CN114345649A - Rotation type floral tube japanning equipment based on building material processing - Google Patents

Rotation type floral tube japanning equipment based on building material processing Download PDF

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Publication number
CN114345649A
CN114345649A CN202210018202.3A CN202210018202A CN114345649A CN 114345649 A CN114345649 A CN 114345649A CN 202210018202 A CN202210018202 A CN 202210018202A CN 114345649 A CN114345649 A CN 114345649A
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China
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sides
sliding
floral tube
building material
rods
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CN202210018202.3A
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Chinese (zh)
Inventor
胡维昊
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Shenzhen Longtaihao Investment Management Co ltd
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Shenzhen Longtaihao Investment Management Co ltd
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Priority to CN202210018202.3A priority Critical patent/CN114345649A/en
Publication of CN114345649A publication Critical patent/CN114345649A/en
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Abstract

The invention discloses a rotary type floral tube painting device based on building material processing. The utility model provides an automatic compress tightly fixed floral tube, the japanning is accomplished in the rotation of automatic drive floral tube, and automatic restriction floral tube position, the floral tube that stabilizes automatically is the rotation type floral tube japanning equipment based on building material processing of floral tube surface touch-up lacquer automatically. A rotary type flower tube painting device based on building material processing comprises a bottom plate, wherein three material storage frames are uniformly connected to the upper part of the bottom plate at intervals; the rotating shafts are symmetrically and rotatably connected between the two sides of the upper part of the material storage frame; the rotating shafts are connected with paint brushing cylinders; the lifting mechanism is arranged on the upper part of the bottom plate. The rotary type flower tube painting equipment based on building material processing disclosed by the invention has the advantages that the flower tube is automatically driven to rotate to finish painting, the position of the flower tube is automatically limited, the seat and the flower tube are automatically and stably placed, the flower tube is automatically replenished with paint, and the flower tube is fully painted.

Description

Rotation type floral tube japanning equipment based on building material processing
Technical Field
The invention relates to painting equipment, in particular to rotary type floral tube painting equipment based on building material processing.
Background
The perforated pipe is a building material commonly used in construction of construction sites, paint materials with different colors are required to be clearly coated on the surface of the perforated pipe at intervals, and the perforated pipe is put into use after the paint materials are coated on the surface of the perforated pipe during production and processing of the perforated pipe.
The existing flower tube painting technology is to place a flower tube on a painting cylinder stained with paint, the flower tube is rotated manually to drive the painting cylinder to rotate, the surface painting of the flower tube is performed by the aid of the flower tube painting technology, the flower tube is fixed completely and can fall off, the flower tube is rotated manually, time and labor are consumed, the efficiency is low, the position where the flower tube is placed can be inaccurate, deviation occurs in a painting position, the flower tube is contacted with the painting cylinder to paint, the painting is influenced by movement of the flower tube due to instability of the flower tube, the condition that the surface of the flower tube is not completely painted can occur sometimes, the subsequent painting patching is needed, and operation is troublesome and labor-consuming.
Therefore, it is necessary to design a rotary type flower tube painting device based on building material processing, which can automatically compress and fix the flower tube, automatically drive the flower tube to rotate to finish painting, automatically limit the position of the flower tube, automatically stabilize the flower tube, and automatically paint the surface of the flower tube.
Disclosure of Invention
Aiming at the defects of the prior art, the invention provides the rotary type flower tube painting equipment based on building material processing, which can automatically compress and fix the flower tube, automatically drive the flower tube to rotate to finish painting, automatically limit the position of the flower tube, automatically stabilize the flower tube and automatically mend paint on the surface of the flower tube.
The purpose of the invention can be achieved by adopting the following technical scheme:
in a first aspect, a rotary type flower tube painting device based on building material processing comprises: the upper part of the bottom plate is evenly connected with three material storage frames at intervals; the rotating shafts are symmetrically and rotatably connected between the two sides of the upper part of the material storage frame; the rotating shafts are connected with paint brushing cylinders; the upper part of the bottom plate is provided with a lifting mechanism; and the pressing mechanism is arranged between one side of the upper part of the bottom plate and the lifting mechanism.
Further, the elevating system includes: the upper part of the bottom plate is uniformly and symmetrically connected with four guide cylinders at intervals; the inner sides of the guide cylinders are connected with the sliding rods in a sliding manner; the reset springs are connected between the slide bars and the guide cylinders; the upper parts of the sliding rods on the same side are connected with the placing seats; the connecting plates are connected between the two sides of the placing seat; the cylinder, bottom plate upper portion both sides all are connected with the cylinder, and the cylinder piston rod upside all is connected with placing the seat.
Further, the hold-down mechanism includes: one side of the upper part of the bottom plate is symmetrically connected with the protective frame; the connecting seats are connected with one sides of the outer side placing seats; the upper parts of the connecting seats are rotatably connected with the pressing plates; the inner sides of the transmission shafts of the pressing plates are connected with the first gears; the inner sides of the upper parts of the guide cylinders on the two sides are connected with first racks, and the first racks are meshed with the first gears.
Further, still including the rotating assembly, the rotating assembly includes: the two sides of the upper part of the bottom plate are symmetrically connected with the guide sleeves; the inner sides of the guide sleeves are connected with the sliding rods in a sliding manner; the shell is connected between the upper sides of the sliding rods, the inner sides of the shell are both connected with the guide rods, and one side of the upper part and one side of the lower part in the shell are both connected with the guide rods; the outer side placing seats are connected; the guide rod on one side of the first friction plate is connected with the first friction plate in a sliding way; the guide rod on one side of the second friction plate is connected with the second friction plate in a sliding way; one side of the telescopic rod of the electric push rod is connected with the first friction plate; the outer sides of the upper parts of the first friction plates are connected with second racks; the outer sides of the lower parts of the second friction plates are connected with third racks; the bearing seats are connected to one side of the upper part in the shell; the inner sides of the bearing seats are connected with rotating rods; the upper side and the lower side of the rotating rod are provided with second gears, and the second gears at the lower side are meshed with the third racks; the middle part of one side of the shell is connected with the rotating sleeve; the inner sides of the rotating sleeves are rotatably connected with rotating shafts; and the upper sides of the rotating shafts of the third gears are all connected with the third gear, and the third gear is meshed with the second gear on the upper side.
Further, still including the locating component, the locating component includes: the outer sides of the outer side placing seats are symmetrically connected with guide rods; the positioning seats are connected between the guide rods in a sliding manner; the compression springs are connected between the positioning seat and the guide rod and sleeved on the guide rod; the inner sides of the lower parts of the positioning seats are rotatably connected with contact wheels; the inner sides of the lower parts of the wedge-shaped plate and the second friction plate are both connected with the wedge-shaped plate, and the wedge-shaped plate is matched with the contact wheel at the same side.
Further, still including the chucking subassembly, the chucking subassembly includes: one side of the upper part of the shell is symmetrically connected with the sliding sleeves; the inner sides of the sliding sleeves are connected with sliding shafts in a sliding manner; the extension springs are connected between the sliding shaft and the sliding sleeve; the clamping sleeves are connected between one sides of the sliding shafts; one side of each clamping sleeve is connected with the special-shaped plate; the fixing sleeves are connected to one side of the inner lower part of the shell; the inner sides of the fixed sleeves are connected with contact rods in a sliding mode, one sides of the contact rods are connected with contact wheels in a rotating mode, and the contact rods are matched with the special-shaped plates; the fixture block is placed on one side of seat upper portion in the outside and all is connected with the fixture block, and the fixture block is mutually supported with the cutting ferrule.
Furthermore, the device also comprises a paint repairing component which is arranged on one side of the placing seat.
Further, the touch-up paint subassembly includes: the mounting rods are symmetrically connected to one sides of the three placing seats; one side of each mounting rod is connected with a fourth rack; and one side of the rotating shaft of the fourth gear is connected with the fourth gear, and the fourth gear is meshed with a fourth rack on the same side.
The invention has the advantages that: (1) according to the automatic flower tube painting device, the placing seat drives the first friction plate and the second friction plate to move downwards, the electric push rod is started to drive the first friction plate and the second rack to move backwards, the third gear, the second gear and the rotating rod to rotate, the third rack and the second friction plate are driven to move forwards, a flower tube is driven to rotate, and the effect of automatically driving the flower tube to rotate and finish painting is achieved; (2) the wedge-shaped plate is driven by the second friction plate to move forwards, the contact wheel and the positioning seat are pushed to move inwards, the perforated pipe is clamped and limited, and the effect of automatically limiting the position of the perforated pipe is achieved; (3) according to the invention, the contact wheel drives the contact rod to move inwards, and the special-shaped plate and the clamping sleeve are pushed to move forwards, so that the clamping block is inserted into the clamping sleeve to fix the placing seat and the floral tube, and the effect of automatically and stably placing the seat and the floral tube is achieved; (4) according to the invention, the placing seat drives the fourth rack to move downwards, and drives the fourth gear to rotate, so that the rotating shaft and the painting cylinder are driven to rotate, the effect of automatically painting the floral tube is achieved, and the full painting of the floral tube is ensured.
Drawings
Fig. 1 is a schematic perspective view of a first embodiment of the present invention.
Fig. 2 is a schematic perspective view of a second embodiment of the present invention.
Fig. 3 is a third perspective view of the present invention.
Fig. 4 is a schematic perspective view of a first embodiment of the lifting mechanism of the present invention.
Fig. 5 is a schematic perspective view of a second lifting mechanism according to the present invention.
Fig. 6 is a schematic perspective view of a first pressing mechanism according to the present invention.
Fig. 7 is a schematic perspective view of a second pressing mechanism according to the present invention.
Fig. 8 is a schematic perspective view of a third embodiment of the pressing mechanism of the present invention.
Fig. 9 is a schematic perspective view of a first rotating assembly according to the present invention.
Fig. 10 is a schematic perspective view of a second rotating assembly according to the present invention.
Fig. 11 is a schematic perspective view of a third embodiment of the rotating assembly of the present invention.
Fig. 12 is a schematic perspective view of a positioning assembly according to a first embodiment of the present invention.
Fig. 13 is a schematic perspective view of a second positioning assembly according to the present invention.
Fig. 14 is a schematic perspective view of a first embodiment of the clamping assembly of the present invention.
Fig. 15 is a schematic perspective view of a second embodiment of the clamping assembly of the present invention.
Figure 16 is a third perspective view of the clamping assembly of the present invention.
FIG. 17 is a perspective view of the paint patch assembly of the present invention.
Fig. 18 is an enlarged view of the present invention a.
Reference numbers in the drawings: 1: bottom plate, 2: storage frame, 3: rotating shaft, 4: paint brushing cylinder, 5: elevating mechanism, 51: guide cylinder, 52: slide bar, 53: standing seat, 54: connection plate, 55: cylinder, 56: return spring, 6: pressing mechanism, 61: protective frame, 62: connecting seat, 63: pressure strip, 64: first gear, 65: first rack, 7: rotating assembly, 71: guide sleeve, 72: slide bar, 73: housing, 74: first friction plate, 75: electric push rod, 76: second rack, 77: bearing seat, 78: rotating rod, 79: second gear, 710: guide bar, 711: second friction plate, 712: third rack, 713: rotating sleeve, 714: rotating shaft, 715: third gear, 8: positioning assembly, 81: guide rod, 82: positioning seat, 83: compression spring, 84: contact wheel, 85: wedge plate, 9: clamping assembly, 91: a sliding sleeve, 92: slide shaft, 93: ferrule, 94: tension spring, 95: shaped plate, 96: contact lever, 97: a fixing sleeve, 98: a cartridge, 10: paint repair assembly, 101: mounting rod, 102: fourth rack, 103: a fourth gear.
Detailed Description
The present invention will be further described with reference to specific examples, which are illustrative of the invention and are not to be construed as limiting the invention.
Example 1
As shown in fig. 1-8, this embodiment discloses a rotation type floral tube japanning equipment based on building material processing, including bottom plate 1, storage frame 2, pivot 3, a painting section of thick bamboo 4, elevating system 5 and hold-down mechanism 6, 1 upper portion interval of bottom plate evenly is connected with three storage frame 2, equal front and back symmetry rotary type is connected with pivot 3 between the 2 upper portion left and right sides of storage frame, all be connected with a painting section of thick bamboo 4 in the pivot 3, 1 upper portion of bottom plate is equipped with elevating system 5, be equipped with hold-down mechanism 6 between 1 upper portion front side of bottom plate and the elevating system 5.
Elevating system 5 is including guide cylinder 51, slide bar 52, place seat 53, connecting plate 54, cylinder 55 and reset spring 56, bottom plate 1 upper portion interval is even four guide cylinders 51 of symmetrical connection around, the inboard equal sliding connection of guide cylinder 51 has slide bar 52, all be connected with reset spring 56 between slide bar 52 and the guide cylinder 51, all even have between the homonymy slide bar 52 upper portion to place seat 53, all be connected with connecting plate 54 between placing seat 53 front and back both sides, bottom plate 1 upper portion left and right sides all is connected with cylinder 55, cylinder 55 piston rod upside all with place seat 53 and be connected.
Hold-down mechanism 6 is including protective frame 61, connecting seat 62, pressure strip 63, first gear 64 and first rack 65, 1 upper portion front side bilateral symmetry of bottom plate is connected with protective frame 61, the seat 53 front side is all connected with connecting seat 62 to the outside of placing, the equal rotary type in connecting seat 62 upper portion is connected with pressure strip 63, pressure strip 63 transmission shaft inboard all connects first gear 64, anterior leftmost and rightmost side guide cylinder 51 upper portion inboard all is connected with first rack 65, first rack 65 and first gear 64 intermeshing.
When a user needs to paint the floral tube, firstly, a large amount of paint is poured into the storage frame 2, the floral tube is placed in the groove of the placing seat 53, the air cylinder 55 is started, the piston rod of the air cylinder 55 moves downwards to drive the placing seat 53, the sliding rod 52, the connecting plate 54 and the floral tube to move downwards, the return spring 56 is compressed to drive the connecting seat 62, the pressing plate 63 and the first gear 64 to move downwards, the first gear 64 is meshed with the first rack 65 to drive the first gear 64 to rotate clockwise, so as to drive the pressing plate 63 to rotate clockwise to press the floral tube, the floral tube moves to contact the painting canister 4 at the moment, the floral tube is rotated continuously, the paint is painted on the surface of the floral tube after the painting canister 4 rotates to be dyed with the paint, the piston rod of the air cylinder 55 moves upwards to drive the placing seat 53, the sliding rod 52, the connecting plate 54 and the floral tube to move upwards after the painting is finished, reset spring 56 stretches back, drives connecting seat 62, pressure strip 63 and first gear 64, under the effect of first rack 65, drives first gear 64 anticlockwise rotation to drive pressure strip 63 anticlockwise rotation and loosen the floral tube, can take off the floral tube and collect, after whole floral tubes finish painting, close cylinder 55, equipment stop motion reaches the effect that the jail was accomplished to automatic pressure floral tube.
Example 2
As shown in fig. 1 to 3 and 9 to 18, in some embodiments, the present invention further comprises a rotating assembly 7, the rotating assembly 7 comprises a guide sleeve 71, a sliding rod 72, a housing 73, a first friction plate 74, an electric push rod 75, a second rack 76, a bearing seat 77, a rotating rod 78, a second gear 79, a guide rod 710, a second friction plate 711, a third rack 712, a rotating sleeve 713, a rotating shaft 714 and a third gear 715, the guide sleeve 71 is symmetrically connected to the front and rear sides of the upper portion of the bottom plate 1, the sliding rod 72 is slidably connected to the inner side of the guide sleeve 71, the housing 73 is connected between the upper sides of the sliding rods 72, the outer side placing seat 53 is connected to the inner side of the housing 73, the guide rod 710 is connected to the front side and the rear side of the upper portion of the housing 73, the first friction plate 74 is slidably connected to the front guide rod 710, the second friction plate 711 is slidably connected to the rear guide rod 710, electric putter 75 is installed to upper portion front side in the shell 73, electric putter 75 telescopic link rear side is connected with first friction board 74, first friction board 74 upper portion outside all is connected with second rack 76, second friction board 711 lower part outside all is connected with third rack 712, the upper portion front outside all is connected with bearing frame 77 in the shell 73, bearing frame 77 inboard all is connected with dwang 78, both sides are equipped with second gear 79 about the dwang 78, downside second gear 79 and third rack 712 intermeshing, shell 73 front side middle part all is connected with commentaries on classics cover 713, the inboard equal rotary type of commentaries on classics cover 713 is connected with axis of rotation 714, axis of rotation 714 upside all is connected with third gear 715, third gear 715 and upside second gear 79 intermeshing.
When the placing seat 53 and the perforated pipe move downwards, the housing 73 and the sliding rod 72 are driven to move downwards, the guide rod 710 is driven, the first friction plate 74 and the second friction plate 711 move downwards, the electric push rod 75 is started, the electric push rod 75 extends the rod to move backwards, the first friction plate 74 and the second gear 76 are driven to move backwards, the third gear 715 is driven to rotate, the second gear 79 and the rotating rod 78 are driven to rotate, the third rack 712 and the second friction plate 711 are driven to move forwards, namely, the first friction plate 74 and the second friction plate 711 move inwards, the perforated pipe is driven to rotate under the action of friction force, the painting cylinder 4 is driven to paint the perforated pipe, after the painting of the perforated pipe is finished, the electric push rod 75 moves forwards, the first friction plate 74 and the second gear 76 are driven to move forwards, the third gear 715 is driven to rotate reversely, and the second gear 79 and the second gear 78 are driven to rotate reversely, therefore, the third rack 712 and the second friction plate 711 are driven to move backwards, namely the first friction plate 74 and the second friction plate 711 move outwards to be away from the perforated pipe, the perforated pipe stops rotating, after all the perforated pipes are painted, the electric push rod 75 is closed, the first friction plate 74 and the second friction plate 711 stop moving, and the reciprocating motion is achieved, so that the effect of automatically driving the perforated pipe to rotate to finish painting is achieved.
Still including locating component 8, locating component 8 is including the guide arm 81, the positioning seat 82, compression spring 83, contact wheel 84 and wedge 85, the outside is placed the equal front and back symmetrical connection in seat 53 outside and is had the guide arm 81, all sliding type is connected with positioning seat 82 between the guide arm 81, all be connected with compression spring 83 between positioning seat 82 and the guide arm 81, compression spring 83 overlaps on guide arm 81, the equal rotary type in positioning seat 82 lower part inboard is connected with contact wheel 84, second friction plate 711 lower part inboard all is connected with wedge 85, wedge 85 and homonymy contact wheel 84 mutually support.
The floral tube is placed in the positioning seat 82 when placing the recess of seat 53, when second friction plate 711 moves forward, will drive wedge plate 85 and move forward, it moves to the inboard to promote contact wheel 84, drive positioning seat 82 and move to the inboard, compression spring 83 is compressed, make positioning seat 82 press from both sides the floral tube and restrict, the floral tube back that finishes of painting, second friction plate 711 moves backward, it keeps away from contact wheel 84 to drive wedge plate 85 and move backward, under compression spring 83's effect, it moves to promote positioning seat 82 and contact wheel 84 outside, loosen the floral tube, so reciprocal, reach the effect of automatic restriction floral tube position.
Still including chucking subassembly 9, chucking subassembly 9 is including sliding sleeve 91, slide-shaft 92, cutting ferrule 93, extension spring 94, dysmorphism board 95, contact bar 96, fixed cover 97 and fixture block 98, the equal bilateral symmetry in shell 73 upper portion rear side is connected with sliding sleeve 91, the inboard equal sliding connection of sliding sleeve 91 has slide-shaft 92, all be connected with extension spring 94 between slide-shaft 92 and the sliding sleeve 91, all be connected with cutting ferrule 93 between the slide-shaft 92 front side, cutting ferrule 93 rear side all is connected with dysmorphism board 95, the inboard fixed cover 97 that all is connected with of lower part in the shell 73, fixed cover 97 inboard all sliding connection has contact bar 96, contact bar 96 front side all is connected with contact wheel 84 rotary type, contact bar 96 and dysmorphism board 95 are mutually supported, seat 53 upper portion rear side all is connected with fixture block 98 is placed to the outside, fixture block 98 and cutting ferrule 93 mutually support.
Contact wheel 84 is when the inboard removes, will drive contact lever 96 and remove to the inboard, promote dysmorphism board 95 and remove forward, drive cutting ferrule 93 and sliding shaft 92 and remove forward, extension spring 94 is stretched, make fixture block 98 card go into in cutting ferrule 93, it fixes to place seat 53, thereby fix the floral tube, the back that the floral tube japanning finishes, contact wheel 84 removes to the outside, no longer promote dysmorphism board 95, under extension spring 94's effect, promote sliding shaft 92, cutting ferrule 93 and dysmorphism board 95 remove backward, fixture block 98 is kept away from to cutting ferrule 93, it loosens to place seat 53, it can the lapse to move down with the floral tube to place seat 53, so reciprocal, reach the automatic effect of firmly placing seat 53 and floral tube.
Still including touch-up paint subassembly 10, touch-up paint subassembly 10 is including installation pole 101, fourth rack 102 and fourth gear 103, and from a left side to the three seat 53 right side of placing all front and back symmetrical connection have installation pole 101, and installation pole 101 right side all is connected with fourth rack 102, and 3 left sides of pivot all are connected with fourth gear 103, fourth gear 103 and homonymy fourth rack 102 intermeshing.
When placing seat 53 and floral tube downstream, will drive installation rod 101 and fourth rack 102 downstream, drive fourth gear 103 and rotate to pivot 3 and painting section of thick bamboo 4 rotate, be the floral tube surface japanning again, place seat 53 and floral tube upstream afterwards and keep away from painting section of thick bamboo 4, stop the touch-up paint, so reciprocal, reach the effect of automatic touch-up paint for the floral tube, guarantee that the floral tube is abundant japanning.
The above examples are only intended to illustrate the technical solution of the present invention, but not to limit it; although the present invention has been described in detail with reference to the foregoing embodiments, it will be understood by those of ordinary skill in the art that: the technical solutions described in the foregoing embodiments may still be modified, or some technical features may be equivalently replaced; and such modifications or substitutions do not depart from the spirit and scope of the corresponding technical solutions of the embodiments of the present invention.

Claims (8)

1. The utility model provides a rotation type floral tube japanning equipment based on building material processing which characterized by: comprises the following steps: the device comprises a bottom plate (1), wherein three material storage frames (2) are uniformly connected to the upper part of the bottom plate (1) at intervals; the rotating shafts (3) are symmetrically and rotatably connected between the two sides of the upper part of the storage frame (2); the rotating shafts (3) of the painting barrels (4) are connected with the painting barrels (4); the lifting mechanism (5) is arranged at the upper part of the bottom plate (1); a pressing mechanism (6) is arranged between one side of the upper part of the bottom plate (1) and the lifting mechanism (5).
2. The rotary type floral tube painting equipment based on building material processing as claimed in claim 1, wherein: the lifting mechanism (5) comprises: the upper part of the bottom plate (1) is uniformly and symmetrically connected with four guide cylinders (51) at intervals; the sliding rods (52) are connected to the inner sides of the guide cylinders (51) in a sliding manner; the return spring (56) is connected between the sliding rod (52) and the guide cylinder (51); the upper parts of the sliding rods (52) on the same side are connected with the placing seats (53) respectively; the connecting plates (54) are connected between the two sides of the placing seat (53); the air cylinder (55) is connected to both sides of the upper part of the bottom plate (1), and the upper sides of piston rods of the air cylinder (55) are connected with the placing seat (53).
3. The rotary type floral tube painting equipment based on building material processing as claimed in claim 2, wherein: the pressing mechanism (6) comprises: one side of the upper part of the bottom plate (1) is symmetrically connected with the protective frame (61); one side of the outer side placing seat (53) is connected with the connecting seat (62); the upper parts of the pressing plates (63) and the connecting seats (62) are respectively and rotatably connected with the pressing plates (63); the inner sides of the transmission shafts of the first gear (64) and the pressing plate (63) are connected with the first gear (64); the inner sides of the upper parts of the guide cylinders (51) on two sides of the first rack (65) are connected with the first rack (65), and the first rack (65) is meshed with the first gear (64).
4. The rotary type floral tube painting equipment based on building material processing as claimed in claim 3, wherein: still including rotating assembly (7), rotating assembly (7) including: the guide sleeves (71) are symmetrically connected to both sides of the upper part of the bottom plate (1); the sliding rods (72) are connected with the inner sides of the guide sleeves (71) in a sliding manner; the sliding rod (72) is connected with the shell (73), the shell (73) is connected between the upper sides of the sliding rods (72), the inner sides of the shell (73) are respectively connected with the guide rods (710), and the guide rods (710) are respectively connected with one side of the upper part and one side of the lower part in the shell (73); the outer side placing seats (53) are connected; a first friction plate (74), wherein the first friction plate (74) is connected on the guide rod (710) at one side in a sliding way; a second friction plate (711), wherein the second friction plate (711) is connected to the one-side guide rod (710) in a sliding manner; the electric push rod (75) is installed on one side of the inner upper portion of the shell (73), and one side of a telescopic rod of the electric push rod (75) is connected with the first friction plate (74); the outer sides of the upper parts of the first friction plates (74) are connected with second racks (76); the outer sides of the lower parts of the second friction plates (711) are connected with third racks (712); the bearing seats (77) are connected to one side of the upper part in the shell (73); the inner sides of the bearing seats (77) are connected with the rotating rods (78); the upper side and the lower side of the rotating rod (78) are provided with second gears (79), and the lower second gears (79) are meshed with the third racks (712); the middle part of one side of the shell (73) is connected with the rotating sleeve (713); the inner sides of the rotating sleeves (713) are rotatably connected with the rotating shafts (714); the upper sides of the rotating shafts (714) are connected with third gears (715), and the third gears (715) are meshed with the upper second gears (79).
5. The rotary type floral tube painting equipment based on building material processing as claimed in claim 4, wherein: still including locating component (8), locating component (8) including: the guide rods (81) are symmetrically connected to the outer sides of the outer side placing seats (53); the positioning seats (82) are connected between the guide rods (81) in a sliding manner; the compression springs (83) are connected between the positioning seat (82) and the guide rod (81), and the compression springs (83) are sleeved on the guide rod (81); the inner sides of the lower parts of the positioning seats (82) are rotatably connected with contact wheels (84); the inner sides of the lower parts of the wedge plate (85) and the second friction plate (711) are both connected with the wedge plate (85), and the wedge plate (85) is matched with the contact wheel (84) on the same side.
6. The rotary type floral tube painting equipment based on building material processing as claimed in claim 5, wherein: still including chucking subassembly (9), chucking subassembly (9) including: the sliding sleeves (91) are symmetrically connected to one side of the upper part of the shell (73); the inner sides of the sliding sleeves (91) are all connected with the sliding shafts (92) in a sliding manner; the extension spring (94) is connected between the sliding shaft (92) and the sliding sleeve (91); the clamping sleeve (93) is connected between one sides of the clamping sleeve (93) and the sliding shaft (92); the special-shaped plate (95) is connected to one side of each clamping sleeve (93); a fixed sleeve (97), wherein one side of the inner lower part of the shell (73) is connected with the fixed sleeve (97); the inner sides of the fixed sleeves (97) are connected with contact rods (96) in a sliding mode, one sides of the contact rods (96) are connected with contact wheels (84) in a rotating mode, and the contact rods (96) are matched with the special-shaped plates (95); the fixture block (98) is connected to one side of the upper portion of the outer side placing seat (53), and the fixture block (98) is matched with the clamping sleeve (93).
7. The rotary type floral tube painting equipment based on building material processing as claimed in claim 6, wherein: the paint repairing device is characterized by further comprising a paint repairing component (10), wherein the paint repairing component (10) is arranged on one side of the placing seat (53).
8. The rotary type floral tube painting equipment based on building material processing as claimed in claim 7, wherein: the paint repair assembly (10) comprises: the mounting rods (101) are symmetrically connected to one sides of the three placing seats (53); one side of each mounting rod (101) is connected with a fourth rack (102); and one side of the rotating shaft (3) is connected with a fourth gear (103), and the fourth gear (103) is meshed with a fourth rack (102) on the same side.
CN202210018202.3A 2022-01-08 2022-01-08 Rotation type floral tube japanning equipment based on building material processing Pending CN114345649A (en)

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CN202210018202.3A CN114345649A (en) 2022-01-08 2022-01-08 Rotation type floral tube japanning equipment based on building material processing

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CN202210018202.3A CN114345649A (en) 2022-01-08 2022-01-08 Rotation type floral tube japanning equipment based on building material processing

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CN210935519U (en) * 2019-08-28 2020-07-07 福建万邦清源环保科技有限公司 Quick paint spraying apparatus of engineering steel pipe
CN112453794A (en) * 2020-12-19 2021-03-09 汤武义 Automatic welding equipment for square steel pipes
CN112718367A (en) * 2020-12-22 2021-04-30 佛山市集知汇科技有限公司 Steel pipe mopping equipment is kept apart to roadblock

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP0689915A2 (en) * 1994-06-29 1996-01-03 SYFAL S.r.l. An apparatus for synchronized supply of ceramic tiles to a rotary glazing and decorating machine
JP2001146744A (en) * 1999-11-22 2001-05-29 Nippon Steel Corp Construction equipment for rotary press-in pile and method therefor
US20180236479A1 (en) * 2017-02-17 2018-08-23 Automatic Coating Limited Girth Weld Coater
CN210935519U (en) * 2019-08-28 2020-07-07 福建万邦清源环保科技有限公司 Quick paint spraying apparatus of engineering steel pipe
CN112453794A (en) * 2020-12-19 2021-03-09 汤武义 Automatic welding equipment for square steel pipes
CN112718367A (en) * 2020-12-22 2021-04-30 佛山市集知汇科技有限公司 Steel pipe mopping equipment is kept apart to roadblock

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Application publication date: 20220415