Automatic production equipment for plastic umbrella cover

By designing fully automated plastic umbrella surface production equipment, the problems of low efficiency and poor aesthetics in the existing technology are solved, and efficient and automated production of plastic umbrellas are realized.

CN223237019UActive Publication Date: 2025-08-19JANEFER DAILY-USE COMMODITY (SHANGHAI) CO LTD
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Patent Information

Application Number
CN202422257409.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-14
Publication Date
2025-08-19
Estimated Expiration
2034-09-14

AI Technical Summary

Technical Problem

The prior art cannot fully automatically complete the cutting, sewing and other processes of plastic umbrellas, resulting in low efficiency and poor aesthetics of umbrellas.

Method used

Design a plastic umbrella surface automation production equipment, including conveyor belts, preparation stations, columns and cross plates, and is equipped with loading equipment, cutting devices, umbrella side hot pressing devices, bead tail device, hot pressing and shaping devices, cooling devices and adsorption devices, and fully automated production is achieved through PLC control.

Benefits of technology

It realizes fully automatic preparation and mobile storage of plastic umbrella surfaces, improves preparation efficiency, and improves the aesthetics and production efficiency of umbrellas.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses plastic umbrella fabric automatic production equipment, including: conveyor belt, preparation station, stand column and transverse plate, preparation station is placed on the conveyor belt, the two sides of conveyor belt are respectively provided with the stand column, the transverse plate is fixedly installed in the middle of the stand column, the transverse plate is fixed on the stand column, and the preparation station is placed on the conveyor belt. A feeding device, a cutting device, an umbrella edge hot-pressing device, a bead tail beating device, a hot-pressing shaping device, a cooling device and an adsorption device are sequentially and fixedly installed on the transverse plate in the conveying direction of the conveying belt, and a moving device and a storage bin are arranged at the tail end of the conveying belt in the transmission direction. According to the automatic production equipment for the plastic umbrella cover, the preparation process of the plastic umbrella cover is set into one equipment, preparation and mobile storage of the plastic umbrella cover can be fully automatically realized, and the preparation efficiency of the plastic umbrella is greatly improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of plastic umbrella cover production equipment, in particular to an automated plastic umbrella cover production equipment. Background Art

[0002] The manufacturing of plastic umbrellas involves many aspects, including design, material selection, production process, etc., to ensure the functionality, durability and aesthetics of the umbrella.

[0003] The production process of plastic umbrellas involves multiple steps, including cutting, sewing, and assembly. First, the umbrella cover material is cut according to the design, and then the cover and ribs are connected by sewing. However, the sewn cover has the risk of unraveling, and the production process is largely manual, which is inefficient and produces unattractive umbrellas.

[0004] Therefore, a one-piece plastic umbrella is designed. After the plastic is cut into a one-piece umbrella shape during cutting, the processes of edge welt, beading and shaping are completed. However, there is currently no equipment that can complete these processes fully automatically. Utility Model Content

[0005] The purpose of the present invention is to provide an automated production device for plastic umbrellas to solve the defects mentioned in the above background technology.

[0006] To achieve the above-mentioned purpose, an automated production equipment for plastic umbrella surfaces is provided, comprising: a conveyor belt, a preparation station, a column and a cross board. The preparation station is placed on the conveyor belt, and a column is provided on each side of the conveyor belt. The cross board is fixedly installed in the middle of the column. A loading device, a cutting device, an umbrella edge hot pressing device, a beading tail device, a hot pressing shaping device, a cooling device and an adsorption device are fixedly installed on the cross board in sequence according to the conveying direction of the conveyor belt. A moving device and a storage bin are provided at the tail end of the conveyor belt in the transmission direction.

[0007] Furthermore, the preparation station includes a station base, a station positioning plate and a lower telescopic cylinder, an upper surface of the station base is provided with a mounting groove, the station positioning plate is fixedly connected in the mounting groove, the station positioning plate is a regular polygonal pyramid structure, a through hole is provided at the cone tip of the station positioning plate, the through hole is a cylindrical structure, the station positioning plate is a telescopic plate, the lower end of the station positioning plate is connected to the lower telescopic cylinder, the inner groove wall of the mounting groove is provided with an air flow channel, and the lower end of the air flow channel is connected to an air flow pipe, and the outer end of the air flow pipe is connected to an air suction pump; linear slide rails and fixed grooves are provided on the left and right sides of the upper part of the station positioning plate, a hot-pressed plastic groove is provided in the middle of the station positioning plate, and a crimping groove is provided on the outer edge of the fixed groove; a discharge port is also provided on the surface of the station positioning plate, The upper end of the lower frame is fixedly connected to the lower fixing plate, and the position of the lower frame is fixedly connected to the lower fixing plate. The upper end of the lower frame is provided with a storage groove, and the upper end of the lower frame is movably connected to the storage groove by an electric rod, and the electric rod is fixedly connected to the lower surface of the lower fixing plate. The upper surface of the main pushing plate is fixedly connected to the heating assembly, and the other end of the upper end of the lower fixing plate is provided with a through-opening, and the position of the lower surface of the lower fixing plate relative to the through-opening is fixedly connected to the material storage box. At the same time, a moving groove is symmetrically provided in the inner side of the material storage box, and the main screw rod is movably connected to the main screw rod through a bearing. The main screw rod is connected to the servo motor through a coupling, and the servo motor is fixedly connected to the outer side of the material storage box, and the moving plate pushes the auxiliary pushing plate to move in the material storage box through the screwed main screw rod, and a sliding groove is provided corresponding to the position of the lower surface of the work station positioning plate relative to the lower fixed plate.

[0008] Furthermore, the feeding equipment includes: a feeding roller and a receiving roller, the feeding roller is fixedly mounted on the column, the receiving roller is fixedly mounted on the horizontal plate, and a positioning roller is also provided on the middle horizontal plate of the feeding roller and the receiving roller, the positioning roller and the lower roller barrel in the feeding roller are in the same horizontal plane, and the cutting device is provided between the feeding roller and the receiving roller.

[0009] Furthermore, the cutting device includes a cutting servo electric cylinder and a cutting frame, the cutting servo electric cylinder is fixedly connected to the horizontal plate, the telescopic rod of the cutting servo electric cylinder is fixedly connected to the cutting frame, the driving seat is fixedly installed on the surface of the cutting frame, and the middle part of the driving seat is fixedly installed with a cylinder fixing plate, and three groups of mounting holes are evenly opened on the cylinder fixing plate, and the cylinder fixing plate is fixedly connected to the piston rod of the external driving cylinder, a cutting knife is provided at the bottom of the cutting frame, and a notch forming knife is fixedly installed on the inner wall of the cutting knife, and an indentation blunt knife is installed on the inner side of the cutting knife.

[0010] Furthermore, the umbrella edge hot pressing device includes: a fixed sleeve, an upper telescopic cylinder, an upper fixed plate and an upper umbrella edge heating block, the upper end of the horizontal plate is fixed to the fixed sleeve, and the upper telescopic cylinder is installed in the fixed sleeve, the lower end of the upper telescopic cylinder is fixedly linked to the upper fixed plate, and the upper umbrella edge heating block is fixed at the lower end surface of the upper fixed plate.

[0011] Furthermore, the bead tail device includes: a first cylinder, a second cylinder, a pressing assembly and a placement plate. The first cylinder and the second cylinder are installed on the upper end of the horizontal plate. The lower end of the first cylinder is connected to the pressing assembly, and the lower side of the pressing assembly is provided with a placement plate, and the upper center of the placement plate is connected to a lifting rod, the upper end of the lifting rod is connected to a drive box, and the drive box is connected to the lower end of the second cylinder.

[0012] Furthermore, the hot pressing shaping device includes a shaping servo electric cylinder and an umbrella surface heating block. The shaping servo electric cylinder is fixedly connected to the horizontal plate. The telescopic rod of the shaping servo electric cylinder is fixedly connected to the umbrella surface heating block. The umbrella surface heating block has a regular polygonal pyramid structure.

[0013] Furthermore, it also includes an adsorption plate, which has a regular polygonal pyramid structure and has a plurality of suction holes and blowing holes on its surface.

[0014] Furthermore, the adsorption device includes an adsorption servo electric cylinder, an air suction device and an air blowing device. The adsorption servo electric cylinder is fixedly connected to the horizontal plate, and the telescopic rod of the adsorption servo electric cylinder is fixedly connected to the adsorption plate. A fixed seat is fixed on the adsorption plate, and the air suction device and the air blowing device are installed in the fixed seat. A plurality of through holes are opened on the lower wall of the fixed seat. The air suction device is connected to the air suction hole through an air suction hose, and the air suction hose is connected to the air suction hole through the through hole. The air blowing device is connected to the air blowing hole through the air blowing hose, and the air blowing hose is connected to the air blowing hole through the through hole.

[0015] Furthermore, the moving device includes a robotic arm, a rotating table is fixedly installed at the lower end of the robotic arm, a robotic arm seat is fixedly connected to the bottom of the rotating table, a rotating axis is provided on the robotic arm, and the top of the robotic arm is fixedly connected to a beam, the beam is a square structure, and the beam is a hollow structure, the adsorption plate is fixedly connected to the beam, a blowing device and a suction device are fixedly installed in the beam, a plurality of through holes are provided on the lower wall of the beam, the suction device is connected to the suction hole through a suction hose, the suction hose is connected to the suction device and the suction hole through the through hole, the blowing device is connected to the blowing hole through a blowing hose, and the blowing hose is connected to the blowing device and the blowing hole through the through hole.

[0016] Furthermore, the air suction device comprises: an air suction pipe and an air suction pump, wherein the air suction pipe is connected to an air suction hose, and the outer end of the air suction pipe is connected to the air suction pump;

[0017] The blowing device includes: an air blowing pipe, an air shaft, a solid support shaft and an air inlet nozzle, the air blowing pipe is provided with several air blowing nozzles, the air blowing holes are connected to the air blowing nozzles through an air blowing hose, and axial holes are provided on both side walls of the air blowing pipe, the axial hole on one side is plugged into the air shaft through a support bearing, and the axial hole on the other side is plugged into the solid support shaft through a support bearing, the outer ends of the air shaft and the solid support shaft are both provided with a fixed shaft, the fixed shaft is fixed to the inner wall of the beam / fixed seat, an air inlet nozzle is screwed on the outer wall of the air shaft, the air inlet nozzle is communicated with the inner cavity of the air shaft, the air inlet nozzle is connected to one end of an air inlet pipe, the other end of the air inlet pipe is connected to the outside of the beam, and a limiting member is sleeved on the outer wall of the solid support shaft.

[0018] Furthermore, the cooling device includes: a cooling servo electric cylinder, a shell, a mounting plate, heat-absorbing fins, a confluence, an air pump, a diverter, and heat dissipation fins. The cooling servo electric cylinder is fixedly installed on the horizontal plate, and the telescopic rod of the cooling servo electric cylinder is fixedly connected to the shell. The upper and lower ends of the inner bottom wall of the shell are respectively fixed with a mounting plate by bolts, and a plurality of heat-absorbing fins are fixedly connected to the mounting plate located at the lower end of the inner bottom wall of the shell. The heat-absorbing fins are connected to the confluence, and the confluence is connected to the air pump fixedly installed in the middle of the inner wall of the shell through a ventilation pipe. A plurality of heat dissipation fins are fixedly connected to the mounting plate located at the upper end of the inner bottom wall of the shell, and the heat dissipation fins are connected to the diverter, and the diverter is connected to the air pump through the ventilation pipe. The shell is provided with a plurality of heat dissipation holes.

[0019] Furthermore, the storage bin includes: a storage base, an installation groove is provided in the storage base, a storage positioning plate is fixedly connected in the installation groove, the storage positioning plate is a regular polygonal pyramid structure, a through hole is provided at the cone tip of the storage positioning plate, and the through hole is a cylindrical structure.

[0020] Furthermore, the conveyor belt is an annular conveyor belt, and at least 6 preparation stations are placed.

[0021] Compared with the prior art, the beneficial effect of the present invention is that the preparation process of the plastic umbrella surface is integrated into one device, which can fully automatically realize the preparation and mobile storage of the plastic umbrella surface, and set a number of preparation stations on the conveyor belt. As the conveyor belt conveys, the preparation stations complete the plastic cutting, edging, beading, shaping and umbrella strap sticking processes in sequence, which greatly improves the preparation efficiency of the plastic umbrella. BRIEF DESCRIPTION OF THE DRAWINGS

[0022] Figure 1This is a schematic diagram of the structure of the utility model;

[0023] Figure 2 This is a schematic diagram of the structure preparation station of the utility model;

[0024] Figure 3 This is a top view schematic diagram of the structure preparation station of the utility model;

[0025] Figure 4 For the utility model structure Figure 2 Schematic diagram of point A;

[0026] Figure 5 This is a schematic diagram of the main view of the structural cutting device of the utility model;

[0027] Figure 6 This is a schematic diagram of the structural cutting device of the utility model;

[0028] Figure 7 This is a schematic diagram of the hot pressing device for the umbrella edge structure of the utility model;

[0029] Figure 8 This is a schematic diagram of the bead tail device of the utility model;

[0030] Figure 9 This is a schematic diagram of the hot pressing shaping device of the utility model;

[0031] Figure 10 This is a schematic diagram of the structural cooling device of the utility model;

[0032] Figure 11 This is a schematic diagram of the internal structure of the casing of the structural cooling device of the utility model;

[0033] Figure 12 This is a schematic diagram of the structural adsorption device of the utility model;

[0034] Figure 13 This is a schematic diagram of the structural moving device of the utility model.

[0035] Numbers in the figure: 1. Conveyor belt; 2. Preparation station; 21. Station base; 22. Station positioning plate; 23. Lower telescopic cylinder; 24. Air flow channel; 25. Air flow pipe; 26. Suction pump; 27. Lower umbrella edge heating block; 28. Servo motor; 29. Sliding trough; 210. Hot pressing plastic trough; 211. Pressing trough; 212. Discharge port; 213. Lower fixed plate; 214. Main push plate; 215. Electric rod; 216. Heating assembly; 218. Storage box; 219. Moving trough; 220. Main screw rod; 3. Column; 4. Horizontal Plate; 5. Loading equipment; 51. Loading roller; 52. Receiving roller; 53. Positioning roller; 54. Plastic; 6. Cutting device; 61. Cutting frame; 62. Drive seat; 63. Cylinder fixing plate; 64. Cutting knife; 65. Notch forming knife; 66. Indentation blunt knife; 67. Cutting servo electric cylinder; 7. Umbrella edge hot pressing device; 71. Fixing sleeve; 72. Upper telescopic cylinder; 73. Upper fixing plate; 74. Upper umbrella edge heating block; 8. Bead tail device; 81. First cylinder; 82. Second cylinder; 83. Pressing assembly; 84. Placement plate; 8 5. Lifting rod; 86. Drive box; 9. Hot pressing and shaping device; 91. Shaping servo cylinder; 92. Umbrella heating block; 10. Cooling device; 101. Cooling servo cylinder; 102. Housing; 103. Mounting plate; 104. Heat absorbing fins; 105. Convergence; 106. Ventilation pipe; 107. Air pump; 108. Diverter; 109. Heat dissipation fins; 1010. Heat dissipation holes; 11. Adsorption device; 111. Adsorption servo cylinder; 112. Fixing seat; 113. Suction hose; 114. Blowing hose; 12. Moving Device; 121. Robotic arm; 122. Rotating table; 123. Robotic arm base; 124. Rotating axis; 125. Beam; 13. Storage bin; 131. Storage base; 132. Storage positioning plate; 14. Adsorption plate; 141. Suction hole; 142. Blowing hole; 15. Suction device; 151. Suction pipe; 152. Air pump; 16. Blowing device; 161. Blowing pipe; 162. Limiting member; 163. Hollow shaft; 164. Solid support shaft; 165. Fixed shaft; 166. Inlet nozzle; 167. Inlet pipe. DETAILED DESCRIPTION

[0036] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0037] See also Figure 1The present invention provides an automated production device for plastic umbrellas, comprising: a conveyor belt 1, a preparation station 2, a column 3, and a cross plate 4. The conveyor belt 1 is an endless conveyor belt 1, and at least six preparation stations 2 are placed on the conveyor belt 1. The number of preparation stations 2 can be increased according to the length of the endless conveyor belt 1. A column 3 is provided on each side of the conveyor belt 1, and the cross plate 4 is fixedly installed between the columns 3. The cross plate 4 is fixedly installed with a feeding device 5, a cutting device 6, an umbrella edge hot pressing device 7, a beading tail device 8, a hot pressing and shaping device 9, a cooling device 10, and an adsorption device 11 in sequence along the transmission direction of the conveyor belt 1. A moving device 12 and a storage bin 13 are provided at the tail end of the conveyor belt 1 in the transmission direction.

[0038] In this embodiment, the conveyor belt 1, the preparation station 2, the loading equipment 5, the cutting device 6, the umbrella edge hot pressing device 7, the bead tail device 8, the hot pressing and shaping device 9, the cooling device 10, the adsorption device 11 and the moving device 12 are all connected to the PLC and controlled by the PLC.

[0039] like Figure 2-Figure 4As shown, in this embodiment, the preparation station 2 includes a station base 21, a station positioning plate 22 and a lower telescopic cylinder 23. The upper surface of the station base 21 is provided with a mounting groove, and the station positioning plate 22 is fixedly connected in the mounting groove. The station positioning plate 22 is a regular hexagonal pyramid structure, and a through hole is provided at the cone tip of the station positioning plate 22. The through hole is a cylindrical structure. The station positioning plate 22 is a telescopic plate. The telescopic plate has at least two sections, wherein the section with a smaller area is located below the section with a larger area, and both sides slide smoothly. The station positioning plate 22 The lower end is connected to the lower telescopic cylinder 23, wherein a section of the telescopic plate with a smaller area is connected to the lower telescopic cylinder 23, the inner groove wall of the mounting groove is provided with an air flow channel 24, and the lower end of the air flow channel 24 is connected to an air flow pipe 25, and the outer end of the air flow pipe 25 is connected to an air suction pump 26; a lower umbrella edge heating block 27 is provided on the station positioning plate 22, and an umbrella cloth is provided on the upper end surface of the lower umbrella edge heating block 27; linear slide rails and fixed grooves are provided on both sides of the upper part of the station positioning plate 22, and a hot pressing plastic groove 210 is provided in the middle of the station positioning plate 22 , the outer edge of the fixed groove is provided with a crimping groove 211; the surface of the station positioning plate 22 is also provided with a discharge port 212, and the lower surface of the station positioning plate 22 is fixedly connected to the lower fixed plate 213 relative to the position of the discharge port 212, and the upper surface of the lower fixed plate 213 is provided with a receiving groove at one end relative to the discharge port 212, and the main push plate 214 is movably connected to the receiving groove through the electric rod 215, and the electric rod 215 is fixedly connected to the lower surface of the lower fixed plate 213, the upper surface of the main push plate 214 is fixedly connected to the heating component 216, and the other end of the upper surface of the lower fixed plate 213 is fixedly connected to the heating component 216. A through-hole is provided at the end, and the lower surface of the lower fixed plate 213 is fixedly connected to the material storage box 218 at a position relative to the through-hole. At the same time, a movable groove 219 is symmetrically provided on the inner side of the material storage box 218. The movable groove 219 is movably connected to the main screw rod 220 through a bearing. The main screw rod 220 is connected to the servo motor 28 through a coupling, and the servo motor 28 is fixedly connected to the outer side of the material storage box 218, and the movable plate pushes the auxiliary push plate to move in the material storage box 218 through the screwed main screw rod 220, and a sliding groove 29 is provided on the lower surface of the work station positioning plate 22 corresponding to the position of the lower fixed plate 213.

[0040] like Figure 1As shown, in this embodiment, the feeding device 5 includes a feeding roller 51 and a receiving roller 52. The feeding roller 51 is fixedly mounted on the column 3, and the receiving roller 52 is fixedly mounted on the cross plate 4. A positioning roller 53 is also provided on the cross plate 4 between the feeding roller 51 and the receiving roller 52. The positioning roller 53 and the lower roller of the feeding roller 51 are on the same horizontal plane. The cutting device 6 is located between the feeding roller 51 and the receiving roller 52. Plastic 54 is placed between the feeding roller 51 and the receiving roller 52, and the positioning roller 53 is used to ensure that the plastic 54 is flat. After cutting is completed, the receiving roller automatically rewinds the waste plastic 54.

[0041] like Figure 5-Figure 6 As shown, in this embodiment, the cutting device 6 includes a cutting servo electric cylinder 67 and a cutting frame 61, the cutting servo electric cylinder 67 is fixedly connected to the horizontal plate 4, the telescopic rod of the cutting servo electric cylinder 67 is fixedly connected to the cutting frame 61, the driving seat 62 is fixedly installed on the surface of the cutting frame 61, and the middle part of the driving seat 62 is fixedly installed with a cylinder fixing plate 63, and three groups of mounting holes are evenly opened on the cylinder fixing plate 63, and the cylinder fixing plate 63 is fixedly connected to the piston rod of the external driving cylinder, a cutting knife 64 is provided at the bottom of the cutting frame 61, and a notch forming knife 65 is fixedly installed on the inner wall of the cutting knife 64, and an indentation blunt knife 66 is installed on the inner side of the cutting knife 64.

[0042] like Figure 7 As shown, in this embodiment, the umbrella edge hot pressing device 7 includes: a fixed sleeve 71, an upper telescopic cylinder 72, an upper fixed plate 73 and an upper umbrella edge heating block 74. The upper end of the horizontal plate 4 is fixed to the fixed sleeve 71, and the upper telescopic cylinder 72 is installed in the fixed sleeve 71. The lower end of the upper telescopic cylinder 72 is fixedly linked to the upper fixed plate 73, and the upper umbrella edge heating block 74 is fixed at the lower end surface of the upper fixed plate 73.

[0043] like Figure 8 As shown, in this embodiment, the bead tail device 8 includes: a first cylinder 81, a second cylinder 82, a pressing assembly 83 and a placement plate 84. The first cylinder 81 and the second cylinder 82 are installed on the upper end of the horizontal plate 4. The lower end of the first cylinder 81 is connected to the pressing assembly 83, and the lower side of the pressing assembly 83 is provided with a placement plate 84, and the upper center of the placement plate 84 is connected to a lifting rod 85. The upper end of the lifting rod 85 is connected to a drive box 86, and the drive box 86 is connected to the lower end of the second cylinder 82.

[0044] like Figure 9As shown, in this embodiment, the hot pressing shaping device 9 includes a shaping servo electric cylinder 91 and an umbrella surface heating block 92. The shaping servo electric cylinder 91 is fixedly connected to the horizontal plate 4. The telescopic rod of the shaping servo electric cylinder 91 is fixedly connected to the umbrella surface heating block 92. The umbrella surface heating block 92 is a regular hexagonal pyramid structure.

[0045] In this embodiment, an adsorption plate 14 is further included. The adsorption plate 14 is in a regular hexagonal pyramid structure, and a plurality of air suction holes 141 and air blowing holes 142 are opened on the surface of the adsorption plate 14 .

[0046] like Figure 10-11 As shown, in this embodiment, the cooling device 10 includes: a cooling servo electric cylinder 101, a housing 102, a mounting plate 103, a heat absorbing fin 104, a confluence 105, an air pump 107, a diverter 108, and a heat dissipating fin 109. The cooling servo electric cylinder 101 is fixedly mounted on the horizontal plate 4, and the telescopic rod of the cooling servo electric cylinder 101 is fixedly connected to the housing 102. The upper and lower ends of the inner bottom wall of the housing 102 are respectively fixed with a mounting plate 103 by bolts. The mounting plate 103 at the lower end of the inner bottom wall of the housing 102 A plurality of heat-absorbing fins 104 are fixedly connected to the upper portion, the heat-absorbing fins 104 are communicated with the concentrator 105, the concentrator 105 is connected to the air pump 107 fixedly installed in the middle of the inner wall of the outer shell 102 through the ventilation pipe 106, a plurality of heat dissipation fins 109 are fixedly connected to the mounting plate 103 located at the upper end of the inner bottom wall of the outer shell 102, the heat dissipation fins 109 are communicated with the diverter 108, the diverter 108 is communicated with the air pump 107 through the ventilation pipe 106, and a plurality of heat dissipation holes 1010 are provided on the outer shell 102.

[0047] like Figure 12 As shown, in this embodiment, the adsorption device 11 includes an adsorption servo electric cylinder 111, an air suction device 15 and an air blowing device 16. The adsorption servo electric cylinder 111 is fixedly connected to the horizontal plate 4, and the telescopic rod of the adsorption servo electric cylinder 111 is fixedly connected to the adsorption plate 14. A fixed seat 112 is fixed on the adsorption plate 14, and the air suction device 15 and the air blowing device 16 are installed in the fixed seat 112. A plurality of through holes are provided on the lower wall of the fixed seat 112. The air suction device 15 is connected to the air suction hole 141 through an air suction hose 113, and the air suction hose 113 is connected to the air suction hole 141 through the through hole. The air blowing device 16 is connected to the air blowing hole 142 through the air blowing hose 114, and the air blowing hose 114 is connected to the air blowing hole 142 through the through hole.

[0048] like Figure 13As shown, in this embodiment, the mobile device 12 includes a robotic arm 121, a rotating platform 122 is fixedly installed at the lower end of the robotic arm 121, a robotic arm seat 123 is fixedly connected to the lower end of the rotating platform 122, a rotating shaft 124 is provided on the robotic arm 121, and a crossbeam 125 is fixedly connected to the top of the robotic arm 121. The crossbeam 125 has a square structure and a hollow structure. The adsorption plate 14 is fixedly connected to the crossbeam 125. The blowing device 16 and the suction device 15 are fixedly installed in the crossbeam 125, and a plurality of through holes are provided on the lower wall of the crossbeam 125. The suction device 15 is connected to the suction hole 141 through the suction hose 113, and the suction hose 113 is connected to the suction device 15 and the suction hole 141 through the through hole. The blowing device 16 is connected to the blowing hole 142 through the blowing hose 114, and the blowing hose 114 is connected to the blowing device 16 and the blowing hole 142 through the through hole.

[0049] In this embodiment, the air suction device 15 includes: an air suction pipe 151 and an air pump 152, the air suction pipe 151 is connected to the air suction hose 113, and the outer end of the air suction pipe 151 is connected to the air pump 152;

[0050] The blowing device 16 includes: a blowing pipe 161, a hollow air shaft 163, a solid support shaft 164 and an air inlet nozzle 166. The blowing pipe 161 is provided with a plurality of blowing nozzles. The blowing hole 142 is connected to the blowing nozzle through a blowing hose 114. Axial holes are provided on both side walls of the blowing pipe 161. The hollow air shaft 163 is inserted into the axial hole on one side through a support bearing, and the solid support shaft 164 is inserted into the axial hole on the other side through a support bearing. The outer end of the core support shaft 164 is provided with a fixed shaft 165, and the fixed shaft 165 is fixed on the inner wall of the cross beam 125 / fixed seat 112. The outer wall of the hollow shaft 163 is screwed with an air inlet nozzle 166, and the air inlet nozzle 166 is connected to the inner cavity of the hollow shaft 163. The air inlet nozzle 166 is connected to one end of an air inlet pipe 167, and the other end of the air inlet pipe 167 is connected to the outside of the cross beam 125. A limiting member 162 is sleeved on the outer wall of the solid support shaft 164.

[0051] In this embodiment, the storage bin 13 includes: a storage base 131, an installation groove is provided in the storage base 131, a storage positioning plate 132 is fixedly connected in the installation groove, the storage positioning plate 132 is a regular hexagonal pyramid structure, and a through hole is provided at the cone tip of the storage positioning plate 132, and the through hole is a cylindrical structure.

[0052] Working principle: the preparation station is placed on the conveyor belt, the feeding equipment lays the plastic and recycles the cut waste, and the lower telescopic cylinder of the preparation station rises so that the station positioning plate is in a flat state. At this time, the cutting device automatically cuts the plastic. After cutting is completed, the preparation station moves to the umbrella edge hot pressing device to complete the umbrella edge hot pressing. The preparation station moves to the beading tail device to complete the fully automatic beading tail and then moves to the hot pressing shaping device. At this time, the lower telescopic cylinder descends, so that the station positioning plate fits the installation groove to form an umbrella shape. After the hot pressing shaping device completes the shaping, the preparation station moves to the cooling device. The cooling equipment cools the shaped umbrella surface and then moves to the adsorption device. The adsorption device first sucks up the umbrella surface, and the discharging port automatically pushes out the umbrella belt. After that, the adsorption device falls and blows the umbrella surface. The preparation station hot presses the umbrella belt and the umbrella surface into one. At this time, the process is completed, and the moving device sucks up the umbrella surface and moves it to the storage bin and blows the umbrella surface to the storage bin. This is the entire working process of the plastic umbrella surface automated production equipment.

[0053] Although the embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and variations may be made to these embodiments without departing from the principles and spirit of the present invention, and the scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. An automated production equipment for plastic umbrellas, comprising: A conveyor belt (1), a preparation station (2), a column (3) and a transverse plate (4), characterized in that: the preparation station (2) is placed on the conveyor belt (1), a column (3) is respectively set on both sides of the conveyor belt (1), the transverse plate (4) is fixedly installed in the middle of the column (3), and the transverse plate (4) is fixedly installed with a feeding device (5), a cutting device (6), an umbrella edge hot pressing device (7), a bead tail device (8), a hot pressing shaping device (9), a cooling device (10) and an adsorption device (11) in sequence according to the transmission direction of the conveyor belt (1), and a moving device (12) and a storage bin (13) are set at the tail end of the transmission direction of the conveyor belt (1).

2. The automated production equipment for plastic umbrellas according to claim 1, characterized in that: The preparation station (2) includes a station base (21), a station positioning plate (22) and a lower telescopic cylinder (23). The upper surface of the station base (21) is provided with a mounting groove, the station positioning plate (22) is fixedly connected in the mounting groove, the station positioning plate (22) is in a regular polygonal pyramid structure, a through hole is provided at the cone tip of the station positioning plate (22), and the through hole is in a cylindrical structure. The station positioning plate (22) is a telescopic plate, the lower end of the station positioning plate (22) is connected to the lower telescopic cylinder (23), and an air flow channel (24) is provided on the inner groove wall of the mounting groove, and The lower end of the airflow channel (24) is connected to an airflow tube (25), and the outer end of the airflow tube (25) is connected to an air suction pump (26); a lower umbrella edge heating block (27) is provided on the work station positioning plate (22), and an umbrella cloth is provided on the upper end surface of the lower umbrella edge heating block (27); linear slide rails and fixed grooves are provided on both the left and right sides of the upper part of the work station positioning plate (22), a hot pressing plastic groove (210) is provided in the middle of the work station positioning plate (22), and a pressing groove (211) is provided on the outer edge of the fixed groove; a discharge port (212) is also provided on the surface of the work station positioning plate (22) ), and the lower surface of the station positioning plate (22) is fixedly connected to the lower fixed plate (213) at a position relative to the discharge port (212), and a receiving groove is provided on the upper surface of the lower fixed plate (213) at one end relative to the discharge port (212), and the main push plate (214) is movably connected to the receiving groove through the electric rod (215), and the electric rod (215) is fixedly connected to the lower surface of the lower fixed plate (213), and the upper surface of the main push plate (214) is fixedly connected to the heating component (216), and the other end of the upper surface of the lower fixed plate (213) is provided with a through hole, and the lower surface of the lower fixed plate (213) is relative to The position of the through-port is fixedly connected to the material storage box (218), and at the same time, a movable groove (219) is symmetrically opened on the inner side of the material storage box (218), and the movable groove (219) is movably connected to the main screw rod (220) through a bearing. The main screw rod (220) is connected to the servo motor (28) through a coupling, and the servo motor (28) is fixedly connected to the outer side of the material storage box (218), and the movable plate pushes the auxiliary push plate to move in the material storage box (218) through the screwed main screw rod (220), and the sliding groove (29) is opened corresponding to the position of the lower surface of the station positioning plate (22) relative to the lower fixed plate (213).

3. The automated production equipment for plastic umbrellas according to claim 1, characterized in that: The feeding equipment (5) comprises: a feeding roller (51) and a receiving roller (52), wherein the feeding roller (51) is fixedly mounted on the upright column (3), and the receiving roller (52) is fixedly mounted on the transverse plate (4). A positioning roller (53) is further provided on the middle transverse plate (4) of the feeding roller (51) and the receiving roller (52), and the positioning roller (53) and the lower roller cylinder of the feeding roller (51) are in the same horizontal plane, and the cutting device (6) is provided between the feeding roller (51) and the receiving roller (52).

4. The automated production equipment for plastic umbrellas according to claim 1, characterized in that: The cutting device (6) comprises a cutting servo electric cylinder (67) and a cutting frame (61). The cutting servo electric cylinder (67) is fixedly connected to the transverse plate (4). The telescopic rod of the cutting servo electric cylinder (67) is fixedly connected to the cutting frame (61). A driving seat (62) is fixedly installed on the surface of the cutting frame (61). A cylinder fixing plate (63) is fixedly installed in the middle of the driving seat (62). Three groups of mounting holes are evenly opened on the cylinder fixing plate (63). The cylinder fixing plate (63) is fixedly connected to the piston rod of the external driving cylinder. A cutting knife (64) is provided at the bottom of the cutting frame (61). A notch forming knife (65) is fixedly installed on the inner wall of the cutting knife (64). At the same time, an indentation blunt knife (66) is installed on the inner side of the cutting knife (64).

5. The automated production equipment for plastic umbrellas according to claim 1, characterized in that: The umbrella edge hot pressing device (7) comprises: a fixing sleeve (71), an upper telescopic cylinder (72), an upper fixing plate (73) and an upper umbrella edge heating block (74); the upper end of the transverse plate (4) is fixed to the fixing sleeve (71), and the upper telescopic cylinder (72) is sleeved in the fixing sleeve (71); the lower end of the upper telescopic cylinder (72) is fixedly connected to the upper fixing plate (73), and the upper umbrella edge heating block (74) is fixed to the lower end surface of the upper fixing plate (73).

6. The automated production equipment for plastic umbrellas according to claim 1, characterized in that: The bead tail device (8) comprises: a first cylinder (81), a second cylinder (82), a pressing assembly (83) and a placement plate (84); the first cylinder (81) and the second cylinder (82) are installed on the upper end of the transverse plate (4); the lower end of the first cylinder (81) is connected to the pressing assembly (83); the lower side of the pressing assembly (83) is provided with a placement plate (84); the upper center of the placement plate (84) is connected to a lifting rod (85); the upper end of the lifting rod (85) is connected to a driving box (86), and the driving box (86) is connected to the lower end of the second cylinder (82).

7. The automated production equipment for plastic umbrellas according to claim 1, characterized in that: The hot pressing shaping device (9) comprises a shaping servo electric cylinder (91) and an umbrella surface heating block (92); the shaping servo electric cylinder (91) is fixedly connected to the horizontal plate (4); the telescopic rod of the shaping servo electric cylinder (91) is fixedly connected to the umbrella surface heating block (92); and the umbrella surface heating block (92) is a regular polygonal pyramid structure.

8. The automated production equipment for plastic umbrellas according to claim 1, characterized in that: The invention also comprises an adsorption plate (14), wherein the adsorption plate (14) is in a regular polygonal pyramid structure, and a plurality of air suction holes (141) and air blowing holes (142) are provided on the surface of the adsorption plate (14).

9. The automated production equipment for plastic umbrellas according to claim 8, characterized in that: The adsorption device (11) comprises an adsorption servo electric cylinder (111), an air suction device (15) and an air blowing device (16); the adsorption servo electric cylinder (111) is fixedly connected to the transverse plate (4); the telescopic rod of the adsorption servo electric cylinder (111) is fixedly connected to the adsorption plate (14); a fixing seat (112) is fixed on the adsorption plate (14); the air suction device (15) and the air blowing device (16) are installed in the fixing seat (112); the fixing seat (112) 12) A plurality of through holes are provided on the lower wall, the air suction device (15) is connected to the air suction hole (141) through an air suction hose (113), the air suction hose (113) is connected to the air suction device (15) and the air suction hole (141) through the through hole, the air blowing device (16) is connected to the air blowing hole (142) through an air blowing hose (114), the air blowing hose (114) is connected to the air blowing device (16) and the air blowing hole (142) through the through hole.

10. The automated production equipment for plastic umbrellas according to claim 8, characterized in that: The mobile device (12) includes a mechanical arm (121), a rotating platform (122) is fixedly installed at the lower end of the mechanical arm (121), a mechanical arm seat (123) is fixedly connected to the lower side of the rotating platform (122), a rotating shaft (124) is provided on the mechanical arm (121), a crossbeam (125) is fixedly connected to the top of the mechanical arm (121), the crossbeam (125) is square in structure, and the crossbeam (125) is hollow in structure, the adsorption plate (14) is fixedly connected to the crossbeam (125), and the crossbeam (125) is fixedly connected to the adsorption plate (14). 25), a blowing device (16) and an air suction device (15) are fixedly installed inside, a plurality of through holes are provided on the lower wall of the crossbeam (125), the air suction device (15) is connected to the air suction hole (141) through an air suction hose (113), the air suction hose (113) is connected to the air suction device (15) and the air suction hole (141) through the through hole, the blowing device (16) is connected to the air blowing hole (142) through an air blowing hose (114), the air blowing hose (114) is connected to the air blowing hole (142) through the through hole.

11. The automated production equipment for plastic umbrellas according to claim 10, characterized in that: The air suction device (15) comprises: an air suction pipe (151) and an air suction pump (152), wherein the air suction pipe (151) is connected to the air suction hose (113), and the outer end of the air suction pipe (151) is connected to the air suction pump (152); The blowing device (16) comprises: a blowing pipe (161), a hollow air shaft (163), a solid support shaft (164) and an air inlet nozzle (166). The blowing pipe (161) is provided with a plurality of blowing nozzles. The blowing hole (142) is connected to the blowing nozzle via a blowing hose (114). Axial holes are provided on both side walls of the blowing pipe (161). The hollow air shaft (163) is plugged into the hollow air shaft (163) via a support bearing on one side of the axial hole, and the solid support shaft (164) is plugged into the axial hole on the other side via a support bearing on the other side of the axial hole. The hollow air shaft (163) and the solid support shaft (164) are connected to each other via a support bearing. The outer end of the shaft (164) is provided with a fixed shaft (165), and the fixed shaft (165) is fixed on the inner wall of the crossbeam (125) / fixed seat (112). An air inlet nozzle (166) is screwed on the outer wall of the hollow shaft (163), and the air inlet nozzle (166) is communicated with the inner cavity of the hollow shaft (163). The air inlet nozzle (166) is connected to one end of an air inlet pipe (167), and the other end of the air inlet pipe (167) is connected to the outside of the crossbeam (125). A limiting member (162) is sleeved on the outer wall of the solid support shaft (164).

12. The automated production equipment for plastic umbrellas according to claim 1, characterized in that: The cooling device (10) comprises: a cooling servo electric cylinder (101), a housing (102), a mounting plate (103), a heat absorbing fin (104), a confluence (105), an air pump (107), a diverter (108), and a heat dissipating fin (109). The cooling servo electric cylinder (101) is fixedly mounted on the transverse plate (4). The telescopic rod of the cooling servo electric cylinder (101) is fixedly connected to the housing (102). The upper and lower ends of the inner bottom wall of the housing (102) are respectively fixedly mounted with a mounting plate (103) by bolts. The mounting plate (103) at the lower end of the inner bottom wall of the housing (102) is fixedly connected to the mounting plate (103). A plurality of heat-absorbing fins (104) are provided, the heat-absorbing fins (104) are connected to the flow collector (105), the flow collector (105) is connected to a wind pump (107) fixedly installed in the middle of the inner wall of the shell (102) through a vent pipe (106), a plurality of heat-dissipating fins (109) are fixedly connected to a mounting plate (103) located at the upper end of the inner bottom wall of the shell (102), the heat-dissipating fins (109) are connected to the diverter (108), the diverter (108) is connected to the wind pump (107) through a vent pipe (106), and a plurality of heat-dissipating holes (1010) are provided on the shell (102).

13. The automated production equipment for plastic umbrellas according to claim 1, characterized in that: The storage bin (13) comprises a storage base (131), a mounting groove is provided in the storage base (131), a storage positioning plate (132) is fixedly connected in the mounting groove, the storage positioning plate (132) is in a regular polygonal pyramid structure, a through hole is provided at the cone tip of the storage positioning plate (132), and the through hole is in a cylindrical structure.

14. The automated production equipment for plastic umbrellas according to claim 1, characterized in that: The conveyor belt (1) is an annular conveyor belt (1), and at least six preparation stations (2) are placed.