CN218133664U - Ready-mixed mortar laboratory - Google Patents

Ready-mixed mortar laboratory Download PDF

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Publication number
CN218133664U
CN218133664U CN202222197870.5U CN202222197870U CN218133664U CN 218133664 U CN218133664 U CN 218133664U CN 202222197870 U CN202222197870 U CN 202222197870U CN 218133664 U CN218133664 U CN 218133664U
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China
Prior art keywords
laboratory
recess
ready
scraper blade
scraper
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CN202222197870.5U
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Chinese (zh)
Inventor
张荣胜
陈志辉
张建召
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Xiamen Meiyi Zhicheng New Materials Co ltd
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Xiamen Meiyi Zhicheng New Materials Co ltd
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Abstract

The application discloses premixed mortar laboratory, including seting up the recess on laboratory ground, the laboratory is subaerial and be located one side of recess and be provided with the mixer, the vertical scraper blade that is provided with of opposite side that just is close to the mixer in the recess, the laboratory is subaerial and be located one side of keeping away from the scraper blade and seted up the collection mouth, collect and communicate each other between mouthful and the recess, the tank bottom of recess is followed the scraper blade and is collected mouthful downward sloping gradually towards, it is provided with the collection frame to collect the internalization of mouth, the bottom of collecting the frame has been seted up and has been filtered the hole, the below of collecting the frame is provided with the drain pipe, it communicates each other with the drain pipe to filter the hole, reciprocating motion is done along the direction of being close to or keeping away from the collection frame to the scraper blade, the laboratory is subaerial and is located one side of scraper blade and is provided with the shower. This application has the effect of the remaining mortar in clearance laboratory ground of being convenient for.

Description

Ready-mixed mortar laboratory
Technical Field
The application relates to the technical field of buildings, in particular to a ready-mixed mortar laboratory.
Background
Mortar is a widely applied building material in the field of modern engineering and construction, and is prepared by adding water into sand and cementing materials (cement, lime paste, clay and the like) in a certain proportion.
The quality of the mortar is a key factor influencing the quality of the building, in order to ensure the quality of the mortar, the mortar needs to be stirred and tested before being put into use, the mortar needs to be poured on the ground of a laboratory after being stirred in a stirrer, and then a certain amount of mortar is taken for detection.
In view of the above-mentioned related technologies, some mortar still remains on the laboratory floor after the sampling is completed, and the sewage flows around the laboratory floor during the cleaning process, and the residual mortar is not easy to clean, so there is a need for improvement.
SUMMERY OF THE UTILITY MODEL
In order to facilitate cleaning of residual mortar on the ground of a laboratory, the application provides a ready-mixed mortar laboratory.
The premixed mortar laboratory adopts the following technical scheme:
the utility model provides a ready-mixed mortar laboratory, is including seting up the recess on laboratory ground, the laboratory is subaerial and the one side that is located the recess is provided with the mixer, the vertical scraper blade that is provided with of opposite side that just is close to the mixer in the recess, the laboratory is subaerial and is located the one side of keeping away from the scraper blade and seted up the collection mouth, collect intercommunication each other between mouth and the recess, the tank bottom of recess is followed the scraper blade and is collected mouthful downward sloping gradually towards, it is provided with the collection frame to collect the internalization of mouth, the filtration hole has been seted up to the bottom of collecting the frame, the below of collecting the frame is provided with the drain pipe, filter hole and drain pipe communicate each other, reciprocating motion is along the direction of being close to or keeping away from the collection frame to the scraper blade, the laboratory is subaerial and is located one side of scraper blade and is provided with the shower.
Through adopting above-mentioned technical scheme, after carrying out the ready-mixed experiment, can remain more mortar in the recess, utilize shower spun water to wash the mortar that adheres in the recess, the scraper blade is on one side towards the direction motion that is close to the collection mouth, scrape the mortar that adheres in the recess on one side, make the mortar drop along the incline direction of recess tank bottom and collect in the frame, solid particle in the mortar stays collects in the frame, liquid flows into in the drain pipe via filtering the hole, the effect of the remaining mortar in the realization laboratory ground of being convenient for clearance.
Preferably, the laboratory still is provided with first support and driving piece subaerial, the driving piece includes first motor, lead screw and sliding block, the lead screw rotates to set up on first support, the lead screw sets up in one side of scraper blade slip direction and parallel with the tank bottom of recess, sliding block threaded connection is on the lead screw, one side fixed connection of sliding block and scraper blade, the output shaft and the lead screw transmission of first motor are connected.
Through adopting above-mentioned technical scheme, realize the automatic reciprocating motion of scraper blade through setting up the driving piece, with scraper blade and sliding block fixed connection, because sliding block threaded connection is on the lead screw, when first motor drive lead screw rotated, the sliding block moved along the axis direction of lead screw to drive the scraper blade and be reciprocating motion along the direction of being close to or keeping away from the collection frame, the scraper blade scraping mortar of being convenient for, labour saving and time saving.
Preferably, the laboratory is still provided with second support and lifter on the ground, the lifter is including setting up the second motor on the second support, installing at the rolling wheel and the cable of second motor output shaft, the rolling wheel is connected to the one end of cable, and the collection frame is connected to the other end.
Through adopting above-mentioned technical scheme, can regularly clear up the mortar waste residue in collecting the frame through setting up the lift, alleviate operating personnel's work burden, the second motor drives the rolling wheel and rotates, drives reciprocating of collecting the frame through the cable to conveniently clear up the solid particle in collecting the frame.
Preferably, still be provided with air exhauster and blast pipe in the laboratory, the air exhauster cover is established in the mixer top, the air exhauster is connected to the one end of blast pipe, and the other end is connected outdoors.
Through adopting above-mentioned technical scheme, at the in-process of mixer stirring preparation mortar, can produce more dust, through air exhauster extraction dust and via the blast pipe discharge external world, can reduce the dust and diffuse everywhere in the laboratory, can reduce the dust simultaneously and bring harm for operating personnel's health.
Preferably, a plurality of spray headers are arranged on the spray pipe at intervals, and the spray headers are arranged along the length direction of the scraper plate.
Through adopting above-mentioned technical scheme, arrange the shower head along the length direction of scraper blade, can evenly erode the recess, guarantee that the mortar in the recess is all washed clean.
Preferably, the scraper blade does reciprocating motion along the length direction of the groove, and the scraper blade is matched with one side of the wide edge of the groove.
By adopting the technical scheme, the scraping plates are matched with one sides of the wide edges of the grooves, so that the mortar adhered in the grooves can be scraped, and the efficiency of scraping the mortar by the scraping plates is improved.
Preferably, the inner wall of the groove is detachably provided with a steel plate.
Through adopting above-mentioned technical scheme, all be provided with the steel sheet through inside wall and the tank bottom at the recess, make sewage be difficult to see through in the steel sheet infiltration recess to reduce the influence of sewage to laboratory ground structure.
Preferably, the steel plate is provided with a bolt, and the bolt penetrates through the inner wall of the groove in threaded connection with the steel plate.
Through adopting above-mentioned technical scheme, wear to establish steel sheet threaded connection with the bolt and at the inner wall of recess, be convenient for fix the steel sheet at the recess inner wall fast, be convenient for simultaneously change the steel sheet.
In summary, the present application includes at least one of the following beneficial technical effects:
(1) After the mortar adhered in the groove is washed by water sprayed from the spray pipe, the mortar is scraped off by the scraper, so that solid particles in the mortar are left in the collecting frame, and liquid flows into the drain pipe, thereby realizing the effect of conveniently cleaning the residual mortar on the ground of the laboratory;
(2) The lifting piece is arranged on the ground of the laboratory, so that solid particles in the collecting frame can be cleaned regularly, and the workload of operators is reduced;
(3) Can dismantle through the inner wall at the recess and set up the steel sheet, make sewage be difficult to see through in the steel sheet infiltration recess, can reduce the influence to laboratory ground structure.
Drawings
FIG. 1 is a schematic view of the structure of a laboratory according to the present embodiment;
FIG. 2 is a schematic structural view of the lifter of the present embodiment;
fig. 3 is a schematic structural view of the drain pipe of the present embodiment.
Reference numerals: 1. a laboratory floor; 2. a groove; 3. a blender; 4. a squeegee; 5. a collection port; 6. a collection frame; 7. a filtration pore; 8. a drain pipe; 9. a shower pipe; 10. a shower head; 11. a first bracket; 12. a drive member; 121. a first motor; 122. a screw rod; 123. a sliding block; 13. a second bracket; 14. a lifting member; 141. a second motor; 142. a winding wheel; 143. a cable; 15. an exhaust fan; 16. an exhaust pipe; 17. a steel plate; 18. and (4) bolts.
Detailed Description
The present application is described in further detail below with reference to figures 1-3.
The embodiment of the application discloses a ready-mixed mortar laboratory. Referring to fig. 1, the premixed mortar laboratory is including seting up at the recess 2 on laboratory ground 1, and recess 2 is the rectangular channel, and the tip that just is located recess 2 long limit one side on laboratory ground 1 is provided with mixer 3, and the broadside one side that just is located to be close to mixer 3 in recess 2 is vertical to be provided with scraper blade 4, and scraper blade 4 is the reciprocating motion along the length direction of recess 2 with the broadside one side looks adaptation of recess 2, scraper blade 4.
Referring to fig. 2 and 3, the collection port 5 has been seted up on laboratory ground 1 and on one side that is located away from scraper blade 4, the tank bottom of recess 2 is followed scraper blade 4 and is collected mouthful 5 downward sloping gradually, collect mouthful 5 along the width direction setting of recess 2 and communicate each other with recess 2, the internalization is provided with collects frame 6 collecting mouthful 5, the opening of collecting frame 6 is slightly less than the tank bottom of recess 2, a plurality of filtration holes 7 have been seted up to the bottom of collecting frame 6, should filter holes 7 and can separate the solid particle who keeps off in the mortar, be provided with drain pipe 8 in laboratory ground 1 and be located collection frame 6 below, it communicates each other with drain pipe 8 to filter holes 7.
Referring to fig. 1, a spray pipe 9 is disposed on a laboratory floor 1 and on one side of a scraper 4, the spray pipe 9 extends along a width direction of a groove 2, the height of the spray pipe 9 is higher than that of the scraper 4, a plurality of spray heads 10 are arranged on the spray pipe 9 at intervals, the spray heads 10 are disposed along a length direction of the scraper 4, and a spray direction of the spray heads 10 faces the groove 2.
Referring to fig. 1, a first bracket 11 and a driving part 12 are arranged on the laboratory floor 1 and on one side of the sliding direction of the scraper 4, and the driving part 12 is used for driving the scraper 4 to reciprocate towards the direction close to or far away from the collecting frame 6, so as to realize the automatic sliding of the scraper 4. Specifically, the driving member 12 includes a first motor 121, a screw rod 122 and a sliding block 123, the screw rod 122 is rotatably disposed on the first bracket 11 and is parallel to the bottom of the groove 2, the sliding block 123 is connected to the screw rod 122 through a thread, the sliding block 123 is fixedly connected to one side of the scraper 4, and an output shaft of the first motor 121 is in transmission connection with the screw rod 122.
Utilize shower head 10 to evenly wash remaining mortar in recess 2, drive lead screw 122 through first motor 121 and rotate, make sliding block 123 along the axis direction motion of lead screw 122, thereby drive scraper blade 4 on one side towards the direction motion that is close to collection frame 6, scrape the mortar that adheres in the recess 2 on one side, the mortar drops in collection frame 6 along the incline direction of recess 2 tank bottom, because the bottom of collecting frame 6 is provided with filtration hole 7, make the solid particle in the mortar stay in collection frame 6, liquid flows into drain pipe 8 via filtration hole 7, can be with the tank bottom sanitization of recess 2, be convenient for again clear up laboratory ground 1 remaining mortar.
Referring to fig. 2, when the solid particles in the collection frame 6 are accumulated to a certain degree, in order to facilitate cleaning of the mortar waste in the collection frame 6 and reduce the workload of the operator, the second bracket 13 and the lifting piece 14 are arranged on the laboratory floor 1 and on one side close to the collection port 5, the lifting piece 14 comprises a second motor 141, a winding wheel 142 and a cable 143, the second motor 141 is arranged on the second bracket 13, the winding wheel 142 is rotatably installed on the output shaft of the second motor 141, one end of the cable 143 is connected with the winding wheel 142, the other end of the cable 143 is connected with the collection frame 6, and the collection frame 6 is driven to automatically lift by the extension and retraction of the cable 143.
Referring to fig. 1, in addition, still be provided with air exhauster 15 and blast pipe 16 in the laboratory, air exhauster 15 covers and establishes above mixer 3, and blast pipe 16 one end is connected air exhauster 15, and the other end is connected outdoors, through air exhauster 15 extraction dust and via the outside of blast pipe 16 exhaust, can reduce mixer 3 and prepare the dust of mortar in-process and diffuse everywhere.
The steel plate 17 is detachably arranged on the inner side wall and the groove bottom of the groove 2, the bolt 18 is arranged on the steel plate 17, the bolt 18 penetrates through the steel plate 17 and is connected onto the groove 2 in a threaded mode, the steel plate 17 is arranged in a mode that sewage penetrates into the groove 2 in a separating mode, and the influence of sewage on the structure of the laboratory ground 1 is reduced
The implementation principle of the premixed mortar laboratory in the embodiment of the application is as follows: the mortar adhered in the groove 2 is washed by water sprayed by the spray header 10, the first motor 121 drives the scraper 4 to move towards the direction close to the collecting frame 6 and scrape off the mortar adhered in the groove 2, the mortar falls into the collecting frame 6 along the inclined direction of the groove bottom of the groove 2, solid particles in the mortar are remained in the collecting frame 6, and liquid flows into the drain pipe 8 through the filter hole 7, so that the effect of cleaning the residual mortar on the ground 1 of the laboratory is realized.
The above embodiments are preferred embodiments of the present application, and the protection scope of the present application is not limited by the above embodiments, so: all equivalent changes made according to the structure, shape and principle of the present application shall be covered by the protection scope of the present application.

Claims (8)

1. The utility model provides a ready-mixed mortar laboratory, its characterized in that, is including seting up recess (2) on laboratory ground (1), the one side that just is located recess (2) on laboratory ground (1) is provided with mixer (3), the vertical scraper blade (4) that is provided with of opposite side that just is close to mixer (3) in recess (2), collection mouth (5) have been seted up to one side that just is located away from scraper blade (4) on laboratory ground (1), communicate each other between collection mouth (5) and recess (2), the tank bottom of recess (2) is followed scraper blade (4) and is towards collection mouth (5) downward sloping gradually, collection mouth (5) internalization is provided with collection frame (6), filter hole (7) have been seted up to the bottom of collecting frame (6), the below of collecting frame (6) is provided with drain pipe (8), filter hole (7) and drain pipe (8) communicate each other, scraper blade (4) are along being close to or keeping away from the direction of collecting frame (6) and do reciprocating motion, just be located one side of scraper blade (4) on laboratory ground (1) and be provided with spray pipe (9).
2. The ready-mixed mortar laboratory according to claim 1, wherein a first bracket (11) and a driving part (12) are further arranged on the laboratory floor (1), the driving part (12) comprises a first motor (121), a screw rod (122) and a sliding block (123), the screw rod (122) is rotatably arranged on the first bracket (11), the screw rod (122) is arranged on one side of the sliding direction of the scraper (4) and is parallel to the groove bottom of the groove (2), the sliding block (123) is in threaded connection with the screw rod (122), the sliding block (123) is fixedly connected with one side of the scraper (4), and an output shaft of the first motor (121) is in transmission connection with the screw rod (122).
3. The ready-mixed mortar laboratory according to claim 1, wherein a second bracket (13) and a lifting piece (14) are further arranged on the laboratory floor (1), the lifting piece (14) comprises a second motor (141) arranged on the second bracket (13), a winding wheel (142) installed on an output shaft of the second motor (141), and a cable (143), one end of the cable (143) is connected with the winding wheel (142), and the other end of the cable (143) is connected with the collecting frame (6).
4. The ready-mixed mortar laboratory according to claim 1, wherein an exhaust fan (15) and an exhaust pipe (16) are further arranged in the laboratory, the exhaust fan (15) is covered above the stirring machine (3), one end of the exhaust pipe (16) is connected with the exhaust fan (15), and the other end of the exhaust pipe is connected with the outside.
5. The ready-mixed mortar laboratory according to claim 1, wherein a plurality of spray headers (10) are arranged on the spray pipes (9) at intervals, and the spray headers (10) are arranged along the length direction of the scraper (4).
6. A ready mixed mortar laboratory according to claim 1, characterised in that the scraper (4) reciprocates along the length direction of the groove (2), and the scraper (4) is adapted to the broadside side of the groove (2).
7. A ready-mixed mortar laboratory according to claim 1, characterised in that the inner wall of the recess (2) is detachably provided with steel plates (17).
8. A ready-mixed mortar laboratory according to claim 7, characterized in that the steel plate (17) is provided with bolts (18), and the bolts (18) are threaded on the inner wall of the groove (2) through the steel plate (17).
CN202222197870.5U 2022-08-20 2022-08-20 Ready-mixed mortar laboratory Active CN218133664U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202222197870.5U CN218133664U (en) 2022-08-20 2022-08-20 Ready-mixed mortar laboratory

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202222197870.5U CN218133664U (en) 2022-08-20 2022-08-20 Ready-mixed mortar laboratory

Publications (1)

Publication Number Publication Date
CN218133664U true CN218133664U (en) 2022-12-27

Family

ID=84553030

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202222197870.5U Active CN218133664U (en) 2022-08-20 2022-08-20 Ready-mixed mortar laboratory

Country Status (1)

Country Link
CN (1) CN218133664U (en)

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