Multilayer automated production assembly line

文档序号:5348 发布日期:2021-09-17 浏览:92次 中文

1. A multilayer automatic production line comprises a base (1) and a line structure, and is characterized in that the base (1) is provided with the line structure, the line structure comprises a transmission support rod (2), a transmission structure, a longitudinal height adjusting structure, a support baffle (6), a drying structure, a layer of blanking outlet (27), a bottom layer of blanking outlet (29), a bottom transmission plate (28) and a gathering blanking structure, the transmission support rod (2) is symmetrically fixed above the base (1), the support baffle (6) is fixed in the middle of the adjacent transmission support rod (2), the side edge of the support baffle (6) is provided with the transmission structure, the end part of the transmission support rod (2) is provided with the transmission support rod (2) of the upper layer through the longitudinal height adjusting structure, the adjacent support baffle (6) is provided with the drying structure, the output end of the transmission structure of the upper layer is provided with the layer of blanking outlet (27), the transmission structure output of bottom is provided with bottom unloading export (29), base (1) side is provided with bottom conveying board (28), the height and bottom unloading export (29) of bottom conveying board (28) keep equal, one deck unloading export (27) are through gathering the side of unloading structure setting in bottom conveying board (28) top.

2. The multilayer automatic production line of claim 1, characterized in that, the transport structure includes drive bracing piece (3), drive roller (4) and conveyer (10), drive bracing piece (2) side is fixed with drive bracing piece (3), it is provided with drive roller (4) to rotate on the drive bracing piece (3), drive roller (4) drive through power device, be provided with conveyer (10) between adjacent drive roller (4) and the heat dissipation mesh has been seted up on conveyer (10).

3. The multilayer automatic production line according to claim 2, characterized in that the longitudinal height adjusting structure comprises an adjusting telescopic rod (9) and a hinged connecting rod (5), the adjusting telescopic rod (9) is fixed between the adjacent transmission supporting rods (2), the hinged connecting rod (5) is hinged on the adjusting telescopic rod (9), the bottom of the hinged connecting rod (5) is hinged to the fixed position of the adjusting telescopic rod (9), the top of the hinged connecting rod (5) is hinged to the bottom of the transmission supporting rod (2) above, and the output end of the adjusting telescopic rod (9) is fixed to the bottom of the transmission supporting rod (2) above.

4. The multilayer automatic production line according to claim 3, wherein the drying structure comprises a top fixing plate (7), a fixing support plate (8), an air inlet pipe (11), a dust suction port (13), a dust suction pump (14), a dust suction outlet (15), a dust suction pipe (16), a heating plate (17), an air inlet support seat (18) and an air inlet (19), the fixing support plate (8) is symmetrically fixed on the side edge of the support baffle (6), the top fixing plate (7) is fixed on the end portion of the fixing support plate (8), the air inlet support seat (18) is fixed on the bottom portion of the support baffle (6), the air inlet pipe (11) is communicated with the air inlet support seat (18), the air inlet (19) is arranged on the air inlet pipe (11) in an array manner, the heating plate (17) is fixed above the air inlet support seat (18), and the heating plate (17) is in a net shape, there are conveyer (10) hot plate (17) top, dust absorption mouth (13) have been seted up on top fixed plate (7) inside top, dust absorption mouth (13) are provided with dust absorption pump (14) through dust absorption pipeline (16) UNICOM, dust absorption pump (14) output is provided with dust absorption export (15).

5. The multilayer automatic production line according to claim 4, characterized in that the gathering and blanking structure comprises a gathering guide plate (31), a blanking plate (30) and an extension structure, the output end of the supporting baffle (6) is fixed with the gathering guide plate (31), the output end of the gathering guide plate (31) is provided with the blanking plate (30), the blanking plate (30) is provided with the extension structure, the blanking plate (30) is obliquely arranged, and the output end of the blanking plate (30) is provided with a layer of blanking outlet (27).

6. The multi-layer automated production line according to claim 5, wherein the extension structure comprises an extension screw (20), an extension plate (25), a bottom plate (24), an extension fixture sleeve (22), an extension slot (23), and an internal motor (21), the blanking plate (30) is divided into two sections, one section is a bottom plate (24), the other section is an extension plate (25), an extension groove (23) is formed in the side edge of the bottom plate (24), an internal motor (21) is fixed inside the extension groove (23), the internal motor (21) is connected with an extension screw rod (20) in a driving way, an extension fixing sleeve (22) is arranged on the extension screw rod (20) in a threaded way, the extension fixing sleeve (22) is connected with the extension groove (23) in a sliding way, an extension plate (25) is fixed on the side edge of the extension fixing sleeve (22), the bottom of the extension plate (25) is arranged below the bottom plate (24) to form a laminated structure.

7. The automated multilayer production line according to claim 6, wherein the accumulation guide plate (31) is fixed with a protective pad (26), and a side protective rail (12) is fixed above the support baffle (6).

Background

In the assembly line production process, often can need to dry the finished product, generally need place the finished product and carry out long-time weathering on the one deck assembly line, put comparatively densely between the finished product, and one deck assembly line area is great for the effect of drying is not good.

Disclosure of Invention

The present invention is directed to a multi-layer automated production line, which solves the above problems of the prior art.

In order to achieve the purpose, the invention provides the following technical scheme:

a multilayer automatic production line comprises a base and a line structure, wherein the base is provided with the line structure, the line structure comprises a transmission support rod, a transmission structure, a longitudinal height adjusting structure, a support baffle, a drying structure, a layer of blanking outlet, a bottom transmission plate and a gathering blanking structure, the transmission support rod is symmetrically fixed above the base, the support baffle is fixed in the middle of the adjacent transmission support rod, the transmission structure is arranged at the side edge of the support baffle, the end part of the transmission support rod is provided with the transmission support rod of the upper layer through the longitudinal height adjusting structure, the drying structure is arranged on the adjacent support baffle, the output end of the transmission structure of the upper layer is provided with the layer of blanking outlet, the output end of the transmission structure of the bottom is provided with the bottom blanking outlet, the side edge of the base is provided with the bottom transmission plate, the height of the bottom conveying plate is equal to that of the bottom layer discharging outlet, and the one-layer discharging outlet is arranged on the side edge above the bottom conveying plate through the gathering discharging structure.

As a further scheme of the invention: conveying structure includes drive bracing piece, drive roller and conveyer, transmission bracing piece side is fixed with the drive bracing piece, it is provided with the drive roller to rotate on the drive bracing piece, the drive roller drives through power device, is provided with conveyer just between the adjacent drive roller conveyer has last the heat dissipation mesh of having seted up.

As a still further scheme of the invention: the longitudinal height adjusting structure comprises an adjusting telescopic rod and a hinged connecting rod, the adjusting telescopic rod is fixed between every two adjacent transmission supporting rods, the hinged connecting rod is hinged to the adjusting telescopic rod, the bottom of the hinged connecting rod is hinged to a fixed position of the adjusting telescopic rod, the top of the hinged connecting rod is hinged to the bottom of the transmission supporting rod above the adjusting telescopic rod, and the output end of the adjusting telescopic rod is fixed to the bottom of the transmission supporting rod above the adjusting telescopic rod.

As a still further scheme of the invention: drying structure includes top fixed plate, fixed stay board, air-supply line, dust absorption mouth, dust absorption pump, dust absorption export, dust absorption pipeline, hot plate, air inlet supporting seat and air intake, the backup pad side symmetry is fixed with fixed stay board, the fixed stay board end fixing has the top fixed plate, the backup pad bottom is fixed with the air inlet supporting seat, the UNICOM is provided with the air-supply line on the air inlet supporting seat, the array is provided with the air intake on the air-supply line, air inlet supporting seat top is fixed with the hot plate, the hot plate is netted, there is conveyer belt hot plate top, the dust absorption mouth has been seted up on the inside top of top fixed plate, the dust absorption mouth is provided with the dust absorption pump through dust absorption pipeline UNICOM, dust absorption pump output is provided with the dust absorption export.

As a still further scheme of the invention: the gathering and discharging structure comprises a gathering guide plate, a lower material plate and an extension structure, the output end of the supporting baffle plate is fixed with a gathering guide plate, the output end of the gathering guide plate is provided with the lower material plate, the extension structure is arranged on the lower material plate, the lower material plate is obliquely arranged, and the output end of the lower material plate is provided with a layer of discharging outlet.

As a still further scheme of the invention: the extension structure is including extending lead screw, extension board, bottom plate, extending fixed cover, extension groove and inside motor, the flitch falls into two sections down, and one section is the bottom plate, and another section is the extension board, the extension groove has been seted up to the bottom plate side, extension inslot portion is fixed with inside motor, inside motor drive connects the extension lead screw, the screw thread is provided with the extension fixed cover on the extension lead screw, extend fixed cover and extension groove sliding connection, it is fixed with the extension board to extend fixed cover side, the setting of extension board bottom is the stacked structure in the bottom plate below.

As a still further scheme of the invention: the gathering guide plate is fixed with a protective pad, and a side protective railing is fixed above the supporting baffle.

Compared with the prior art, the invention has the beneficial effects that: by the aid of the multi-layer conveying structure, finished products can be dispersed and dried, and drying effect is good; the device is provided with an aggregation guide plate, a blanking plate, a first layer of blanking outlets and a bottom layer of blanking outlets, so that blanking can be conveniently carried out, all finished products can be neatly placed on the bottom conveying plate again, and blanking is realized; the device is provided with the air inlet and the dust suction port, so that air flows fast, and dust on a finished product can be adsorbed while drying is accelerated.

Drawings

FIG. 1 is a schematic diagram of a multi-layer automated production line.

Fig. 2 is a schematic diagram of a drying structure in a multilayer automatic production line.

FIG. 3 is a schematic diagram of an extension structure in a multi-layer automated production line.

FIG. 4 is a schematic diagram of a bottom layer transfer station in the multi-layer automated production line.

FIG. 5 is a schematic diagram of the position of the extension plate in the multi-layer automated production line.

Fig. 6 is a schematic view of the position of the accumulation guide plate in the multilayer automated production line.

In the figure: 1. a base; 2. a transmission support rod; 3. driving the support rod; 4. a drive roller; 5. a hinged connecting rod; 6. a support baffle; 7. a top fixing plate; 8. fixing the support plate; 9. adjusting the telescopic rod; 10. a conveyor belt; 11. an air inlet pipeline; 12. side guard rails; 13. a dust suction port; 14. a dust suction pump; 15. a dust collection outlet; 16. a dust collection duct; 17. heating plates; 18. an air inlet supporting seat; 19. an air inlet; 20. an extension screw rod; 21. an internal motor; 22. extending the fixing sleeve; 23. an extension groove; 24. a base plate; 25. an extension plate; 26. a protective pad; 27. a first layer of discharging outlet; 28. a bottom transfer plate; 29. a bottom layer blanking outlet; 30. a blanking plate; 31. a collecting guide plate.

Detailed Description

The technical solution of the present invention will be described in further detail with reference to specific embodiments.

Example 1

Referring to fig. 1-6, a multilayer automatic production line comprises a base 1 and a line structure, wherein the base 1 is provided with the line structure, the line structure comprises a transmission support rod 2, a transmission structure, a longitudinal height adjusting structure, a support baffle 6, a drying structure, a first layer discharging outlet 27, a bottom layer discharging outlet 29, a bottom transmission plate 28 and a gathering discharging structure, the transmission support rod 2 is symmetrically fixed above the base 1, the support baffle 6 is fixed in the middle of the adjacent transmission support rod 2, the transmission structure is arranged on the side edge of the support baffle 6, the end of the transmission support rod 2 is provided with the transmission support rod 2 of the previous layer through the longitudinal height adjusting structure, the drying structure is arranged on the adjacent support baffle 6, the output end of the transmission structure of the upper layer is provided with the first layer discharging outlet 27, the output end of the transmission structure of the bottom is provided with the bottom layer discharging outlet 29, the base 1 side is provided with bottom conveying board 28, the height of bottom conveying board 28 and bottom unloading export 29 keep equal, one deck unloading export 27 sets up the side in bottom conveying board 28 top through gathering blanking structure. Firstly, a longitudinal height adjusting structure is utilized, the distance between conveying structures with different heights is adjusted, the most suitable height difference can be achieved, then, finished products are conveyed from the conveying structures with different heights in the production process, the drying structures are utilized to perform drying and cooling treatment on the finished products in the conveying process, the finished products after top cooling are gathered through gathering and blanking structures and then reach the side edge of a bottom conveying plate 28 through a layer of blanking outlet 27, the finished products at the bottom reach the middle position of the bottom conveying plate 28 through a bottom layer blanking outlet 29, the drying performance of the finished products can be higher through the multilayer conveying structure, the gathering and blanking structures enable the finished products to be gathered through the layer of blanking outlet 27 and the bottom layer blanking outlet 29, and the finished products can be placed on the bottom conveying plate 28 in order to perform conveying and blanking.

In above-mentioned multilayer automated production assembly line, the conveying structure includes drive bracing piece 3, drive roller 4 and conveyer 10, 2 sides of drive bracing piece are fixed with drive bracing piece 3, it is provided with drive roller 4 to rotate on the drive bracing piece 3, drive roller 4 drives through power device, is provided with conveyer 10 just between the adjacent drive roller 4 the heat dissipation mesh has been seted up on the conveyer 10. Utilize power device to drive roller 4 and rotate for the finished product conveys through conveyer 10, utilizes the heat dissipation mesh to dispel the heat, makes the finished product can dispel the heat in the transportation on conveyer 10.

In the above-mentioned multilayer automated production assembly line, vertical altitude mixture control structure includes adjustment telescopic link 9 and articulated connecting rod 5, is fixed with adjustment telescopic link 9 in the middle of the adjacent transmission bracing piece 2, the articulated connecting rod 5 that is provided with on the adjustment telescopic link 9, the articulated fixed position that sets up at adjustment telescopic link 9 in articulated connecting rod 5 bottom, articulated 2 bottoms that set up the transmission bracing piece above in articulated connecting rod 5 top, adjustment telescopic link 9 output end is fixed in the 2 bottoms of transmission bracing pieces above. By adjusting the extension of the telescopic rod 9, the height between the transmission support rods 2 can be adjusted, and by changing the angle of the hinged connecting rod 5, the height difference between the adjacent transmission support rods 2 can be clearly observed.

In the above multilayer automated production assembly line, the stoving structure includes top fixed plate 7, fixed support plate 8, air inlet pipeline 11, dust absorption mouth 13, dust absorption pump 14, dust absorption export 15, dust absorption pipeline 16, hot plate 17, air inlet supporting seat 18 and air intake 19, 6 side symmetry of supporting shield is fixed with fixed support plate 8, 8 end fixing of fixed support plate has top fixed plate 7, 6 bottoms of supporting shield are fixed with air inlet supporting seat 18, the intercommunication is provided with air inlet pipeline 11 on the air inlet supporting seat 18, the array is provided with air intake 19 on the air inlet pipeline 11, be fixed with hot plate 17 above the air inlet supporting seat 18, hot plate 17 is netted, there is conveyer belt 10 above hot plate 17, dust absorption mouth 13 has been seted up on the inside top of top fixed plate 7, dust absorption mouth 13 is provided with dust absorption pump 14 through 16 UNICOMs of dust absorption pipeline, the output end of the dust suction pump 14 is provided with a dust suction outlet 15. Utilize air inlet pipeline 11 air inlet, utilize air intake 19 to blow near hot-air of hot plate 17 for pass conveyer 10 and cool down the stoving to the finished product, utilize dust absorption pump 14 to extract gas afterwards, make the interchange of realization air that can be quick, can adsorb the impurity on the finished product simultaneously, be convenient for clean.

In above-mentioned multilayer automated production assembly line, gather blanking structure including gathering guide board 31, unloading board 30 and extending structure, 6 output ends of supporting baffle are fixed with gathering guide board 31, gathering guide board 31 output is provided with unloading board 30, be provided with extending structure on the unloading board 30 just unloading board 30 slope sets up down, unloading board 30 output is provided with one deck unloading export 27 down. The position of the output end of the blanking plate 30 can be adjusted by the extension structure, so that the output end of the blanking outlet 27 of one layer can abut against the bottom conveying plate 28, and the finished products can be gathered by the arc-shaped structure of the gathering guide plate 31, so that the finished products sequentially fall from the blanking plate 30 onto the bottom conveying plate 28.

In above-mentioned multilayer automated production assembly line, extend the structure including extending lead screw 20, extension board 25, bottom plate 24, extending fixed cover 22, extension groove 23 and inside motor 21, flitch 30 falls into two sections down, and one section is bottom plate 24, and another section is extension board 25, extension groove 23 has been seted up to bottom plate 24 side, extension groove 23 inside is fixed with inside motor 21, inside motor 21 drive connection extends lead screw 20, the screw thread is provided with the fixed cover 22 of extension on the extension lead screw 20, extend fixed cover 22 and extension groove 23 sliding connection, it is fixed with extension board 25 to extend fixed cover 22 side, extension board 25 bottom sets up and is the stacked structure in bottom plate 24 below. When the length of the blanking plate 30 needs to be adjusted, the extension screw rod 20 is driven to rotate by the internal motor 21, so that the extension fixing sleeve 22 slides in the extension groove 23, the extension plate 25 can be separated from the overlapped part of the bottom plate 24, and the extension of the blanking plate 30 is realized.

Example 2

Compared with embodiment 1, the improvement point of the present embodiment is that: the gathering guide plate 31 is fixed with a protective pad 26, and a side protective barrier 12 is fixed above the supporting baffle 6. The protection of the finished product is realized by the action of the protective pad 26, and the damage is avoided.

The working principle of the invention is as follows: firstly, the distance between the conveying structures with different heights is adjusted by utilizing the adjustment of the adjusting telescopic rod 9, so that the most suitable height difference can be achieved, meanwhile, the extension screw rod 20 is driven by the internal motor 21 to rotate, the extension fixing sleeve 22 slides in the extension groove 23, so that the overlapped part of the extension plate 25 and the bottom plate 24 can be taken away, the adjustment of the blanking plate 30 is realized, then, the finished product is conveyed from the conveying structures with different heights in the production process, the drying structure is utilized to carry out drying and cooling treatment on the finished product in the conveying process, the finished product after top cooling is gathered through the gathering blanking structure and then reaches the side edge of the bottom conveying plate 28 through the one-layer blanking outlet 27, and the finished product at the bottom reaches the middle position of the bottom conveying plate 28 through the bottom blanking outlet 29, so that the drying performance of the finished product can be higher by utilizing the multi-layer conveying structure, and the finished products are gathered through the first-layer blanking outlet 27 and the bottom-layer blanking outlet 29 by using the gathering blanking structure, so that the finished products can be neatly placed on the bottom conveying plate 28 for conveying and blanking.

The invention has the beneficial effects that: by the aid of the multi-layer conveying structure, finished products can be dispersed and dried, and drying effect is good; the device is provided with an aggregation guide plate, a blanking plate, a first layer of blanking outlets and a bottom layer of blanking outlets, so that blanking can be conveniently carried out, all finished products can be neatly placed on the bottom conveying plate again, and blanking is realized; the device is provided with the air inlet and the dust suction port, so that air flows fast, and dust on a finished product can be adsorbed while drying is accelerated.

While the preferred embodiments of the present invention have been described in detail, the present invention is not limited to the above embodiments, and various changes can be made without departing from the spirit of the present invention within the knowledge of those skilled in the art.

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