Concrete ice adding device
By designing a concrete icing device that includes an integrated box, water pump, nozzle and other combined mechanisms, the problem of excessively high water tank temperature in the tank truck under high summer temperatures was solved, and efficient cooling and uniform mixing of the concrete in the tank truck were achieved, thereby improving the pouring efficiency and project quality.
Patent Information
- Application Number
- CN202422923940.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-29
- Publication Date
- 2025-10-14
- Estimated Expiration
- 2034-11-29
AI Technical Summary
In the summer when the temperature is high, the water in the tanker of the existing concrete ice adding device is too high, and the water used for cooling affects the normal use of the tanker.
A concrete icing device is designed, which includes a feed hopper and a combined mechanism. The combined mechanism contains an integrated box, a threaded water inlet, a water outlet, a water pump, a nozzle, a motor, blades, a battery pack and a cooling rod. Through the coordination of cooling, stirring and spraying functions, the liquid is evenly cooled and stirred, ensuring the quality of concrete in the tank truck.
It improves the concrete pouring efficiency and project quality, ensures the quality of concrete in the tank when the tank truck is waiting or pouring, and avoids the impact of high water tank temperature on equipment use.
Smart Images

Figure CN223431804U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to concrete transportation related technical field especially relates to a concrete ice adding device. BACKGROUND
[0002] Concrete transportation refers to the process of transporting the mixed concrete from the mixing place to the construction site, aims to ensure that the concrete maintains uniformity and working performance within the specified time, the transportation mode includes the mixer truck, pumping, conveying belt etc.
[0003] But the existing concrete ice adding device, after being transported to the site, mostly uses the water in the water tank of the tank truck for cooling and moistening, the temperature of the water in the water tank is higher in the high temperature of summer, and the water in the water tank of the tank truck is mostly used for washing the tank truck after pouring, if it is used too much in cooling, it will affect the normal use of the concrete tank truck. UTILITY MODEL CONTENTS
[0004] The utility model discloses a concrete ice adding device, to solve the existing concrete ice adding device in the background art, after being transported to the site, mostly uses the water in the water tank of the tank truck for cooling and moistening, the temperature of the water in the water tank is higher in the high temperature of summer, and the water in the water tank of the tank truck is mostly used for washing the tank truck after pouring, if it is used too much in cooling, it will affect the normal use of the concrete tank truck.
[0005] To realize above-mentioned purpose, the utility model provides the following technical scheme: a concrete ice adding device, including feed bin and combination mechanism, the surface one side of feed bin is provided with combination mechanism;
[0006] The combination mechanism comprises an integrated box, a threaded water inlet, a water outlet, a first mounting groove, a second mounting groove, a protective cover, a connecting pipe, a water pump, a rotating rod, a mounting frame, a spray head, a motor, a blade, a battery pack and a cooling rod, the surface of the feeding hopper is fixedly connected with the integrated box, one side of the surface of the integrated box is provided with the threaded water inlet, one side of the surface of the integrated box is provided with the water outlet, one side of the integrated box is provided with the first mounting groove, one side of the integrated box is provided with the second mounting groove, the threaded water inlet is threadedly connected with the protective cover, one side of the water outlet is connected with the connecting pipe, the other side of the water outlet is connected with the water pump, the first mounting groove is embedded with the rotating rod, the second mounting groove is mounted with the mounting frame, the other side of the water pump is connected with the spray head, one side of the rotating rod is connected with the motor, the surface of the rotating rod is mounted with the blade, one side of the mounting frame is mounted with the battery pack, and the other side of the mounting frame is mounted with the cooling rod.
[0007] Preferably, the threaded water inlet is provided with four groups, and the threaded water inlets are equally spaced on the integrated box.
[0008] Preferably, the connecting pipe is arranged in the integrated box, and one side of the connecting pipe is attached to the integrated box.
[0009] Preferably, the spray head is provided with two groups, and the two groups of spray heads are opposite to the position of the feeding hopper.
[0010] Preferably, the water pump is provided with two groups, and the main body of the water pump is mounted on the integrated box.
[0011] Preferably, the main body of the motor is mounted on the integrated box, and the rotating rod and the blade constitute a mutual rotating structure through the motor and the first mounting groove.
[0012] Preferably, the blade is provided with three groups on a single rotating rod, and the blades are equally spaced on the rotating rod.
[0013] Preferably, the battery pack is respectively connected with the water pump and the motor wire, and the battery pack is electrically connected with the cooling rod.
[0014] Preferably, the cooling rod is provided with eight groups on the mounting frame, and the cooling rods are equally spaced on the mounting frame.
[0015] Preferably, the mounting frame is provided with two groups, and the positions of the two groups of mounting frames are opposite to each other.
[0016] Compared with the prior art, the concrete ice adding device has the beneficial effects that: through the arrangement of the combination mechanism, the combination mechanism adds a second water tank at the position of the feeding hopper, and through the cooperation of a series of parts such as cooling, stirring and spraying, the functions of the liquid are completed, thereby guaranteeing the quality of the concrete in the tank body when the tank truck is waiting for pouring or pouring, and improving the pouring efficiency of the concrete pouring and guaranteeing the engineering quality of the pouring area. BRIEF DESCRIPTION OF DRAWINGS
[0017] Figure 1 It is a side view appearance structure schematic diagram of the utility model;
[0018] Figure 2 It is a combination mechanism expansion structure schematic diagram of the utility model;
[0019] Figure 3 It is a combination mechanism partial cutaway exploded structure schematic diagram of the utility model;
[0020] Figure 4 It is a combination mechanism partial cutaway exploded structure schematic diagram of the utility model; Figure 3 It is an enlarged structure schematic diagram of A in the utility model;
[0021] Figure 5 It is an enlarged structure schematic diagram of B in the utility model. Figure 3
[0022] In the drawing: 1, feeding hopper; 2, combination mechanism; 201, integrated box; 202, threaded water inlet; 203, water outlet; 204, first mounting groove; 205, second mounting groove; 206, protective cover; 207, connecting pipe; 208, water pump; 209, rotating rod; 210, mounting frame; 211, spray head; 212, motor; 213, blade; 214, battery pack; 215, cooling rod. DETAILED DESCRIPTION
[0023] 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 protection scope of the utility model.
[0024] Please refer to Figures 1-5 The utility model provides a technical scheme: a concrete ice adding device, which comprises a feeding hopper 1 and a combination mechanism 2, and the surface side of the feeding hopper 1 is provided with the combination mechanism 2;
[0025] The combination mechanism 2 comprises an integrated box 201, a threaded water inlet 202, a water outlet 203, a first mounting groove 204, a second mounting groove 205, a protective cover 206, a connecting pipe 207, a water pump 208, a rotating rod 209, a mounting frame 210, a spray head 211, a motor 212, a blade 213, a battery pack 214 and a cooling rod 215, the surface of the feeding hopper 1 is fixedly connected with the integrated box 201, one side of the surface of the integrated box 201 is provided with the threaded water inlet 202, one side of the surface of the integrated box 201 is provided with the water outlet 203, one side of the integrated box 201 is provided with the first mounting groove 204, one side of the integrated box 201 is provided with the second mounting groove 205, the threaded water inlet 202 is threadedly connected with the protective cover 206, one side of the water outlet 203 is connected with the connecting pipe 207, the other side of the water outlet 203 is connected with the water pump 208, the first mounting groove 204 is embedded with the rotating rod 209, the second mounting groove 205 is mounted with the mounting frame 210, the other side of the water pump 208 is connected with the spray head 211, one side of the rotating rod 209 is connected with the motor 212, the surface of the rotating rod 209 is mounted with the blade 213, one side of the mounting frame 210 is mounted with the battery pack 214, the other side of the mounting frame 210 is mounted with the cooling rod 215, through the arrangement of the integrated box 201, the threaded water inlet 202, the water outlet 203, the first mounting groove 204, the second mounting groove 205, the protective cover 206, the connecting pipe 207, the water pump 208, the rotating rod 209, the mounting frame 210, the spray head 211, the motor 212, the blade 213, the battery pack 214 and the cooling rod 215, the integrated box 201 is used for storing liquid, there are four groups of threaded water inlets 202, external liquid is connected through pipelines, so that the liquid can uniformly enter the integrated box 201, the protective cover 206 is used for closing the threaded interface to avoid leakage, then eight groups of cooling rods 215 evenly distributed on two groups of mounting frames 210 absorb heat in the integrated box 201 to achieve the liquid cooling effect, at the same time, the motor 212 is started to drive the rotating rod 209 to rotate at high speed, the blade 213 evenly distributed on the rotating rod 209 is used for stirring operation, so as to ensure the uniform cooling of the liquid, after the cooling is completed, finally the liquid flows out of the water outlet 203 in the integrated box 201, is transported to the water pump 208 through the connecting pipe 207, two groups of water pumps 208 pressurize the liquid, and the liquid is uniformly sprayed on the liquid in the feeding hopper 1 through the spray head 211 to achieve the spraying effect, the positions of the two groups of spray heads 211 are opposite to the feeding hopper 1, so that the coverage is ensured to be comprehensive, and then the cooling process of the whole concrete is completed.
[0026] Further, the threaded water inlets 202 are provided in four groups, and the threaded water inlets 202 are distributed at equal intervals on the integrated box 201. Through the arrangement of the threaded water inlets 202, the main function of the threaded water inlets 202 is to introduce external liquid into the integrated box 201, to provide necessary liquid support for subsequent wine spraying, cooling and liquid treatment. At the same time, the threaded design enables the water inlet to be stably screwed with the external pipeline, avoiding liquid leakage at the connection, and facilitating disassembly, assembly and maintenance.
[0027] Further, the connecting pipe 207 is arranged inside the integrated box 201, and one side of the connecting pipe 207 is attached to the integrated box 201. Through the arrangement of the connecting pipe 207, the connecting pipe 207 serves as a key channel between the water outlet 203 and the water pump 208, smoothly conveying the liquid flowing out of the integrated box 201 to the water pump 208, achieving liquid pressurization and subsequent treatment. At the same time, the connecting pipe 207 is tightly attached to the inside of the integrated box 201 and firmly connected with the water outlet 203, ensuring that the path of the liquid flowing out of the integrated box 201 into the water pump 208 is unobstructed, and playing the role of a liquid path system connecting bridge.
[0028] Further, the spray heads 211 are provided in two groups, and the two groups of spray heads 211 are opposite to the position of the feed hopper 1. Through the arrangement of the spray heads 211, the positions of the two groups of spray heads 211 are opposite to the position of the feed hopper 1, ensuring that the liquid can cover all the concrete areas in the feed hopper 1, avoiding poor treatment effect caused by uneven spraying. At the same time, through cooperation with the water pump 208, the spray heads 211 can maintain a certain liquid flow rate, effectively avoiding clogging of the spray heads 211 caused by deposition of impurities in the liquid, and ensuring long-term stable operation of the equipment.
[0029] Further, the water pump 208 is provided in two groups, and the main body of the water pump 208 is installed on the integrated box 201. Through the arrangement of the water pump 208, the water pump 208 pressurizes the liquid introduced from the integrated box 201 to ensure that the liquid can be delivered to the spray heads 211 with sufficient pressure, thereby realizing efficient spraying and coverage. The water pump 208 provides power for the liquid to form a liquid circulation system, so that the liquid flows from the integrated box 201 to the spray heads 211 through the connecting pipe 207, ensuring the liquid circulation of the entire equipment.
[0030] Further, the main body of the motor 212 is installed on the integrated box 201, the rotating rod 209 and the blade 213 constitute a mutual rotating structure with the first mounting groove 204 through the motor 212, through the setting of the rotating rod 209 and the motor 212, the rotating rod 209 is connected with the motor 212, and the rotating power provided by the motor 212 is transmitted to the blade 213, so that the stirring function is realized, and the rotating rod 209 is a fixed component of the blade 213, three groups of blades 213 are installed on each rotating rod 209 at equal intervals, which provides stable support for the efficient operation of the blade 213, the rotating rod 209 serves as the core shaft of the stirring system, drives the blade 213 to rotate, mixes and overturns the liquid, and ensures uniform stirring, and the motor 212 serves as the power core of the whole stirring system, directly drives the rotating rod 209 to rotate, and provides continuous and stable power for high-speed stirring of the blade 213.
[0031] Further, the blade 213 is provided with three groups on a single rotating rod 209, and the blades 213 are distributed at equal intervals on the rotating rod 209, through the setting of the blade 213, the blade 213 is installed on the rotating rod 209 and driven to rotate at high speed by the motor 212, so as to stir the liquid in the feeding hopper 1, realize the full mixing and uniform distribution of the liquid, and the three groups of blades 213 are distributed at equal intervals on a single rotating rod 209, forming a multi-level stirring effect, improving the stirring and cooling efficiency, and accelerating the contact between the liquid and the liquid during the cooling process, enhancing the effect of the cooling rod 215 and the spray head 211, and shortening the processing time.
[0032] Further, the battery pack 214 is respectively connected with the water pump 208 and the motor 212 through wires, and the battery pack 214 is electrically connected with the cooling rod 215, through the setting of the battery pack 214, the battery pack 214 is connected with the water pump 208 and the motor 212 through wires, respectively, to provide stable electric energy for the two key components to ensure that the water pump 208 normally pressurizes and the motor 212 drives stirring, and the battery pack 214 is also electrically connected with the cooling rod 215 to provide energy for the cooling rod 215, so as to ensure that temperature control can be realized during the liquid treatment process, as a portable power supply, the battery pack 214 can enable the equipment to operate independently without external power supply, adapt to the working requirements in different environments, and improve the flexibility of the equipment.
[0033] Further, the cooling rod 215 is provided with eight groups on the mounting frame 210, and the cooling rods 215 are distributed at equal intervals on the mounting frame 210, through the setting of the cooling rod 215, the cooling rod 215 is provided with eight groups on the mounting frame 210 and is distributed at equal intervals, which ensures that the cooling effect covers the whole equipment area and realizes uniform temperature regulation effect, and through the electrical connection with the battery pack 214, the cooling rod 215 can obtain sufficient power support, quickly absorb and dissipate the heat generated during the equipment operation, thereby significantly improving the cooling efficiency.
[0034] Further, the mounting frame 210 is provided with two groups, the positions of the two groups of mounting frames 210 are opposite to each other, through the arrangement of the mounting frame 210, the mounting frame 210 provides a stable mounting position for the cooling rod 215 and the battery pack 214, prevents the parts from loosening or displacement due to vibration or external force during equipment operation, at the same time, the mounting frame 210 reduces the vibration and displacement risk during equipment operation through reasonable structural design, provides a stable environment for the efficient operation of the water pump 208, the motor 212 and other components.
[0035] Working principle: the integrated box 201 is used for storing liquid, the threaded water inlet 202 is provided with four groups, the external liquid is connected through a pipeline to ensure that the liquid is uniformly entered into the integrated box 201, the protective cover 206 is used for closing the threaded interface to avoid leakage, then the eight groups of cooling rods 215 uniformly distributed on the two groups of mounting frames 210 absorb the heat in the integrated box 201 to realize the liquid cooling effect, at the same time, the motor 212 is started to drive the rotating rod 209 to rotate at high speed, the blades 213 uniformly distributed on the rotating rod 209 are used for stirring operation, thereby ensuring the uniform cooling of the liquid, after the cooling is completed, finally the liquid flows out from the water outlet 203 in the integrated box 201 and is transported to the water pump 208 through the connecting pipe 207, the two groups of water pumps 208 pressurize the liquid and uniformly spray the liquid in the feeding hopper 1 through the spray heads 211 to achieve the spraying effect, the positions of the two groups of spray heads 211 are opposite to the feeding hopper 1 to ensure comprehensive coverage, thereby completing the entire cooling process of the concrete.
[0036] Although the embodiments of the utility model have been shown and described, it can be understood by those skilled in the art that various changes, modifications, replacements and variations can be made to these embodiments without departing from the principles and spirits of the utility model, the scope of the utility model is defined by the appended claims and their equivalents.
Claims
1. A concrete ice-adding device, comprising a feed hopper (1) and a combination mechanism (2), characterized in that: A combination mechanism (2) is provided on one side of the surface of the feed hopper (1); The combined mechanism (2) comprises an integrated box (201), a threaded water inlet (202), a water outlet (203), a first mounting groove (204), a second mounting groove (205), a protective cover (206), a connecting pipe (207), a water pump (208), a rotating rod (209), a mounting frame (210), a nozzle (211), a motor (212), blades (213), a battery pack (214) and a cooling rod (215). The surface of the feed hopper (1) is fixedly connected to the integrated box (201), a threaded water inlet (202) is provided on one side of the surface of the integrated box (201), a water outlet (203) is provided on one side of the surface of the integrated box (201), a first mounting groove (204) is provided on one side of the integrated box (201), and a first portion of the integrated box (201) is provided on one side of the surface of the integrated box (201). A second mounting groove (205) is provided on the side, the internal thread of the threaded water inlet (202) is connected to a protective cover (206), one side of the water outlet (203) is connected to a connecting pipe (207), the other side of the water outlet (203) is connected to a water pump (208), a rotating rod (209) is embedded in the interior of the first mounting groove (204), a mounting frame (210) is installed in the interior of the second mounting groove (205), the other side of the water pump (208) is connected to a nozzle (211), one side of the rotating rod (209) is connected to a motor (212), a surface of the rotating rod (209) is installed with a blade (213), one side of the mounting frame (210) is installed with a battery pack (214), and the other side of the mounting frame (210) is installed with a cooling rod (215).
2. The concrete icing device according to claim 1, characterized in that: Four groups of threaded water inlets (202) are provided, and the threaded water inlets (202) are distributed at equal intervals on the integrated box (201).
3. The concrete icing device according to claim 1, characterized in that: The connecting tube (207) is arranged inside the integrated box (201), and one side of the connecting tube (207) is in contact with the integrated box (201).
4. The concrete icing device according to claim 1, characterized in that: Two groups of the nozzles (211) are provided, and the positions of the two groups of nozzles (211) and the feed hopper (1) are aligned with each other.
5. The concrete icing device according to claim 1, characterized in that: Two groups of water pumps (208) are provided, and the main bodies of the water pumps (208) are mounted on the integrated box (201).
6. The concrete icing device according to claim 1, characterized in that: The main body of the motor (212) is mounted on the integrated box (201), and the rotating rod (209) and the blade (213) form a mutually rotating structure through the motor (212) and the first mounting slot (204).
7. The concrete icing device according to claim 1, characterized in that: Three groups of blades (213) are provided on a single group of rotating rods (209), and the blades (213) are distributed at equal intervals on the rotating rod (209).
8. The concrete icing device according to claim 1, characterized in that: The battery pack (214) is respectively connected to the water pump (208) and the motor (212) via electric wires, and the battery pack (214) is electrically connected to the cooling rod (215).
9. The concrete icing device according to claim 1, characterized in that: Eight groups of cooling rods (215) are arranged on the mounting frame (210), and the cooling rods (215) are distributed at equal intervals on the mounting frame (210).
10. The concrete icing device according to claim 1, characterized in that: Two groups of the mounting frames (210) are provided, and the positions of the two groups of the mounting frames (210) are aligned with each other.