CN114212333A - Can be to equipment of accomodating of inflatable boat toy rolling - Google Patents

Can be to equipment of accomodating of inflatable boat toy rolling Download PDF

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Publication number
CN114212333A
CN114212333A CN202111418652.3A CN202111418652A CN114212333A CN 114212333 A CN114212333 A CN 114212333A CN 202111418652 A CN202111418652 A CN 202111418652A CN 114212333 A CN114212333 A CN 114212333A
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China
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plate
ship body
powder
body bearing
fixedly connected
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CN202111418652.3A
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Chinese (zh)
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陈天明
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Individual
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Individual
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Priority to CN202111418652.3A priority Critical patent/CN114212333A/en
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65BMACHINES, APPARATUS OR DEVICES FOR, OR METHODS OF, PACKAGING ARTICLES OR MATERIALS; UNPACKING
    • B65B63/00Auxiliary devices, not otherwise provided for, for operating on articles or materials to be packaged
    • B65B63/04Auxiliary devices, not otherwise provided for, for operating on articles or materials to be packaged for folding or winding articles, e.g. gloves or stockings
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65BMACHINES, APPARATUS OR DEVICES FOR, OR METHODS OF, PACKAGING ARTICLES OR MATERIALS; UNPACKING
    • B65B17/00Other machines, apparatus, or methods for packaging articles or materials

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Toys (AREA)

Abstract

The invention relates to the field of inflatable toys, in particular to a storage device capable of rolling an inflatable boat toy. The technical problem of the invention is as follows: not accomodating work and causing very big space waste, the difficult transportation of the toy of the state of inflating is kept simultaneously, and the mode of adopting manual work is accomodate the inflatable toy step loaded down with trivial details, is wasted time and energy. The technical scheme of the invention is as follows: a receiving device capable of rolling up an inflatable boat toy comprises a bottom frame, a boat body bearing system, an air pumping system and the like; the upper side of the underframe is connected with a ship body bearing system; the front part of the upper side of the ship body bearing system is connected with an air exhaust system. The invention realizes that mechanical equipment automatically stores the inflatable boat toy, and can spray dry powder on the toy while the storage work is carried out, so that the inflatable boat toy is automatically dried and stored, the inflatable boat toy is convenient to store, and the storage space is greatly saved.

Description

Can be to equipment of accomodating of inflatable boat toy rolling
Technical Field
The invention relates to the field of inflatable toys, in particular to a storage device capable of rolling an inflatable boat toy.
Background
There is the toy of aerifing of form look in the paradise on water, all has the toy of an inflatable boat in a lot of paradises on water, receives liking of a lot of consumers deeply, and most inflatable boat all comprises these two main parts of bow and hull, and paradise on water can begin the business when summer is hot, and the weather becomes cold and pauses the business, at this moment need accomodate the save to the toy in the paradise on water. At present, the current save mode of aerifing the toy to amusement park mostly manual operation accomodates the back and preserves, perhaps does not accomodate directly places the toy in the product storehouse, if do not accomodate work to aerifing the toy, then can cause very big space extravagant, and the difficult transportation of the toy of the state of inflating simultaneously is kept, and the mode that adopts manual work accomodates to aerifing the toy and has the loaded down with trivial details step, the problem that wastes time and energy.
To solve the problems, the storage equipment capable of rolling the inflatable boat toy is provided.
Disclosure of Invention
The invention provides a storage device capable of rolling an inflatable boat toy, aiming at overcoming the defects that the storage work is not carried out, so that the great space waste is caused, the inflatable toy is not easy to transport and store, the inflatable toy is stored in a manual operation mode, the steps are complicated, and time and labor are wasted.
The technical scheme is as follows: a containing device capable of rolling up inflatable boat toys comprises a bottom frame, a boat body bearing system, an air pumping system, a boat body paving system, a dust spraying system and an automatic rolling system; the upper side of the underframe is connected with a ship body bearing system; the front part of the upper side of the ship body bearing system is connected with an air pumping system; the rear part of the upper side of the ship body bearing system is connected with a ship body paving system for bearing and pressing down the ship head; the rear part of the upper side of the ship body bearing system is connected with a dust spraying system used for drying the inflatable ship toy, and the dust spraying system is positioned behind the ship body paving system; the rear part of the upper side of the ship body bearing system is connected with an automatic winding system for winding the inflatable boat toy, and the automatic winding system is positioned in front of the ship body paving system.
Further, the ship body bearing system comprises a ship body bearing plate, a torsion spring rod and a V-shaped limiting plate; a ship body bearing plate is arranged on the upper side of the underframe; two torsion spring rods are arranged at the front part of the ship body bearing plate; the two torsion spring rods are respectively and rotatably connected with a V-shaped limiting plate; the left side of the rear part of the ship body bearing plate is provided with a power sliding chute; the rear part of the ship body bearing plate is provided with a powder collecting tank.
Further, the air pumping system comprises an air pump, an air pipe, a first mounting plate, a U-shaped mounting block and an air pumping head; the front part of the upper side of the ship body bearing plate is provided with an air pump; the air pump is connected with an air pipe; the front part of the upper side of the ship body bearing plate is provided with a first mounting plate which is positioned in front of the air pump; the air pipe is wound on the hook part of the first mounting plate; the upper part of the front side of the first mounting plate is fixedly connected with a U-shaped mounting block; an air exhaust head is arranged on the U-shaped mounting block; the air pumping head is connected with an air pipe.
Further, the ship body paving system comprises a second mounting plate, a first electric slide rail, a first electric slide block, a first fixed block, a first connecting shaft, a pressure plate, a first gear and a rack; a second mounting plate is arranged at the rear part of the upper side of the ship body bearing plate; a first electric slide rail is fixedly connected to the front side of the second mounting plate; the first electric slide rail is connected with a first electric slide block in a sliding manner; a first fixed block is arranged on the front side of the first electric sliding block; a first connecting shaft is rotatably connected inside the first fixed block; the left part of the first connecting shaft is fixedly connected with a material pressing plate; the right part of the first connecting shaft is fixedly connected with a first gear; the rack is installed to second mounting panel front side.
Furthermore, the upper part of the pressure plate is an L-shaped plate.
Further, the dust spraying system comprises a powder storage tank, a first powder conveying pipe, a first powder conveying pump, a second powder conveying pipe, a third powder conveying pipe, a second powder conveying pump, a fourth powder conveying pipe, a flow divider, a fifth powder conveying pipe, a second fixed block and a powder spraying head; the rear part of the upper side of the ship body bearing plate is provided with a powder storage tank; the upper side of the powder storage tank is connected with a first powder conveying pipe; the rear part of the upper side of the ship body bearing plate is provided with a first powder conveying pump, and the first powder conveying pump is positioned on the left of the powder storage tank; the rear side of the first powder conveying pump is connected with a first powder conveying pipe; the left side of the first powder conveying pump is connected with a second powder conveying pipe; the other end of the second powder conveying pipe is connected with the bottom of the powder collecting tank; the right side of the powder storage tank is connected with a third powder conveying pipe; a second powder conveying pump is arranged at the rear part of the upper side of the ship body bearing plate and is positioned on the right side of the powder storage tank; the left side of the second powder conveying pump is connected with a third powder conveying pipe; the front side of the second powder conveying pump is connected with a fourth powder conveying pipe; the rear part of the upper side of the ship body bearing plate is provided with a shunt valve, and the shunt valve is positioned in front of the second powder conveying pump; the rear side of the flow divider is connected with a fourth powder conveying pipe; the left part and the right part of the flow divider are respectively connected with a fifth powder conveying pipe; two second fixing blocks are arranged at the rear part of the upper side of the ship body bearing plate; a powder spraying head is fixedly connected inside each of the two second fixed blocks; the powder spraying head is connected with the fifth powder conveying pipe.
Further, the automatic winding system comprises a fourth mounting plate, a first motor, a rotary table, a first accommodating rod, a fifth mounting plate, a second motor, a spline shaft, a second fixing plate, an electric push rod, an elliptic disc, a shaft sleeve, a second gear, a third gear, a second connecting shaft, a crank rocker, a second accommodating rod, a fourth electric slider and a bearing plate; a fourth mounting plate is arranged at the rear part of the upper side of the ship body bearing plate; a first motor is arranged on the right side of the fourth mounting plate; the rotating shaft of the first motor is fixedly connected with a rotating disc; the left side of the rotary table is fixedly connected with a first accommodating rod; a fifth mounting plate is mounted at the rear part of the upper side of the ship body bearing plate and is positioned behind the first motor; a second motor is arranged on the right side of the fifth mounting plate; a spline shaft is fixedly connected with the rotating shaft of the second motor; a second fixing plate is arranged at the rear part of the upper side of the ship body bearing plate and is positioned on the left of the fifth mounting plate; the second fixing plate is rotationally connected with the spline shaft; an electric push rod is arranged on the left side of the fifth mounting plate; an elliptic disc is fixedly connected with the telescopic end of the electric push rod; the upper part of the elliptic disc is rotatably connected with a shaft sleeve; the shaft sleeve is in transmission connection with the spline shaft; the left part of the shaft sleeve is fixedly connected with a second gear; the rear part of the rotary table is rotatably connected with a second connecting shaft; a third gear is fixedly connected to the right part of the second connecting shaft; the left part of the second connecting shaft is fixedly connected with a crank rocker; the rear part of the crank rocker is fixedly connected with a second containing rod; a fourth electric slide block is connected in the power slide groove in a sliding manner; the upper side of the fourth electric sliding block is fixedly connected with a bearing plate, and the bearing plate is in contact with the first accommodating rod.
Further, the ship body bearing plate comprises a fixed mounting system, wherein the fixed mounting system is mounted in the middle of the upper side of the ship body bearing plate; the rear part of the fixed mounting system is connected with the hull paving system; the fixed mounting system comprises a first fixing plate and a third mounting plate; two first fixing plates are arranged in the middle of the upper side of the ship body bearing plate; the top sides of the two first fixing plates are fixedly connected with a third mounting plate; the rear part of the lower side of the third mounting plate is fixedly connected with the second mounting plate.
The third mounting plate is provided with a third mounting plate; the hull fixing system comprises a second electric slide rail, a second electric slide block, a first connecting plate, a second connecting plate, a third connecting plate, a fourth connecting plate, a bow fixing semi-ring and a hull fixing plate; the front part of the lower side of the third mounting plate is provided with a second electric slide rail; two second electric sliding blocks are connected to the second electric sliding rail in a sliding manner; the lower sides of the two second electric sliding blocks are respectively provided with a first connecting block; the lower sides of the two first connecting blocks are fixedly connected with a second connecting plate respectively; two third connecting plates are fixedly connected to the lower sides of the two second connecting plates respectively; the lower sides of two front and back adjacent third connecting plates are fixedly connected with a fourth connecting plate; two opposite sides of the fourth connecting plate are respectively fixedly connected with a bow fixing semi-ring; the front parts of the lower sides of the two fourth connecting plates are respectively fixedly connected with a hull fixing plate.
Further, the powder isolation device also comprises a powder isolation system, wherein the powder isolation system is arranged on the lower side of the third mounting plate; the powder isolation system comprises a third electric slide rail, a third electric slide block, a second connecting block, a connecting rod, a cross fixing frame and a powder isolation frame; a third electric slide rail is arranged at the rear part of the lower side of the third mounting plate; the third electric slide rail is connected with two third electric slide blocks in a sliding way; a second connecting block is respectively arranged at the lower sides of the two third electric sliding blocks; the lower sides of the two second connecting blocks are respectively fixedly connected with a connecting rod; the bottom ends of the two connecting rods are respectively and fixedly connected with a cross-shaped fixing frame; the lower sides of the two cross-shaped fixing frames are respectively fixedly connected with a powder isolating frame; the rear part of the powder isolation frame is provided with a ventilation groove.
The invention has the beneficial effects that: the automatic storage of the inflatable boat toy is realized by mechanical equipment, and the toy can be sprayed with dry powder while the storage is carried out, so that the inflatable boat toy can be automatically dried and stored;
the inflatable boat is convenient to store, and the storage space is greatly saved.
Drawings
FIG. 1 is a schematic view of a first perspective view of the retractable storage apparatus for an inflatable boat toy according to the present invention;
FIG. 2 is a schematic diagram of a second perspective view of the retractable storage apparatus for an inflatable boat toy according to the present invention;
FIG. 3 is a schematic view of a partial perspective view of the retractable storage apparatus for an inflatable boat toy according to the present invention;
FIG. 4 is a schematic perspective view of the air pumping system of the present invention;
FIG. 5 is a schematic view of a first perspective configuration of the hull plating system and automatic roll-up system combination of the present invention;
FIG. 6 is a schematic view of a second perspective structure of the hull planing system and automatic rolling system combination of the present invention;
FIG. 7 is a schematic view of a partial three-dimensional structure of the automatic winding system of the present invention;
FIG. 8 is a schematic view of a first perspective view of the dust spraying system of the present invention;
FIG. 9 is a schematic view of a second perspective view of the dust spraying system of the present invention;
FIG. 10 is a perspective view of the combination of the fixed mounting system, hull securing system and powder isolation system of the present invention;
fig. 11 is a perspective view of the hull securing system and powder isolation system combination of the present invention.
Description of reference numerals: 1. a base frame, 2, a ship body bearing system, 3, an air exhaust system, 4, a ship body paving system, 5, a dust spraying system, 6, a fixed mounting system, 7, a ship body fixing system, 8, a powder isolation system, 9, an automatic winding system, 201, a ship body bearing plate, 202, a torsion spring rod, 203, a V-shaped limiting plate, 201a, a power chute, 202b, a powder collecting tank, 301, an air pump, 302, an air pipe, 303, a first mounting plate, 304, a U-shaped mounting block, 305, an air exhaust head, 401, a second mounting plate, 402, a first electric sliding rail, 403, a first electric sliding block, 404, a first fixing block, 405, a first connecting shaft, 406, a pressure plate, 407, a first gear, 408, a rack, 501, a powder storage tank, 502, a first powder conveying pipe, 503, a first powder conveying pump, 504, a second powder conveying pipe, 505, a third powder conveying pipe, 506, a second powder conveying pump, 507, a fourth powder conveying pipe, 508. a flow divider valve, 509, a fifth powder conveying pipe, 5010, a second fixed block, 5011, a powder spraying head, 601, a first fixed plate, 602, a third mounting plate, 701, a second electric slide rail, 702, a second electric slide block, 703, a first connecting block, 704, a first connecting plate, 705, a second connecting plate, 706, a third connecting plate, 707, a fourth connecting plate, 708, a bow fixed half ring, 709, a hull fixed plate, 801, a third electric slide rail, 802, a third electric slide block, 803, a second connecting block, 804, a connecting rod, 805, a cross fixed frame, 806, a powder isolating frame, 901, a fourth mounting plate, 902, a first motor, 903, a rotating disc, 904, a first accommodating rod, 905, a fifth mounting plate, 906, a second motor, 907, a spline shaft, 908, a second fixed plate, 909, an electric push rod, 9010, an oval disc, 9011, a shaft sleeve, 9012, a second gear, 13, a third gear, 9014, a third gear, a fourth mounting plate, a second motor, a fourth mounting plate, a second motor, a fifth mounting plate, a second mounting plate, a fifth mounting plate, a fourth mounting plate, a second motor, a second mounting plate, a second, A second connecting shaft, 9015, a crank rocker, 9016, a second accommodating rod, 9017, a fourth electric slide block, 9018 and a bearing plate.
Detailed Description
The present invention will be described in detail below with reference to the accompanying drawings.
Example 1
A containing device capable of rolling up inflatable boat toys is shown in figures 1-9 and comprises a base frame 1, a boat body bearing system 2, an air pumping system 3, a boat body flattening system 4, a dust spraying system 5 and an automatic rolling system 9; the upper side of the underframe 1 is connected with a ship body bearing system 2; the front part of the upper side of the ship body bearing system 2 is connected with an air pumping system 3; the rear part of the upper side of the ship body bearing system 2 is connected with a ship body paving system 4; the rear part of the upper side of the ship body bearing system 2 is connected with a dust spraying system 5, and the dust spraying system 5 is positioned behind the ship body paving system 4; the rear part of the upper side of the ship body bearing system 2 is connected with an automatic rolling system 9, and the automatic rolling system 9 is positioned in front of the ship body paving system 4.
The working principle is as follows: when the inflatable toy needs to be stored, an operator pushes the inflatable toy to the upper side of the ship body bearing system 2 from the front of the ship body bearing system 2, the head of the inflatable toy is placed on the ship body leveling system 4, the ship body of the inflatable toy is placed on the ship body bearing system 2, then the air pumping system 3 is controlled to start working, the operator finds a valve of the inflatable toy, air is pumped out of the toy by the air pumping system 3 until air in the toy is pumped out, the head of the toy is gradually leveled on the ship body leveling system 4 in the process of pumping out the air in the inflatable toy, the ship body leveling system 4 is controlled to start working, the head of the inflatable toy is driven to gradually move downwards, the head of the inflatable toy is pressed into the automatic rolling system 9, then the ship body leveling system 4 is controlled to stop working after being reset, and the dust spraying system 5 and the automatic rolling system 9 are controlled to work simultaneously, dust sprinkling system 5 carries out spraying of dry powder to aerifing the toy, carries out drying work to aerifing the toy hull, and automatic winding system 9 carries out centre gripping work earlier with aerifing the toy head simultaneously, then carries out rolling work to aerifing the toy, and after the rolling of the toy was accomplished will aerifing to automatic winding system 9, control dust sprinkling system 5 and automatic winding system 9 stop work, and operating personnel will aerify the toy and take out from automatic winding system 9, accomplish storage device's the work of accomodating.
The ship body bearing system 2 comprises a ship body bearing plate 201, a torsion spring rod 202 and a V-shaped limiting plate 203; a ship body bearing plate 201 is arranged on the upper side of the underframe 1; two torsion spring rods 202 are arranged at the front part of the ship body bearing plate 201; the two torsion spring rods 202 are respectively connected with a V-shaped limiting plate 203 in a rotating way; the left side of the rear part of the ship body bearing plate 201 is provided with a power chute 201 a; the rear part of the ship hull bearing plate 201 is provided with a powder collecting groove 202 b.
The air extraction system 3 comprises an air pump 301, an air pipe 302, a first mounting plate 303, a U-shaped mounting block 304 and an air extraction head 305; the air pump 301 is arranged at the front part of the upper side of the ship body bearing plate 201; the air pump 301 is connected with an air pipe 302; the front part of the upper side of the ship body bearing plate 201 is provided with a first mounting plate 303, and the first mounting plate 303 is positioned in front of the air pump 301; the air pipe 302 is wound on the hook part of the first mounting plate 303; a U-shaped mounting block 304 is welded at the upper part of the front side of the first mounting plate 303; an air exhaust head 305 is arranged on the U-shaped mounting block 304; the suction head 305 is connected to the gas pipe 302.
The hull paving system 4 comprises a second mounting plate 401, a first electric slide rail 402, a first electric slide block 403, a first fixed block 404, a first connecting shaft 405, a pressure plate 406, a first gear 407 and a rack 408; the rear part of the upper side of the ship body bearing plate 201 is provided with a second mounting plate 401; a first electric slide rail 402 is connected to the front side of the second mounting plate 401 through bolts; a first electric sliding block 403 is connected to the first electric sliding rail 402 in a sliding manner; a first fixed block 404 is arranged on the front side of the first electric slide block 403; a first connecting shaft 405 is rotatably connected inside the first fixing block 404; the left part of the first connecting shaft 405 is fixedly connected with a material pressing plate 406; a first gear 407 is fixedly connected to the right part of the first connecting shaft 405; the rack 408 is installed on the front side of the second mounting plate 401.
Wherein, the upper portion of the pressure plate 406 is an L-shaped plate.
The dust spraying system 5 comprises a powder storage tank 501, a first powder conveying pipe 502, a first powder conveying pump 503, a second powder conveying pipe 504, a third powder conveying pipe 505, a second powder conveying pump 506, a fourth powder conveying pipe 507, a flow dividing valve 508, a fifth powder conveying pipe 509, a second fixed block 5010 and a powder spraying head 5011; the rear part of the upper side of the ship body bearing plate 201 is provided with a powder storage tank 501; the upper side of the powder storage tank 501 is connected with a first powder conveying pipe 502; the rear part of the upper side of the ship body bearing plate 201 is provided with a first powder conveying pump 503, and the first powder conveying pump 503 is positioned on the left of the powder storage tank 501; the rear side of the first powder conveying pump 503 is connected with a first powder conveying pipe 502; the left side of the first powder conveying pump 503 is connected with a second powder conveying pipe 504; the other end of the second powder conveying pipe 504 is connected with the bottom of the powder collecting tank 202 b; the right side of the powder storage tank 501 is connected with a third powder conveying pipe 505; the rear part of the upper side of the ship body bearing plate 201 is provided with a second powder conveying pump 506, and the second powder conveying pump 506 is positioned on the right side of the powder storage tank 501; the left side of the second powder conveying pump 506 is connected with a third powder conveying pipe 505; the front side of the second powder conveying pump 506 is connected with a fourth powder conveying pipe 507; a diverter valve 508 is arranged at the rear part of the upper side of the ship body bearing plate 201, and the diverter valve 508 is positioned in front of the second powder conveying pump 506; the rear side of the diverter valve 508 is connected with a fourth powder conveying pipe 507; the left part and the right part of the flow divider 508 are respectively connected with a fifth powder conveying pipe 509; two second fixing blocks 5010 are arranged at the rear part of the upper side of the ship body bearing plate 201; the inner parts of the two second fixed blocks 5010 are fixedly connected with a powder spraying head 5011 respectively; the powder spraying head 5011 is connected with a fifth powder conveying pipe 509.
The automatic winding system 9 comprises a fourth mounting plate 901, a first motor 902, a rotary disc 903, a first accommodating rod 904, a fifth mounting plate 905, a second motor 906, a spline shaft 907, a second fixing plate 908, an electric push rod 909, an oval disc 9010, a shaft sleeve 9011, a second gear 9012, a third gear 9013, a second connecting shaft 9014, a crank rocker 9015, a second accommodating rod 9016, a fourth electric slider 9017 and a bearing plate 9018; a fourth mounting plate 901 is mounted at the rear part of the upper side of the ship body bearing plate 201; a first motor 902 is installed on the right side of the fourth mounting plate 901; a rotating shaft of the first motor 902 is fixedly connected with a rotating disc 903; a first accommodating rod 904 is fixedly connected to the left side of the rotating disc 903; a fifth mounting plate 905 is mounted at the rear part of the upper side of the ship body bearing plate 201, and the fifth mounting plate 905 is positioned behind the first motor 902; a second motor 906 is installed on the right side of the fifth installation plate 905; a spline shaft 907 is fixedly connected to the rotating shaft of the second motor 906; a second fixing plate 908 is arranged at the rear part of the upper side of the ship body bearing plate 201, and the second fixing plate 908 is positioned at the left of the fifth mounting plate 905; the second fixing plate 908 is rotatably connected with the spline shaft 907; an electric push rod 909 is installed on the left side of the fifth installation plate 905; an oval disc 9010 is fixedly connected to the telescopic end of the electric push rod 909; the upper part of the oval plate 9010 is rotatably connected with a shaft sleeve 9011; the shaft sleeve 9011 is in transmission connection with a spline shaft 907; a second gear 9012 is fixedly connected to the left part of the shaft sleeve 9011; the rear part of the rotating disc 903 is rotatably connected with a second connecting shaft 9014; a third gear 9013 is fixedly connected to the right of the second connecting shaft 9014; the left part of the second connecting shaft 9014 is fixedly connected with a crank rocker 9015; a second containing rod 9016 is fixedly connected to the rear portion of the crank rocker 9015; a fourth electric slide block 9017 is connected in the power slide groove 201a in a sliding manner; a bearing plate 9018 is fixedly connected to the upper side of the fourth electric slider 9017, and the bearing plate 9018 is in contact with the first accommodating rod 904.
The working principle is as follows: when the inflatable toy needs to be stored, an operator pushes the inflatable toy into the upper side of the ship body bearing plate 201 from the front of the ship body bearing plate 201, in the pushing process, the V-shaped limiting plate 203 is pressed downwards to deflect, so that the V-shaped limiting plate 203 enters the through groove in the front of the ship body bearing plate 201, meanwhile, the torsion spring rod 202 is twisted, as the inflatable toy is slowly pushed in, the tail of the inflatable toy is separated from the V-shaped limiting plate 203, the torsion spring rod 202 is changed from a twisting state to a normal state, the V-shaped limiting plate 203 is driven to deflect upwards to an initial position, the inflatable toy is limited on the upper side of the ship body bearing plate 201, meanwhile, the head of the toy is placed on a transverse plate of the pressure plate 406, then, the air pump 301 is controlled to work, the operator takes the air pumping head 305 off from the U-shaped mounting block 304, finds an air charging hole of the inflatable toy, pulls the air pumping plug off, and aims the air pumping head 305 at the air charging hole of the inflatable toy to perform air pumping work, along with the gradual extraction of the air in the toy, the toy slowly becomes flat, the head of the toy is flatly spread on the transverse plate of the material pressing plate 406, the hull of the toy is flatly spread on the upper side of the ship body bearing plate 201, until the air in the toy is completely extracted, the air pump 301 is controlled to stop working, an operator takes the air extracting head 305 from the inflation inlet of the toy to open the air extracting head to the U-shaped mounting block 304, then the inflation plug is installed back to the inflation inlet, and the air discharging work is completed;
then, the first electric slide block 403 on the first electric slide rail 402 is controlled to drive the first fixing block 404 to move downwards, the first fixing block 404 drives the first connecting shaft 405, the material pressing plate 406 and the first gear 407 to move downwards, the material pressing plate 406 drives the head of the toy to gradually move downwards, when the first gear 407 moves downwards to be meshed with the rack 408, the first gear 407 rotates clockwise when viewed from left to right, the first gear 407 drives the first connecting shaft 405 and the material pressing plate 406 to rotate clockwise, the head of the toy slowly falls from the material pressing plate 406 to the upper side of the first accommodating rod 904 and the second accommodating rod 9016, then the material pressing plate 406 continues to rotate, the L-shaped plate on the upper portion of the material pressing plate 406 can press down the head of the inflatable boat, and the inflatable head of the toy spread on the upper side of the first accommodating rod 904 and the second accommodating rod 9016 is pressed into the space between the first accommodating rod 904 and the second accommodating rod 9016, then the first electric slide block 403 on the first electric slide rail 402 is controlled to move upwards to drive the first fixed block 404, the first connecting shaft 405, the material pressing plate 406 and the first gear 407 to move upwards, meanwhile, the first gear 407 rotates anticlockwise on the rack 408, the first gear 407 drives the first connecting shaft 405 and the material pressing plate 406 to rotate anticlockwise to reset, the reset work of the hull leveling system 4 is completed, then the electric push rod 909 is controlled to push the elliptical disk 9010 to move leftwards, the elliptical disk 9010 drives the shaft sleeve 9011 and the second gear 9012 to move leftwards until the second gear 9012 is meshed with the third gear 9013, the second motor 906 is controlled to drive the spline shaft 907 to rotate anticlockwise, the spline shaft 907 drives the second gear 9012 to rotate anticlockwise, the second gear connecting shaft 9012 drives the third gear 9013 to rotate clockwise, the third gear 9013 drives the second gear 9014 to rotate clockwise, and the second connecting shaft 9014 drives the crank rocker 9015 to rotate clockwise, the crank rocker 9015 drives the second receiving rod 9016 to rotate clockwise one hundred eighty degrees to be close to the first receiving rod 904 and keep parallel to the first receiving rod 904, so that the first receiving rod 904 and the second receiving rod 9016 clamp the head of the inflatable toy, then the second motor 906 is controlled to stop working, the electric push rod 909 is controlled to contract to drive the second gear 9012 to be disengaged from the third gear 9013, the fourth electric slider 9017 is controlled to move upwards in the power sliding chute 201a to drive the supporting plate 9018 to move upwards to the lower sides of the first receiving rod 904 and the second receiving rod 9016 to support the first receiving rod 904 and the second receiving rod 9016, then the first powder conveying pump 506 and the second powder conveying pump 506 are controlled to work simultaneously, the second powder conveying pump 506 pumps the dry powder in the powder storage tank 501 from the third powder conveying pipe 505 to the fourth powder conveying pipe 507, the diverter valve 508 diverts the dry powder conveyed by the fourth powder conveying pipe 507 to two fifth powder conveying pipes 509, the fifth powder conveying pipe 509 conveys dry powder to the powder spraying head 5011, the powder spraying head 5011 sprays the dry powder onto the inflatable toy, the toy is dried, redundant powder falls into the powder collecting tank 202b, meanwhile, the first powder conveying pump 503 recovers the dry powder in the powder collecting tank 202b into the powder storing tank 501 through the second powder conveying pipe 504, meanwhile, the first motor 902 is controlled to drive the rotating disc 903 to rotate, the rotating disc 903 drives the first accommodating rod 904, the third gear 9013, the second connecting shaft 9014, the crank rocker 9015 and the second accommodating rod 9016 to rotate, the first accommodating rod 904 and the second accommodating rod 9016 clamp the head of the inflatable toy and drive the inflatable toy to rotate, the ship body of the inflatable toy is rolled up, after the whole rolling of the ship body of the inflatable toy is completed, the first motor 902 is controlled to stop working, the fourth electric sliding block 9017 is controlled to drive the bearing plate 9018 to move downwards, so that the bearing plate 9018 moves downwards into the power sliding groove 90201 a, the first powder delivery pump 503 and the second powder delivery pump 506 are controlled to stop working, then an operator takes off the rolled inflatable toy from the first storage rod 904 and the second storage rod 9016, the electric push rod 909 is controlled to push the elliptical disk 9010 to move leftwards, the elliptical disk 9010 drives the shaft sleeve 9011 and the second gear 9012 to move leftwards until the second gear 9012 is meshed with the third gear 9013, the second motor 906 is controlled to drive the spline shaft 907 to rotate clockwise, the spline shaft 907 drives the second connecting shaft 9014, the crank rocker 9015 and the second storage rod 9016 to rotate clockwise, the second storage rod 9016 is made to rotate clockwise to the recovery position, the second motor 906 is controlled to stop working, the electric push rod 909 is controlled to contract, the elliptical disk 9010, the shaft sleeve 9011 and the second gear 9012 are driven to move rightwards to the recovery position, and the storage work of the inflatable toy is completed.
Example 2
On the basis of the embodiment 1, as shown in fig. 1-2 and fig. 10-11, the ship body bearing plate comprises a fixed mounting system 6, wherein the fixed mounting system 6 is arranged in the middle of the upper side of the ship body bearing plate 201; the rear part of the fixed mounting system 6 is connected with the hull paving system 4; the fixed mounting system 6 comprises a first fixed plate 601 and a third mounting plate 602; two first fixing plates 601 are arranged in the middle of the upper side of the ship body bearing plate 201; the top sides of the two first fixing plates 601 are fixedly connected with a third mounting plate 602; the lower rear part of the third mounting plate 602 is fixedly connected with the second mounting plate 401.
The ship body fixing system 7 is further included, and the ship body fixing system 7 is installed on the lower side of the third installation plate 602; the hull fixing system 7 comprises a second electric slide rail 701, a second electric slide block 702, a first connecting plate 704, a second connecting plate 705, a third connecting plate 706, a fourth connecting plate 707, a bow fixing half ring 708 and a hull fixing plate 709; a second electric slide rail 701 is arranged at the front part of the lower side of the third mounting plate 602; two second electric sliding blocks 702 are connected to the second electric sliding rail 701 in a sliding manner; a first connecting block 703 is respectively arranged at the lower sides of the two second electric sliding blocks 702; a second connecting plate 705 is welded on the lower sides of the two first connecting blocks 703 respectively; two third connecting plates 706 are fixedly connected to the lower sides of the two second connecting plates 705 respectively; a fourth connecting plate 707 is fixedly connected to the lower sides of two adjacent front and rear third connecting plates 706; two bow fixed half rings 708 are fixedly connected to the opposite sides of the two fourth connecting plates 707 respectively; the lower front parts of the two fourth connecting plates 707 are fixedly connected with a hull fixing plate 709 respectively.
The powder isolation device also comprises a powder isolation system 8, wherein the powder isolation system 8 is arranged on the lower side of the third mounting plate 602; the powder isolation system 8 comprises a third electric slide rail 801, a third electric slide block 802, a second connecting block 803, a connecting rod 804, a cross fixing frame 805 and a powder isolation frame 806; a third electric slide rail 801 is arranged at the rear part of the lower side of the third mounting plate 602; two third electric sliding blocks 802 are connected on the third electric sliding rail 801 in a sliding manner; a second connecting block 803 is respectively arranged at the lower sides of the two third electric sliding blocks 802; the lower sides of the two second connecting blocks 803 are respectively welded with a connecting rod 804; the bottom ends of the two connecting rods 804 are respectively fixedly connected with a cross-shaped fixing frame 805; the lower sides of the two cross-shaped fixing frames 805 are respectively fixedly connected with a powder isolating frame 806; the powder isolation shelf 806 is vented at the rear.
The working principle is as follows: when the inflatable toy needs to be stored, an operator pushes the inflatable toy into the upper side of the ship body bearing plate 201 from the front of the ship body bearing plate 201, and then controls the two second electric sliding blocks 702 on the second electric sliding rails 701 to move in opposite directions, so as to drive the first connecting block 703 to move in opposite directions, the first connecting block 703 drives the first connecting plate 704, the second connecting plate 705, the third connecting plate 706, the fourth connecting plate 707, the bow fixing half rings 708 and the ship body fixing plates 709 to move together along with the first connecting block 703, so that the two bow fixing half rings 708 are attached to the bow of the inflatable toy, the two ship body fixing plates 709 are attached to the ship body of the inflatable toy, the inflatable toy is fixedly clamped, the displacement of the toy in the air suction process is prevented, when the operator installs the inflation plug back to the inflation inlet, and after the deflation work is completed, the second electric sliding blocks 702 are controlled to drive the first connecting blocks 703 to move back to the opposite sides, the first connecting block 703 drives the first connecting plate 704, the second connecting plate 705, the third connecting plate 706, the fourth connecting plate 707, the bow half-ring 708 and the hull fixing plate 709 to move to the initial positions, so as to complete the resetting work of the hull fixing system 7;
when the heads of the inflatable toy are clamped by the first containing rod 904 and the second containing rod 9016, the third electric sliding block 802 is controlled to move towards the opposite side, the third electric sliding block 802 drives the second connecting block 803 to move, the second connecting block 803 drives the connecting rod 804, the cross fixing frame 805 and the powder isolating frame 806 to move, so that the two powder isolating frames 806 move towards and close to each other to form an isolated space of the inflatable toy, the pollution of dry powder to the outside air in the working process of the powder spraying head 5011 is prevented, then the first powder conveying pump 503 and the second powder conveying pump 506 are controlled to work, the dry powder spraying work is carried out on the inflatable toy, after the whole rolling of the inflatable toy ship is completed, the third electric sliding block is controlled to move towards the opposite side 802 to drive the second connecting block 803 to move, and the second connecting block 803 drives the connecting rod 804, the cross fixing frame 805 and the powder isolating frame 806 to move to the initial position, the reset operation of the powder isolation system 8 is completed.
The above-mentioned embodiments are merely preferred embodiments of the present invention, which are not intended to limit the scope of the present invention, and therefore, all equivalent changes made by the contents of the claims of the present invention should be included in the claims of the present invention.

Claims (10)

1. A containing device capable of rolling up an inflatable boat toy comprises an underframe (1); the method is characterized in that: the device also comprises a ship body bearing system (2), an air exhaust system (3), a ship body paving system (4), a dust spraying system (5) and an automatic winding system (9); the upper side of the underframe (1) is connected with a ship body bearing system (2); the front part of the upper side of the ship body bearing system (2) is connected with an air pumping system (3); the rear part of the upper side of the ship body bearing system (2) is connected with a ship body paving system (4) for bearing and pressing down the ship head; the rear part of the upper side of the ship body bearing system (2) is connected with a dust spraying system (5) for drying the inflatable ship toy, and the dust spraying system (5) is positioned behind the ship body paving system (4); the rear part of the upper side of the ship body bearing system (2) is connected with an automatic winding system (9) for winding the inflatable ship toy, and the automatic winding system (9) is positioned in front of the ship body paving system (4).
2. The storage device as claimed in claim 1, wherein the storage device comprises: the ship body bearing system (2) comprises a ship body bearing plate (201), a torsion spring rod (202) and a V-shaped limiting plate (203); a ship body bearing plate (201) is arranged on the upper side of the underframe (1); two torsion spring rods (202) are arranged at the front part of the ship body bearing plate (201); the two torsion spring rods (202) are respectively connected with a V-shaped limiting plate (203) in a rotating way; the left side of the rear part of the ship body bearing plate (201) is provided with a power sliding chute (201 a); the rear part of the ship body bearing plate (201) is provided with a powder collecting groove (202 b).
3. The storage device as claimed in claim 2, wherein the storage device comprises: the air extraction system (3) comprises an air pump (301), an air pipe (302), a first mounting plate (303), a U-shaped mounting block (304) and an air extraction head (305); the front part of the upper side of the ship body bearing plate (201) is provided with an air pump (301); the air pump (301) is connected with an air pipe (302); a first mounting plate (303) is mounted at the front part of the upper side of the ship body bearing plate (201), and the first mounting plate (303) is positioned in front of the air pump (301); the air pipe (302) is wound on the hook part of the first mounting plate (303); the upper part of the front side of the first mounting plate (303) is fixedly connected with a U-shaped mounting block (304); an air extraction head (305) is arranged on the U-shaped mounting block (304); the air pumping head (305) is connected with the air pipe (302).
4. A container apparatus as claimed in claim 3, wherein the container apparatus comprises: the ship body paving system (4) comprises a second mounting plate (401), a first electric slide rail (402), a first electric slide block (403), a first fixed block (404), a first connecting shaft (405), a pressure plate (406), a first gear (407) and a rack (408); a second mounting plate (401) is mounted at the rear part of the upper side of the ship body bearing plate (201); a first electric slide rail (402) is fixedly connected to the front side of the second mounting plate (401); a first electric sliding block (403) is connected on the first electric sliding rail (402) in a sliding way; a first fixed block (404) is arranged on the front side of the first electric slide block (403); a first connecting shaft (405) is rotatably connected inside the first fixed block (404); the left part of the first connecting shaft (405) is fixedly connected with a material pressing plate (406); a first gear (407) is fixedly connected to the right part of the first connecting shaft (405); the rack (408) is installed on the front side of the second installation plate (401).
5. The storage device as claimed in claim 4, wherein the storage device comprises: the upper part of the material pressing plate (406) is an L-shaped plate.
6. The storage device as claimed in claim 5, wherein the storage device comprises: the dust spraying system (5) comprises a powder storage tank (501), a first powder conveying pipe (502), a first powder conveying pump (503), a second powder conveying pipe (504), a third powder conveying pipe (505), a second powder conveying pump (506), a fourth powder conveying pipe (507), a flow dividing valve (508), a fifth powder conveying pipe (509), a second fixed block (5010) and a powder spraying head (5011); the rear part of the upper side of the ship body bearing plate (201) is provided with a powder storage tank (501); the upper side of the powder storage tank (501) is connected with a first powder conveying pipe (502); a first powder conveying pump (503) is installed at the rear part of the upper side of the ship body bearing plate (201), and the first powder conveying pump (503) is positioned on the left of the powder storage tank (501); the rear side of the first powder conveying pump (503) is connected with a first powder conveying pipe (502); the left side of the first powder conveying pump (503) is connected with a second powder conveying pipe (504); the other end of the second powder conveying pipe (504) is connected with the bottom of the powder collecting tank (202 b); the right side of the powder storage tank (501) is connected with a third powder conveying pipe (505); a second powder conveying pump (506) is installed at the rear part of the upper side of the ship body bearing plate (201), and the second powder conveying pump (506) is positioned on the right side of the powder storage tank (501); the left side of the second powder conveying pump (506) is connected with a third powder conveying pipe (505); the front side of the second powder conveying pump (506) is connected with a fourth powder conveying pipe (507); a shunt valve (508) is arranged at the rear part of the upper side of the ship body bearing plate (201), and the shunt valve (508) is positioned in front of the second powder conveying pump (506); the rear side of the flow divider (508) is connected with a fourth powder conveying pipe (507); the left part and the right part of the flow divider (508) are respectively connected with a fifth powder conveying pipe (509); two second fixing blocks (5010) are arranged at the rear part of the upper side of the ship body bearing plate (201); the inner parts of the two second fixed blocks (5010) are respectively and fixedly connected with a powder spraying head (5011); the powder spraying head (5011) is connected with the fifth powder conveying pipe (509).
7. The storage device as claimed in claim 6, wherein the storage device comprises: the automatic winding system (9) comprises a fourth mounting plate (901), a first motor (902), a rotary disc (903), a first accommodating rod (904), a fifth mounting plate (905), a second motor (906), a spline shaft (907), a second fixing plate (908), an electric push rod (909), an elliptic disc (9010), a shaft sleeve (9011), a second gear (9012), a third gear (9013), a second connecting shaft (9014), a crank rocker (9015), a second accommodating rod (9016), a fourth electric slider (9017) and a bearing plate (9018); a fourth mounting plate (901) is mounted at the rear part of the upper side of the ship body bearing plate (201); a first motor (902) is arranged on the right side of the fourth mounting plate (901); a rotating shaft of the first motor (902) is fixedly connected with a rotating disc (903); a first accommodating rod (904) is fixedly connected to the left side of the rotating disc (903); a fifth mounting plate (905) is mounted at the rear part of the upper side of the ship body bearing plate (201), and the fifth mounting plate (905) is positioned behind the first motor (902); a second motor (906) is arranged on the right side of the fifth mounting plate (905); a spline shaft (907) is fixedly connected to a rotating shaft of the second motor (906); a second fixing plate (908) is arranged at the rear part of the upper side of the ship body bearing plate (201), and the second fixing plate (908) is positioned on the left of the fifth mounting plate (905); the second fixing plate (908) is rotationally connected with the spline shaft (907); an electric push rod (909) is arranged on the left side of the fifth mounting plate (905); an oval disc (9010) is fixedly connected with the telescopic end of the electric push rod (909); the upper part of the elliptic disc (9010) is rotatably connected with a shaft sleeve (9011); the shaft sleeve (9011) is in transmission connection with the spline shaft (907); the left part of the shaft sleeve (9011) is fixedly connected with a second gear (9012); the rear part of the rotary table (903) is rotatably connected with a second connecting shaft (9014); a third gear (9013) is fixedly connected to the right part of the second connecting shaft (9014); the left part of the second connecting shaft (9014) is fixedly connected with a crank rocker (9015); the rear part of the crank rocker (9015) is fixedly connected with a second accommodating rod (9016); a fourth electric slide block (9017) is connected in the power slide groove (201 a) in a sliding manner; a bearing plate (9018) is fixedly connected to the upper side of the fourth electric sliding block (9017), and the bearing plate (9018) is in contact with the first accommodating rod (904).
8. The storage device as claimed in claim 7, wherein the storage device comprises: the ship body bearing plate is characterized by further comprising a fixed mounting system (6), wherein the fixed mounting system (6) is mounted in the middle of the upper side of the ship body bearing plate (201); the rear part of the fixed mounting system (6) is connected with the hull paving system (4); the fixed mounting system (6) comprises a first fixed plate (601) and a third mounting plate (602); two first fixing plates (601) are arranged in the middle of the upper side of the ship body bearing plate (201); the top sides of the two first fixing plates (601) are fixedly connected with a third mounting plate (602); the lower rear part of the third mounting plate (602) is fixedly connected with the second mounting plate (401).
9. The storage device as claimed in claim 8, wherein the storage device comprises: the ship body fixing system (7) is further included, and the ship body fixing system (7) is installed on the lower side of the third installation plate (602); the ship body fixing system (7) comprises a second electric slide rail (701), a second electric slide block (702), a first connecting block (703), a first connecting plate (704), a second connecting plate (705), a third connecting plate (706), a fourth connecting plate (707), a bow fixing half ring (708) and a ship body fixing plate (709); a second electric slide rail (701) is arranged at the front part of the lower side of the third mounting plate (602); two second electric sliding blocks (702) are connected on the second electric sliding rail (701) in a sliding manner; a first connecting block (703) is respectively arranged at the lower sides of the two second electric sliding blocks (702); the lower sides of the two first connecting blocks (703) are fixedly connected with a second connecting plate (705) respectively; two third connecting plates (706) are fixedly connected to the lower sides of the two second connecting plates (705) respectively; a fourth connecting plate (707) is fixedly connected to the lower sides of two front and back adjacent third connecting plates (706); two ship bow fixed semi-rings (708) are fixedly connected to the opposite sides of the two fourth connecting plates (707) respectively; the front parts of the lower sides of the two fourth connecting plates (707) are respectively fixedly connected with a hull fixing plate (709).
10. The storage device as claimed in claim 9, wherein the storage device comprises: the powder isolation system (8) is further included, and the powder isolation system (8) is installed on the lower side of the third installation plate (602); the powder isolation system (8) comprises a third electric slide rail (801), a third electric slide block (802), a second connecting block (803), a connecting rod (804), a cross fixing frame (805) and a powder isolation frame (806); a third electric slide rail (801) is arranged at the rear part of the lower side of the third mounting plate (602); two third electric sliding blocks (802) are connected on the third electric sliding rail (801) in a sliding way; a second connecting block (803) is respectively arranged at the lower sides of the two third electric sliding blocks (802); the lower sides of the two second connecting blocks (803) are respectively fixedly connected with a connecting rod (804); the bottom ends of the two connecting rods (804) are respectively fixedly connected with a cross-shaped fixing frame (805); the lower sides of the two cross-shaped fixing frames (805) are respectively fixedly connected with a powder isolating frame (806); the rear part of the powder isolation frame (806) is provided with a ventilation groove.
CN202111418652.3A 2021-11-26 2021-11-26 Can be to equipment of accomodating of inflatable boat toy rolling Withdrawn CN114212333A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202111418652.3A CN114212333A (en) 2021-11-26 2021-11-26 Can be to equipment of accomodating of inflatable boat toy rolling

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202111418652.3A CN114212333A (en) 2021-11-26 2021-11-26 Can be to equipment of accomodating of inflatable boat toy rolling

Publications (1)

Publication Number Publication Date
CN114212333A true CN114212333A (en) 2022-03-22

Family

ID=80698576

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202111418652.3A Withdrawn CN114212333A (en) 2021-11-26 2021-11-26 Can be to equipment of accomodating of inflatable boat toy rolling

Country Status (1)

Country Link
CN (1) CN114212333A (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115256354A (en) * 2022-09-26 2022-11-01 华芯电子科技(江苏)有限公司 A manipulator for intelligent toy distribution arrangement

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115256354A (en) * 2022-09-26 2022-11-01 华芯电子科技(江苏)有限公司 A manipulator for intelligent toy distribution arrangement

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