CN217615476U - Automatic change architectural decoration intergral template mortar spraying system - Google Patents

Automatic change architectural decoration intergral template mortar spraying system Download PDF

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Publication number
CN217615476U
CN217615476U CN202221087943.9U CN202221087943U CN217615476U CN 217615476 U CN217615476 U CN 217615476U CN 202221087943 U CN202221087943 U CN 202221087943U CN 217615476 U CN217615476 U CN 217615476U
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China
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fixed
chain wheel
transmission equipment
equipment
cylinder
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CN202221087943.9U
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Chinese (zh)
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王云祥
章国强
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Jiaxing Aotai New Building Materials Co ltd
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Jiaxing Aotai New Building Materials Co ltd
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Abstract

The utility model provides an automatic change architectural decoration intergral template mortar spraying system, including spraying equipment, transverse transmission equipment, vertical transmission equipment and transfer mechanism, spraying equipment one side is equipped with the feed inlet, the length direction of vertical transmission equipment with spraying equipment's feed direction is unanimous, the length direction of transverse transmission equipment with vertical transmission equipment's length direction is perpendicular, vertical transmission equipment sets up transverse transmission equipment with between the spraying equipment, vertical transmission equipment wherein one end is close to the feed inlet, vertical transmission equipment's the other end is close to transverse transmission equipment, transfer mechanism sets up on the transverse transmission equipment, transfer mechanism will panel on the transverse transmission equipment shifts to on the vertical transmission equipment, the utility model discloses make the full-automatic continuous material loading of panel, increased substantially panel spraying efficiency.

Description

Automatic change architectural decoration intergral template mortar spraying system
Technical Field
The utility model belongs to automatic spraying system field especially relates to an automatic change architectural decoration intergral template mortar spraying system.
Background
The foam glass plate is an inorganic non-metal glass material prepared by finely crushing and uniformly mixing broken glass, a foaming agent, a modified additive, a foaming accelerant and the like, and then melting, foaming and annealing at high temperature. The foam glass has high brittleness and low hardness, and can be easily carved into various shapes, so the foam glass is also used for making a statue or a wall three-dimensional decoration, and mortar with various colors is sprayed on the outside, so the foam glass becomes very beautiful. At present, the foam glass plate is sprayed mainly by manually placing the plate below a spraying port of a mortar spraying machine, the efficiency of the manual feeding mode depends on the speed of workers, the workers need to have a rest within a certain time period, continuous production cannot be realized, and the efficiency is low.
SUMMERY OF THE UTILITY MODEL
Not enough to exist among the prior art, the utility model provides an automatic change architectural decoration intergral template mortar spraying system has solved and can only lead to the fact the problem of inefficiency through artifical material loading when current foam glass board carries out the spraying mortar.
The utility model provides an automatic change architectural decoration intergral template mortar spraying system, including spraying equipment, transverse transmission equipment, vertical transmission equipment and transfer mechanism, spraying equipment one side is equipped with the feed inlet, vertical transmission equipment's length direction with spraying equipment's direction of feed is unanimous, transverse transmission equipment's length direction with vertical transmission equipment's length direction is perpendicular, vertical transmission equipment sets up transverse transmission equipment with between the spraying equipment, vertical transmission equipment wherein one end is close to the feed inlet, vertical transmission equipment's the other end is close to transverse transmission equipment, transfer mechanism sets up on the transverse transmission equipment, transfer mechanism will panel on the transverse transmission equipment shifts to on the vertical transmission equipment.
Furthermore, the transfer mechanism comprises a first base plate, a second base plate, a first chain wheel transmission group, a second chain wheel transmission group, a lifting oil cylinder, a motor and a frame, wherein the cylinder body of the lifting oil cylinder is fixed on the ground, the output shaft of the lifting oil cylinder faces upwards, the free end of the output shaft of the lifting oil cylinder is fixed on the frame, the first base plate and the second base plate are respectively fixed on two sides of the frame, the body of the motor is fixed in the middle of the frame, the length direction of the first base plate and the length direction of the second base plate are perpendicular to the transmission direction of the transverse transmission equipment, the first chain wheel transmission group and the second chain wheel transmission group are respectively arranged on the first base plate and the second base plate, a connecting rod is fixed between two chain wheels at the same end of the first chain wheel transmission group and the second chain wheel transmission group, and a rotating shaft of the motor is connected with the connecting rod by a surrounding belt.
The vertical conveying device is fixed above a bracket, a bottom frame placed on the ground is arranged below the bracket, a lifting mechanism is arranged between the bracket and the bottom frame, the lifting mechanism enables the bracket to lift relative to the bottom frame, the rotating assembly comprises a rotating oil cylinder and a rotating disc, a cylinder body of the rotating oil cylinder is fixed on the bottom frame, an output shaft of the rotating oil cylinder faces upwards, the rotating disc is fixed with the free end of the output shaft of the rotating oil cylinder, and the rotating assembly is located in the middle of the vertical conveying device; the deviation correcting mechanism comprises a first clamping piece, a second clamping piece, a first guide rod, a second guide rod, a first correcting oil cylinder, a second correcting oil cylinder, a third chain wheel transmission group and a fourth chain wheel transmission group, wherein the first guide rod and the second guide rod are fixed on the bottom frame, the first correcting oil cylinder and the second correcting oil cylinder are bidirectional telescopic oil cylinders, the first guide rod and the second guide rod are respectively provided with a third chain wheel transmission group and a fourth chain wheel transmission group, a left output shaft of the first correcting oil cylinder is fixed with a left end of a chain of the third chain wheel transmission group and a rear end of the first clamping piece, a right output shaft of the first correcting oil cylinder is fixed with a right end of a chain of the third chain wheel transmission group and a rear end of the second clamping piece, a left output shaft of the second correcting oil cylinder is fixed with a left side of a chain of the fourth chain wheel transmission group and a front end of the first clamping piece, and a right output shaft of the second correcting oil cylinder is fixed with a right end of a chain of the fourth chain wheel transmission group and a front end of the second clamping piece.
Furthermore, the first clamping piece and the second clamping piece respectively comprise a connecting plate, a fixing block, an extending block, a clamping rod and a connecting piece, two ends of the connecting plate are respectively lapped on the top surfaces of the first guide rod and the second guide rod, the clamping rod is fixed with the connecting plate through the extending block, the bottom of the clamping rod is connected with the fixing block, the rear end of the clamping rod is fixed with an output shaft of the first correction oil cylinder, the front end of the clamping rod is fixed with an output shaft of the second correction oil cylinder, and the third chain wheel transmission set and the fourth chain wheel transmission set are respectively fixed with the output shaft of the correction oil cylinder through the connecting piece.
Furthermore, a transmission limiting device is arranged on the transverse transmission device and close to the transfer mechanism.
The utility model discloses following beneficial effect has:
1. the utility model discloses a horizontal transmission equipment and vertical transmission equipment transmit panel, with panel automatic transmission to spraying equipment's feed inlet in, then panel stops after reaching spraying equipment's spraying mouth below automatically, and the spraying mouth carries out the spraying to the panel that stops in its below, the utility model discloses abandon workman's manual feeding mode in the past, full-automatic material loading for panel material loading serialization becomes to probably, has increased substantially panel spraying efficiency.
2. The utility model discloses with panel windrow department and the oblique diagonal angle setting of spraying equipment, lateral transfer equipment and vertical transmission equipment link together panel windrow department and spraying equipment, are equipped with transport mechanism between lateral transfer equipment and the vertical transmission equipment for spraying system's single direction can not be too long, occupies the too much space of factory building.
3. The utility model discloses still be equipped with skew correction mechanism, finely tune the position of panel, ensure that the panel position is corresponding with the spraying mouth of spraying equipment, guarantee the accurate rate of spraying, promoted product quality, saved the mortar.
Drawings
FIG. 1 is a first perspective view of an automated architectural decoration integrated panel mortar spraying system of the present invention;
fig. 2 is a perspective view of the transfer mechanism of the present invention;
fig. 3 is a second perspective view of the mortar spraying system for an automatic architectural decoration integrated board of the present invention (the spraying device is removed);
FIG. 4 is a third perspective view of the mortar spraying system for an integrated automatic architectural ornament panel of the present invention (with the spraying device removed);
FIG. 5 is an enlarged view of the portion A of FIG. 3;
FIG. 6 is an enlarged view of the portion B of FIG. 4;
fig. 7 is an enlarged schematic view of the portion C of fig. 3.
In the above figures, 10, a spraying device; 11. a feed inlet; 20. a lateral transfer device; 30. a longitudinal transport device; 40. a transfer mechanism; 41. a first substrate; 42. a second substrate; 43. a first sprocket drive group; 44. a second sprocket drive group; 45. lifting the oil cylinder; 46. a motor; 47. a frame; 48. encircling the belt; 49. a connecting rod; 51. a first clamp; 52. a second clamp; 53. a first guide bar; 54. a second guide bar; 55. a first straightening cylinder; 56. a second straightening oil cylinder; 57. a third sprocket drive group; 58. a fourth sprocket drive group; 60. a rotating assembly; 61. rotating the oil cylinder; 62. rotating the disc; 70. a bracket; 80. a chassis; 90. a lifting mechanism; 91. a V-shaped crank; 92. a cylinder; 93. a support shaft; 94. a hinge plate; 121. a connecting plate; 122. a fixed block; 123. an extension block; 124. a clamping lever; 125. a connecting member; 1. and a transmission limiting device.
Detailed Description
The technical solution of the present invention will be further explained with reference to fig. 1-7 and the embodiments.
The utility model provides an automatic change architectural decoration intergral template mortar spraying system, including spraying equipment 10, transverse transmission equipment 20, vertical transmission equipment 30 and transfer mechanism 40, spraying equipment 10 one side is equipped with feed inlet 11, the length direction of vertical transmission equipment 30 is unanimous with spraying equipment 10's direction of feed, transverse transmission equipment 20's length direction is perpendicular with vertical transmission equipment 30's length direction, vertical transmission equipment 30 sets up between transverse transmission equipment 20 and spraying equipment 10, vertical transmission equipment 30 wherein one end is close to feed inlet 11, vertical transmission equipment 30's the other end is close to transverse transmission equipment 20, transfer mechanism 40 sets up on transverse transmission equipment 20, transfer mechanism 40 shifts the panel on the transverse transmission equipment 20 to vertical transmission equipment 30.
The transverse conveying device 20 and the longitudinal conveying device 30 are used for conveying the plates to be sprayed from the plate stacking position to the spraying device 10, the space of a factory is limited, the plate stacking position, the conveying device and the spraying device 10 cannot be arranged on the same straight line, therefore, the plate stacking position and the spraying device 10 are arranged at the diagonal angles, the length directions of the transverse conveying device 20 and the longitudinal conveying device 30 are vertical, and the plates are conveyed from the plate stacking position to the spraying device 10 by the transverse conveying device 20 and the longitudinal conveying device 30. The spraying device 10 is a mortar spraying device 10 which is common in the prior art.
Since the longitudinal transport devices 30 and the transverse transport devices 20 are perpendicular to each other in the longitudinal direction, the transport directions of the two devices are also perpendicular, and the transfer mechanism 40 is required to transfer the sheet material on the longitudinal transport device 30 to the transverse transport device 20.
Specifically, the transfer mechanism 40 includes a first substrate 41, a second substrate 42, a first sprocket transmission group 43 and a second sprocket transmission group 44, a lifting cylinder 45, a motor 46 and a frame 47, a cylinder body of the lifting cylinder 45 is fixed on the ground, an output shaft of the lifting cylinder 45 faces upward, the frame 47 is fixed at a free end of the output shaft of the lifting cylinder 45, the first substrate 41 and the second substrate 42 are respectively fixed at two sides of the frame 47, a body of the motor 46 is fixed at the middle part of the frame 47, the length directions of the two substrates are perpendicular to the transmission direction of the transverse transmission device 20, the first substrate 41 and the second substrate 42 are respectively provided with the first sprocket transmission group 43 and the second sprocket transmission group 44, a connecting rod 49 is fixed between two sprockets of the first sprocket transmission group 43 and the second sprocket transmission group 44 at the same end, and a rotating shaft of the motor 46 is connected with the connecting rod 49 by a surrounding belt 48.
In order to prevent the transverse transport device 20 and the longitudinal transport device 30 from interfering with each other, the longitudinal transport device 30 is higher than the transverse transport device 20 because the sheet on the transverse transport device 20 is transported past the longitudinal transport device 30 when the central axis of the sheet is not coincident with the central axis of the longitudinal transport device 30 when passing through the longitudinal transport device 30.
When the sheet material on the transverse transmission device 20 is conveyed to the transfer mechanism 40, the transverse transmission device 20 stops transmission, the output shaft of the lifting cylinder 45 extends, the rack 47 is lifted, the surfaces of the first base plate 41, the second base plate 42, the first chain wheel transmission set 43, the second chain wheel transmission set 44, the lifting cylinder 45, the connecting rod 49 and the motor 46 are flush with the surface of the longitudinal transmission device 30, so that the sheet material passing through the transfer mechanism 40 is lifted up and leaves the transverse transmission device 20, then the motor 46 is started, so that the connecting rod 49 rotates to drive the first chain wheel transmission set 43 and the second chain wheel transmission set 44 to rotate, and the sheet material staying on the first chain wheel transmission set 43 and the second chain wheel transmission set 44 is conveyed to the longitudinal transmission device 30.
The utility model discloses still include an skew guiding mechanism and rotating assembly 60, vertical transmission equipment 30 is fixed in a bracket 70 top, bracket 70 below is equipped with one and places the chassis 80 on ground, be equipped with elevating system 90 between bracket 70 and the chassis 80, elevating system 90 makes bracket 70 go up and down for chassis 80, rotating assembly 60 includes swivel cylinder 61 and rotary disk 62, swivel cylinder 61's cylinder body is fixed on chassis 80, swivel cylinder 61's output shaft upwards, rotary disk 62 is fixed with swivel cylinder 61's output shaft free end, and rotating assembly 60 is located vertical transmission equipment 30's middle part.
The deviation correcting mechanism comprises a first clamping piece 51, a second clamping piece 52, a first guide rod 53, a second guide rod 54, a first correcting oil cylinder 55, a second correcting oil cylinder 56, a third chain wheel transmission set 57 and a fourth chain wheel transmission set 58, wherein the first guide rod 53 and the second guide rod 54 are fixed on a bottom frame 80, the first correcting oil cylinder 55 and the second correcting oil cylinder 56 are both bidirectional telescopic oil cylinders, the first guide rod 53 and the second guide rod 54 are respectively provided with the third chain wheel transmission set 57 and the fourth chain wheel transmission set 58, a left output shaft of the first correcting oil cylinder 55 is fixed with a left end of a chain of the third chain wheel transmission set 57 and a rear end of the first clamping piece 51, a right output shaft of the first correcting oil cylinder 55 is fixed with a right end of the chain of the third chain wheel transmission set 57 and a rear end of the second clamping piece 52, a left output shaft of the second correcting oil cylinder 56 is fixed with a left side of a chain of the fourth chain wheel transmission set 58 and a front end of the first clamping piece 51, and a right output shaft of the second correcting oil cylinder 56 is fixed with a right side of the chain of the fourth chain wheel transmission set 58 and a front end of the second clamping piece 52.
When a plate is conveyed on the transverse conveying device 20, because the accommodation degree on the transverse conveying device 20 needs to be made as large as possible, the short side direction of the plate is parallel to the length direction of the transverse conveying device 20, after the plate is transferred from the transverse conveying device 20 to the longitudinal conveying device 30 by the transfer mechanism 40, a deviation correction mechanism needs to perform fine adjustment on the position of the plate, so that the central axis of the plate is overlapped with the central axis of the longitudinal conveying device 30, and the position of the plate corresponds to the position of a nozzle of the spraying device 10.
The lifting mechanism 90 comprises a V-shaped crank 91, an air cylinder 92 and a supporting shaft 93, wherein a cylinder body of the air cylinder 92 and the supporting shaft 93 are fixed on the base frame 80, the V-shaped crank 91 is sleeved on the supporting shaft 93, so that the V-shaped crank 91 can rotate around the supporting shaft 93, a hinged plate 94 is fixed at the bottom of the bracket 70, one section of the V-shaped crank 91 is hinged with the bottom of the hinged plate 94, and the other section of the V-shaped crank 91 is fixed with an expansion link of the air cylinder 92. When the telescopic rod of the air cylinder 92 extends, the section of the V-shaped crank 91 hinged with the hinged plate 94 rotates to the side away from the air cylinder 92, so that the angle between the section of the V-shaped crank 91 hinged with the hinged plate 94 and the base frame 80 is reduced, the distance between the free end of the section of the V-shaped crank 91 hinged with the hinged plate 94 and the base frame 80 is reduced, the height of the hinged plate 94 is reduced, and the bracket 70 is lowered; when the telescopic rod of the cylinder 92 is shortened, the section of the V-shaped crank 91 hinged with the hinge plate 94 rotates to the side close to the cylinder 92, and finally the bracket 70 is lifted.
When the sheet is transported by the longitudinal transport device 30 and reaches the position of the rotating assembly 60, the lifting mechanism 90 lowers the bracket 70, so that the upper surface of the longitudinal transport device 30 is lower than the upper surface of the rotating assembly 60, the sheet rests on the rotating disc 62, the output shaft of the rotating cylinder 61 rotates 90 degrees, the rotating disc 62 rotates 90 degrees, finally the sheet rotates 90 degrees, the short side of the sheet is parallel to the length direction of the longitudinal transport device 30, the long side of the sheet is perpendicular to the length direction of the longitudinal transport device 30, so that the parts of the two sides of the sheet, which exceed the rotating disc 62, are a little bit more, and the first clamping piece 51 and the second clamping piece 52 are convenient to clamp the two sides of the sheet respectively.
Specifically, the first clamping piece 51 and the second clamping piece 52 both include a connecting plate 121, a fixing block 122, an extending block 123, a clamping rod 124 and a connecting piece 125, two ends of the connecting plate 121 are respectively lapped on top surfaces of the first guide rod 53 and the second guide rod 54, the clamping rod 124 is fixed to the connecting plate 121 through the extending block 123, the bottom of the clamping rod 124 is connected to the fixing block 122, the rear end fixing block 122 is fixed to an output shaft of the first straightening cylinder 55, the front end fixing block 122 is fixed to an output shaft of the second straightening cylinder 56, and chains of the third chain wheel transmission set 57 and the fourth chain wheel transmission set 58 are respectively fixed to output shafts of the straightening cylinders through the connecting piece 125.
When the output shafts of the first straightening oil cylinder 55 and the second straightening oil cylinder 56 are shortened, the two clamping rods 124 approach to the rotating disc 62, the two clamping rods 124 clamp the plate together, the position of the plate is finely adjusted, and then when the output shafts of the first straightening oil cylinder 55 and the second straightening oil cylinder 56 are extended, the two clamping rods 124 are far away from the rotating disc 62 to loosen the plate.
Then the lifting mechanism 90 lifts the bracket 70, the longitudinal transmission device 30 is lifted, the plate on the rotating disc 62 is lifted by the longitudinal transmission device 30, the bottom surface of the plate is contacted with the longitudinal transmission device 30, and the plate is continuously conveyed by the longitudinal transmission device 30 until the plate is conveyed to the spraying device 10 to be sprayed with mortar.
The two ends of the connecting plate 121 respectively overlap the top surfaces of the first guide rod 53 and the second guide rod 54 to provide a guide for the movement of the clamping rod 124, and the two clamping rods 124 are connected with the chains of the third chain wheel transmission set 57 and the fourth chain wheel transmission set 58 through the connecting member 125 to further provide a guide for the movement of the clamping rod 124.
When a plate is conveyed on the transverse conveying device 20, when the plate passes through the transfer mechanism 40, a signal needs to be sent to the transfer mechanism 40 and the transverse conveying device 20, so that the transfer mechanism 40 finishes lifting and transmission actions, the transverse conveying device 20 stops transmission actions, a transmission limiting device 1 is arranged on the transverse conveying device 20 close to the transfer mechanism 40, the position of the plate can be detected by the transmission limiting device 1, the start and stop of the transfer mechanism 40 and the transverse conveying device 20 are controlled, the transmission limiting device 1 comprises a proximity switch facing the plate, the proximity switch is one of the prior art, and the plate position relation can be detected no matter what type of principle of the proximity switch.
The utility model discloses a theory of operation: the sheet is conveyed on the transverse conveying device 20 at uniform intervals, when the foremost sheet of the transverse conveying device 20 passes over the transfer mechanism 40, the sheet is detected by the conveying limiting device 1, the conveying limiting device 1 sends a stop signal to the transverse conveying device 20 to stop the transverse conveying device 20, meanwhile, the conveying limiting device 1 sends a start signal to the transfer mechanism 40, the transfer mechanism 40 ascends to lift the sheet, the transfer mechanism 40 starts to drive to transfer the sheet to the longitudinal conveying device 30, when the sheet passes through the position of the rotating assembly 60, the lifting mechanism 90 descends the longitudinal conveying device 30, the sheet stays on the rotating disc 62, the rotating disc 62 rotates 90 degrees to rotate the sheet 90 degrees, then the deviation correcting mechanism finely adjusts the position of the sheet, then the longitudinal conveying device 30 ascends, the bottom surface of the sheet is in contact with the longitudinal conveying device 30 again, and the longitudinal conveying device 30 conveys the sheet to the spraying device 10 to be sprayed.
Finally, it is noted that the above embodiments are only used for illustrating the technical solutions of the present invention and not for limiting, and although the present invention has been described in detail with reference to the preferred embodiments, it should be understood by those skilled in the art that the technical solutions of the present invention can be modified or replaced by equivalents without departing from the spirit and scope of the technical solutions of the present invention, which should be covered by the scope of the claims of the present invention.

Claims (5)

1. The utility model provides an automatic change architectural decoration intergral template mortar spraying system, includes spraying equipment (10), spraying equipment (10) one side is equipped with feed inlet (11), its characterized in that still includes horizontal transmission equipment (20), vertical transmission equipment (30) and transfer mechanism (40), the length direction of vertical transmission equipment (30) with the feeding direction of spraying equipment (10) is unanimous, the length direction of horizontal transmission equipment (20) with the length direction of vertical transmission equipment (30) is perpendicular, vertical transmission equipment (30) set up horizontal transmission equipment (20) with between spraying equipment (10), vertical transmission equipment (30) one of them one end is close to feed inlet (11), the other end of vertical transmission equipment (30) is close to horizontal transmission equipment (20), transfer mechanism (40) sets up on horizontal transmission equipment (20), transfer mechanism (40) will panel on the horizontal transmission equipment (20) shifts to on vertical transmission equipment (30).
2. The automatic mortar spraying system for the integrated architectural decoration board of claim 1, the transfer mechanism (40) comprises a first base plate (41), a second base plate (42), a first chain wheel transmission group (43), a second chain wheel transmission group (44), a lifting oil cylinder (45), a motor (46) and a rack (47), the cylinder body of the lifting oil cylinder (45) is fixed on the ground, the output shaft of the lifting oil cylinder (45) is upward, the free end of the output shaft of the lifting oil cylinder (45) is fixed with the frame (47), the first substrate (41) and the second substrate (42) are respectively fixed on two sides of the frame (47), the body of the motor (46) is fixed in the middle of the frame (47), the length direction of the first substrate (41) and the second substrate (42) is perpendicular to the conveying direction of the transverse conveying device (20), the first base plate (41) and the second base plate (42) are respectively provided with the first chain wheel transmission group (43) and the second chain wheel transmission group (44), a connecting rod (49) is fixed between two chain wheels at the same end of the first chain wheel transmission group (43) and the second chain wheel transmission group (44), the rotating shaft of the motor (46) is connected with the connecting rod (49) through a surrounding belt (48).
3. An automatic mortar spraying system for building decoration integrated boards according to claim 1, further comprising a rotating assembly (60) and an offset correcting mechanism, wherein the longitudinal conveying device (30) is fixed above a bracket (70), a base frame (80) placed on the ground is arranged below the bracket (70), a lifting mechanism (90) is arranged between the bracket (70) and the base frame (80), the lifting mechanism (90) enables the bracket (70) to lift relative to the base frame (80), the rotating assembly (60) comprises a rotating cylinder (61) and a rotating disc (62), a cylinder body of the rotating cylinder (61) is fixed on the base frame (80), an output shaft of the rotating cylinder (61) is upward, the rotating disc (62) is fixed with a free end of the output shaft of the rotating cylinder (61), and the rotating assembly (60) is positioned in the middle of the longitudinal conveying device (30); the deviation correcting mechanism comprises a first clamping piece (51), a second clamping piece (52), a first guide rod (53), a second guide rod (54), a first correcting oil cylinder (55), a second correcting oil cylinder (56), a third chain wheel transmission set (57) and a fourth chain wheel transmission set (58), wherein the first guide rod (53) and the second guide rod (54) are fixed on the bottom frame (80), the first correcting oil cylinder (55) and the second correcting oil cylinder (56) are both bidirectional telescopic oil cylinders, the first guide rod (53) and the second guide rod (54) are respectively provided with the third chain wheel transmission set (57) and the fourth chain wheel transmission set (58), a left output shaft of the first correcting oil cylinder (55) is fixed with the left end of a chain of the third chain wheel transmission set (57) and the rear end of the first clamping piece (51), a right output shaft of the first correcting oil cylinder (55) is fixed with the right end of the chain of the third chain wheel transmission set (57) and the rear end of the second clamping piece (52), a right output shaft of the second correcting oil cylinder (56) is fixed with the front end of the chain wheel transmission cylinder (58) of the chain wheel transmission set (58), and the front end of the chain wheel transmission cylinder (58) of the second correcting oil cylinder (56) are fixed with the right side of the chain wheel transmission cylinder.
4. The automatic mortar spraying system for the building decoration integrated plates as claimed in claim 3, wherein each of the first clamping member (51) and the second clamping member (52) comprises a connecting plate (121), a fixing block (122), an extending block (123), a clamping rod (124) and a connecting piece (125), two ends of the connecting plate (121) are respectively lapped on top surfaces of the first guide rod (53) and the second guide rod (54), the clamping rod (124) is fixed with the connecting plate (121) through the extending block (123), the bottom of the clamping rod (124) is connected with the fixing block (122), the fixing block (122) at the rear end is fixed with an output shaft of the first straightening cylinder (55), the fixing block (122) at the front end is fixed with an output shaft of the second straightening cylinder (56), and the third sprocket drive set (57) and the fourth sprocket drive set (58) are respectively fixed with output shafts of the straightening cylinders through the connecting piece (125).
5. The automated building decoration integrated plate mortar spraying system of any one of claims 1 to 4, wherein the transverse conveying device (20) is provided with a conveying limiting device (1) near the transfer mechanism (40).
CN202221087943.9U 2022-05-07 2022-05-07 Automatic change architectural decoration intergral template mortar spraying system Active CN217615476U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202221087943.9U CN217615476U (en) 2022-05-07 2022-05-07 Automatic change architectural decoration intergral template mortar spraying system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202221087943.9U CN217615476U (en) 2022-05-07 2022-05-07 Automatic change architectural decoration intergral template mortar spraying system

Publications (1)

Publication Number Publication Date
CN217615476U true CN217615476U (en) 2022-10-21

Family

ID=83651641

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202221087943.9U Active CN217615476U (en) 2022-05-07 2022-05-07 Automatic change architectural decoration intergral template mortar spraying system

Country Status (1)

Country Link
CN (1) CN217615476U (en)

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