Talcum powder clinker cooling equipment
By setting up a feed mechanism and a cooling mechanism in the talc powder clinker cooling equipment, and using the refrigeration assembly and moving assembly to perform cooling treatment at multiple contact points, the problem of poor cooling in the middle position of the clinker is solved, and the cooling speed and efficiency are improved.
Patent Information
- Application Number
- CN202510589319.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-08
- Publication Date
- 2025-06-24
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
During the cooling process of talc clinker, the clinker in the intermediate position cannot contact the cooling part, resulting in a slow cooling speed.
A talcum powder clinker cooling device is designed. By setting up a feeding mechanism and a cooling mechanism, the refrigeration assembly and the moving assembly are used to perform cooling treatment on the inside and outside of the fixed cylinder to ensure that the clinker cools down at multiple contact points.
It effectively solves the problem of poor cooling in the middle of the clinker, improves the cooling speed and efficiency, and ensures uniform cooling of the clinker.
Smart Images

Figure CN120194529A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of clinker cooling, and specifically relates to a talcum powder clinker cooling device. Background Art
[0002] During the processing of talcum powder clinker, it is particularly important to cool the high-temperature talcum powder clinker. The main purpose is to reduce the temperature of the clinker, prevent the transformation of mineral phases, and improve the grindability of the clinker.
[0003] In the utility model with the authorization publication number of CN221802531U, a clinker cooler is disclosed. Through the setting of an air circulation component and a heat dissipation conductor, the output shaft of the motor drives the fan blade to rotate, sucking external air into the interior of the housing through the through holes, and then flowing through the air flow grooves. After loading the clinker in the box, the heat of the clinker will diffuse to the outer side wall of the box, and then flow into the air flow grooves through the first heat dissipation holes. The heat is taken away by the air flow in the air flow grooves, thereby dissipating heat from the outer side wall of the box. However, due to the large amount of clinker, during the cooling process, the clinker in the middle position still cannot contact the cooling parts, resulting in a slow cooling speed. Summary of the Invention
[0004] To overcome the problem that due to the large amount of clinker, the clinker in the middle position still cannot contact the cooling parts during the cooling process, resulting in a slow cooling speed, the present invention provides a talcum powder clinker cooling device, including a machine body, and a fixed cylinder is installed on the top of the machine body;
[0005] A feeding mechanism, the feeding mechanism is arranged inside the fixed cylinder, the feeding mechanism includes a fixed frame, a moving component is arranged inside the fixed frame, a refrigeration component is arranged outside the fixed frame, the refrigeration component is used to transfer heat to the moving component, and the moving component is used to transfer heat to the clinker in the middle of the fixed cylinder.
[0006] Preferably, an electric push rod is installed outside the machine body, a sliding door is installed outside the electric push rod, a cooling mechanism is arranged inside the machine body, and a chassis is installed at the bottom of the machine body.
[0007] Preferably, the feeding mechanism includes:
[0008] Through grooves, the through grooves are opened inside the fixed cylinder, there are four through grooves, the fixed frame is installed outside the fixed cylinder, and there are four fixed frames;
[0009] First triangular plates, the first triangular plates are installed inside the fixed cylinder, there are multiple first triangular plates, and they are evenly arranged.
[0010] Preferably, the refrigeration component includes:
[0011] The first connecting pipe, the first connecting pipe is installed inside the fixed frame, and a plurality of the first connecting pipes are provided;
[0012] The branch pipe, the branch pipe is installed outside the first connecting pipe, and two branch pipes are provided;
[0013] The fixed pipe, the fixed pipe is connected to the first connecting pipe, and the fixed pipe is installed inside the fixed frame.
[0014] Preferably, the moving component includes:
[0015] The telescopic pipe, the telescopic pipe is installed outside the fixed pipe, and a plurality of telescopic pipes are provided;
[0016] The horizontal pipe, the horizontal pipe is installed outside the telescopic pipe, and the horizontal pipe penetrates through the inside of the fixed frame;
[0017] The connecting ring, the connecting ring is installed outside the plurality of telescopic pipes, a first push rod is installed outside the connecting ring, and the first push rod is installed inside the fixed frame.
[0018] Preferably, the cooling mechanism includes:
[0019] The first fixed box, the first fixed box is installed outside the machine body, a second push rod is installed inside the first fixed box, and a square plate is installed outside the second push rod;
[0020] The channel, the channel is circular, and the channel is opened at the top of the machine body;
[0021] The second fixed box, the second fixed box is installed on the top of the machine body, a connecting box is installed inside the second fixed box, a second air outlet is opened at the bottom of the connecting box, and a scraping component is arranged inside the second fixed box.
[0022] Preferably, the cooling mechanism further includes:
[0023] The motor box, the motor box is installed outside the chassis, and a motor is arranged inside the motor box;
[0024] The circular groove, the circular groove is opened inside the machine body, and a lifting component is arranged at the top of the circular groove.
[0025] Preferably, the scraping component includes:
[0026] The second connecting pipe, the second connecting pipe is installed on the top of the second fixed box, and the second connecting pipe is connected to the connecting box;
[0027] The first air outlet, the first air outlet is opened at the bottom of the second fixed box, a plurality of first air outlets are opened and are evenly arranged;
[0028] Chute, the chute is opened at the bottom of the second fixed box, and two chutes are opened and symmetrically arranged;
[0029] Slider, the slider is slidably connected inside the chute, a first lifting rod is installed at the bottom of the slider, and a second triangular plate is installed at the bottom of the first lifting rod.
[0030] Preferably, the lifting assembly includes:
[0031] First telescopic rod, the first telescopic rod is connected to the output end of the motor, and a disc is installed at the top of the first telescopic rod;
[0032] Cross groove, the cross groove is opened inside the disc, a second lifting rod is installed inside the disc, and a central cylinder is installed at the top of the second lifting rod;
[0033] Third push rod, the third push rod is installed inside the central cylinder, and a gusset plate is installed outside the third push rod.
[0034] The present invention provides a talcum powder clinker cooling device. It has the following beneficial effects:
[0035] 1. For this talcum powder clinker cooling device, by setting the feeding mechanism, the feed is cooled. Due to the large amount of clinker, during the cooling process, the clinker in the middle position still cannot contact the cooling part, resulting in a slow cooling speed. Therefore, a feeding mechanism is set to cool the clinker on the inner wall of the fixed cylinder, that is, the outer ring of the clinker, and to cool the clinker in the middle position of the fixed cylinder, that is, the inner ring of the clinker, to solve the above problems.
[0036] 2. For this talcum powder clinker cooling device, by setting the feeding mechanism, through grooves for placing refrigerating sheets are opened on the outside of the fixed cylinder, and the temperature is transmitted to the inner wall of the fixed cylinder and the first triangular plate, so that the temperature of the contact area between the clinker and the inside of the fixed cylinder is reduced, thereby cooling the clinker on the outer ring of the clinker. By setting the refrigerating assembly and the moving assembly, a horizontal pipe with a movable position is set, and an external circulating water tank is arranged outside the horizontal pipe. The horizontal pipe contacts the clinker in the middle area of the fixed cylinder to cool the clinker in the middle area of the fixed cylinder.
[0037] 3. For this talcum powder clinker cooling device, by setting the cooling mechanism and the scraping assembly, the two second triangular plates make reciprocating movements on the lower surface inside the machine body. As the clinker enters the machine body, the two second triangular plates start to drive the clinker at the bottom to move, and air-cool the clinker on the top of the clinker, promoting the cooling work of the clinker.
[0038] 4. The talc clinker cooling equipment controls the position of the disc through the lifting component, specifically, the first telescopic rod controls the position of the disc, thereby controlling the height of the clinker. The motor drives the first telescopic rod to rotate, which in turn drives the disc, the second lifting rod, and the angle plate to rotate reciprocally. The angle plate drives the clinker to move, promoting the contact between the clinker and the horizontal pipe, and thus facilitating the cooling of the clinker.
[0039] 5. The talc clinker cooling equipment cools and discharges the clinker through the feeding mechanism and the cooling mechanism. By setting the fixed cylinder in the vertical direction and the machine body in the horizontal direction, the movement path of the clinker is extended, and cooling operations are carried out twice in two directions. Thus, the transportation and cooling of the clinker are achieved. Additionally, the scraping component and the moving component are used to cool the middle position of the clinker by making contact. BRIEF DESCRIPTION OF THE DRAWINGS
[0040] Figure 1 is the overall structural schematic diagram of the present invention;
[0041] Figure 2 is the bottom structural schematic diagram of the present invention;
[0042] Figure 3 is the structural schematic diagram of the feeding mechanism of the present invention;
[0043] Figure 4 is the structural schematic diagram of the refrigeration component of the present invention;
[0044] Figure 5 is the structural schematic diagram of the moving component of the present invention;
[0045] Figure 6 is the structural schematic diagram of the cooling mechanism of the present invention;
[0046] Figure 7 is the sectional view of the cooling mechanism of the present invention;
[0047] Figure 8 is the structural schematic diagram of the scraping component of the present invention;
[0048] Figure 9 is the structural schematic diagram of the lifting component of the present invention.
[0049] In the figure: 1, body; 2, fixed cylinder; 3, feeding mechanism; 301, fixed frame; 302, refrigeration component; 3021, first connecting pipe; 3022, branch pipe; 3023, fixed pipe; 303, moving component; 3031, telescopic pipe; 3032, horizontal pipe; 3033, connecting ring; 3034, first push rod; 304, through groove; 305, first triangular plate; 4, electric push rod; 5, sliding door; 6, chassis; 7, cooling mechanism; 701, first fixed box; 702, channel; 703, second fixed box; 704, scraping component; 7041, second connecting pipe; 7042, first air outlet; 7043, chute; 7044, slider; 7045, first lifting rod; 7046, second triangular plate; 705, second push rod; 706, square plate; 707, motor box; 708, round groove; 709, lifting component; 7091, first telescopic rod; 7092, disc; 7093, cross groove; 7094, second lifting rod; 7095, third push rod; 7096, angle plate; 7097, central cylinder; 710, connecting box. Detailed implementation manner
[0050] The present invention will be further described in detail below in conjunction with the accompanying drawings and specific implementation manners. The embodiments of the present invention are given for the purpose of illustration and description, and are not exhaustive or limit the present invention to the disclosed form. Many modifications and variations will be obvious to those of ordinary skill in the art. The embodiments are selected and described to better illustrate the principles and practical applications of the present invention, and enable those of ordinary skill in the art to understand the present invention and thus design various embodiments with various modifications suitable for specific purposes.
[0051] As Figures 1-9 shown, the present invention provides a technical solution: including a body 1, a fixed cylinder 2 is installed on the top of the body 1, an electric push rod 4 is installed outside the body 1, a sliding door 5 is installed outside the electric push rod 4, the sliding door 5 is slidably connected inside the body 1, a cooling mechanism 7 is arranged inside the body 1, and a chassis 6 is installed at the bottom of the body 1;
[0052] The feeding mechanism 3 is arranged inside the fixed cylinder 2. The feeding mechanism 3 includes a fixed frame 301. A moving component 303 is arranged inside the fixed frame 301. A refrigeration component 302 is arranged outside the fixed frame 301. The refrigeration component 302 is used to transfer heat to the moving component 303, and the moving component 303 is used to transfer heat to the clinker in the middle of the fixed cylinder 2.
[0053] Before using the device, adjust the feeding mechanism 3 and the cooling mechanism 7. Then place the clinker in the fixed cylinder 2 and use the feeding mechanism 3 to cool the clinker. Subsequently, adjust the feeding mechanism 3 and the cooling mechanism 7, and the clinker gradually enters the machine body 1 through the fixed cylinder 2. Adjust the cooling mechanism 7 to complete the second cooling and discharging of the clinker.
[0054] By setting the feeding mechanism 3, a through groove 304 with a refrigerating sheet is opened on the outer side of the fixed cylinder 2, and the temperature is transmitted to the inner wall of the fixed cylinder 2 and the first triangular plate 305, so that the temperature of the contact area between the clinker and the inside of the fixed cylinder 2 is reduced, thereby cooling the clinker on the outer ring of the clinker.
[0055] The feeding mechanism 3 includes:
[0056] The through groove 304 is opened inside the fixed cylinder 2. There are four through grooves 304, and a refrigerating sheet is arranged inside the through groove 304. The fixed frame 301 is installed outside the fixed cylinder 2, and there are four fixed frames 301;
[0057] The first triangular plate 305 is installed inside the fixed cylinder 2. There are multiple first triangular plates 305, and they are evenly arranged. The first triangular plate 305 is made of a heat-conducting material.
[0058] Before using the device, turn on the refrigerating sheet in the through groove 304, and the temperature is transmitted to the inner wall of the fixed cylinder 2 and the first triangular plate 305, so that the temperature of the contact part between the inner wall of the fixed cylinder 2 and the clinker is reduced, and then the temperature is transmitted to the clinker.
[0059] The refrigeration assembly 302 includes:
[0060] The first connecting pipe 3021 is installed inside the fixed frame 301, and there are multiple first connecting pipes 3021;
[0061] The branch pipe 3022 is installed outside the first connecting pipe 3021, and there are two branch pipes 3022;
[0062] The fixed pipe 3023 is connected to the first connecting pipe 3021, and the fixed pipe 3023 is installed inside the fixed frame 301.
[0063] The outside of the branch pipe 3022 is externally connected to a circulating water tank. The water in the circulating water tank enters the first connecting pipe 3021 through the branch pipe 3022, and enters the fixed pipe 3023 from the first connecting pipe 3021, and then enters the moving assembly 303 through the fixed pipe 3023.
[0064] The moving assembly 303 includes:
[0065] The telescopic pipe 3031, multiple telescopic pipes 3031 are installed outside the fixed pipe 3023;
[0066] The horizontal pipe 3032, the horizontal pipe 3032 is installed outside the telescopic pipe 3031, and the horizontal pipe 3032 penetrates through the inside of the fixed frame 301;
[0067] The connecting ring 3033, the connecting ring 3033 is installed outside the multiple telescopic pipes 3031, the first push rod 3034 is installed outside the connecting ring 3033, and the first push rod 3034 is installed inside the fixed frame 301.
[0068] Before the feeding operation, the first push rod 3034 is in the initial state. At this time, all four horizontal pipes 3032 are in the fixed cylinder 2. As the clinker enters the fixed cylinder 2, the clinker contacts the horizontal pipe 3032, and the cold water inside the horizontal pipe 3032 transfers the temperature to the clinker, cooling the clinker by contacting it at the middle position of the fixed cylinder 2.
[0069] After the feeding operation ends, the first push rod 3034 is activated. The first push rod 3034 drives the connecting ring 3033 to move towards the direction close to the fixed frame 301. Driven by the connecting ring 3033, the telescopic pipe 3031 gradually shortens, and the horizontal pipe 3032 gradually approaches the fixed frame 301 and does not completely enter the fixed frame 301.
[0070] By setting the refrigeration component 302 and the moving component 303, a horizontally movable pipe 3032 is set. An external circulating water tank is arranged outside the horizontal pipe 3032, and the horizontal pipe 3032 contacts the clinker in the middle area of the fixed cylinder 2 to cool the clinker in the middle area of the fixed cylinder 2.
[0071] The cooling mechanism 7 includes:
[0072] The first fixed box 701, the first fixed box 701 is installed outside the machine body 1, the second push rod 705 is installed inside the first fixed box 701, and the square plate 706 is installed outside the second push rod 705;
[0073] The channel 702, the channel 702 is set to be circular, the channel 702 is opened on the top of the machine body 1, and the fixed cylinder 2 is communicated with the machine body 1 through the channel 702;
[0074] The second fixed box 703, the lower surface of the second fixed box 703 is higher than the top of the square plate 706. The second fixed box 703 is installed on the top of the machine body 1. The connecting box 710 is installed inside the second fixed box 703. The second air outlet is opened at the bottom of the connecting box 710, and the scraping component 704 is arranged inside the second fixed box 703.
[0075] The motor box 707, the motor box 707 is installed outside the chassis 6, and a motor is arranged inside the motor box 707;
[0076] The circular groove 708 is opened inside the body 1, and a lifting component 709 is arranged at the top of the circular groove 708.
[0077] Before the feeding operation, adjust the lifting component 709 to make the lifting component 709 in the channel 702, receive the clinker at the bottom, and turn on the lifting component 709 to drive the clinker to rotate.
[0078] Subsequently, adjust the lifting component 709 to make the lifting component 709 return to its original position, and the clinker starts to enter the body 1 downward through the fixed cylinder 2 and the channel 702. Turn on the second push rod 705 to the first stroke, the second push rod 705 drives the square plate 706 to move, and the square plate 706 pushes the clinker until the clinker is below the second fixed box 703. Turn on the scraping component 704 to cool the clinker.
[0079] After the cooling operation is completed, adjust the position of the scraping component 704, turn on the electric push rod 4, the electric push rod 4 drives the sliding door 5 to move, and then turn on the second push rod 705 to the second stroke, the second push rod 705 drives the square plate 706 to move, and the square plate 706 drives the clinker to complete the discharging operation.
[0080] The scraping component 704 includes:
[0081] The second connecting pipe 7041 is installed on the top of the second fixed box 703, the second connecting pipe 7041 is connected to the connection box 710, and a blower is externally connected to the second connecting pipe 7041;
[0082] The first air outlet 7042 is opened at the bottom of the second fixed box 703, there are a plurality of first air outlets 7042 and they are evenly arranged, and an intercepting net is arranged inside the first air outlet 7042;
[0083] The sliding groove 7043 is opened at the bottom of the second fixed box 703, there are two sliding grooves 7043 and they are symmetrically arranged;
[0084] The slider 7044 is internally provided with a power system, the slider 7044 is slidably connected inside the sliding groove 7043, a first lifting rod 7045 is installed at the bottom of the slider 7044, and a second triangular plate 7046 is installed at the bottom of the first lifting rod 7045.
[0085] Before the blanking operation, turn on the first lifting rod 7045. The first lifting rod 7045 drives the second triangular plate 7046 to move downward, causing the second triangular plate 7046 to fall on the lower surface inside the machine body 1. Turn on the power system in the slider 7044, and the two sliders 7044 drive the two first lifting rods 7045 and the two second triangular plates 7046 to reciprocate on the lower surface inside the machine body 1. As the clinker enters the machine body 1, the two second triangular plates 7046 start to drive the clinker at the bottom to move, promoting the clinker cooling operation. Turn on the external blower. The gas enters the connection box 710 through the second connecting pipe 7041, moves to the first air outlet 7042 through the second air outlet at the bottom of the connection box 710, and then moves downward through the first air outlet 7042 to supply air for cooling the clinker.
[0086] Before the discharging operation, turn off the blower, and at the same time adjust the first lifting rod 7045 to its initial state, so that the second triangular plate 7046 returns to the top of the clinker.
[0087] By setting the cooling mechanism 7 and the scraping assembly 704, the two second triangular plates 7046 reciprocate on the lower surface inside the machine body 1. As the clinker enters the machine body 1, the two second triangular plates 7046 start to drive the clinker at the bottom to move, and air-cool the clinker at the top of the clinker, promoting the clinker cooling operation.
[0088] The lifting assembly 709 includes:
[0089] The first telescopic rod 7091, the first telescopic rod 7091 is connected to the output end of the motor. A disc 7092 is installed at the top of the first telescopic rod 7091. In the initial state, the disc 7092 is in the circular groove 708;
[0090] The cross groove 7093, the cross groove 7093 is opened inside the disc 7092. A second lifting rod 7094 is installed inside the disc 7092. A central cylinder 7097 is installed at the top of the second lifting rod 7094;
[0091] The third push rod 7095, the third push rod 7095 is installed inside the central cylinder 7097. An angle plate 7096 is installed outside the third push rod 7095.
[0092] Before the feeding operation, turn on the first telescopic rod 7091. The first telescopic rod 7091 drives the disc 7092 to move upward, and the disc 7092 gradually enters the channel 702. Turn on the second lifting rod 7094. The second lifting rod 7094 drives the central cylinder 7097, the third push rod 7095, and the angle plate 7096 to move upward. However, the angle plate 7096 does not disengage from the cross groove 7093, and the third push rod 7095 is in the initial state. Turn on the motor. The motor drives the first telescopic rod 7091 to rotate, thereby driving the disc 7092, the second lifting rod 7094, and the angle plate 7096 to rotate reciprocally, and the rotation angle is less than 45°, promoting the contact between the clinker and the horizontal pipe 3032, and thus promoting the clinker cooling operation.
[0093] After the work is completed, when cleaning the equipment, the stroke of the second lifting rod 7094 and the third push rod 7095 can be adjusted. The two drive the angle plate 7096 to disengage from the cross groove 7093, and the motor controls the rotation of the angle plate 7096. The angle plate 7096 impacts the first triangular plate 305, promoting the detachment of debris impurities from the first triangular plate 305.
[0094] By setting the lifting assembly 709, the position of the disc 7092 is controlled by the first telescopic rod 7091, thereby controlling the height of the clinker. The motor drives the first telescopic rod 7091 to rotate, thereby driving the disc 7092, the second lifting rod 7094, and the angle plate 7096 to rotate reciprocally. The angle plate 7096 drives the clinker to move, promoting the contact between the clinker and the horizontal pipe 3032, and thus promoting the clinker cooling operation.
[0095] Working principle: Before using the equipment, adjust the feeding mechanism 3 and the cooling mechanism 7. Turn on the refrigerating sheet in the through groove 304, and the temperature is transferred to the inner wall of the fixed cylinder 2 and the first triangular plate 305. Before the feeding operation, adjust the lifting assembly 709 and turn on the first telescopic rod 7091. The first telescopic rod 7091 drives the disc 7092 to move upward, and the disc 7092 gradually enters the channel 702 to receive the clinker at the bottom.
[0096] Subsequently, place the clinker in the fixed cylinder 2. The refrigerating sheet reduces the temperature of the contact part between the inner wall of the fixed cylinder 2 and the clinker, and then transfers the temperature to the clinker to cool the high-temperature clinker. Turn on the lifting assembly 709 to drive the clinker to rotate. Turn on the motor. The motor drives the first telescopic rod 7091 to rotate, thereby driving the disc 7092, the second lifting rod 7094, and the angle plate 7096 to rotate reciprocally, and the rotation angle is less than 45°, promoting the contact between the clinker and the horizontal pipe 3032, and thus promoting the clinker cooling operation.
[0097] The outside of the branch pipe 3022 is externally connected to a circulating water tank. The water in the circulating water tank enters the first connecting pipe 3021 through the branch pipe 3022, and enters the fixed pipe 3023 from the first connecting pipe 3021, and then enters the moving assembly 303 through the fixed pipe 3023.
[0098] Before the feeding operation, the first push rod 3034 is in its initial state. At this time, all four horizontal pipes 3032 are in the fixed cylinder 2. As the clinker enters the fixed cylinder 2, the clinker contacts the horizontal pipes 3032, and the cold water inside the horizontal pipes 3032 transfers the temperature to the clinker, cooling the clinker by contacting it at the middle position of the fixed cylinder 2.
[0099] After the feeding operation ends, the first push rod 3034 is activated. The first push rod 3034 drives the connecting ring 3033 to move towards the fixed frame 301. Driven by the connecting ring 3033, the telescopic pipe 3031 gradually shortens, and the horizontal pipes 3032 gradually approach the fixed frame 301 but do not completely enter the fixed frame 301.
[0100] Subsequently, adjust the stroke of the first telescopic rod 7091 to return the lifting assembly 709 to its original position. The clinker then starts to enter the machine body 1 downward through the fixed cylinder 2 and the channel 702. Activate the second push rod 705 to the first stroke. The second push rod 705 drives the square plate 706 to move, and the square plate 706 pushes the clinker until the clinker is below the second fixed box 703. Activate the scraping assembly 704 to cool the clinker.
[0101] Before the discharging operation, activate the first lifting rod 7045. The first lifting rod 7045 drives the second triangular plate 7046 to move downward, causing the second triangular plate 7046 to land on the lower surface inside the machine body 1. Activate the power system in the slider 7044. The two sliders 7044 drive the two first lifting rods 7045 and the two second triangular plates 7046 to reciprocate on the lower surface inside the machine body 1. As the clinker enters the machine body 1, the two second triangular plates 7046 start to drive the clinker at the bottom to move, promoting the clinker cooling operation. Activate the external blower. The gas enters the connection box 710 through the second connecting pipe 7041 and moves to the first air outlet 7042 through the second air outlet at the bottom of the connection box 710, and then moves downward through the first air outlet 7042 to supply air for cooling the clinker.
[0102] After the cooling operation ends, adjust the position of the scraping assembly 704. Before the discharging operation, turn off the blower and at the same time adjust the first lifting rod 7045 to its initial state to make the second triangular plate 7046 return to the top of the clinker. Activate the electric push rod 4. The electric push rod 4 drives the sliding door 5 to move. Subsequently, activate the second push rod 705 to the second stroke. The second push rod 705 drives the square plate 706 to move, and the square plate 706 drives the clinker to complete the discharging operation.
[0103] Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all of them. All other embodiments obtained by those of ordinary skill in the art and related fields based on the embodiments of the present invention without creative efforts shall fall within the scope of protection of the present invention. Structures, devices, and operation methods not specifically described and explained in the present invention shall be implemented by conventional means in the art unless otherwise specified and limited.
Claims
1. A talcum powder clinker cooling device, comprising a body (1), characterized in that: A fixing cylinder (2) is installed on the top of the machine body (1); A feeding mechanism (3), the feeding mechanism (3) being arranged inside the fixed cylinder (2), the feeding mechanism (3) comprising a fixed frame (301), a moving component (303) being arranged inside the fixed frame (301), a refrigeration component (302) being arranged outside the fixed frame (301), the refrigeration component (302) being used to transfer heat to the moving component (303), and the moving component (303) being used to transfer heat to the clinker in the middle of the fixed cylinder (2).
2. The talcum powder clinker cooling equipment according to claim 1, characterized in that: An electric push rod (4) is installed on the outside of the machine body (1), a sliding door (5) is installed on the outside of the electric push rod (4), a cooling mechanism (7) is arranged inside the machine body (1), and a base frame (6) is installed on the bottom of the machine body (1).
3. The talc clinker cooling equipment according to claim 1, characterized in that: The feeding mechanism (3) comprises: A through slot (304), wherein the through slot (304) is provided inside the fixed cylinder (2), and four through slots (304) are provided; and the fixed frame (301) is installed outside the fixed cylinder (2), and four fixed frames (301) are provided; A first triangular plate (305), wherein the first triangular plate (305) is installed inside the fixed cylinder (2), and a plurality of the first triangular plates (305) are provided and are evenly arranged.
4. The talc clinker cooling equipment according to claim 1, characterized in that: The refrigeration assembly (302) comprises: A first connecting pipe (3021), the first connecting pipe (3021) being installed inside the fixing frame (301), and a plurality of the first connecting pipes (3021) are provided; A branch pipe (3022), wherein the branch pipe (3022) is installed outside the first connecting pipe (3021), and two branch pipes (3022) are provided; A fixed pipe (3023), the fixed pipe (3023) is connected to the first connecting pipe (3021), and the fixed pipe (3023) is installed inside the fixed frame (301).
5. The talc clinker cooling equipment according to claim 4, characterized in that: The moving component (303) comprises: A telescopic pipe (3031), wherein the telescopic pipe (3031) is installed outside the fixed pipe (3023), and a plurality of the telescopic pipes (3031) are provided; A transverse pipe (3032), wherein the transverse pipe (3032) is installed outside the telescopic pipe (3031), and the transverse pipe (3032) passes through the interior of the fixed frame (301); A connecting ring (3033) is installed on the outside of the plurality of telescopic pipes (3031), and a first push rod (3034) is installed on the outside of the connecting ring (3033), and the first push rod (3034) is installed on the inside of the fixed frame (301).
6. The talc clinker cooling equipment according to claim 2, characterized in that: The cooling mechanism (7) comprises: A first fixed box (701), the first fixed box (701) being installed outside the machine body (1), a second push rod (705) being installed inside the first fixed box (701), and a square plate (706) being installed outside the second push rod (705); A channel (702), wherein the channel (702) is arranged in a circular shape and is opened at the top of the body (1); A second fixed box (703), the second fixed box (703) is installed on the top of the machine body (1), a connection box (710) is installed inside the second fixed box (703), a second air outlet is opened at the bottom of the connection box (710), and a scraping assembly (704) is arranged inside the second fixed box (703).
7. The talc clinker cooling equipment according to claim 6, characterized in that: The cooling mechanism (7) further comprises: A motor box (707), wherein the motor box (707) is installed outside the base frame (6), and a motor is arranged inside the motor box (707); A circular groove (708), wherein the circular groove (708) is opened inside the machine body (1), and a lifting component (709) is arranged on the top of the circular groove (708).
8. The talc clinker cooling equipment according to claim 6, characterized in that: The scraping assembly (704) comprises: A second connecting pipe (7041), the second connecting pipe (7041) is installed on the top of the second fixed box (703), and the second connecting pipe (7041) is connected to the connecting box (710); A first air outlet (7042), wherein the first air outlet (7042) is opened at the bottom of the second fixed box (703), and a plurality of the first air outlets (7042) are opened and are evenly arranged; A slide groove (7043), wherein the slide groove (7043) is provided at the bottom of the second fixed box (703), and two slide grooves (7043) are provided and are symmetrically arranged; A slider (7044), wherein the slider (7044) is slidably connected inside the slide groove (7043), a first lifting rod (7045) is installed at the bottom of the slider (7044), and a second triangular plate (7046) is installed at the bottom of the first lifting rod (7045).
9. The talc clinker cooling equipment according to claim 7, characterized in that: The lifting assembly (709) comprises: A first telescopic rod (7091), the first telescopic rod (7091) is connected to the output end of the motor, and a disc (7092) is installed on the top of the first telescopic rod (7091); A cross groove (7093), wherein the cross groove (7093) is provided inside the disc (7092), a second lifting rod (7094) is installed inside the disc (7092), and a center tube (7097) is installed on the top of the second lifting rod (7094); A third push rod (7095), wherein the third push rod (7095) is installed inside the central tube (7097), and an angle plate (7096) is installed outside the third push rod (7095).
Citation Information
Patent Citations
Clinker cooling machine
CN221802531U