Disclosure of Invention
The invention provides a gap filler and a preparation device and method thereof, which have the beneficial effects that the gap filler raw material can be beaten, and the performance of the gap filler is improved.
The invention relates to the field of gap fillers, in particular to a gap filler and a preparation device and a preparation method thereof.
Beat the box about the equal fixedly connected with articulated support in both ends, the middle part of two oblique commentaries on classics boards articulates the upper end of connecting at two articulated supports respectively, the upper end of two oblique commentaries on classics boards all is provided with the slide opening, beat the fixed cover of the rear side middle part fixedly connected with of box, montant in the fixedly connected with of sheatheeing in, the upper end fixed connection of well montant is at the middle part of horizontal pole, the equal fixedly connected with in both ends slides the cylinder about the horizontal pole, two slide the cylinder respectively sliding connection on two slide openings, the equal fixedly connected with hammer head of lower extreme of two oblique commentaries on classics boards.
The gap filler preparation device further comprises inclined bottom surfaces, the left end and the right end of the bottom surface of the inner side of the hammering box are respectively provided with an inclined bottom surface, and the inner ends of the two inclined bottom surfaces are inclined downwards.
The gap filler preparation device further comprises a discharge pipe I, and the discharge pipe I is arranged on the lower side of the hammering box.
The gap filler preparation device further comprises a mixing drum, a motor I, a motor frame, a mixing shaft and a mixing frame, wherein the motor frame is fixedly connected to the upper portion of the mixing drum, the motor I is fixedly connected to the motor frame, the mixing shaft is fixedly connected to an output shaft of the lower end of the motor I, the mixing frame is fixedly connected to the mixing shaft, the mixing frame is located in the mixing drum, and the mixing drum is located below the discharge pipe I.
The gap filler preparation facilities still includes the puddler, and the puddler is provided with a plurality ofly, and a plurality of puddlers equipartition are on the agitator frame.
The gap filler preparation facilities still includes the layer board, discharging pipe II, the crossbeam pole, a pedestal, the plush copper and beat the box frame, the upper end fixedly connected with plush copper of base, the articulated connection in downside middle part of layer board is on the plush copper, the lower extreme fixed connection of churn is on the layer board, be provided with two around the crossbeam pole, the equal fixed connection of two crossbeam poles is at the downside of base, the box frame is beaten to the equal fixedly connected with of right-hand member of two crossbeam poles, beat box fixed connection between two upper ends of beating the box frame, the downside of layer board is provided with discharging pipe II, discharging pipe II communicates with the inside of churn, be provided with solenoid valve I on the discharging pipe II.
Gap filler preparation facilities still includes the under casing, motor II, gear I, discharging pipe III, the cross rotating shaft, helical blade and gear II, the equal fixed connection in the upper end of under casing of two crossbeam poles, both ends rotate respectively and connect the left and right sides at the under casing about the cross rotating shaft, be provided with helical blade on the cross rotating shaft, the right-hand member fixedly connected with gear II of cross rotating shaft, the right side fixedly connected with motor II of under casing, fixedly connected with gear I on motor II's the output shaft, gear I and gear II meshing transmission, the right side lower extreme of under casing is provided with discharging pipe III, be provided with solenoid valve II on the discharging pipe III.
The gap filler preparation facilities still includes connecting rod I, connecting rod II, L shape pole, erect the slide bar, the solid pole, hollow rod, the balladeur train, down tube and disc, the lower extreme left side fixedly connected with connecting rod I of well montant, connecting rod I's left end fixedly connected with connecting rod II, the left side fixedly connected with balladeur train of under casing, vertical sliding connection has the perpendicular slide bar on the balladeur train, the left end fixedly connected with disc of transverse rotation axle, the articulated down tube that is connected with in the eccentric position of disc, the articulated lower extreme at the perpendicular slide bar of the other end of down tube, the upper end fixed connection of perpendicular slide bar is on connecting rod II, the left side fixedly connected with L shape pole of layer board, the articulated connection of right-hand member at the L shape pole of hollow rod, the left end sliding connection of hollow rod has the solid pole, the left end fixed connection of solid pole is at the middle part of perpendicular slide bar.
The joint mixture prepared by the joint mixture preparation device comprises the following components by weight: 30-40% of polymer resin, 20-30% of powder, 0.1-0.2% of thickening agent, 0.2-0.6% of water-retaining agent, 10-20% of anti-cracking agent, 0.1-0.2% of polymer emulsion, 0-1.5% of defoaming agent, 0-0.8% of thickening agent, 0.5-1% of water repellent and the balance of water.
A method of preparing a caulking agent by a caulking agent preparation device, the method comprising the steps of:
the method comprises the following steps: putting the polymer resin into a beating box, wherein the two beating heads can continuously beat the polymer resin;
step two: the beated raw materials in the beating box fall into a mixing drum from a discharging pipe I, powder, a thickening agent, a water-retaining agent, an anti-cracking agent, polymer emulsion, a defoaming agent, a thickening agent, a water repellent and water are all put into the mixing drum, a motor I can drive a mixing shaft when rotating, and the mixing drum automatically shakes to improve the mixing effect;
step three: when the electromagnetic valve I is opened, the stirred raw materials in the stirring cylinder enter the bottom box, and the raw materials falling into the bottom box are stirred in the other direction when the helical blade rotates;
step four: and an electromagnetic valve II on the discharge pipe III is opened to discharge the gap filler in the bottom box, and the helical blade rotates to push the gap filler to help discharge the gap filler in the bottom box.
The joint mixture and the preparation device and method thereof have the beneficial effects that:
according to the joint mixture and the preparation device and method thereof, the joint mixture can be prepared by continuously moving the two hammering heads up and down and hammering, continuously shaking the mixing drum left and right, rotating the joint mixture by the helical blade to push and mix, and relatively and cooperatively moving the three motions.
Detailed Description
In the description of the present invention, it is to be understood that the terms "center", "longitudinal", "lateral", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", and the like, indicate orientations or positional relationships based on those shown in the drawings, and are used only for convenience in describing the present invention and for simplicity in description, and do not indicate or imply that the referenced devices or elements must have a particular orientation, be constructed and operated in a particular orientation, and thus, are not to be construed as limiting the present invention. Furthermore, the terms "first", "second", etc. are used for descriptive purposes only and are not to be construed as indicating or implying relative importance or implicitly indicating the number of technical features indicated. Thus, a feature defined as "first," "second," etc. may explicitly or implicitly include one or more of that feature. In the description of the present invention, "a plurality" means two or more unless otherwise specified.
The first embodiment is as follows:
the embodiment is described below with reference to fig. 1-9, the invention relates to the field of gap fillers, and more specifically relates to a gap filler and a preparation device and method thereof, wherein the gap filler comprises a hammering box 1, a hinged support 101, a fixed sleeve 104, an inclined rotating plate 2, a sliding hole 201, a hammering head 202, a cross rod 3, a sliding cylinder 301 and a middle vertical rod 302.
Beat the equal fixedly connected with hinged support 101 in both ends about box 1, the middle part of two skewed rotating plates 2 articulates the upper end of connecting at two hinged support 101 respectively, the upper end of two skewed rotating plates 2 all is provided with slide opening 201, beat the fixed cover 104 of the rear side middle part fixedly connected with of box 1, sliding connection has well montant 302 on fixed cover 104, the upper end fixed connection of well montant 302 is at the middle part of horizontal pole 3, the equal fixedly connected with in both ends smooth cylinder 301 about horizontal pole 3, two smooth cylinder 301 sliding connection respectively is on two slide opening 201, the equal fixedly connected with of lower extreme of two skewed rotating plates 2 beats head 202. During the use, earlier put into beating box 1 with the viscous raw materials of gap filler, if polymer resin, when middle montant 302 vertical reciprocating sliding, drive horizontal pole 3 and two smooth cylinder 301 vertical reciprocating motion, drive two oblique commentaries on classics board 2 and constantly swing during two smooth cylinder 301 vertical reciprocating motion, and then two hammering heads 202 can carry out continuous beating to polymer resin, and then make polymer resin and powder density increase, and get rid of the bubble in the polymer resin, improve the performance of gap filler.
The second embodiment is as follows:
referring to fig. 1 to 9, the gap filler preparing apparatus further includes an inclined bottom surface 103, the inclined bottom surfaces 103 are disposed at both left and right ends of the inner bottom surface of the hammering box 1, and inner ends of both the inclined bottom surfaces 103 are inclined downward. The effect of the two inclined bottom surfaces 103 is to allow the raw material in the hammering box 1 to be gathered in the center of the hammering box 1, thereby facilitating the continuous hammering of the raw material by the two hammering heads 202.
The third concrete implementation mode:
the present embodiment will be described below with reference to fig. 1 to 9, and the caulking agent preparation apparatus further includes a discharge pipe I102, and the discharge pipe I102 is disposed at the lower side of the hammering box 1. The discharge pipe I102 is used for discharging the beaten raw material in the beating box 1.
The fourth concrete implementation mode:
the embodiment is described below with reference to fig. 1 to 9, the gap filler preparation apparatus further includes a mixing drum 4, a motor I401, a motor frame 402, a mixing shaft 403 and a mixing frame 405, the upper portion of the mixing drum 4 is fixedly connected with the motor frame 402, the motor I401 is fixedly connected to the motor frame 402, the mixing shaft 403 is fixedly connected to the lower end output shaft of the motor I401, the mixing frame 405 is fixedly connected to the mixing shaft 403, the mixing frame 405 is located in the mixing drum 4, and the mixing drum 4 is located below the discharge pipe I102. When raw materials after being beaten in the box 1 fall down from the discharging pipe I102, the raw materials can fall into the mixing drum 4, the motor I401 can drive the mixing shaft 403 and the mixing frame 405 to rotate when rotating, and the raw materials in the mixing drum 4 are mixed when the mixing frame 405 rotates, so that the raw materials are fully mixed.
The fifth concrete implementation mode:
the gap filler preparing apparatus of the present embodiment is described below with reference to fig. 1 to 9, and the gap filler preparing apparatus further includes a plurality of stirring rods 404, and the plurality of stirring rods 404 are uniformly distributed on the stirring frame 405. The plurality of stirring rods 404 and the stirring frame 405 stir the raw material in the stirring drum 4, and the plurality of stirring rods 404 improve the stirring effect.
The sixth specific implementation mode:
the embodiment is described below with reference to fig. 1 to 9, the gap filler preparation apparatus further includes a supporting plate 5, a discharging pipe II501, two beam rods 6, a base 601, a raised head 602, and a beating box holder 603, the upper end of the base 601 is fixedly connected with the raised head 602, the middle part of the lower side of the supporting plate 5 is hinged to the raised head 602, the lower end of the mixing drum 4 is fixedly connected to the supporting plate 5, two beam rods 6 are arranged in front of and behind the supporting plate 5, two beam rods 6 are fixedly connected to the lower side of the base 601, the right ends of the two beam rods 6 are fixedly connected with the beating box holder 603, the beating box 1 is fixedly connected between the upper ends of the two beating box holders 603, the discharging pipe II501 is arranged on the lower side of the supporting plate 5, the discharging pipe II501 is communicated with the inside of the mixing drum 4, and the discharging pipe II501 is provided with a solenoid valve I. Layer board 5 can rotate on plush copper 602, and then realizes that layer board 5 inclines left or right, because agitator 4 fixes in the upper end of layer board 5, so layer board 5 inclines left or right and can rock the raw materials in agitator 4, when carrying out stirring operation in the agitator 4, agitator 4 self still can rock, further improves stirring effect.
The seventh embodiment:
the embodiment is described below with reference to fig. 1 to 9, the gap filler preparation apparatus further includes a bottom box 8, a motor II801, a gear I802, a discharge pipe III803, a traverse shaft 9, a helical blade 901, and a gear II902, wherein both the two traverse beams 6 are fixedly connected to the upper end of the bottom box 8, the left and right ends of the traverse shaft 9 are respectively rotatably connected to the left and right sides of the bottom box 8, the helical blade 901 is disposed on the traverse shaft 9, the gear II902 is fixedly connected to the right end of the traverse shaft 9, the motor II801 is fixedly connected to the right side of the bottom box 8, the gear I802 is fixedly connected to the output shaft of the motor II801, the gear I802 is in mesh transmission with the gear II902, the discharge pipe III803 is disposed at the lower end of the right side of the bottom box 8, and the electromagnetic valve II is disposed on the discharge pipe III 803. When solenoid valve I on discharging pipe II501 opens, the raw materials after being stirred get into in the under casing 8 in the churn 4, drive gear I802 when motor II801 rotates and rotate, drive transverse rotation axle 9 and helical blade 901 rotate when gear I802 rotates, helical blade 901 carries out the stirring of another direction to the raw materials that fall into in the under casing 8 when rotating, the stirring mode and the stirring direction in 4 and the under casing 8 of churn are different, make the raw materials fully further mix like this. When the electromagnetic valve II on the discharging pipe III803 is opened, the caulking agent in the bottom box 8 can be discharged, and at this time, the helical blade 901 rotates to push the caulking agent, thereby assisting in discharging the caulking agent in the bottom box 8.
The specific implementation mode is eight:
the embodiment is described below with reference to fig. 1 to 9, the gap filler preparation apparatus further includes a connecting rod I303, a connecting rod II304, an L-shaped rod 502, a vertical sliding rod 7, a solid rod 701, a hollow rod 702, a carriage 804, an oblique rod 903 and a disc 904, the connecting rod I303 is fixedly connected to the left side of the lower end of the middle vertical rod 302, the connecting rod II304 is fixedly connected to the left side of the connecting rod I303, the carriage 804 is fixedly connected to the left side of the bottom box 8, the vertical sliding rod 7 is vertically and slidably connected to the carriage 804, the disc 904 is fixedly connected to the left side of the transverse rotating shaft 9, the oblique rod 903 is hingedly connected to the eccentric position of the disc 904, the other end of the oblique rod 903 is hingedly connected to the lower end of the sliding rod 7, the upper end of the vertical sliding rod 7 is fixedly connected to the connecting rod II304, the L-shaped rod 502 is fixedly connected to the left side of the supporting plate 5, the right end of the hollow rod 702 is hingedly connected to the L-shaped rod 502, the solid rod 701 is slidably connected to the left end of the hollow rod 702, the left end of the solid bar 701 is fixedly connected to the middle of the vertical sliding bar 7. The transverse rotating shaft 9 can drive the disc 904 to rotate when rotating, the disc 904 drives the vertical sliding rod 7 to vertically reciprocate on the sliding frame 804 through the inclined rod 903 when rotating, the vertical sliding rod 7 drives the solid rod 701 and the hollow rod 702 to vertically reciprocate when vertically reciprocating, the solid rod 701 can also slide on the hollow rod 702, and the hollow rod 702 drives the supporting plate 5 to swing in a left-right reciprocating manner so as to drive the stirring cylinder 4 to continuously swing left and right; meanwhile, the vertical sliding rod 7 drives the connecting rod I303 and the connecting rod II304 to vertically reciprocate during vertical reciprocating motion, so as to drive the middle vertical rod 302 to vertically reciprocate, and further drive the two hammering heads 202 to continuously reciprocate to hammer the polymer resin in the hammering box 1. Finally, the two hammering heads 202 continuously move up and down to hammer, the mixing drum 4 continuously shakes left and right, the helical blades 901 rotate the caulking agent to push and mix, and the three movements relatively move in a coordinated manner to prepare the caulking agent.
The joint mixture prepared by the joint mixture preparation device comprises the following components by weight: 30-40% of polymer resin, 20-30% of powder, 0.1-0.2% of thickening agent, 0.2-0.6% of water-retaining agent, 10-20% of anti-cracking agent, 0.1-0.2% of polymer emulsion, 0-1.5% of defoaming agent, 0-0.8% of thickening agent, 0.5-1% of water repellent and the balance of water.
A method of preparing a caulking agent by a caulking agent preparation device, the method comprising the steps of:
the method comprises the following steps: putting the polymer resin into the beating box 1, wherein the two beating heads 202 can continuously beat the polymer resin;
step two: the beated raw materials in the beating box 1 fall into the mixing drum 4 from the discharge pipe I102, powder, a thickening agent, a water retaining agent, an anti-cracking agent, polymer emulsion, a defoaming agent, a thickening agent, a water repellent and water are all put into the mixing drum 4, the motor I401 can drive the mixing shaft 403 when rotating, and the mixing drum 4 shakes to improve the mixing effect;
step three: when the electromagnetic valve I is opened, the stirred raw materials in the stirring cylinder 4 enter the bottom box 8, and the raw materials falling into the bottom box 8 are stirred in the other direction when the helical blade 901 rotates;
step four: and opening an electromagnetic valve II on the discharge pipe III803 to discharge the gap filler in the bottom box 8, and pushing the gap filler by rotating the spiral blade 901 to help discharge the gap filler in the bottom box 8.
The working principle of the invention is as follows: during the use, earlier put into beating box 1 with the viscous raw materials of gap filler, if polymer resin, when middle montant 302 vertical reciprocating sliding, drive horizontal pole 3 and two smooth cylinder 301 vertical reciprocating motion, drive two oblique commentaries on classics board 2 and constantly swing during two smooth cylinder 301 vertical reciprocating motion, and then two hammering heads 202 can carry out continuous beating to polymer resin, and then make polymer resin and powder density increase, and get rid of the bubble in the polymer resin, improve the performance of gap filler. The effect of the two inclined bottom surfaces 103 is to allow the raw material in the hammering box 1 to be gathered in the center of the hammering box 1, thereby facilitating the continuous hammering of the raw material by the two hammering heads 202. The discharge pipe I102 is used for discharging the beaten raw material in the beating box 1. When raw materials after being beaten in the box 1 fall down from the discharging pipe I102, the raw materials can fall into the mixing drum 4, the motor I401 can drive the mixing shaft 403 and the mixing frame 405 to rotate when rotating, and the raw materials in the mixing drum 4 are mixed when the mixing frame 405 rotates, so that the raw materials are fully mixed. The plurality of stirring rods 404 and the stirring frame 405 stir the raw material in the stirring drum 4, and the plurality of stirring rods 404 improve the stirring effect. Layer board 5 can rotate on plush copper 602, and then realizes that layer board 5 inclines left or right, because agitator 4 fixes in the upper end of layer board 5, so layer board 5 inclines left or right and can rock the raw materials in agitator 4, when carrying out stirring operation in the agitator 4, agitator 4 self still can rock, and the improvement improves stirring effect. When solenoid valve I on discharging pipe II501 opens, the raw materials after being stirred get into in the under casing 8 in the churn 4, drive gear I802 when motor II801 rotates and rotate, drive transverse rotation axle 9 and helical blade 901 rotate when gear I802 rotates, helical blade 901 carries out the stirring of another direction to the raw materials that fall into in the under casing 8 when rotating, the stirring mode and the stirring direction in 4 and the under casing 8 of churn are different, make the raw materials fully further mix like this. When the electromagnetic valve II on the discharging pipe III803 is opened, the caulking agent in the bottom box 8 can be discharged, and at this time, the helical blade 901 rotates to push the caulking agent, thereby assisting in discharging the caulking agent in the bottom box 8. The transverse rotating shaft 9 can drive the disc 904 to rotate when rotating, the disc 904 drives the vertical sliding rod 7 to vertically reciprocate on the sliding frame 804 through the inclined rod 903 when rotating, the vertical sliding rod 7 drives the solid rod 701 and the hollow rod 702 to vertically reciprocate when vertically reciprocating, the solid rod 701 can also slide on the hollow rod 702, and the hollow rod 702 drives the supporting plate 5 to swing in a left-right reciprocating manner so as to drive the stirring cylinder 4 to continuously swing left and right; meanwhile, the vertical sliding rod 7 drives the connecting rod I303 and the connecting rod II304 to vertically reciprocate during vertical reciprocating motion, so as to drive the middle vertical rod 302 to vertically reciprocate, and further drive the two hammering heads 202 to continuously reciprocate to hammer the polymer resin in the hammering box 1. Finally, the two hammering heads 202 continuously move up and down to hammer, the mixing drum 4 continuously shakes left and right, the helical blades 901 rotate the caulking agent to push and mix, and the three movements relatively move in a coordinated manner to prepare the caulking agent.
It is to be understood that the above description is not intended to limit the present invention, and the present invention is not limited to the above examples, and that various changes, modifications, additions and substitutions which are within the spirit and scope of the present invention and which may be made by those skilled in the art are also within the scope of the present invention.