Thermal insulation mortar transportation equipment
By designing a thermal insulation mortar transport equipment that includes a mixer and a walking mechanism, the problem of stratification and segregation during transportation was solved, and uniform transportation and efficient movement of the mortar were achieved.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- LIAONING FULIAN NEW IND TECHNOLOGY CO LTD
- Filing Date
- 2025-04-16
- Publication Date
- 2026-04-14
AI Technical Summary
Thermal insulation mortar is prone to stratification and segregation during transportation, which affects its performance.
A thermal insulation mortar transportation device was designed, comprising a transport box, a mixer, a mixing transmission mechanism, a power mechanism, a control handle, a battery, and a walking mechanism. The battery provides electrical power, and the control handle controls the operation of the mixer and the walking mechanism to prevent mortar segregation.
It effectively prevents the thermal insulation mortar from separating and segregating during transportation, ensuring the uniformity of the material and improving transportation efficiency.
Smart Images

Figure CN224117860U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of transportation equipment technology, specifically to a thermal insulation mortar transportation equipment. Background Technology
[0002] Thermal insulation mortar is commonly used for building insulation and may contain lightweight aggregates such as perlite and vitrified microspheres. During transportation, it may experience stratification and segregation issues because of the different densities of the materials. Long-term transportation may lead to component separation, affecting performance. Utility Model Content
[0003] (a) Technical problems to be solved
[0004] In view of the shortcomings of the existing technology, this utility model provides a thermal insulation mortar transportation device, which solves the problems mentioned above.
[0005] (II) Technical Solution
[0006] To achieve the above objectives, this utility model provides the following technical solution: a thermal insulation mortar transport device, comprising a transport box, a mixer, a mixing transmission mechanism, a power mechanism, a control handle, a battery, and a walking mechanism. The mixer is located in the center of the transport box. The mixing transmission mechanism is located on the left side of the transport box. The power mechanism is located at the front of the transport box, and its left side is connected to the front of the mixing transmission mechanism. The control handle is mounted on the top of the power mechanism. A battery is located at the bottom of the transport box and the power mechanism. A walking mechanism is located at the bottom of the battery. The walking mechanism is connected to the power mechanism via a belt drive.
[0007] Preferably, the power mechanism includes a power mechanism housing, a drive motor, a power belt, a second rotating wheel, a first transmission mechanism, a second transmission mechanism, and an opening. The drive motor is located at the front of the power mechanism housing, the second rotating wheel is located at the rear of the drive motor, and the second rotating wheel is connected to the drive motor via the power belt. The first transmission mechanism is located on the left side of the second rotating wheel, and the rear of the first transmission mechanism is fixedly connected to the front of the transport box. The second transmission mechanism is located on the right side of the second rotating wheel, and an opening of the same size as the first transmission mechanism is located on the top left side of the rear of the power mechanism housing.
[0008] Preferably, the transport box includes a transport box shell, a discharge port, a door, a rotating shaft, a support column, and a discharge push rod. The discharge port is located on the rear side of the transport box shell, and the door is located at the rear of the discharge port. The rotating shaft is located on the rear bottom side of the transport box shell, and the support column is located on the front bottom side of the transport box shell. The discharge push rod is located on the front side of the support column, and the movable end of the discharge push rod is fixedly connected to the bottom of the transport box shell. The discharge push rod is vertically positioned.
[0009] Preferably, the stirring transmission mechanism includes a stirring transmission mechanism housing, a second support column, a first rotating wheel, and a stirring belt. The second support column is located on the front right side of the transmission mechanism housing. The second support column is hollow. The first rotating wheel is located on the left side of the second support column. The outer side of the first rotating wheel is fitted with a stirring belt. The other end of the stirring belt is connected to the left side of the stirrer.
[0010] Preferably, the transmission mechanism includes a friction plate support, a friction plate, a transmission shaft, a push rod seat, an electric push rod, a movable component, a connecting component, a spring, and a transmission key. The friction plate is located at the center of the right side of the friction plate support. The left side of the friction plate is fixedly connected to the transmission shaft. The rear side of the push rod seat passes through the power mechanism housing and is fixedly connected to the front of the transport box housing. An electric push rod is installed on the front right side of the push rod seat. The electric push rod is horizontally positioned, and its movable end is connected to the movable component. The bottom front and rear sides of the movable part 1 are provided with connecting parts 1, and a spring 1 is provided between the two connecting parts 1. The spring 1 is horizontally arranged. The transmission shaft 1 passes through the middle of the push rod seat 1, the movable part 1, the support column 2 and the rotating wheel 1. The left side of the transmission shaft 1 extends out of the left side of the stirring transmission mechanism housing. The left side of the connecting part 1 and the spring 1 are connected to the right side of the movable part 1. The right side of the connecting part 1 and the spring 1 are connected to the left side of the friction plate support 1. The transmission key 1 is located at the top left side of the transmission shaft 1, and the top of the transmission key 1 passes through the rotating wheel 1.
[0011] Preferably, the transmission mechanism two includes a friction plate support two, a friction plate two, a transmission shaft two, a transmission shaft three, a push rod seat two, an electric push rod two, a movable part two, a connecting part two, a spring two, a transmission key two, and a transmission belt. The friction plate two is located at the middle left side of the friction plate support two. The right side of the friction plate two is fixedly connected to the transmission shaft two. The right end of the transmission shaft two extends into the left end of the transmission shaft three. The transmission shaft three passes through the top of the push rod seat two. The bottom of the push rod seat two is fixedly connected to the top of the power mechanism housing base plate. An electric push rod two is installed on the top left side of the push rod seat two. The two parts are horizontally arranged. The movable end of the electric push rod two is connected to the movable part two. The bottom front and rear sides of the movable part two are provided with connecting parts two. The two connecting parts two are provided with spring two. The spring two is horizontally arranged. The transmission shaft two passes through the middle of the push rod seat two and the movable part two. The left side of the connecting parts two and the spring two is connected to the right side of the movable part two. The right side of the connecting parts two and the spring two is connected to the left side of the friction plate support two. The transmission key two is located on the top right side of the transmission shaft two. The top of the transmission belt is sleeved on the right end of the transmission shaft two. The bottom of the transmission belt is connected to the walking mechanism.
[0012] Preferably, the diameter of the second drive shaft is smaller than the diameter of the third drive shaft.
[0013] Preferably, both the push rod seat and the movable part are provided with bearings in their inner center.
[0014] Preferably, both the push rod seat 2 and the movable part 2 are provided with bearings in their inner center.
[0015] (III) Beneficial Effects
[0016] This utility model provides a thermal insulation mortar transportation device. It has the following advantages: by incorporating a transportation box, a mixer, a mixing transmission mechanism, a power mechanism, a control handle, a battery, and a walking mechanism, the battery provides power to the drive motor of the power mechanism. The control handle controls the interaction between the walking mechanism and the mixing transmission mechanism with the power mechanism, thereby controlling the mixing of the mixer within the transportation box and preventing the thermal insulation mortar from separating or segregating. The walking mechanism provides assistance for the movement of the transportation device, and both the walking mechanism and the mixing transmission mechanism can operate independently or separately, ensuring efficient utilization of battery power. Attached Figure Description
[0017] Figure 1 This is a three-dimensional structural diagram of the present invention;
[0018] Figure 2 This is a front view structural diagram of the present utility model;
[0019] Figure 3 This is a top view of the structure of this utility model;
[0020] Figure 4 This is a schematic diagram of the right-side structure of this utility model;
[0021] Figure 5 This is a front view schematic diagram of the power mechanism in this utility model;
[0022] Figure 6 This is a top view of the power mechanism in this utility model.
[0023] Figure 7 This is a schematic diagram of the transmission mechanism one in this utility model;
[0024] Figure 8 This is a schematic diagram of the transmission mechanism two in this utility model.
[0025] In the diagram: Transport box-1, Agitator-2, Agitator transmission mechanism-3, Power mechanism-4, Control handle-5, Battery-6, Walking mechanism-7, Transport box shell-11, Discharge port-12, Door-13, Rotating shaft-14, Support column one-15, Discharge push rod-16, Agitator transmission mechanism shell-31, Support column two-32, Rotating wheel one-33, Agitator belt-34, Power mechanism shell-41, Drive motor-42, Power belt-43, Rotating wheel two-44, Transmission mechanism one-45, Transmission mechanism two-46, Opening-4 7. Friction plate support 1-451, Friction plate 1-452, Drive shaft 1-453, Push rod seat 1-454, Electric push rod 1-455, Moving part 1-456, Connecting part 1-457, Spring 1-458, Transmission key 1-459, Friction plate support 2-461, Friction plate 2-462, Drive shaft 2-463, Drive shaft 3-464, Push rod seat 2-465, Electric push rod 2-466, Moving part 2-467, Connecting part 2-468, Spring 2-469, Transmission key 2-4610, Transmission belt-4611. Detailed Implementation
[0026] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0027] Please see Figure 1-2 This utility model provides a technical solution for a thermal insulation mortar transportation device: a thermal insulation mortar transportation device includes a transportation box 1, a mixer 2, a mixing transmission mechanism 3, a power mechanism 4, a control handle 5, a battery 6, and a walking mechanism 7. The mixer 2 is located in the middle of the transportation box 1, the mixing transmission mechanism 3 is located on the left side of the transportation box 1, the power mechanism 4 is located at the front of the transportation box 1, and the left side of the power mechanism 4 is connected to the front of the mixing transmission mechanism 3. The control handle 5 is installed on the top of the power mechanism 4. The battery 6 is located at the bottom of the transportation box 1 and the power mechanism 4, and the walking mechanism 7 is located at the bottom of the battery 6. The walking mechanism 7 is connected to the power mechanism 4 by a belt drive.
[0028] The control handle (5) is equipped with several buttons for controlling the start of the power mechanism (4), the unloading of the transport box (1), and the connection between the mixing transmission mechanism (3), the power mechanism (4), and the walking mechanism (7).
[0029] Please see Figure 1 , Figure 5-6This utility model provides a technical solution for a thermal insulation mortar transportation device: a thermal insulation mortar transportation device, the power mechanism 4 includes a power mechanism housing 41, a drive motor 42, a power belt 43, a rotating wheel 44, a transmission mechanism 45, a transmission mechanism 46, and an opening 47. The drive motor 42 is located at the front of the power mechanism housing 41, the rotating wheel 44 is located at the rear of the drive motor 42, the rotating wheel 44 is connected to the drive motor 42 via the power belt 43, the transmission mechanism 45 is located on the left side of the rotating wheel 44, and the rear of the transmission mechanism 45 is fixedly connected to the front of the transportation box 1, the transmission mechanism 46 is located on the right side of the rotating wheel 44, and the top left side of the rear of the power mechanism housing 41 has an opening 47 of the same size as the transmission mechanism 45.
[0030] Please see Figure 3-4 This utility model provides a technical solution for a thermal insulation mortar transportation device: a thermal insulation mortar transportation device, the transportation box 1 includes a transportation box shell 11, a discharge port 12, a door 13, a rotating shaft 14, a support column 15 and a discharge push rod 16. The rear side of the transportation box shell 11 is provided with a discharge port 12, the rear part of the discharge port 12 is provided with a door 13, the rear bottom side of the transportation box shell 11 is provided with a rotating shaft 14, the front bottom side of the transportation box shell 11 is provided with a support column 15, the front side of the support column 15 is provided with a discharge push rod 16, the movable end of the discharge push rod 16 is fixedly connected to the bottom of the transportation box shell 11, and the discharge push rod 16 is vertically arranged;
[0031] The top of the compartment door 13 is equipped with a handle for easy lifting of the compartment door 13. The support column 15 is used to support the outer shell 11 of the transport box and ensure the reset position of the outer shell 11 of the transport box, ensuring that the transmission mechanism 45 can be on the same horizontal line as the rotating wheel 44 after reset.
[0032] Please see Figure 3-5 This utility model provides a technical solution for a thermal insulation mortar transportation device: a thermal insulation mortar transportation device, wherein the mixing transmission mechanism 3 includes a mixing transmission mechanism housing 31, a second support column 32, a first rotating wheel 33, and a mixing belt 34. The second support column 32 is provided on the right side of the front part of the transmission mechanism housing 31. The second support column 32 is hollow. The first rotating wheel 33 is provided on the left side of the second support column 32. The mixing belt 34 is sleeved on the outside of the first rotating wheel 33. The other end of the mixing belt 34 is connected to the left side of the mixer 2.
[0033] Please see Figure 5-7This utility model provides a technical solution for a thermal insulation mortar transportation device: A thermal insulation mortar transportation device, the transmission mechanism 45 includes a friction plate support 451, a friction plate 452, a transmission shaft 453, a push rod seat 454, an electric push rod 455, a movable part 456, a connecting part 457, a spring 458, and a transmission key 459. The friction plate 452 is provided on the middle right side of the friction plate support 451. The left side of the friction plate 452 is fixedly connected to the transmission shaft 453. The rear side of the push rod seat 454 passes through the power mechanism housing 41 and is fixedly connected to the front of the transport box housing 11. An electric push rod 455 is installed on the front right side of the push rod seat 454. The electric push rod 455 is horizontally arranged. The movable end is connected to the movable part 456. The bottom front and rear sides of the movable part 456 are provided with connecting parts 457. A spring 458 is provided between the two connecting parts 457. The spring 458 is horizontally arranged. The transmission shaft 453 passes through the middle of the push rod seat 454, the movable part 456, the support column 32 and the rotating wheel 33. The left side of the transmission shaft 453 extends out of the left side of the stirring transmission mechanism housing 31. The left side of the connecting parts 457 and the spring 458 is connected to the right side of the movable part 456. The right side of the connecting parts 457 and the spring 458 is connected to the left side of the friction plate support 451. The transmission key 459 is located on the top left side of the transmission shaft 453. The top of the transmission key 459 passes through the rotating wheel 33.
[0034] Bearings are provided in the center of both the push rod seat 454 and the moving part 456.
[0035] Please see Figure 5-6 , Figure 8This utility model provides a technical solution for a thermal insulation mortar transportation device: a thermal insulation mortar transportation device, the transmission mechanism 2 46 includes a friction plate support 2 461, a friction plate 2 462, a transmission shaft 2 463, a transmission shaft 3 464, a push rod seat 2 465, an electric push rod 2 466, a movable part 2 467, a connecting part 2 468, a spring 2 469, a transmission key 2 4610, and a transmission belt 4611. The friction plate 2 462 is provided in the middle of the left side of the friction plate support 2 461. The right side of the friction plate 2 462 is fixedly connected to the transmission shaft 2 463. The right end of the transmission shaft 2 463 extends into the left end of the transmission shaft 3 464. The transmission shaft 3 464 passes through the top of the push rod seat 2 465. The bottom of the push rod seat 2 465 is fixedly connected to the top of the bottom plate of the power mechanism housing 41. The top left side of the push rod seat 2 465 is equipped with... The device is equipped with an electric push rod 466, which is horizontally positioned. The movable end of the electric push rod 466 is connected to the movable part 467. Connecting parts 468 are provided on the front and rear sides of the bottom of the movable part 467. A spring 469 is provided between the two connecting parts 468. The spring 469 is horizontally positioned. The transmission shaft 463 passes through the middle of the push rod seat 465 and the movable part 467. The left side of the connecting parts 468 and the spring 469 is connected to the right side of the movable part 467. The right side of the connecting parts 468 and the spring 469 is connected to the left side of the friction plate support 461. The transmission key 4610 is located on the top right side of the transmission shaft 463. The top of the transmission belt 4611 is sleeved on the right end of the transmission shaft 464. The bottom of the transmission belt 4611 is connected to the walking mechanism 7.
[0036] The diameter of drive shaft 2 463 is smaller than the diameter of drive shaft 3 464;
[0037] Bearings are provided in the inner center of both push rod seat 2 465 and moving part 2 467.
[0038] In use, the thermal insulation mortar is poured into the transport box 1 from the top. The battery 6 provides power to the transport equipment. The drive motor 42 is started by the control handle 5, which drives the power belt 43 to rotate. The power belt 43 then drives the rotating wheel 44 to rotate. Then, the transmission mechanism 45 inside the power mechanism housing 41 is controlled by the control handle 5 to engage with the rotating wheel 44 of the power mechanism 4. The electric push rod 455 on the right side of the push rod seat 454 pushes the movable part 456 to the right. The movable part 456, through the spring 458, pushes the friction plate support 451, which drives the friction plate 452 to move to the right until the friction plate 452 engages with the rotating wheel 44. The rotating wheel 44 drives the friction plate 452 to rotate. The friction plate 452 drives the transmission shaft 453 to rotate. The transmission shaft 453 drives the transmission key 459 on the top left to rotate. The transmission key 459 drives the rotating wheel 33 inside the mixing transmission mechanism housing 31 to rotate. The rotating wheel 33 drives the outer mixing belt 34. The rotating belt 34 drives the agitator 2 to rotate inside the transport box 1, thereby agitating the thermal insulation mortar inside the transport box 1 to prevent the thermal insulation mortar from separating or stratifying. When it needs to move, the control handle 5 controls the transmission mechanism 46 inside the power mechanism housing 41 to engage with the rotating wheel 44 of the power mechanism 4. The electric push rod 466 on the left side of the push rod seat 465 pushes the movable part 467 to the left, thereby the movable part 467 pushes the friction plate support through the spring 469. Friction plate 462 moves to the left until it engages with rotating wheel 44. Rotating wheel 44 rotates friction plate 462, which in turn rotates drive shaft 463. Drive shaft 463 rotates drive key 4610 on the top right side within drive shaft 464, which in turn rotates drive belt 4611 on the right side. Drive belt 4611 then rotates the walking mechanism 7, thus enabling the assisted transport equipment to move.
[0039] When unloading, the control handle 5 disconnects the stirring transmission mechanism 3 from the power mechanism 4. The electric push rod 455 drives the movable part 456 to the right, which in turn pulls the friction plate support 451 to the left via the connecting part 457. The friction plate support 451 then drives the friction plate 452 to the left until it disengages from the rotating wheel 44. The friction plate 452 stops rotating, thus stopping the transmission shaft 453. The transmission key 459 on the top left side of the transmission shaft 453 stops driving the rotating wheel 33, thus stopping the agitator 2. The handle on top of the chamber door 13 is then used to pull the chamber door 13 upwards. Then, by controlling the control handle 5, the unloading push rod 16 at the bottom left side of the transport box shell 11 is extended. The unloading push rod 16 pushes the transport box shell 11 to rotate forward along the rotating shaft 14. The transport box shell 11 drives the mixing transmission mechanism shell 31 and the transmission mechanism 45 to rotate forward. The transmission mechanism 45 moves out of the power mechanism shell 41 from the top left side of the rear part of the power mechanism shell 41, thereby pouring the thermal insulation mortar inside the transport box shell 11 out from the discharge port 12 at the rear of the transport box shell 11. After unloading is completed, the unloading push rod 16 is retracted by controlling the control handle 5, thereby driving the transport box shell 11 back to the bottom front side of the transport box shell 11 and the top of the support column 15. When the walking mechanism 7 needs to be stopped, the walking mechanism 7 is disconnected from the power mechanism 4 by controlling the handle 5. The electric push rod 466 drives the movable part 467 to move to the right. The movable part 467 pulls the friction plate support 461 to the right through the connecting part 468. The friction plate support 461 drives the friction plate 462 to move to the right until the friction plate 462 disengages from the rotating wheel 44. The friction plate 462 stops rotating, thereby stopping the transmission shaft 463. The transmission key 4610 on the top right side of the transmission shaft 463 stops rotating, thereby stopping the transmission shaft 464 from driving the transmission belt 4611 to rotate. The walking mechanism 7 stops moving. Then, the rotation of the drive motor 42 is stopped by controlling the handle 5, thereby stopping the operation of the transport equipment.
[0040] The control method of this utility model is to control the device by manually starting and stopping the switch. The wiring diagram of the power element and the supply of power are common knowledge in the field. Since this utility model is mainly used to protect mechanical devices, the control method and wiring layout will not be explained in detail.
[0041] The control method of this utility model is automatic control through a controller. The control circuit of the controller can be implemented by simple programming by those skilled in the art. The power supply is also common knowledge in the field. Since this utility model is mainly used to protect mechanical devices, the control method and circuit connection will not be explained in detail.
[0042] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A thermal insulation mortar transport device, characterized in that: The system includes a transport box (1), a stirrer (2), a stirring transmission mechanism (3), a power mechanism (4), a control handle (5), a battery (6), and a walking mechanism (7). The stirrer (2) is located in the middle of the transport box (1). The stirring transmission mechanism (3) is located on the left side of the transport box (1). The power mechanism (4) is located at the front of the transport box (1), and the left side of the power mechanism (4) is connected to the front of the stirring transmission mechanism (3). The control handle (5) is installed on the top of the power mechanism (4). The battery (6) is located at the bottom of the transport box (1) and the power mechanism (4). The walking mechanism (7) is located at the bottom of the battery (6). The walking mechanism (7) is connected to the power mechanism (4) by a belt drive. The power mechanism (4) includes a power mechanism housing (41), a drive motor (42), a power belt (43), a rotating wheel (44), a transmission mechanism (45), a transmission mechanism (46), and an opening (47). The drive motor (42) is located at the front of the power mechanism housing (41). The rotating wheel (44) is located at the rear of the drive motor (42). The rotating wheel (44) is connected to the drive motor (42) via the power belt (43). The transmission mechanism (45) is located on the left side of the rotating wheel (44), and the rear of the transmission mechanism (45) is fixedly connected to the front of the transport box (1). The transmission mechanism (46) is located on the right side of the rotating wheel (44). The top left side of the rear of the power mechanism housing (41) has an opening (47) of the same size as the transmission mechanism (45).
2. The thermal insulation mortar transport equipment according to claim 1, characterized in that: The transport box (1) includes a transport box shell (11), a discharge port (12), a door (13), a rotating shaft (14), a support column (15), and a discharge push rod (16). The rear side of the transport box shell (11) is provided with a discharge port (12), and the rear part of the discharge port (12) is provided with a door (13). The door (13) is slidably connected to the rear part of the transport box shell (11). The rear bottom side of the transport box shell (11) is provided with a rotating shaft (14). The front bottom side of the transport box shell (11) is provided with a support column (15), and the front side of the support column (15) is provided with a discharge push rod (16). The movable end of the discharge push rod (16) is fixedly connected to the bottom of the transport box shell (11), and the discharge push rod (16) is vertically arranged.
3. The thermal insulation mortar transport equipment according to claim 1, characterized in that: The stirring transmission mechanism (3) includes a stirring transmission mechanism housing (31), a second support column (32), a first rotating wheel (33), and a stirring belt (34). The second support column (32) is provided on the right side of the front part of the transmission mechanism housing (31). The second support column (32) is hollow. The first rotating wheel (33) is provided on the left side of the second support column (32). The stirring belt (34) is sleeved on the outside of the first rotating wheel (33). The other end of the stirring belt (34) is connected to the left side of the stirrer (2).
4. The thermal insulation mortar transport equipment according to claim 1, characterized in that: The transmission mechanism 1 (45) includes a friction plate support 1 (451), a friction plate 1 (452), a transmission shaft 1 (453), a push rod seat 1 (454), an electric push rod 1 (455), a movable part 1 (456), a connecting part 1 (457), a spring 1 (458), and a transmission key 1 (459). The friction plate 1 (452) is located on the middle right side of the friction plate support 1 (451). The left side of the friction plate 1 (452) is fixedly connected to the transmission shaft 1 (453). The rear side of the push rod seat 1 (454) passes through the power mechanism housing (41) and is fixedly connected to the front of the transport box housing (11). An electric push rod 1 (455) is installed on the right front side of the push rod seat 1 (454). The electric push rod 1 (455) is horizontally arranged, and the movable end of the electric push rod 1 (455) is connected to the movable part 1 (456). Connector 1 (457) is provided on the front and rear sides of the bottom of movable part 1 (456). Spring 1 (458) is provided between the two connector 1 (457). Spring 1 (458) is horizontally arranged. Drive shaft 1 (453) passes through the middle of push rod seat 1 (454), movable part 1 (456), support column 2 (32) and rotating wheel 1 (33). The left side of drive shaft 1 (453) extends out of the left side of the stirring transmission mechanism housing (31). The left side of connector 1 (457) and spring 1 (458) is connected to the right side of movable part 1 (456). The right side of connector 1 (457) and spring 1 (458) is connected to the left side of friction plate support 1 (451). Drive key 1 (459) is located on the top left side of drive shaft 1 (453). The top of drive key 1 (459) passes through rotating wheel 1 (33).
5. The thermal insulation mortar transport equipment according to claim 1, characterized in that: The second transmission mechanism (46) includes a second friction plate support (461), a second friction plate (462), a second transmission shaft (463), a third transmission shaft (464), a second push rod seat (465), a second electric push rod (466), a second movable part (467), a second connecting part (468), a second spring (469), a second transmission key (4610), and a transmission belt (4611). The second friction plate (462) is located in the middle of the left side of the second friction plate support (461). The right side of the friction plate two (462) is fixedly connected to the transmission shaft two (463). The right end of the transmission shaft two (463) extends into the left end of the transmission shaft three (464). The transmission shaft three (464) passes through the top of the push rod seat two (465). The bottom of the push rod seat two (465) is fixedly connected to the top of the bottom plate of the power mechanism housing (41). An electric push rod two (466) is installed on the top left side of the push rod seat two (465). The second (466) is horizontally arranged, and the movable end of the electric push rod second (466) is connected to the movable part second (467). The bottom front and rear sides of the movable part second (467) are provided with connecting parts second (468). A spring second (469) is provided between the two connecting parts second (468). The spring second (469) is horizontally arranged. The transmission shaft second (463) passes through the middle of the push rod seat second (465) and the movable part second (467). The connecting parts second (468) are horizontally arranged. 8) The left side of spring 2 (469) is connected to the right side of movable part 2 (467), the right side of connecting part 2 (468) and spring 2 (469) is connected to the left side of friction plate support 2 (461), the transmission key 2 (4610) is located on the top right side of transmission shaft 2 (463), the top of transmission belt (4611) is sleeved on the right end of transmission shaft 3 (464), and the bottom of transmission belt (4611) is connected to the walking mechanism (7) for transmission.
6. The thermal insulation mortar transport equipment according to claim 4, characterized in that: Bearings are provided in the inner center of both the push rod seat (454) and the movable part (456).
7. The thermal insulation mortar transport equipment according to claim 5, characterized in that: The diameter of the second drive shaft (463) is smaller than the diameter of the third drive shaft (464).
8. The thermal insulation mortar transport equipment according to claim 5, characterized in that: Bearings are provided in the inner center of both the push rod seat 2 (465) and the movable part 2 (467).