Foaming magnesium oxychloride mixed core material filling machine

By employing a double-sleeve external irregular groove design and gear and rack meshing in the foamed magnesium oxychloride mixed core material injection machine, the problem of uneven foamed cement discharge was solved, and a uniform injection effect was achieved.

CN223948155UActive Publication Date: 2026-02-27NANYANG HENGRUNDA ENVIRONMENTAL PROTECTION CO LTD
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Patent Information

Application Number
CN202520538756.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-25
Publication Date
2026-02-27
Estimated Expiration
2035-03-25

AI Technical Summary

Technical Problem

Existing foamed cement injection machines have a problem with uneven discharge of foamed magnesium oxychloride cement, resulting in poor injection effect.

Method used

The design employs a double-sleeve external irregular groove, and through the meshing relationship of gears and racks, drives the spiral blades to reciprocate at a specified angle, thereby achieving uniform extrusion and grouting of foamed magnesium oxychloride cement.

Benefits of technology

This method achieves uniform discharge and grouting of foamed magnesium oxychloride cement, thus improving the grouting effect.

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Abstract

The utility model discloses a foaming magnesium oxychloride mixed core material filling machine which comprises a workbench and a uniform filling mechanism. A portal frame is arranged on the rear side of the upper surface of the workbench, a mounting frame is arranged in the middle of the portal frame, and a filling hopper is fixedly connected to the lower side of the mounting frame; the uniform filling mechanism comprises inclined moving frames, fixing cylinders, rotating rods, spiral pieces, rack plates and telescopic rods, the fixing cylinders are fixedly connected to the upper left side and the upper right side of the filling hopper respectively, the telescopic rods are fixedly connected to the rear sides of the upper surfaces of the two fixing cylinders respectively, and the telescopic ends of the two telescopic rods are fixedly connected with the inclined moving frames respectively; rotating rods are slidably connected to the inner arc surfaces of the two fixing cylinders correspondingly, spiral pieces are arranged on the lower sides of the outer arc surfaces of the two rotating rods correspondingly, the upper sides of the two rotating rods are rotatably connected with the lower surfaces of the longitudinally adjacent oblique moving frames correspondingly, and according to the foaming magnesium oxychloride mixed core material pouring machine, foaming magnesium oxychloride cement is discharged more evenly, and the pouring effect is extremely good.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of magnesite cement perfusion, in particular to foamed chloroxymagnesium mixed core material perfusion machine. BACKGROUND

[0002] The chloroxymagnesium cementing system has the characteristics of small density, large hardness, strong adhesion, high temperature resistance, good heat insulation, etc., the project intends to adopt natural inorganic raw materials as fillers, through mixing, foaming, cementing, solidification and other procedures of inorganic cementing materials, develops light, heat insulation, sound insulation, heat preservation, fire resistance, moisture-proof color steel plate sandwich materials,

[0003] In the prior art, the patent with the authorized publication number CN202223480973.9 discloses a cement perfusion machine discharging mechanism, which comprises a stirring barrel, a storage box and an extension mechanism, a first motor is fixedly arranged on the top of the stirring barrel, a first gear is fixedly connected to the power output shaft of the first motor, a communication port is formed in the bottom of the stirring barrel, a second motor is arranged on one side of the stirring barrel, a first bevel gear is fixedly connected to the power output shaft of the second motor, a fixed plate is fixedly connected to the stirring barrel, a sleeve is sleeved on the fixed plate, a second gear and a third gear are fixedly arranged on the sleeve, the second gear is meshed with the first gear, two stirring shafts are respectively sleeved on the two sides of the fixed plate, a fourth gear is arranged on the stirring shaft, the fourth gear is meshed with the third gear, a discharging shaft is sleeved in the sleeve, a second bevel gear is arranged on the top end of the discharging shaft, a rotating blade is welded to the bottom end of the discharging shaft, the rotating blade is located in the communication port, the first bevel gear is meshed with the second bevel gear, the first motor drives the stirring operation, and the second motor drives the rotation of the discharging shaft

[0004] The above-mentioned cement perfusion machine discharging mechanism has some problems when used in foamed magnesite cement, for example, the interior of the foamed cement has a large number of water bubbles, therefore, only using a single auger to convey can easily cause uneven discharging, therefore, the foamed chloroxymagnesium mixed core material perfusion machine is proposed. UTILITY MODEL CONTENTS

[0005] The technical problem to be solved by the utility model is to overcome the defects of the prior art, provide the foamed chloroxymagnesium mixed core material perfusion machine, the foamed chloroxymagnesium cement discharging is more uniform, the perfusion effect is excellent, and the problems in the background art can be effectively solved.

[0006] To achieve the above-mentioned purpose, the utility model provides the following technical scheme: the foamed chloroxymagnesium mixed core material perfusion machine, including workbench and uniform perfusion mechanism;

[0007] The workbench: the rear side of the upper surface is provided with a portal frame, the middle part of the portal frame is provided with a mounting frame, and the lower side of the mounting frame is fixedly connected with a perfusion bucket;

[0008] The uniform pouring mechanism comprises a slanting moving frame, a fixed cylinder, a rotating rod, a spiral blade, a rack plate and an extension rod, the upper left side and the upper right side of the pouring bucket are respectively fixedly connected with the fixed cylinders, the rear upper surfaces of the two fixed cylinders are respectively fixedly connected with the extension rods, the extension ends of the two extension rods are respectively fixedly connected with the slanting moving frames, the inner arc surfaces of the two fixed cylinders are respectively slidably connected with the rotating rods, the outer arc surfaces of the two rotating rods are respectively provided with the spiral blades, the upper sides of the two rotating rods are respectively rotatably connected with the lower surfaces of the longitudinally adjacent slanting moving frames, the rear sides of the two slanting moving frames are respectively provided with the rack plates, the foamed magnesium oxychloride cement is discharged more uniformly, and the pouring effect is excellent.

[0009] Further, the right side of the workbench is provided with a controller, the input end of the controller is electrically connected with an external power supply, and the controller controls the normal operation of each electrical appliance.

[0010] Further, the uniform pouring mechanism further comprises a reciprocating driving assembly, the reciprocating driving assembly comprises a gear, a lower fixed block, an upper fixed block, an outer rotating cylinder, an inner rotating cylinder, a first sliding groove, a sliding block, a sliding column and a second sliding groove, the upper fixed block is fixedly connected to the lower side of the rear side of the mounting frame, the lower side of the upper fixed block is fixedly connected with the lower fixed block, the outer rotating cylinder is rotatably connected between the lower fixed block and the upper fixed block, the rear side of the outer rotating cylinder is fixedly connected with the gear, the two rack plates are meshingly connected with the gear, the inner rotating cylinder is rotatably connected in the outer rotating cylinder, the lower side of the inner arc surface of the lower fixed block is provided with the first sliding groove, the inside of the first sliding groove is slidably connected with the sliding block, the upper side of the sliding block is fixedly connected with the sliding column, the outer arc surface of the outer rotating cylinder is provided with the second sliding groove, the outer arc surface of the inner rotating cylinder is provided with the third sliding groove, the outer arc surface of the sliding column is slidably connected with the inside of the second sliding groove, and the outer arc surface of the sliding column is slidably connected with the inside of the third sliding groove, so as to realize the function of reciprocating driving.

[0011] Further, the uniform pouring mechanism further comprises an agitating motor, the agitating motor is respectively fixedly connected to the upper surfaces of the two slanting moving frames, the output shafts of the two agitating motors are fixedly connected with the upper ends of the vertically adjacent rotating rods, and the input ends of the two agitating motors are respectively electrically connected with the output ends of the controller, so as to provide power for agitation.

[0012] Further, the uniform pouring mechanism further comprises a reciprocating driving motor, the reciprocating driving motor is fixedly connected to the rear side of the upper fixed block, the output shaft of the reciprocating driving motor is fixedly connected with the rear side of the inner rotating cylinder, and the input end of the reciprocating driving motor is electrically connected with the output end of the controller, so as to provide power for reciprocating rotation of the gear.

[0013] Further, the lower side of the pouring bucket is connected with a valve in series, the upper side of the pouring bucket is provided with a pouring pipe, the upper side of the pouring pipe is connected with the inside of a storage cylinder provided on the upper side of the gantry, the upper side of the pouring pipe is connected with an electromagnetic valve in series, and the input ends of the electromagnetic valve and the valve are electrically connected with the output end of the controller, so as to realize the function of feeding.

[0014] Further, the upper side of the workbench is provided with a conveyor, the input end of the conveyor is electrically connected with the output end of the controller, so as to realize the discharging function.

[0015] Compared with the prior art, the foamed magnesium oxychloride mixed core material pouring machine has the following advantages:

[0016] The foamed cement enters into the pouring hopper, then the double-sleeve outer irregular sliding groove design is adopted, the driving gear is rotated reciprocatingly at a specified angle, and through the meshing relationship of the gear and the rack, the two helical blades are driven to rotate and reciprocate at the same time, the cement in the pouring hopper is continuously extruded, so that the cement can be extruded more uniformly and poured into the inside of the steel core material, the foamed magnesium oxychloride cement is more uniform in discharging, and the pouring effect is excellent. BRIEF DESCRIPTION OF DRAWINGS

[0017] Figure 1 It is a structural schematic view of the utility model;

[0018] Figure 2 It is a structural schematic view of the pouring hopper of the utility model;

[0019] Figure 3 It is a sectional view of the pouring hopper of the utility model;

[0020] Figure 4 It is a rear view of the pouring hopper of the utility model;

[0021] Figure 5 It is a structural schematic view of the reciprocating driving assembly of the utility model;

[0022] Figure 6 It is a local structural schematic view of the uniform pouring mechanism of the utility model;

[0023] Figure 7 It is a local structural schematic view of the reciprocating driving assembly of the utility model;

[0024] Figure 8 It is a local structural schematic view of the reciprocating driving assembly of the utility model.

[0025] In the drawing: 1 workbench, 2 mounting frame, 3 pouring hopper, 4 uniform pouring mechanism, 41 oblique moving frame, 42 fixed cylinder, 43 rotating rod, 44 helical blade, 45 rack plate, 46 reciprocating driving assembly, 461 gear, 462 lower fixed block, 463 upper fixed block, 464 outer rotating cylinder, 465 inner rotating cylinder, 466 first sliding groove, 467 sliding block, 468 sliding column, 469 second sliding groove, 47 stirring motor, 48 reciprocating driving motor, 49 telescopic rod, 5 valve, 6 pouring pipe, 7 conveyor, 8 storage cylinder, 9 controller. DETAILED DESCRIPTION

[0026] With reference to the drawings of the embodiments of the present application, the technical solutions in the embodiments of the present application will be described clearly and completely. Obviously, the described embodiments are only some of the embodiments of the present application, but not all the embodiments. Based on the embodiments of the present application, all other embodiments obtained by those skilled in the art without creative work are within the scope of protection of the present application.

[0027] Please refer to Figures 1-8 The present embodiment provides a technical solution: a foamed magnesium oxychloride mixed core material pouring machine, comprising a workbench 1 and a uniform pouring mechanism 4.

[0028] The workbench 1 is provided with a gantry on the upper surface of the rear side, the middle part of the gantry is provided with a mounting frame 2, the lower side of the mounting frame 2 is fixedly connected with a pouring bucket 3, the right side of the workbench 1 is provided with a controller 9, the input end of the controller 9 is electrically connected with an external power supply, the lower side of the pouring bucket 3 is connected in series with a valve 5, the upper side of the pouring bucket 3 is provided with a pouring pipe 6, the upper side of the gantry is provided with a storage cylinder 8, the upper side of the pouring pipe 6 is connected in communication with the inside of the storage cylinder 8, the upper side of the pouring pipe 6 is connected in series with a solenoid valve, the solenoid valve and the valve 5 are respectively electrically connected with the output end of the controller 9, the upper side of the workbench 1 is provided with a conveyor 7, the input end of the conveyor 7 is electrically connected with the output end of the controller 9, when the pouring machine needs to be used, the storage cylinder 8 is poured into a certain amount of foamed magnesium oxychloride cement, then the controller 9 can be adjusted and controlled, the solenoid valve and the valve 5 are both opened, at this time the foamed magnesium oxychloride cement in the storage cylinder 8 enters the inside of the pouring bucket 3 through the pouring pipe 6, and is discharged from the pouring bucket 3, it is worth noting that the foamed magnesium oxychloride cement just discharged from the pouring bucket 3 is not uniform, but constantly fills the inside of the pouring bucket 3, until the inside of the pouring bucket 3 is filled with cement, the solenoid valve and the valve 5 can be closed, at this time the controller 9 can be adjusted and controlled, the conveyor 7 is operated, the steel core material is conveyed by the conveyor 7, when the steel core material moves to the lower side of the pouring bucket 3, the solenoid valve and the valve 5 can be opened, and the foamed magnesium oxychloride cement is discharged.

[0029] The uniform irrigation mechanism 4 comprises a diagonal moving frame 41, a fixed cylinder 42, a rotating rod 43, a spiral blade 44, a rack plate 45 and an extension rod 49, the left upper side and the right upper side of the irrigation bucket 3 are respectively fixedly connected with the fixed cylinders 42, the rear sides of the upper surfaces of the two fixed cylinders 42 are respectively fixedly connected with the extension rods 49, the extension ends of the two extension rods 49 are respectively fixedly connected with the diagonal moving frames 41, the inner arc surfaces of the two fixed cylinders 42 are respectively slidably connected with the rotating rods 43, the outer arc surfaces of the lower sides of the two rotating rods 43 are respectively provided with the spiral blades 44, the upper sides of the two rotating rods 43 are respectively rotationally connected with the lower surfaces of the vertically adjacent diagonal moving frames 41, the rear sides of the two diagonal moving frames 41 are respectively provided with the rack plates 45, the uniform irrigation mechanism 4 further comprises a reciprocating driving assembly 46, the reciprocating driving assembly 46 comprises a gear 461, a lower fixed block 462, an upper fixed block 463, an outer rotating cylinder 464, an inner rotating cylinder 465, a first sliding groove 466, a sliding block 467, a sliding column 468 and a second sliding groove 469, the rear lower side of the mounting rack 2 is fixedly connected with the upper fixed block 463, the lower side of the upper fixed block 463 is fixedly connected with the lower fixed block 462, the outer rotating cylinder 464 is rotationally connected between the lower fixed block 462 and the upper fixed block 463, the rear side of the outer rotating cylinder 464 is fixedly connected with the gear 461, the two rack plates 45 are meshingly connected with the gear 461 (the gear 461 is irregularly shaped, specifically, the gear 461 has no upper side and lower side teeth), the inner rotating cylinder 465 is rotationally connected in the outer rotating cylinder 464, the lower inner arc surface of the lower fixed block 462 is provided with the first sliding groove 466, the inside of the first sliding groove 466 is slidably connected with the sliding block 467, the upper side of the sliding block 467 is fixedly connected with the sliding column 468, the outer arc surface of the outer rotating cylinder 464 is provided with the second sliding groove 469, the outer arc surface of the inner rotating cylinder 465 is provided with a third sliding groove, the outer arc surface of the sliding column 468 is slidably connected with the inside of the second sliding groove 469, the outer arc surface of the sliding column 468 is slidably connected with the inside of the third sliding groove, the uniform irrigation mechanism 4 further comprises an agitating motor 47, the agitating motor 47 is respectively fixedly connected with the upper surfaces of the two diagonal moving frames 41, the output shafts of the two agitating motors 47 are fixedly connected with the upper ends of the vertically adjacent rotating rods 43, the input ends of the two agitating motors 47 are respectively electrically connected with the output end of the controller 9, the uniform irrigation mechanism 4 further comprises a reciprocating driving motor 48, the reciprocating driving motor 48 is fixedly connected with the rear side of the upper fixed block 463, the output shaft of the reciprocating driving motor 48 is fixedly connected with the rear side of the inner rotating cylinder 465, the input end of the reciprocating driving motor 48 is electrically connected with the output end of the controller 9, during which the controller 9 can be adjusted and controlled, the two agitating motors 47 and the reciprocating driving motor 48 are respectively operated, the output shafts of the two agitating motors 47 are rotated, and then the two spiral blades 44 are rotated through the rotating rods 43, it is worth noting that the directions of rotation of the two agitating motors 47 are opposite, so the directions of rotation of the two spiral blades 44 are also opposite, at the same time, the output shaft of the reciprocating driving motor 48 also rotates at a constant speed, and then the inner rotating cylinder 465 is rotated,At the same time the third sliding groove and the slide column 468 real-time sliding relationship, when the inner rotating drum 465 rotates, will drive the slider 467 reciprocating movement in the first sliding groove 466 inside, at the same time the slide column 468 and the second sliding groove 469 sliding relationship, in turn drive the outer rotating drum 464 reciprocating rotation angle, when the outer rotating drum 464 clockwise specified angle rotation, will drive the gear 461 clockwise specified angle rotation, in turn drive the right side of the rack plate 45 to the left side of the specified position, the left side of the rack plate 45 to the left side of the specified position, in turn drive the right side of the spiral blade 44 in the pouring bucket 3 to the left side of the specified position, in turn drive the left side of the spiral blade 44 in the pouring bucket 3 to the left side of the specified position, when the gear 461 counterclockwise specified angle rotation, in turn drive the right side of the rack plate 45 to the right side of the specified position, the left side of the rack plate 45 to the right side of the specified position, in turn drive the right side of the spiral blade 44 in the pouring bucket 3 to the right side of the specified position, in turn drive the left side of the spiral blade 44 in the pouring bucket 3 to the right side of the specified position, in each period of time, two spiral blades 44 are always in the rotating state, and constantly extruding each other pouring bucket 3 in the foaming magnesium oxychloride cement, then with the pouring bucket 3 evenly discharged, so that the steel core material inside to receive uniform pouring operation, when the steel core material in conveying is completed, need to close the electromagnetic valve and valve 5, stop pouring operation.

[0030] The working principle of the foamed magnesium oxychloride mixed core material pouring machine is as follows: when the pouring machine needs to be used, the storage cylinder 8 is poured into a quantitative foamed magnesium oxychloride cement, then the controller 9 is adjusted and controlled, the electromagnetic valve and the valve 5 are opened, at this time, the foamed magnesium oxychloride cement in the storage cylinder 8 enters the inside of the pouring bucket 3 along with the pouring pipe 6, and is discharged along with the pouring bucket 3, it is worth noting that the foamed magnesium oxychloride cement just discharged along with the pouring bucket 3 is not uniform, only continuously fills the inside of the pouring bucket 3, until the inside of the pouring bucket 3 is filled with cement, the electromagnetic valve and the valve 5 can be closed, at this time, the controller 9 can be adjusted and controlled, the conveyor 7 is operated, the steel core material is conveyed by the conveyor 7, when the steel core material moves to below the pouring bucket 3, the electromagnetic valve and the valve 5 can be opened, the foamed magnesium oxychloride cement is discharged, during this period, the controller 9 can be adjusted and controlled, the two stirring motors 47 and the reciprocating driving motor 48 are operated respectively, the output shafts of the two stirring motors 47 rotate, and then the two spiral blades 44 are driven to rotate through the rotating rods 43, it is worth noting that the directions of rotation of the two stirring motors 47 are opposite, so the directions of rotation of the two spiral blades 44 are also opposite, at the same time, the output shaft of the reciprocating driving motor 48 also rotates at a uniform speed, and then drives the inner rotating cylinder 465 to rotate, at the same time, the third sliding groove and the sliding column 468 keep a sliding relationship in real time, when the inner rotating cylinder 465 rotates, the sliding block 467 moves reciprocatingly in the inside of the first sliding groove 466, at the same time, the sliding column 468 and the second sliding groove 469 keep a sliding relationship, and then drive the outer rotating cylinder 464 to reciprocatingly rotate at an angle, when the outer rotating cylinder 464 rotates clockwise at a specified angle, the gear 461 rotates clockwise at a specified angle, and then drives the right rack plate 45 to move to a specified position on the left lower side, the left rack plate 45 moves to a specified position on the left upper side, and then drives the right spiral blade 44 to move to a specified position on the left lower side in the pouring bucket 3, and then drives the left spiral blade 44 to move to a specified position on the left upper side in the pouring bucket 3, when the gear 461 rotates counterclockwise at a specified angle, the right rack plate 45 moves to a specified position on the right upper side, the left rack plate 45 moves to a specified position on the right lower side, and then drives the right spiral blade 44 to move to a specified position on the right upper side in the pouring bucket 3, and then drives the left spiral blade 44 to move to a specified position on the right lower side in the pouring bucket 3, during each period, the two spiral blades 44 are always in a rotating state, and continuously extrude the foamed magnesium oxychloride cement in the pouring bucket 3, and then are uniformly discharged along with the pouring bucket 3, so that the inside of the steel core material receives uniform pouring operation, when the conveying in the steel core material is completed, the electromagnetic valve and the valve 5 need to be closed, and the pouring operation is stopped.

[0031] It is worth noting that the controller 9 core chip disclosed in the above embodiment is selected as a PLC single-chip microcomputer, and the specific model is STM32, and the stirring motor 47, the reciprocating driving motor 48, the valve 5, the electromagnetic valve and the conveyor 7 can be freely configured according to the actual application scene, the stirring motor 47 is recommended to be selected as a 57CM22D type motor, the reciprocating driving motor 48 is recommended to be selected as a 42BT034P2 type stepping motor, the valve 5 is recommended to be selected as a D942X large-diameter electric double eccentric butterfly valve, the electromagnetic valve is recommended to be selected as a Q941 F-16P type small electric ball valve, and the conveyor 7 is recommended to be selected as a TD75 type belt conveyor, and the controller 9 controls the stirring motor 47, the reciprocating driving motor 48, the valve 5, the electromagnetic valve and the conveyor 7 to work, which all adopt the method commonly used in the prior art.

[0032] The above only describes the embodiments of the present application, and does not limit the patent range of the present application, and any equivalent structure or equivalent process transformation obtained by using the content of the present application specification and drawings, or direct or indirect application in other related technical fields, are also included in the patent protection range of the present application.

Claims

1. A foamed magnesium oxychloride composite core material injection machine, characterized in that: It includes a workbench (1) and a uniform pouring mechanism (4); The workbench (1) is provided with a gantry on the upper surface of the rear side, and the middle part of the gantry is provided with a mounting frame (2), and the lower side of the mounting frame (2) is fixedly connected with a pouring bucket (3); The uniform pouring mechanism (4) includes an oblique moving frame (41), a fixed cylinder (42), a rotating rod (43), a spiral blade (44), a rack plate (45) and an extension rod (49), the left upper side and the right upper side of the pouring bucket (3) are respectively fixedly connected with the fixed cylinder (42), the upper surface of the rear side of the two fixed cylinders (42) is respectively fixedly connected with the extension rod (49), the extension end of the two extension rods (49) is respectively fixedly connected with the oblique moving frame (41), the inner arc surface of the two fixed cylinders (42) is respectively slidably connected with the rotating rod (43), the outer arc surface of the lower side of the two rotating rods (43) is respectively provided with the spiral blade (44), the upper side of the two rotating rods (43) is respectively rotatably connected with the lower surface of the longitudinally adjacent oblique moving frame (41), and the rear side of the two oblique moving frames (41) is respectively provided with the rack plate (45).

2. The foamed magnesia oxychloride core material filling machine according to claim 1, characterized in that: The right side of the workbench (1) is provided with a controller (9), and the input end of the controller (9) is electrically connected with an external power supply.

3. The foamed magnesia oxychloride core material filling machine according to claim 2, characterized in that: The uniform pouring mechanism (4) further includes a reciprocating driving assembly (46), the reciprocating driving assembly (46) includes a gear (461), a lower fixed block (462), an upper fixed block (463), an outer rotating cylinder (464), an inner rotating cylinder (465), a first sliding groove (466), a sliding block (467), a sliding column (468) and a second sliding groove (469), the upper fixed block (463) is fixedly connected to the rear side of the mounting frame (2), the lower side of the upper fixed block (463) is fixedly connected with the lower fixed block (462), the outer rotating cylinder (464) is rotatably connected between the lower fixed block (462) and the upper fixed block (463), the rear side of the outer rotating cylinder (464) is fixedly connected with the gear (461), the two rack plates (45) are meshingly connected with the gear (461), the inner rotating cylinder (465) is rotatably connected in the inner rotating cylinder (464), the inner arc surface of the lower side of the lower fixed block (462) is provided with the first sliding groove (466), the inside of the first sliding groove (466) is slidably connected with the sliding block (467), the upper side of the sliding block (467) is fixedly connected with the sliding column (468), the outer arc surface of the outer rotating cylinder (464) is provided with the second sliding groove (469), the outer arc surface of the inner rotating cylinder (465) is provided with a third sliding groove, the outer arc surface of the sliding column (468) is slidably connected with the inside of the second sliding groove (469), and the outer arc surface of the sliding column (468) is slidably connected with the inside of the third sliding groove.

4. The foamed magnesia core material injection machine according to claim 2, characterized by: The uniform pouring mechanism (4) further includes an agitating motor (47), the agitating motor (47) is respectively fixedly connected to the upper surface of the two oblique moving frames (41), the output shafts of the two agitating motors (47) are fixedly connected with the upper ends of the vertically adjacent rotating rods (43), and the input ends of the two agitating motors (47) are respectively electrically connected with the output ends of the controller (9).

5. The foamed magnesia core material injection machine according to claim 3, characterized by: The uniform irrigation mechanism (4) further comprises a reciprocating drive motor (48) fixedly connected to the rear side of the upper fixed block (463), the output shaft of the reciprocating drive motor (48) is fixedly connected to the rear side of the inner rotating cylinder (465), and the input end of the reciprocating drive motor (48) is electrically connected to the output end of the controller (9).

6. The foamed magnesia core material injection machine according to claim 2, characterized by: The lower side of the irrigation bucket (3) is connected in series with a valve (5), the upper side of the irrigation bucket (3) is provided with an irrigation pipe (6), the upper side of the gantry is provided with a storage cylinder (8), the upper side of the irrigation pipe (6) is connected in communication with the inside of the storage cylinder (8), the upper side of the irrigation pipe (6) is connected in series with a solenoid valve, and the input ends of the solenoid valve and the valve (5) are electrically connected to the output end of the controller (9).

7. The foamed magnesia oxychloride core material filling machine according to claim 2, characterized in that: The upper side of the workbench (1) is provided with a conveyor (7), and the input end of the conveyor (7) is electrically connected to the output end of the controller (9).

Citation Information

Patent Citations

  • Discharging mechanism of cement filling machine

    CN219522550U