CN113503726B - Epoxy terrace is laid with supplementary solidification equipment - Google Patents
Epoxy terrace is laid with supplementary solidification equipment Download PDFInfo
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- CN113503726B CN113503726B CN202110825185.XA CN202110825185A CN113503726B CN 113503726 B CN113503726 B CN 113503726B CN 202110825185 A CN202110825185 A CN 202110825185A CN 113503726 B CN113503726 B CN 113503726B
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F26—DRYING
- F26B—DRYING SOLID MATERIALS OR OBJECTS BY REMOVING LIQUID THEREFROM
- F26B21/00—Arrangements or duct systems, e.g. in combination with pallet boxes, for supplying and controlling air or gases for drying solid materials or objects
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F26—DRYING
- F26B—DRYING SOLID MATERIALS OR OBJECTS BY REMOVING LIQUID THEREFROM
- F26B5/00—Drying solid materials or objects by processes not involving the application of heat
- F26B5/14—Drying solid materials or objects by processes not involving the application of heat by applying pressure, e.g. wringing; by brushing; by wiping
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Abstract
The invention belongs to the technical field of epoxy terraces, and particularly relates to an auxiliary curing device for laying an epoxy terrace, which comprises a blowing and drying device; the inner side wall of the top of the blowing drying device is provided with a blower; a group of air deflectors are fixedly connected to the inner side wall of the top of the blowing drying device; a motor is fixedly connected between the two air deflectors through a bracket; the output end of the motor is fixedly connected with a screw rod; the screw rod is connected with a nut through a screw rod nut pair; the bottom of the air deflector is hinged with a first air deflector; a telescopic rod is fixedly connected between the top of the first air guide sheet and the nut; the side walls, close to the two first air guide sheets, of the two air guide sheets are fixedly connected with second air guide sheets through a support; the movable air guide pieces are additionally arranged in the blowing and drying device, so that the air blown out from the air blower can cover a wider range, and the overall drying speed of the ground is increased.
Description
Technical Field
The invention belongs to the technical field of epoxy terraces, and particularly relates to an auxiliary curing device for laying an epoxy terrace.
Background
The epoxy floor is a high-strength, wear-resistant and attractive floor, and has the advantages of no seam, solid texture, good chemical resistance, corrosion resistance, dust prevention, convenience in maintenance, low maintenance cost and the like.
Also some technical scheme about epoxy terrace has appeared among the prior art, as application number 2020108232229 a chinese patent discloses an epoxy terrace lays and uses supplementary solidification equipment, including base, hair-dryer and driving motor, the inside of base have servo motor through bolt fixed mounting, servo motor's output is connected with the lead screw.
Among the prior art at present, when traditional epoxy terrace was laid, need dry prefabricated ground earlier, but just can make the curing agent that the terrace was used ooze into ground, but in long-term use observation, we have found that traditional drying methods all adopt the mode of ventilation, dry the ground that needs to be laid, and this drying methods is long consuming time, influences the problem of the efficiency of laying of terrace.
Disclosure of Invention
In order to make up the defects of the prior art, the problem that when the traditional epoxy terrace is laid, the prefabricated ground needs to be dried firstly, and the curing agent for the terrace can permeate into the ground is solved, but in long-term use observation, the traditional drying mode adopts a ventilation mode, the ground needing to be laid is dried, the drying mode is long in time consumption, and the laying efficiency of the terrace is influenced is solved.
The technical scheme adopted by the invention for solving the technical problems is as follows: the invention relates to an auxiliary curing device for laying an epoxy floor, which comprises a blowing and drying device; the inner side wall of the top of the blowing drying device is provided with a blower; a group of air deflectors are fixedly connected to the inner side wall of the top of the blowing drying device; a motor is fixedly connected between the two air deflectors through a bracket; the output end of the motor is fixedly connected with a screw rod; the screw rod is connected with a nut through a screw rod nut pair; the bottom of the air deflector is hinged with a first air deflector; a telescopic rod is fixedly connected between the top of the first air guide sheet and the nut; the side walls, close to the two first air guide sheets, of the two air guide sheets are fixedly connected with second air guide sheets through a support; when the drying machine works, the blowing drying device is placed on the ground to be dried, the air blower is started to blow air to the bottom of the blowing drying device, the motor is started to drive the screw rod to rotate, the nut moves up and down on the screw rod, the screw rod drives the first air guide plates and the second air guide plates to swing at the bottoms of the air guide plates through the telescopic rods, the air coverage area of the air blower is wider, the working time of blowing and drying is shortened, when the nut moves up on the screw rod, the two first air guide plates are close to each other, air blowing is carried out below the air guide plates, the ground moisture at the bottom of the drying air blower is concentrated, when the nut moves down on the screw rod, the two first air guide plates are far away from each other, at the moment, the air blown by the air blower can cover the farther ground, and a part of air is blown to the ground right below the air blower from the space between the two second air guide plates, repeatedly blowing and drying the ground for many times.
Further, a piston cylinder is fixedly connected to the side wall of the second air guide sheet; a support rod is arranged inside the piston cylinder; the bottom of the supporting rod is rotatably connected with an extrusion wheel; a plurality of groups of sand turning blades are fixedly connected to the extrusion wheel; when the second air deflector swings at the bottom of the air deflector, the extrusion wheel at the bottom of the supporting rod can be in contact with the ground, then the extrusion wheel can rotate due to friction with the ground, then the sand-turning blades on the extrusion wheel can crush and fly the caked dust on the ground when passing through the ground, the moisture in the caked dust is exposed in the air, and the ground can be dried more thoroughly by blowing the air through the air blower.
Further, a first piston plate is connected to the interior of the piston cylinder in a sliding manner; the first piston plate is fixedly connected with the support rod; a first elastic rope is fixedly connected between the first piston plate and the inner side wall of the piston cylinder; the supporting rod is supported through the first piston plate, the supporting rod can slide on the piston cylinder, when the second air deflector swings to the horizontal direction, the first piston plate can be pulled to the rod cavity direction by the first elastic rope in the piston cylinder, further, the supporting rod can stretch out longer length, the time for the extrusion wheel to contact the ground is increased, the quantity of dust sand blocks which are crushed and picked up can be increased by the sand turning blades, when the second air deflector swings to the vertical direction, the extrusion wheel can push the supporting rod and the first piston plate to the direction of the rod-free cavity in the piston cylinder, the first elastic rope can be stretched, the extrusion wheel can be tightly pressed on the ground through the elastic action of the first elastic rope, the sand blocks on the ground can be more thoroughly crushed, and the problem that part of the sand blocks are hard and are not easy to crush due to hardness is avoided.
Further, a first cavity is formed in the extrusion wheel; a second piston plate is connected inside the first cavity in a sliding mode; an extension sweeping sheet is fixedly connected to one side, close to the sand turning blade, of the second piston plate; a spring is fixedly connected between the second piston plate and the inner side wall of the first cavity; when the extrusion wheel rotates, the second piston plate cleans the piece with the extension and can be because of under the effect of centrifugal force, to keeping away from the position removal in extrusion wheel axle center, clean the piece in the extension and when stretching out completely from first cavity inside, can contact the ground that the husky blade of turning over can not bump, also can stretch into inside the ground gap that the husky blade of turning over can't get into, the extension cleans the piece and can choose the inside dust gravel in ground gap, avoid the inside moisture in gap can't dry through blowing, and the epoxy terrace that leads to dry too slow problem after laying.
Furthermore, a sliding groove is formed in the first cavity and is communicated with the first cavity; a counterweight ball is arranged inside the sliding chute; a connecting rod is fixedly connected to one side, close to the sliding groove, of the second piston plate; at the extrusion wheel contact ground and pivoted in-process, the counter weight ball can be because of the effect of centrifugal force, the direction slip to the connecting rod, will prolong the inside that cleans the piece and push out first cavity through the connecting rod, make the extension clean the piece can be when the rotational speed is not fast, also can stretch out longer length from first cavity is inside, simultaneously when the extrusion wheel slowly rotates, the counter weight ball at extrusion wheel top can slide to axle center department inside the spout, and the counter weight ball of extrusion wheel bottom can slide to the direction of connecting rod, when the counter weight ball slides on the connecting rod from the direction of extrusion wheel axle center, can clean the piece to second piston board and extension and beat, can insert the inside darker position in gap with it, avoid the inside extension that has the sand lump to be harder and lead to of gap to clean the problem that the piece can't stretch into.
Furthermore, a second cavity is formed in the extension cleaning sheet; a puncture needle is connected in the second cavity in a sliding manner; a group of second elastic ropes is fixedly connected between the puncture needle and the inner side wall of the second cavity; when the extension of first cavity inside is cleaned the piece and is pushed out, the pjncture needle can touch ground earlier, then when the counter weight ball slides on the connecting rod, can clean the piece through the extension and carry out secondary impact to the puncture needle, make the pjncture needle can carry out secondary puncture with sand lump and dust piece, choose it and scatter, make inside moisture expose in the air, change and taken away by the air current.
Furthermore, a group of third cavities is formed inside the extension cleaning sheet; a piston rod is connected inside the third cavity in a sliding manner; an air bag is fixedly connected inside the rodless cavity of the third cavity; an air guide pipe is communicated between the air bag and the rodless cavity of the second cavity; after the puncture needle contacts the ground, the extension cleaning sheet continues to move downwards, gas in the rodless cavity of the second cavity enters the air bag through the air guide pipe to expand, the piston rod is pushed out from the third cavity, and the quantity of dust and sand blocks which can be picked up by the extension cleaning sheet is increased.
Further, an arc-shaped rod is fixedly connected to the end part of the piston rod; an air blowing pipe is fixedly connected inside the extension cleaning sheet; one end of the air blowing pipe is communicated with the rodless cavity of the third cavity, and the other end of the air blowing pipe is communicated with the position, corresponding to the arc-shaped rod, on the side wall of the extension cleaning sheet; at the expanded in-process of gasbag, the remaining gas of the no pole intracavity portion of third cavity can be extruded, and then spout from gas blow pipe, blows the clearance to the arc pole of piston rod tip, avoids the arc pole can remain too much dust impurity and when influencing the ash of choosing next, the problem of sand block and dust meeting landing.
The invention has the beneficial effects that:
1. the invention provides an auxiliary curing device for paving an epoxy floor, which can cover a wider range by blowing air from an air blower by adding a movable air guide sheet in a blowing drying device, thereby increasing the overall drying speed of the ground.
2. According to the invention, the extrusion wheel is additionally arranged on the air guide sheet, so that the sand block or the wet dust block on the ground can be pressed open in the moving process of the air guide sheet, the moisture in the sand block or the dust block is dried by the blower, and the problem of incomplete ground drying caused by residual moisture in the sand block is avoided.
3. According to the invention, the stretchable extension cleaning sheet is additionally arranged in the extrusion wheel, so that the counterweight ball can press the puncture needle to the ground in the operation process of the extrusion wheel, and the dust sand blocks in the gaps on the ground are spread and turned out, so that the problem that the curing of the epoxy terrace is influenced due to the fact that the wet sand blocks in the gaps on the ground are remained on the ground is avoided.
Drawings
The accompanying drawings, which are included to provide a further understanding of the invention and are incorporated in and constitute a part of this application, illustrate embodiment(s) of the invention and together with the description serve to explain the invention without limiting the invention. In the drawings:
FIG. 1 is a perspective view of the present invention;
FIG. 2 is a cross-sectional view of the present invention;
FIG. 3 is an enlarged view of a portion of FIG. 2 at A;
FIG. 4 is a partial cross-sectional view of the extrusion wheel;
FIG. 5 is a partial enlarged view of FIG. 4 at B;
FIG. 6 is a partial cross-sectional view of an elongated cleaning blade;
illustration of the drawings:
1. a blow drying device; 2. a blower; 21. an air deflector; 3. a motor; 31. a screw rod; 32. a nut; 33. a first air guiding sheet; 34. a telescopic rod; 35. a second air guiding sheet; 4. a piston cylinder; 41. a first piston plate; 42. a support bar; 43. a first elastic cord; 44. an extrusion wheel; 45. a sand-turning blade; 5. a first cavity; 51. a second piston plate; 52. the cleaning sheet is extended; 53. a spring; 54. a chute; 55. a counterweight ball; 56. a connecting rod; 6. a second cavity; 61. puncturing needle; 62. a second elastic cord; 63. a third cavity; 64. a piston rod; 65. an air duct; 66. an air bag; 67. an arcuate bar; 68. and an air blowing pipe.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
Specific examples are given below.
Referring to fig. 1-6, the present invention provides an auxiliary curing device for epoxy floor paving, which includes a blowing and drying device 1; the inner side wall of the top of the blowing drying device 1 is provided with a blower 2; a group of air deflectors 21 are fixedly connected to the inner side wall of the top of the blowing drying device 1; the two air deflectors 21 are fixedly connected with a motor 3 through a bracket; the output end of the motor 3 is fixedly connected with a screw rod 31; the screw rod 31 is connected with a nut 32 through a screw rod nut pair; the bottom of the air deflector 21 is hinged with a first air deflector 33; an expansion link 34 is fixedly connected between the top of the first air guiding sheet 33 and the nut 32; the side walls, close to the two first air guide pieces 33, are fixedly connected with second air guide pieces 35 through a support; when the drying device works, the blowing drying device 1 is firstly placed on the ground to be dried, then the blower 2 is turned on to blow air to the bottom of the blowing drying device 1, the motor 3 is turned on to drive the screw rod 31 to rotate, then the nut 32 moves up and down on the screw rod 31, at the moment, the screw rod 31 drives the first air guide sheets 33 and the second air guide sheets 35 to swing at the bottoms of the air guide plates 21 through the telescopic rod 34, so that the air coverage area blown by the blower 2 is wider, the working time of blowing and drying is reduced, when the nut 32 moves up on the screw rod 31, the two first air guide sheets 33 approach each other to blow air to the positions right below the air guide plates 21, the ground moisture at the bottom of the drying blower 2 is concentrated, when the nut 32 moves down on the screw rod 31, the two first air guide sheets 33 are far away from each other, at the moment, the air blown by the blower 2 can cover the farther ground, and a part of the blown air is blown to the ground right below the blower 2 from between the two second air guiding sheets 35, so that the ground is repeatedly blown and dried for many times.
As an embodiment of the present invention, a piston cylinder 4 is fixedly connected to a side wall of the second air guiding sheet 35; a support rod 42 is arranged inside the piston cylinder 4; the bottom of the supporting rod 42 is rotatably connected with an extrusion wheel 44; a plurality of groups of sand-turning blades 45 are fixedly connected to the extrusion wheel 44; when the second air guiding sheet 35 swings at the bottom of the air guiding plate 21, the extrusion wheel 44 at the bottom of the supporting rod 42 contacts with the ground, then the extrusion wheel 44 rotates due to friction with the ground, then the sand-turning blades 45 on the extrusion wheel 44 crush and fly the agglomerated dust on the ground when passing through the ground, and the moisture in the dust is exposed in the air, so that the air blower 2 can blow and dry the ground more thoroughly.
As an embodiment of the present invention, a first piston plate 41 is slidably connected inside the piston cylinder 4; the first piston plate 41 is fixedly connected with the support rod 42; a first elastic rope 43 is fixedly connected between the first piston plate 41 and the inner side wall of the piston cylinder 4; the support rod 42 is supported by the first piston plate 41, so that the support rod 42 can slide on the piston cylinder 4, when the second air guiding sheet 35 swings to the horizontal direction, the first piston plate 41 is pulled to the rod cavity direction by the first elastic rope 43 in the piston cylinder 4, and thus the support rod 42 can be extended to a longer length, so that the time for the squeezing wheel 44 to contact the ground is increased, the sand-turning blades 45 can increase the amount of dust and sand blocks crushed and picked up, when the second air guiding plate 35 swings in the vertical direction, the pressing wheel 44 pushes the supporting rod 42 and the first piston plate 41 toward the rod-free chamber inside the piston cylinder 4, and at this time, the first elastic string 43 is stretched, the pressing wheel 44 is tightly pressed against the ground by the elastic force of the first elastic string 43, the sand block on the ground can be crushed more thoroughly, and the problem that the sand block is hard and is not easy to crush is avoided.
As an embodiment of the present invention, a first cavity 5 is opened inside the extrusion wheel 44; a second piston plate 51 is slidably connected inside the first cavity 5; an extension sweeping sheet 52 is fixedly connected to one side, close to the sand-turning blades 45, of the second piston plate 51; a spring 53 is fixedly connected between the second piston plate 51 and the inner side wall of the first cavity 5; when the extrusion wheel 44 rotates, the second piston plate 51 and the extension cleaning piece 52 can move to the position far away from the axle center of the extrusion wheel 44 under the action of centrifugal force, when the extension cleaning piece 52 completely extends out from the inside of the first cavity 5, the ground which can not be touched by the sand-turning blade 45 can be contacted, the ground gap which can not be entered by the sand-turning blade 45 can also be extended, the extension cleaning piece 52 can pick out the dust and gravel in the ground gap, the moisture in the gap can not be dried through blowing, and the epoxy terrace that leads to is too slow to dry after being laid.
As an embodiment of the present invention, the first cavity 5 is internally provided with a chute 54, and is communicated with the first cavity 5; a counterweight ball 55 is arranged in the chute 54; a connecting rod 56 is fixedly connected to one side of the second piston plate 51 close to the sliding chute 54; in the process that the extrusion wheel 44 contacts the ground and rotates, the counterweight ball 55 slides towards the connecting rod 56 due to the action of centrifugal force, the extension cleaning sheet 52 is pushed out of the first cavity 5 through the connecting rod 56, so that the extension cleaning sheet 52 can extend out of the first cavity 5 for a long length even when the rotating speed is not high, meanwhile, when the extrusion wheel 44 rotates slowly, the counterweight ball 55 at the top of the extrusion wheel 44 slides towards the axis in the chute 54, while the counterweight ball 55 at the bottom of the extrusion wheel 44 slides towards the connecting rod 56, when the counterweight ball 55 slides onto the connecting rod 56 from the axis direction of the extrusion wheel 44, the second piston plate 51 and the extension cleaning sheet 52 are knocked to be inserted into a deep position in a gap, and the problem that the extension cleaning sheet 52 cannot extend due to the fact that sand blocks are hard in the gap is avoided.
In one embodiment of the present invention, the extension cleaning sheet 52 has a second cavity 6 formed therein; a puncture needle 61 is connected inside the second cavity 6 in a sliding manner; a group of second elastic ropes 62 are fixedly connected between the puncture needle 61 and the inner side wall of the second cavity 6; when the extension cleaning sheet 52 in the first cavity 5 is pushed out, the puncture needle 61 contacts the ground firstly, and then when the counterweight ball 55 slides onto the connecting rod 56, the puncture needle 61 is impacted for the second time through the extension cleaning sheet 52, so that the puncture needle 61 can puncture the sand block and the dust block for the second time, and the sand block and the dust block are scattered, and the moisture in the inner part is exposed in the air and is easier to be taken away by the airflow.
As an embodiment of the present invention, a set of third cavities 63 is opened inside the extension cleaning sheet 52; a piston rod 64 is connected inside the third cavity 63 in a sliding manner; an air bag 66 is fixedly connected inside the rodless cavity of the third cavity 63; an air duct 65 is communicated between the air bag 66 and the rodless cavity of the second cavity 6; after the puncture needle 61 contacts the ground, in the process that the extension cleaning sheet 52 continues to move downwards, the gas in the rodless cavity of the second cavity 6 enters the air bag 66 through the air duct 65, so that the air bag is expanded, the piston rod 64 is pushed out from the third cavity 63, and the quantity of dust and sand blocks which can be picked up by the extension cleaning sheet 52 is increased.
As an embodiment of the present invention, an arc rod 67 is fixed to an end of the piston rod 64; an air blowing pipe 68 is fixedly connected inside the extension cleaning sheet 52; one end of the air blowing pipe 68 is communicated with the rodless cavity of the third cavity 63, and the other end of the air blowing pipe is communicated with the position, corresponding to the arc-shaped rod 67, on the side wall of the extension sweeping sheet 52; in the process of the expansion of the air bag 66, residual air in the rodless cavity of the third cavity 63 can be extruded and then is sprayed out from the air blowing pipe 68, the arc rod 67 at the end part of the piston rod 64 is cleaned by air blowing, and the problem that sand blocks and dust can slide down when the ash is chosen next time due to the influence of excessive dust impurities on the arc rod 67 is avoided.
The working principle is as follows: when the drying device works, the blowing drying device 1 is firstly placed on the ground to be dried, then the blower 2 is turned on to blow air to the bottom of the blowing drying device 1, the motor 3 is turned on to drive the screw rod 31 to rotate, then the nut 32 moves up and down on the screw rod 31, at the moment, the screw rod 31 drives the first air guide sheets 33 and the second air guide sheets 35 to swing at the bottoms of the air guide plates 21 through the telescopic rod 34, so that the air coverage area blown by the blower 2 is wider, the working time of blowing and drying is reduced, when the nut 32 moves up on the screw rod 31, the two first air guide sheets 33 approach each other to blow air to the positions right below the air guide plates 21, the ground moisture at the bottom of the drying blower 2 is concentrated, when the nut 32 moves down on the screw rod 31, the two first air guide sheets 33 are far away from each other, at the moment, the air blown by the blower 2 can cover the farther ground, and a part of the blown air is blown to the ground right below the blower 2 from between the two second air guiding sheets 35 to repeatedly blow and dry the ground, while the second air guiding sheets 35 swing at the bottoms of the air guiding plates 21, the extrusion wheel 44 at the bottom of the supporting rod 42 contacts with the ground, then the extrusion wheel 44 rotates due to friction with the ground, then the sand-turning blades 45 on the extrusion wheel 44 crush and fly the agglomerated dust on the ground when passing through the ground, the moisture in the dust is exposed in the air, the blower 2 can blow and dry the ground more thoroughly, the supporting rod 42 is supported by the first piston plate 41, the supporting rod 42 can slide on the piston cylinder 4, when the second air guiding sheets 35 swing in the horizontal direction, the first piston plate 41 can be pulled towards the rod cavity by the first elastic rope 43 in the piston cylinder 4, and then the supporting rod 42 can extend to a longer length, so that the time of the extrusion wheel 44 contacting the ground is increased, and the sand-turning blade 45 can increase the number of the crushed and raised dust and sand blocks, when the second air deflector 35 swings towards the vertical direction, the extrusion wheel 44 can push the supporting rod 42 and the first piston plate 41 towards the direction of the rodless cavity in the piston cylinder 4, at this time, the first elastic rope 43 can be stretched, the extrusion wheel 44 can be tightly pressed on the ground through the elastic force of the first elastic rope 43, the sand blocks on the ground can be more thoroughly crushed, the problem that the sand blocks are hard and are not easy to crush is avoided, when the extrusion wheel 44 rotates, the second piston plate 51 and the extension cleaning piece 52 can move towards a position far away from the axis of the extrusion wheel 44 under the action of the centrifugal force, when the contact extension cleaning piece 52 completely extends from the inside of the first cavity 5, the sand-turning blade 45 can not contact the ground, the cleaning device can also extend into a ground gap into which the sand-turning blade 45 can not enter, the extension cleaning sheet 52 can pick out dust and gravel in the ground gap, and the problem that the epoxy floor is too slow to dry after being laid due to the fact that moisture in the gap can not be dried through blowing is solved, in the process that the extrusion wheel 44 is in contact with the ground and rotates, the counterweight ball 55 can slide towards the direction of the connecting rod 56 under the action of centrifugal force, the extension cleaning sheet 52 is pushed out of the first cavity 5 through the connecting rod 56, so that the extension cleaning sheet 52 can also extend out of the first cavity 5 for a long length when the rotating speed is not fast, meanwhile, when the extrusion wheel 44 rotates slowly, the counterweight ball 55 at the top of the extrusion wheel 44 can slide towards the axis in the sliding groove 54, and the counterweight ball 55 at the bottom of the extrusion wheel 44 can slide towards the direction of the connecting rod 56, when the counterweight ball 55 slides onto the connecting rod 56 from the axis of the extrusion wheel 44, the second piston plate 51 and the extension cleaning sheet 52 can be knocked and can be inserted into a deeper position in the gap, so that the problem that the extension cleaning sheet 52 cannot extend into the gap due to the fact that sand blocks are hard in the gap is solved, when the extension cleaning sheet 52 in the first cavity 5 is pushed out, the puncture needle 61 can firstly contact the ground, then when the counterweight ball 55 slides onto the connecting rod 56, secondary impact can be carried out on the puncture needle 61 through the extension cleaning sheet 52, the puncture needle 61 can puncture the sand blocks and the dust blocks for the second time and scatter the sand blocks and the dust blocks, so that the moisture in the second cavity 6 is exposed in the air and is more easily taken away by the air flow, after the puncture needle 61 contacts the ground, in the process that the extension cleaning sheet 52 continuously moves downwards, the air in the rodless cavity of the second cavity 6 enters the air bag 66 through the air duct 65 to expand the air bag, and the piston rod 64 is pushed out from the third cavity 63, increase the dust sand lump quantity that extension cleaning sheet 52 can be picked up, at the expanded in-process of gasbag 66, the remaining gas of the no pole intracavity portion of third cavity 63 can be extruded, and then spout from gas blow pipe 68, blows the clearance to the arc pole 67 of piston rod 64 tip, avoids arc pole 67 can remain too much dust impurity and when influencing the next ash of choosing, the problem that sand lump and dust can the landing.
In the description herein, references to the description of "one embodiment," "an example," "a specific example" or the like are intended to mean that a particular feature, structure, material, or characteristic described in connection with the embodiment or example is included in at least one embodiment or example of the invention. In this specification, the schematic representations of the terms used above do not necessarily refer to the same embodiment or example. Furthermore, the particular features, structures, materials, or characteristics described may be combined in any suitable manner in any one or more embodiments or examples.
The foregoing shows and describes the general principles, essential features, and advantages of the invention. It will be understood by those skilled in the art that the present invention is not limited to the embodiments described above, which are described in the specification and illustrated only to illustrate the principle of the present invention, but that various changes and modifications may be made therein without departing from the spirit and scope of the present invention, which fall within the scope of the invention as claimed.
Claims (7)
1. The utility model provides an epoxy terrace is laid with supplementary solidification equipment which characterized in that: comprises a blowing drying device (1); the inner side wall of the top of the blowing drying device (1) is provided with a blower (2); a group of air deflectors (21) are fixedly connected to the inner side wall of the top of the blowing drying device (1); a motor (3) is fixedly connected between the two air deflectors (21) through a bracket; the output end of the motor (3) is fixedly connected with a screw rod (31); the screw rod (31) is connected with a nut (32) through a screw rod nut pair; the bottom of the air guide plate (21) is hinged with a first air guide sheet (33); a telescopic rod (34) is fixedly connected between the top of the first air guide sheet (33) and the nut (32); the side walls, close to the two first air guide sheets (33), are fixedly connected with second air guide sheets (35) through a support;
a piston cylinder (4) is fixedly connected to the side wall of the second air guide sheet (35); a support rod (42) is arranged in the piston cylinder (4); the bottom of the supporting rod (42) is rotatably connected with an extrusion wheel (44); and a plurality of groups of sand turning blades (45) are fixedly connected to the extrusion wheel (44).
2. The epoxy terrace of claim 1 is laid with supplementary solidification equipment, its characterized in that: a first piston plate (41) is connected to the interior of the piston cylinder (4) in a sliding manner; the first piston plate (41) is fixedly connected with the support rod (42); a first elastic rope (43) is fixedly connected between the first piston plate (41) and the inner side wall of the piston cylinder (4).
3. The epoxy terrace of claim 2 is laid with supplementary solidification equipment, its characterized in that: a first cavity (5) is formed in the extrusion wheel (44); a second piston plate (51) is connected in the first cavity (5) in a sliding manner; an extension sweeping sheet (52) is fixedly connected to one side, close to the sand-turning blade (45), of the second piston plate (51); and a spring (53) is fixedly connected between the second piston plate (51) and the inner side wall of the first cavity (5).
4. The epoxy terrace of claim 3 is laid with supplementary solidification equipment, characterized in that: a sliding groove (54) is formed in the first cavity (5) and is communicated with the first cavity (5); a counterweight ball (55) is arranged in the chute (54); and a connecting rod (56) is fixedly connected to one side, close to the sliding groove (54), of the second piston plate (51).
5. The epoxy terrace of claim 4 is laid with supplementary solidification equipment, its characterized in that: a second cavity (6) is formed in the extension cleaning sheet (52); a puncture needle (61) is connected in the second cavity (6) in a sliding manner; a group of second elastic ropes (62) are fixedly connected between the puncture needle (61) and the inner side wall of the second cavity (6).
6. The epoxy terrace of claim 5 is laid with supplementary solidification equipment, characterized in that: a group of third cavities (63) are formed in the extension cleaning sheet (52); a piston rod (64) is connected inside the third cavity (63) in a sliding manner; an air bag (66) is fixedly connected inside the rodless cavity of the third cavity (63); an air duct (65) is communicated between the air bag (66) and the rodless cavity of the second cavity (6).
7. The epoxy terrace of claim 6 is laid with supplementary solidification equipment, characterized in that: an arc-shaped rod (67) is fixedly connected to the end part of the piston rod (64); an air blowing pipe (68) is fixedly connected inside the extension cleaning sheet (52); one end of the air blowing pipe (68) is communicated with the rodless cavity of the third cavity (63), and the other end of the air blowing pipe is communicated with the position, corresponding to the arc-shaped rod (67), on the side wall of the extension cleaning sheet (52).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202110825185.XA CN113503726B (en) | 2021-07-21 | 2021-07-21 | Epoxy terrace is laid with supplementary solidification equipment |
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