Grouting device for coal mine high polymer material
By designing an easily separable grouting shell structure and temperature control mechanism, the problem of difficult cleaning of existing grouting devices has been solved, achieving efficient cleaning and extended service life of the grouting pipe, and reducing costs.
Patent Information
- Application Number
- CN202520846635.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-30
- Publication Date
- 2026-02-27
- Estimated Expiration
- 2035-04-30
AI Technical Summary
Existing grouting devices for polymer materials in coal mines are very troublesome to clean when cleaning the grouting pipes. Residual grout affects subsequent grouting work and shortens the service life of the grouting pipes, increasing costs.
A grouting device was designed, comprising a support frame, a grout storage shell, a first grouting shell, a second grouting shell, a feeding rod, gears, a motor, a rotating rod, and a temperature control mechanism. The grouting shell is separated by pulling the rod, which facilitates cleaning. The temperature of the grout storage shell is regulated by a semiconductor cooler and a fan, which improves cleaning efficiency and device adaptability.
This technology enables convenient cleaning of grouting pipes, extends their service life, reduces cleaning difficulty and cost, and improves grouting effect and the practicality of the device.
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Figure CN223952649U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the related technical field of coal mine construction especially relates to a coal mine high molecular material is with grouting device. BACKGROUND
[0002] In the process of coal mine construction, in order to guarantee the safety and stability of coal mining engineering, grouting treatment needs to be carried out between the shaft lining inside and outside the mine, and a grouting device needs to be used when grouting, which can inject high molecular material into the coal mine, improve the safety of coal mine construction, therefore, a coal mine high molecular material grouting device is particularly needed.
[0003] However, most of the existing coal mine high molecular material grouting devices are very troublesome when cleaning the grouting pipe, the residual slurry in the grouting pipe will affect the subsequent grouting work, also shorten the service life of the grouting pipe, and increase the cost of grouting. UTILITY MODEL CONTENTS
[0004] The utility model discloses a coal mine high molecular material grouting device to solve the problem of the existing coal mine high molecular material grouting device in the above background art, most of the grouting devices are very troublesome when cleaning the grouting pipe, the residual slurry in the grouting pipe will affect the subsequent grouting work, also shorten the service life of the grouting pipe, and increase the cost of grouting.
[0005] To achieve the above object, the utility model provides the following technical scheme: a coal mine high molecular material grouting device, including mobile seat, the one end of mobile seat is provided with grouting mechanism, the one end of mobile seat is provided with temperature control mechanism,
[0006] The grouting mechanism includes a support frame, a slurry storage shell, a first grouting shell, a second grouting shell, a feeding rod, a first gear, a motor, a rotating rod, a second gear, a first connecting block, a containing groove, a spring, a clamping block, a pull rod, a second connecting block, a fixed block and a clamping groove, the side surface of mobile seat is fixedly installed with support frame, the inner wall of support frame is fixedly installed with slurry storage shell, the side surface of mobile seat is fixedly installed with first grouting shell, one side of first grouting shell is connected with second grouting shell, the inside of first grouting shell is installed with feeding rod, the outer wall of feeding rod is fixedly installed with first gear, the side surface of mobile seat is fixedly installed with motor, the output end of motor is connected with rotating rod, one end of rotating rod is fixedly installed with second gear.
[0007] Preferably, one side surface of the first grouting shell is fixedly provided with a first connecting block, an accommodating groove is formed in an inner wall of the first connecting block, a spring is arranged in the accommodating groove, one end of the spring is fixedly connected with a clamping block, and a pull rod is fixedly arranged on one side surface of the clamping block.
[0008] Preferably, the two ends of the feeding rod are connected with the first grouting shell through bearings, and the first gear and the first grouting shell form a rotating structure through the feeding rod.
[0009] Preferably, the first gear and the second gear are in meshing connection, and the rotating rod and the second gear form a rotating structure.
[0010] Preferably, the two ends of the spring are fixedly connected with the first connecting block and the clamping block respectively, and the clamping block and the first connecting block form an extension structure through the spring.
[0011] Preferably, the temperature control mechanism comprises a semiconductor refrigerator, a cooling fan, a heat dissipation fan, a heating shell, a heating pipe and a heating fan, one side surface of the moving seat is fixedly provided with the semiconductor refrigerator, the cooling fan is arranged on one side surface of the semiconductor refrigerator, the heat dissipation fan is arranged on the other side surface of the semiconductor refrigerator, the heating shell is fixedly arranged on one side surface of the moving seat, the heating pipe is fixedly arranged in the heating shell, and the heating fan is fixedly arranged on one side surface of the heating shell.
[0012] Preferably, the cooling fan and the heat dissipation fan are arranged on the two side surfaces of the semiconductor refrigerator respectively, and the cooling fan is arranged on the side surface facing the grout storage shell.
[0013] Compared with the prior art, the coal mine polymer material grouting device has the advantages that when the first grouting shell, the second grouting shell and the feeding rod need to be cleaned after grouting, the pull rod is pulled first, the clamping block is pulled into the accommodating groove, the clamping block is away from the clamping groove at this time, the fixed block can be away from the first connecting block, and the first grouting shell and the second grouting shell can be separated, so that the first grouting shell, the second grouting shell and the feeding rod can be conveniently cleaned after being separated, the cleaning work is more convenient and the cleaning effect is better, and the service life of the first grouting shell and the second grouting shell is prolonged. BRIEF DESCRIPTION OF DRAWINGS
[0014] Figure 1 It is a side view of the appearance structure of the utility model;
[0015] Figure 2 For the utility model rotating rod and second gear mutually assist structure schematic view;
[0016] Figure 3 For the utility model second connecting block and fixed block mutually assist structure schematic view;
[0017] Figure 4 For the utility model semiconductor refrigerator and cooling fan mutually assist structure schematic view.
[0018] In the figure: 1, mobile seat, 2, grouting mechanism, 201, support frame, 202, grout storage shell, 203, first grouting shell, 204, second grouting shell, 205, feeding rod, 206, first gear, 207, motor, 208, rotating rod, 209, second gear, 210, first connecting block, 211, containing groove, 212, spring, 213, clamping block, 214, pull rod, 215, second connecting block, 216, fixed block, 217, clamping groove, 3, temperature control mechanism, 301, semiconductor refrigerator, 302, cooling fan, 303, cooling fan, 304, heating shell, 305, heating pipe, 306, heating fan. DETAILED DESCRIPTION
[0019] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the utility model.
[0020] Please refer to Figures 1-4 The utility model provides a kind of technical scheme: a kind of grouting device for coal mine polymer material, including mobile seat 1, mobile seat 1 one end is provided with grouting mechanism 2, mobile seat 1 one end is provided with temperature control mechanism 3;
[0021] The grouting mechanism 2 comprises a support frame 201, a slurry storage shell 202, a first grouting shell 203, a second grouting shell 204, a feeding rod 205, a first gear 206, a motor 207, a rotating rod 208, a second gear 209, a first connecting block 210, a containing groove 211, a spring 212, a clamping block 213, a pull rod 214, a second connecting block 215, a fixed block 216 and a clamping groove 217, one side surface of the moving seat 1 is fixedly installed with the support frame 201, the inner wall of the support frame 201 is fixedly installed with the slurry storage shell 202, one side surface of the moving seat 1 is fixedly installed with the first grouting shell 203, the first grouting shell 203 is connected with the second grouting shell 204 on one side, the inside of the first grouting shell 203 is installed with the feeding rod 205, the outer wall of the feeding rod 205 is fixedly installed with the first gear 206, one side surface of the moving seat 1 is fixedly installed with the motor 207, the output end of the motor 207 is connected with the rotating rod 208, one end of the rotating rod 208 is fixedly installed with the second gear 209, through the setting of the support frame 201, the slurry storage shell 202, the first grouting shell 203, the second grouting shell 204, the feeding rod 205, the first gear 206, the motor 207, the rotating rod 208 and the second gear 209, when the grouting work is carried out, the slurry in the slurry storage shell 202 enters through the feeding port formed on the upper side surfaces of the first grouting shell 203 and the second grouting shell 204, at this time, the motor 207 is started, the motor 207 makes the rotating rod 208 rotate with the second gear 209, the first gear 206 meshing and connecting with the second gear 209 will rotate with the feeding rod 205, the rotating feeding rod 205 can transport the slurry to the end away from the first gear 206, finally the slurry is discharged through the discharging port formed on the lower side surfaces of the first grouting shell 203 and the second grouting shell 204, the grouting work is completed, the slurry is transported at a uniform speed and uniformly, and the grouting effect is better.
[0022] Further, one side surface of the first grouting shell 203 is fixedly installed with a first connecting block 210, an inner wall of the first connecting block 210 is provided with a containing groove 211, the containing groove 211 is internally installed with a spring 212, one end of the spring 212 is fixedly connected with a clamping block 213, one side surface of the clamping block 213 is fixedly installed with a pull rod 214, one side surface of the second grouting shell 204 is fixedly installed with a second connecting block 215, one side surface of the second connecting block 215 is fixedly installed with a fixing block 216, one side surface of the fixing block 216 is provided with a clamping groove 217, through the setting of the first connecting block 210, the containing groove 211, the spring 212, the clamping block 213, the pull rod 214, the second connecting block 215, the fixing block 216 and the clamping groove 217, when the first grouting shell 203, the second grouting shell 204 and the feeding rod 205 need to be cleaned after grouting is completed, the pull rod 214 is pulled first, the pull rod 214 pulls the clamping block 213 into the containing groove 211, at this time the clamping block 213 leaves the clamping groove 217, the fixing block 216 can leave the first connecting block 210, and the first grouting shell 203 and the second grouting shell 204 can be separated, after being separated, the first grouting shell 203, the second grouting shell 204 and the feeding rod 205 are convenient to clean, the cleaning work is more convenient and the cleaning effect is better, and the service life of the first grouting shell 203 and the second grouting shell 204 is also prolonged, after being cleaned, the fixing block 216 is placed into the first connecting block 210, when the fixing block 216 completely enters the first connecting block 210, the clamping block 213 is abutted in the clamping groove 217 under the action of the spring 212, the fixing block 216 is fixed in the first connecting block 210, and the first grouting shell 203 and the second grouting shell 204 are also fixedly connected together, and the operation is simple.
[0023] Further, both ends of the feeding rod 205 are connected with the first grouting shell 203 through bearings, the first gear 206 and the first grouting shell 203 constitute a rotating structure through the feeding rod 205, through the setting of the feeding rod 205, the feeding rod 205 can automatically transport the slurry when rotating.
[0024] Further, the first gear 206 and the second gear 209 are in meshing connection, the rotating rod 208 and the second gear 209 constitute a rotating structure, through the setting of the first gear 206 and the second gear 209, when the second gear 209 rotates, the first gear 206 meshing connected with the second gear 209 will rotate with the feeding rod 205, so as to realize the slurry conveying work.
[0025] Further, both ends of the spring 212 are fixedly connected with the first connecting block 210 and the clamping block 213 respectively, the clamping block 213 and the first connecting block 210 constitute a telescopic structure through the spring 212, through the setting of the spring 212, the thrust of the spring 212 can abut the clamping block 213 in the clamping groove 217, so that the fixing block 216 is fixed in the first connecting block 210.
[0026] Further, the temperature control mechanism 3 comprises a semiconductor refrigerator 301, a cooling fan 302, a heat dissipation fan 303, a heating shell 304, a heating pipe 305 and a heating fan 306, the semiconductor refrigerator 301 is fixedly installed on one side surface of the mobile base 1, the cooling fan 302 is installed on one side surface of the semiconductor refrigerator 301, the heat dissipation fan 303 is installed on the other side surface of the semiconductor refrigerator 301, the heating shell 304 is fixedly installed on one side surface of the mobile base 1, the heating pipe 305 is fixedly installed in the heating shell 304, and the heating fan 306 is fixedly installed on one side surface of the heating shell 304, through the setting of the semiconductor refrigerator 301, the cooling fan 302, the heat dissipation fan 303, the heating shell 304, the heating pipe 305 and the heating fan 306, when the ambient temperature of the slurry storage shell 202 is high, the semiconductor refrigerator 301 and the cooling fan 302 are started, the semiconductor refrigerator 301 generates cold air and blows into the cavity in the slurry storage shell 202 through the cooling fan 302, and the slurry storage shell 202 is cooled, when the ambient temperature of the slurry storage shell 202 is reduced, the heating pipe 305 is powered to heat, the heat generated by the heating pipe 305 is stored in the heating shell 304, and finally the heating fan 306 blows hot air into the cavity in the slurry storage shell 202, and the slurry storage shell 202 is heated, so that the slurry storage shell 202 can adapt to different environments, and the practicability is higher.
[0027] Further, the cooling fan 302 and the heat dissipation fan 303 are respectively installed on the two side surfaces of the semiconductor refrigerator 301, and the cooling fan 302 is installed on the side surface facing the slurry storage shell 202, through the setting of the heat dissipation fan 303, the heat dissipation fan 303 can blow away the heat generated by the semiconductor refrigerator 301, and the refrigeration effect of the semiconductor refrigerator 301 is improved.
[0028] Working principle: when carrying out the grouting work, the slurry in the slurry storage shell 202 enters through the feeding port on the upper surface of the first grouting shell 203 and the second grouting shell 204, at this time, the motor 207 is started, the motor 207 makes the rotating rod 208 rotate with the second gear 209, the first gear 206 connected with the second gear 209 will rotate with the feeding rod 205, the rotating feeding rod 205 can transport the slurry to the end away from the first gear 206, finally the slurry is discharged through the discharging port on the lower surface of the first grouting shell 203 and the second grouting shell 204, the grouting work is completed, when the first grouting shell 203, the second grouting shell 204 and the feeding rod 205 need to be cleaned after the grouting is completed, pull the pull rod 214 first, the pull rod 214 pulls the clamping block 213 into the containing groove 211, at this time, the clamping block 213 leaves the clamping groove 217, the fixing block 216 can leave the first connecting block 210, and the first grouting shell 203 and the second grouting shell 204 can be separated, after being separated, the first grouting shell 203, the second grouting shell 204 and the feeding rod 205 are cleaned, after being cleaned, the fixing block 216 is put into the first connecting block 210, when the fixing block 216 completely enters the first connecting block 210, the clamping block 213 is clamped in the clamping groove 217 under the action of the spring 212, the fixing block 216 is fixed in the first connecting, when the environment temperature of the slurry storage shell 202 is high, the semiconductor cooler 301 and the cooling fan 302 are started, the semiconductor cooler 301 generates cold air and blows into the cavity in the slurry storage shell 202 through the cooling fan 302, and the slurry storage shell 202 is cooled, when the environment temperature of the slurry storage shell 202 is reduced, the heating pipe 305 is powered to heat, the heat generated by the heating pipe 305 is stored in the heating shell 304, finally the hot air is blown into the cavity in the slurry storage shell 202 through the heating fan 306, and the slurry storage shell 202 is heated, secondly, the model of the semiconductor cooler 301 is TEC1-12703.
[0029] Although the embodiments of the present application have been shown and described, it should be understood by those skilled in the art that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the present application, and the scope of the present application is defined by the appended claims and their equivalents.
Claims
1. A grouting device for coal mine high polymer material, comprising a moving seat (1), characterized in that: One end of the mobile seat (1) is provided with a grouting mechanism (2), one end of the mobile seat (1) is provided with a temperature control mechanism (3); The grouting mechanism (2) comprises a support frame (201), a grouting storage shell (202), a first grouting shell (203), a second grouting shell (204), a feeding rod (205), a first gear (206), a motor (207), a rotating rod (208), a second gear (209), a first connecting block (210), a containing groove (211), a spring (212), a clamping block (213), a pull rod (214), a second connecting block (215), a fixed block (216) and a clamping groove (217), one side surface of the mobile seat (1) is fixedly installed with the support frame (201), the inner wall of the support frame (201) is fixedly installed with the grouting storage shell (202), one side surface of the mobile seat (1) is fixedly installed with the first grouting shell (203), the first grouting shell (203) is connected with the second grouting shell (204) on one side, and the first grouting shell (203) is internally installed with the feeding rod (205). The outer wall of the feeding rod (205) is fixedly installed with the first gear (206), one side surface of the mobile seat (1) is fixedly installed with the motor (207), the output end of the motor (207) is connected with the rotating rod (208), and one end of the rotating rod (208) is fixedly installed with the second gear (209).
2. The grouting device for coal mine polymer material of claim 1, wherein: The first connecting block (210) is fixedly installed on one side surface of the first grouting shell (203), the containing groove (211) is formed in the inner wall of the first connecting block (210), the spring (212) is installed in the containing groove (211), one end of the spring (212) is fixedly connected with the clamping block (213), the clamping block (213) is fixedly installed on one side surface of the pull rod (214), the second connecting block (215) is fixedly installed on one side surface of the second grouting shell (204), the fixed block (216) is fixedly installed on one side surface of the second connecting block (215), and the clamping groove (217) is formed in one side surface of the fixed block (216).
3. The grouting device for coal mine polymer material of claim 1, wherein: Both ends of the feeding rod (205) are connected with the first grouting shell (203) through bearings, and the first gear (206) and the first grouting shell (203) constitute a rotating structure through the feeding rod (205).
4. The grouting device for coal mine polymer material of claim 1, wherein: The first gear (206) and the second gear (209) are in meshing connection, and the rotating rod (208) and the second gear (209) constitute a rotating structure.
5. The coal mine polymer material grouting device according to claim 2, characterized in that: Both ends of the spring (212) are fixedly connected with the first connecting block (210) and the clamping block (213) respectively, and the clamping block (213) and the first connecting block (210) constitute a telescopic structure through the spring (212).
6. The grouting device for coal mine polymer material of claim 1, wherein: The temperature control mechanism (3) comprises a semiconductor refrigerator (301), a cooling fan (302), a heat dissipation fan (303), a heating shell (304), a heating pipe (305) and a heating fan (306), one side surface of the mobile base (1) is fixedly installed with the semiconductor refrigerator (301), one side surface of the semiconductor refrigerator (301) is installed with the cooling fan (302), the other side surface of the semiconductor refrigerator (301) is installed with the heat dissipation fan (303), one side surface of the mobile base (1) is fixedly installed with the heating shell (304), the inside of the heating shell (304) is fixedly installed with the heating pipe (305), one side surface of the heating shell (304) is fixedly installed with the heating fan (306).
7. The coal mine polymer material grouting device according to claim 6, characterized in that: The cooling fan (302) and the heat dissipation fan (303) are respectively installed on the two side surfaces of the semiconductor refrigerator (301), and the cooling fan (302) is installed on the side surface facing the slurry storage shell (202).