driving motor 61. The driving end of the driving motor 61 is connected to the input ends of the first steering gear 62 and the second steering gear 63 through a first connecting shaft 64, and the output ends of the first steering gear 62 and the second steering gear 63 are connected to the synchronous wheel assembly 7 through a second connecting shaft 65.
[0038] The synchronous wheel assembly 7 includes a first synchronous wheel 71, a second synchronous wheel 72, a third synchronous wheel 73, and a counterweight assembly 74. The first synchronous wheel 71 is provided on the side of the first diverter 62, the third synchronous wheel 73 is provided on one side of the first synchronous wheel 71, the counterweight assembly 74 is provided on the other side of the first synchronous wheel 71, and the second synchronous wheel 72 is provided on the side of the second diverter 63. The belt sequentially connects one end of the longitudinal transport mechanism 5, the first synchronous wheel 71, the counterweight assembly 74, the third synchronous wheel 73, the second synchronous wheel 72, and the other end of the longitudinal transport mechanism 5.
[0039] A tensioning wheel assembly 75 is further provided between the second synchronous wheel 72 and the third synchronous wheel 73 for tensioning the belt.
[0040] Linear guide rails 11 are provided on all four sides of the inner side of the transfer machine body 1. The counterweight assembly 74 and the longitudinal transport mechanism 5 are connected to the linear guide rails 11 through guide shoes 12. The first drive mechanism 6 drives the synchronous wheel assembly 7 and then drives the longitudinal transport mechanism 5 and the counterweight assembly 74 to reciprocate along the linear guide rails 11.
[0041] The longitudinal transport mechanism 5 includes a transport frame 51 and a transverse transport mechanism 52. One top of the transport frame 51 is connected to the first synchronous wheel 71 through a belt, and the other top of the transport frame 51 is connected to the second synchronous wheel 72 through a belt. A transverse transport mechanism 52 is provided at the bottom of the transport frame 51 for longitudinal transport of the sagger.
[0042] A plurality of photoelectric sensors are also provided at intervals on the side of the carrier frame 51 for monitoring the position of the sagger.
[0043] A limiting mechanism 8 is further provided on the side of the longitudinal transport mechanism 5 away from the input end of the transfer machine body 1 for limiting the position of the sagger. The limiting mechanism 8 includes a connecting column 82, an adjusting plate 83, and a limiting roller 84. An adjusting plate 83 is detachably provided above the connecting column 82. The adjusting plate 83 is provided with a U-shaped adjusting opening 831 for adjusting the limiting distance. The top of the connecting column 82 is detachably connected to the U-shaped adjusting opening 831. A limiting roller 84 is provided on the side of the adjusting plate 83 for assisting in limiting the position of the sagger.
[0044] An oil cup 13 is further provided above the guide shoe 12 where it is connected to the linear guide rail 11 . The oil cup 13 is correspondingly connected to the linear guide rail 11 for lubricating the linear guide rail 11 .
[0045] A first anti-fall buffer 21 is provided in parallel and at intervals below the first working area 2. There are at least two first anti-fall buffers 21, which are composed of a spring 211 and an oil pressure buffer 212. A spring 211 is provided below the first working area 2, and oil pressure buffers 212 are provided on the left and right sides of the spring 211; a second anti-fall buffer 22 is provided below the counterweight assembly 74, and the second anti-fall buffer 22 is made of polyurethane.
[0046] The first working area 2 includes a first buffer storage area 23 and a first transport area 24. A first output port 232 is provided on one side of the first buffer storage area 23 for outputting the saggers transported by the longitudinal transport mechanism 5. A first transport area 24 is provided on the other side of the first buffer storage area 23 for receiving the saggers to enter the longitudinal transport mechanism 5. A first transverse transport mechanism 231 is provided below the first buffer storage area 23 for transversely transporting the saggers; a first transport area 24 is provided on the other side of the first buffer storage area 23 for receiving the saggers to enter the longitudinal transport mechanism 5. A first transverse transport mechanism 231 is provided below the first buffer storage area 23 for transversely transporting the saggers; the second working area 3 includes a second buffer storage area 31. A second output port 312 is provided on the side of the second buffer storage area 31 for outputting the saggers transported by the longitudinal transport mechanism 5. A second transverse transport mechanism 311 is provided below the second buffer storage area 31 for transversely transporting the saggers.
[0047] The first output port 232 and the second output port 312 are connected to the input end of the processing equipment. An accordion cover 9 is further provided at the connection between the first output port 232 and the second output port 312 and the input end of the processing equipment for auxiliary sealing.
[0048] The working principle of the present invention is as follows: the sagger enters the lifting and transporting mechanism 4 through the first transport area 24, and enters the input end corresponding to the processing equipment (roller kiln) through the first horizontal transport mechanism 231 and the first output port 232 in turn. When there is sagger material being processed at the input end, the sagger enters the first buffer storage area 23 for caching. When the first working area 2 is fully transported, the sagger enters the lifting and transporting mechanism 4 through the first transport area 24. The first driving mechanism 6 drives the longitudinal transport mechanism 5 to perform vertical lifting movement by driving the synchronous wheel assembly 7 to lift the sagger to the second working area 3. The sagger enters the input end corresponding to the processing equipment (roller kiln) through the second horizontal transport mechanism 311 and the second output port 312 in turn. When there is sagger material being processed at the input end, the sagger enters the second buffer storage area 31 for caching. The lifting and transporting mechanism 4 reciprocates on the transfer machine body 1 to transport the sagger.
[0049] Beneficial effects of the present invention: The present invention proposes a double-layer lifting and transverse transporting transfer machine, which is provided with a first working area 2 at the lower part of the transfer machine body 1, and a second working area 3 above the first working area 2. The output ends of the first working area 2 and the second working area 3 are both tightly connected to the processing equipment, and a lifting and transporting mechanism 4 is provided above the second working area 3, which is used to receive the saggers and transport them to the first working area 2 and the second working area 3 respectively. It has a vertical multi-station arrangement, occupies a small area, has high transportation efficiency, and meets the needs of efficient production.
[0050] The above-described embodiments merely illustrate several implementations of the present invention, and while their descriptions are relatively specific and detailed, they should not be construed as limiting the scope of the present invention. It should be noted that a person skilled in the art would be able to make numerous variations and improvements without departing from the spirit of the present invention, all of which fall within the scope of protection of the present invention. Therefore, the scope of protection of the present invention shall be determined by the appended claims.
Claims
1. A double-layer lifting and transverse transporting transfer machine, comprising a transfer machine body (1), wherein the input end and the output end of the transfer machine body (1) are both tightly connected to the processing equipment, and characterized in that: A first working area (2) is provided in the lower part of the transfer machine body (1), and a second working area (3) is provided above the first working area (2). The output ends of the first working area (2) and the second working area (3) are both tightly connected to the processing equipment. A lifting and transporting mechanism (4) is provided above the second working area (3) for receiving the saggers and transporting them to the first working area (2) and the second working area (3) respectively. The lifting and transporting mechanism (4) includes a longitudinal transport mechanism (5), a first driving mechanism (6), and a synchronous wheel assembly (7). There is a first driving mechanism (6), a synchronous wheel assembly (7) is provided on the side of the first driving mechanism (6), a longitudinal transport mechanism (5) is provided below the synchronous wheel assembly (7), the first driving mechanism (6) drives the longitudinal transport mechanism (5) to perform vertical lifting movement by driving the synchronous wheel assembly (7), the first working area (2) includes a first buffer storage area (23) and a first transport area (24), a first output port (232) is provided on one side of the first buffer storage area (23) for outputting the sagger transported by the longitudinal transport mechanism (5), and a first output port (232) is provided on the other side of the first buffer storage area (23) A first transport area (24) is provided on one side for receiving the saggers to enter the longitudinal transport mechanism (5), and a first transverse transport mechanism (231) is provided below the first buffer temporary storage area (23) for transversely transporting the saggers; a first transport area (24) is provided on the other side of the first buffer temporary storage area (23) for receiving the saggers to enter the longitudinal transport mechanism (5), and a first transverse transport mechanism (231) is provided below the first buffer temporary storage area (23) for transversely transporting the saggers; the second working area (3) includes a second buffer temporary storage area (31), and a side of the second buffer temporary storage area (31) A second output port (312) is provided for outputting the saggers transported by the longitudinal transport mechanism (5); a second transverse transport mechanism (311) is provided below the second buffer storage area (31) for transversely transporting the saggers; linear guide rails (11) are provided on all four sides of the inner side of the transfer machine body (1); a counterweight assembly (74) and the longitudinal transport mechanism (5) are connected to the linear guide rails (11) through guide shoes (12); a first anti-falling buffer (21) is provided below the first working area (2) in parallel with each other; and a second anti-falling buffer (22) is provided below the counterweight assembly (74).
2. The double-layer lifting and transverse transporting transfer machine according to claim 1, characterized in that: The first driving mechanism (6) comprises a driving motor (61), a first steering gear (62), and a second steering gear (63). The first steering gear (62) is provided on one side of the driving motor (61), and the second steering gear (63) is provided on the other side of the driving motor (61). The driving end of the driving motor (61) is connected to the input ends of the first steering gear (62) and the second steering gear (63) via a first linkage shaft (64), and the output ends of the first steering gear (62) and the second steering gear (63) are connected to the synchronous wheel assembly (7) via a second linkage shaft (65).
3. The double-layer lifting and transverse transporting transfer machine according to claim 1, characterized in that: The synchronous wheel assembly (7) comprises a first synchronous wheel (71), a second synchronous wheel (72), a third synchronous wheel (73), and a counterweight assembly (74); the first synchronous wheel (71) is provided on the side of the first diverter (62); the third synchronous wheel (73) is provided on one side of the first synchronous wheel (71); the counterweight assembly (74) is provided on the other side of the first synchronous wheel (71); the second synchronous wheel (72) is provided on the side of the second diverter (63); and a belt sequentially connects one end of the longitudinal transport mechanism (5), the first synchronous wheel (71), the counterweight assembly (74), the third synchronous wheel (73), the second synchronous wheel (72), and the other end of the longitudinal transport mechanism (5).
4. The double-layer lifting and transverse transporting transfer machine according to claim 3, characterized in that: A tensioning wheel assembly (75) is also provided between the second synchronous wheel (72) and the third synchronous wheel (73) for tensioning the belt.
5. The double-layer lifting and transverse transporting machine according to claim 1, characterized in that: The first driving mechanism (6) drives the synchronous wheel assembly (7), thereby driving the longitudinal transport mechanism (5) and the counterweight assembly (74) to perform reciprocating motion along the linear guide rail (11).
6. The double-layer lifting and transverse transporting transfer machine according to claim 1, characterized in that: The longitudinal transport mechanism (5) comprises a transport frame (51) and a transverse transport mechanism (52). One top of the transport frame (51) is connected to a first synchronous wheel (71) via a belt, and the other top of the transport frame (51) is connected to a second synchronous wheel (72) via a belt. The bottom of the transport frame (51) is provided with a transverse transport mechanism (52) for longitudinally transporting the sagger.
7. The double-layer lifting and transverse transporting transfer machine according to claim 6, characterized in that: The longitudinal transport mechanism (5) is further provided with a limiting mechanism (8) on the side away from the input end of the transfer machine body (1) for limiting the position of the sagger. The limiting mechanism (8) comprises a connecting column (82), an adjusting plate (83), and a limiting roller (84). An adjusting plate (83) is detachably provided above the connecting column (82). The adjusting plate (83) is provided with a U-shaped adjusting opening (831) for adjusting the limiting distance. The top of the connecting column (82) is detachably connected to the U-shaped adjusting opening (831). A limiting roller (84) is provided on the side of the adjusting plate (83) for assisting in limiting the position of the sagger.
8. The double-layer lifting and transverse transporting machine according to claim 1, characterized in that: There are at least two first anti-falling buffers (21), which are composed of a spring (211) and an oil pressure buffer (212). The spring (211) is provided below the first working area (2), and the oil pressure buffers (212) are provided on the left and right sides of the spring (211); the second anti-falling buffer (22) is made of polyurethane.
9. The double-layer lifting and transverse transporting machine according to claim 1, characterized in that: The first output port (232) and the second output port (312) are connected to the input end of the processing equipment. An accordion cover (9) is also provided at the connection between the first output port (232) and the second output port (312) and the input end of the processing equipment for auxiliary sealing.
Citation Information
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