Civil building construction material treatment device
By designing a construction material processing device for construction sites, using components such as bolts and limit rods to achieve limit reinforcement of construction materials, the drying problem caused by unstable placement of construction materials in traditional dryers is solved, and construction efficiency and material quality are improved.
Patent Information
- Application Number
- CN202510346322.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-24
- Publication Date
- 2025-05-13
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
During the drying process of traditional construction site construction material dryers, due to the lack of limit reinforcement of materials, they are prone to place skewed, resulting in uneven drying of construction materials, partially overdrying and damaged, and partially insufficient drying.
A civil construction material processing device is designed. The limit rod is rotated and tightened and pushed to move the limit rod. The limit rod drives the connection block to move and stretch the spring. A pair of connection blocks tighten the construction material in the storage plate to achieve limit reinforcement and prevent lateral slippage.
It effectively improves the storage stability and safety of construction materials, ensures the quality and efficiency of drying operations, reduces the loading and unloading time of construction materials, and improves the efficiency of construction materials processing flow.
Smart Images

Figure CN119976063A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of construction engineering technology, and in particular to a civil engineering construction material processing device. Background Art
[0002] Civil engineering is a general term for the science and technology of building various types of engineering facilities. Civil engineering construction materials refer to various substances used in the construction process of civil engineering projects. Among them, bricks, wood, sand and gravel are commonly used construction materials on construction sites. The quality and performance of these materials directly affect the quality, safety, durability and functionality of the entire construction project.
[0003] Among the construction materials on the construction site, many materials need to be specifically processed before use to meet the construction requirements. Among them, drying the construction materials is an extremely important link. The moisture content of the construction materials directly affects the quality of the entire construction project. The drying device for construction materials on the construction site is mainly composed of a heating system, a drying chamber, a ventilation system and a material placement rack. When working, first put the material on the material placement rack, and then start the heating and ventilation system to let the hot air circulate to evaporate the moisture in the material into water vapor and discharge it until the expected dryness is reached.
[0004] When placing construction materials for drying in traditional construction site construction material dryers, the placement position lacks limit reinforcement. When placing materials, it is difficult for construction workers to accurately place the materials in an orderly manner. In addition, during the drying process, the construction materials to be dried are prone to displacement due to factors such as the circulation of hot air and the change in shape caused by the evaporation of water inside the materials. This easy placement and displacement will lead to uneven drying of the construction materials, causing part of the construction materials to be damaged due to over-drying and other parts to be under-dried, which in turn affects the performance stability of the materials during subsequent construction of the entire construction site. Summary of the invention
[0005] In view of the deficiencies in the prior art, the present invention provides a civil engineering construction material processing device, which solves the problem that during the drying process of traditional construction material dryers, the materials are placed crookedly due to the lack of limiting reinforcement, resulting in uneven drying of the construction materials, partial over-drying and damage, and partial under-drying.
[0006] To achieve the above objectives, the present invention is implemented through the following technical solutions: a civil engineering construction material processing device, comprising a base, a support plate is slidably connected to the top of the base, a box is installed on the top of the support plate, a height adjustment component is arranged between the base and the support plate, a storage plate is slidably connected to the inside of the box, a heat exhaust pipe is installed on the top of the box, a fixing component is arranged in the middle of the storage plate, a mounting component is arranged at the bottom of the storage plate, a heat recovery component is arranged directly above the storage plate, a heating component is arranged on the left outer wall of the box, a control component is arranged on the right outer wall of the box, a box door is arranged on the outside of the box, and a pair of protrusions are fixedly connected to the inner wall of the box; The fixing assembly comprises a bolt, the bolt is threadedly connected to the middle part of the storage plate, a pair of connecting blocks are slidably connected to the middle part of the storage plate, and a limiting rod is fixedly connected between the pair of connecting blocks.
[0007] Preferably, the mounting assembly includes a fixed block, which is fixedly connected to the bottom of the storage plate, a pressure block is rotatably connected to the bottom of the fixed block, a spring sheet is abutted between the storage plate and the pressure block, and an insertion block is fixedly connected to one side of the pressure block close to the storage plate.
[0008] Preferably, the height adjustment assembly includes a hydraulic rod, which is arranged between the base and the support plate. A telescopic rod is also installed between the base and the support plate. The inner wall of the base is rotatably connected to a connecting rod 1, and the bottom of the support plate is slidably connected to a connecting rod 2. A rotating shaft is installed between the connecting rod 1 and the connecting rod 2, and one end of the connecting rod 2 is rotatably connected to a pulley.
[0009] Preferably, the heat recovery component includes a heat converter, which is mounted on the top of the box body, and the end of the heat converter close to the heat exhaust pipe is equipped with a delivery pipe 1, and the end of the heat converter away from the delivery pipe 2 is equipped with a delivery pipe 2, and a heat recovery box is fixedly connected just above the storage plate, and a plurality of heat dissipation holes 2 are opened at the bottom of the heat recovery box, and the heat recovery box is fixedly connected to the end of the delivery pipe 2 away from the heat converter.
[0010] Preferably, the heating assembly includes an inlet fan, which is arranged in the middle of the box body. A heating rod is installed on the side of the inlet fan close to the box body. An installation groove is opened in the middle of the box body, and the inlet fan and the heating rod are both arranged in the middle of the installation groove.
[0011] Preferably, the control component comprises a PLC controller, the PLC controller is mounted on a side of the housing away from the air inlet fan, and a temperature detector is mounted inside the housing.
[0012] Preferably, the storage plate is slidably connected between a pair of protrusions, and a plurality of heat dissipation holes are evenly distributed in the middle of the storage plate.
[0013] Preferably, the limiting rod is in contact with an end of the bolt away from the box door, and a spring is provided between the bolt and the connecting block, and between the connecting block.
[0014] Preferably, a slot is provided at the bottom of the protrusion, and the insert block is slidably connected to the middle of the slot.
[0015] Preferably, a ventilation fan is provided on the top of the box body, and an observation window is provided in the middle of the box door.
[0016] The present invention provides a civil engineering construction material processing device, which has the following beneficial effects: 1. The present invention rotates and tightens the bolts to push the limit rod to move, and the limit rod drives the connecting block to move and stretch the spring. A pair of connecting blocks fasten the construction materials in the storage plate, so that the limit rod can be adaptively adjusted according to the size of the construction materials, effectively limit the activity space of the construction materials in the horizontal direction, and firmly lock them on the storage plate to prevent lateral slippage, effectively improve the stability and safety of storage, and help improve the quality and efficiency of drying operations of construction material dryers on construction sites. By rotating and loosening the bolts, the spring drives the limit rod and the connecting block to quickly reset, effectively improving the convenience of placing construction materials.
[0017] 2. The present invention uses a spring sheet to squeeze the pressing block, so that the pressing block drives the inserting block to quickly insert into the slot, so that the inserting block has a limiting effect on the storage plate, stabilizes the storage plate from a vertical direction, and prevents it from shaking or shifting during the drying process. By pushing the pressing block upward to squeeze the spring sheet and drive the inserting block to quickly move away from the slot, the slot loses the limit of the inserting block, and the storage plate can be quickly disassembled, which effectively improves the stability of the device structure and the convenience of operation, and is convenient for the placement and subsequent maintenance of construction materials in the construction material dryer at the construction site.
[0018] 3. The present invention introduces air through an inlet fan, and the heating rod is heated to form a hot air flow, so that the moisture of the construction materials evaporates into water vapor and is discharged from the box through the ventilation fan and the heat exhaust pipe. At the same time, the temperature detector and the PLC controller work together to adjust the power of the heating rod and the speed of the ventilation fan to ensure that the drying operation is carried out efficiently and stably, effectively improving the automation and precision of the drying process of the construction material dryer on the construction site, and ensuring that the drying quality of the construction materials is uniform and reliable.
[0019] 4. The present invention transports part of the humid hot air from the heat exhaust pipe to the heat converter through the conveying pipe 1 for recovery and conversion, and then sends it to the heat recovery box through the conveying pipe 2 and dissipates it to the storage plate, thereby performing multi-directional drying operations on construction materials, improving energy utilization efficiency, reducing energy consumption and costs, and not only reducing dependence on external energy, but also alleviating the environmental pressure caused by energy consumption to a certain extent, providing a greener and more sustainable operation mode for the operation of construction material dryers.
[0020] 5. The present invention flexibly adjusts the height of the box through the linkage of components such as the hydraulic rod, telescopic rod and connecting rod in the height adjustment assembly, facilitates the placement and removal of construction materials, improves the applicability and operational convenience of the construction material dryer on the construction site, and adapts to different construction scenes and personnel operation requirements. BRIEF DESCRIPTION OF THE DRAWINGS
[0021] Figure 1 A perspective view of the present invention; Figure 2 is a schematic diagram of a storage plate of the present invention; Figure 3 is a schematic diagram of a hydraulic rod of the present invention; Figure 4 is a schematic diagram of a bolt of the present invention; Figure 5 is a schematic diagram of a bump of the present invention; Figure 6 is a schematic diagram of a rotating shaft of the present invention; Figure 7 is a schematic diagram of a heat converter of the present invention; Figure 8 Schematic diagram of the heating rod of the present invention.
[0022] Among them, 1. base; 2. support plate; 3. box; 4. fixing assembly; 41. bolt; 42. limit rod; 43. connecting block; 44. spring; 5. installation assembly; 51. pressure block; 52. spring; 53. fixing block; 54. plug block; 55. slot; 6. height adjustment assembly; 61. hydraulic rod; 62. telescopic rod; 63. connecting rod 1; 64. rotating shaft; 65. connecting rod 2; 66. pulley; 7. heat return Collection component; 71, heat recovery box; 72, heat dissipation hole 2; 73, conveying pipe 2; 74, heat converter; 75, conveying pipe 1; 8, heating component; 81, inlet fan; 82, heating rod; 83, installation slot; 9, control component; 91, PLC controller; 92, temperature detector; 10, box door; 11, bump; 12, storage plate; 13, heat dissipation hole 1; 14, heat exhaust pipe; 15, ventilation fan; 16, observation window. DETAILED DESCRIPTION
[0023] The following will be combined with the drawings of the present invention specification to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.
[0024] Please see attached Figure 1 -Attached Figure 3 The embodiment of the present invention provides a civil engineering construction material processing device, including a base 1, a support plate 2 is slidably connected to the top of the base 1, a box 3 is installed on the top of the support plate 2, a height adjustment component 6 is arranged between the base 1 and the support plate 2, a storage plate 12 is slidably connected inside the box 3, a heat exhaust pipe 14 is installed on the top of the box 3, a fixing component 4 is arranged in the middle of the storage plate 12, a mounting component 5 is arranged at the bottom of the storage plate 12, a heat recovery component 7 is arranged just above the storage plate 12, a heating component 8 is arranged on the left outer wall of the box 3, a control component 9 is arranged on the right outer wall of the box 3, a box door 10 is arranged on the outside of the box 3, and a pair of protrusions 11 are fixedly connected to the inner wall of the box 3; Please see attached Figure 4 The fixing assembly 4 includes a bolt 41, which is threadedly connected to the middle part of the storage plate 12. A pair of connecting blocks 43 are slidably connected to the middle part of the storage plate 12. A limiting rod 42 is fixedly connected between the pair of connecting blocks 43. The limiting rod 42 abuts against one end of the bolt 41 away from the box door 10. Springs 44 are provided between the bolt 41 and the connecting block 43, and between the connecting block 43.
[0025] The storage plate 12 is slidably connected between a pair of protrusions 11, and the protrusions 11 provide a sliding track and a support point for the storage plate 12, so that the storage plate 12 can stably move horizontally in the box body 3, and ensure that its position in the vertical direction is relatively fixed, so that the position of the storage plate 12 in the box body 3 can be adjusted according to needs. When the bolt 41 is rotated, the bolt 41 moves forward or backward in the threaded hole of the storage plate 12. Since the limit rod 42 abuts against the end of the bolt 41 away from the box door 10, the movement of the bolt 41 will push the limit rod 42 to slide horizontally, and the limit rod 42 drives a pair of connecting blocks 43 fixedly connected thereto to move synchronously. The spring 44 plays a role of elastic connection between the bolt 41 and the connecting block 43 and the connecting block 43. When the bolt 41 pushes the connecting block 43, the spring 44 is stretched to generate a reverse pulling force. In this way, the distance between a pair of connecting blocks 43 can be easily adjusted to accommodate construction materials of different widths by rotating the bolt 41. The presence of the spring 44 enables the connecting block 43 to provide a certain elastic buffer when tightening the construction material, which can not only firmly fix the construction material to prevent it from shifting in the horizontal direction and ensure the stability of the construction material on the storage plate 12, but also avoid damage to the construction material due to excessive tightening. Moreover, when the construction material needs to be replaced, it is only necessary to rotate the bolt 41 in the opposite direction. The elastic restoring force of the spring 44 will drive the limit rod 42 and the connecting block 43 to quickly reset, so as to quickly and conveniently loosen the fixation of the construction material, thereby improving the operating efficiency of the construction material dryer, reducing the loading and unloading time of the construction material, and helping to improve the efficiency of the entire construction material processing process.
[0026] Please see attached Figure 2 -Attached Figure 5 The mounting assembly 5 includes a fixing block 53, which is fixedly connected to the bottom of the storage plate 12. A pressing block 51 is rotatably connected to the bottom of the fixing block 53. A spring sheet 52 abuts between the storage plate 12 and the pressing block 51. An inserting block 54 is fixedly connected to one side of the pressing block 51 close to the storage plate 12. A slot 55 is provided at the bottom of the protrusion 11, and the inserting block 54 is slidably connected to the middle of the slot 55.
[0027] By setting the spring sheet 52 to be compressed between the storage plate 12 and the pressing block 51 and in an energy storage state, the elastic force generated by the spring sheet 52 acts downward on the pressing block 51, and the pressing block 51 is flexibly rotated through the rotation connection with the fixed block 53. Under the push of the elastic force of the spring sheet 52, the pressing block 51 rotates around the rotation point at a certain angle, so that the plug-in block 54 fixed on the pressing block 51 can be accurately inserted into the slot 55 opened at the bottom of the protrusion 11, and the plug-in block 54 and the slot 55 are slidably connected, which ensures the smoothness and positioning accuracy of the plug-in block 54 during the insertion process. When the storage plate 12 needs to be removed, an external force is applied upward to lift the pressing block 51, overcome the elastic force of the spring sheet 52, and pull the plug-in block 54 out of the slot 55, thereby releasing the connection restriction between the storage plate 12 and the protrusion 11; This method can prevent the storage plate 12 from shaking or accidentally falling off during the operation of the device, especially when vibration or impact force is generated by heating, ventilation, etc., thereby ensuring the safety and stability of the construction materials placed on the storage plate 12, and avoiding the construction materials from slipping and being damaged or affecting the processing effect due to the instability of the storage plate 12. At the same time, when it is necessary to clean the storage plate 12, replace different types of storage plates 12, or perform maintenance on the inside of the device, it is only necessary to simply lift the pressure block 51 to quickly remove the storage plate 12, and when installing, it is only necessary to align the insertion block 54 with the slot 55 and lower the pressure block 51, and the installation and fixing are automatically completed under the elastic force of the spring piece 52, which greatly improves the maintainability and flexibility of the construction material dryer on the construction site, reduces the impact of operations such as maintenance on the construction progress, and reduces the complexity and labor intensity of manual operation.
[0028] Please see attached Figure 2 and attached Figure 6 The height adjustment assembly 6 includes a hydraulic rod 61, which is arranged between the base 1 and the support plate 2. A telescopic rod 62 is also installed between the base 1 and the support plate 2. The inner wall of the base 1 is rotatably connected with a connecting rod 1 63, and the bottom of the support plate 2 is slidably connected with a connecting rod 2 65. A rotating shaft 64 is installed between the connecting rod 1 63 and the connecting rod 2 65, and one end of the connecting rod 2 65 is rotatably connected with a pulley 66.
[0029] The height of the support plate 2 relative to the base 1 is changed by extending and retracting the hydraulic rod 61. When the hydraulic rod 61 is extended, the support plate 2 is pushed up, and when it is shortened, the support plate 2 is lowered. In this process, the telescopic rod 62 plays an auxiliary supporting and stabilizing role, ensuring that the support plate 2 is lifted and lowered smoothly without deviation. The connecting rod 1 63 rotatably connected to the inner wall of the base 1 rotates at one end with the action of the hydraulic rod 61, and drives the connecting rod 2 65 slidably connected to the bottom of the support plate 2 to move through the rotating shaft 64. The pulley 66 at one end of the connecting rod 2 65 rolls on the base 1, further optimizing the smoothness and flexibility of lifting. This method can accurately and conveniently adjust the height of the box body 3 to meet the diverse demands for the height of the dryer in different construction scenarios. Whether it is to facilitate the placement of tall materials or to adapt to the usage habits of operators of different heights, it can effectively improve the convenience and comfort of operation, greatly improve construction efficiency, and reduce operational difficulties and material handling risks caused by height discomfort. At the same time, the stable and reliable structure also ensures the safety and durability of the construction material dryer on the construction site during operation.
[0030] Please see attached Figure 3 and attached Figure 8The heating assembly 8 includes an inlet fan 81, which is arranged in the middle of the box body 3. A heating rod 82 is installed on the side of the inlet fan 81 close to the box body 3. A mounting groove 83 is opened in the middle of the box body 3, and the inlet fan 81 and the heating rod 82 are both arranged in the middle of the mounting groove 83.
[0031] By running the inlet fan 81, the outside air is drawn into the installation slot 83 in the middle of the box body 3. At the same time, the heating rod 82 installed on the side of the inlet fan 81 close to the box body 3 is powered on to heat up, and the air entering the installation slot 83 is quickly heated, so that the air temperature rises rapidly to form a hot air flow. The hot air flow rises in the box body 3 and fully contacts the construction materials placed on the storage plate 12, so that the moisture in the materials is evaporated by heat; This method efficiently generates a stable and uniform hot air flow, ensuring that construction materials in all areas of the box 3 are evenly heated, avoiding local overheating or insufficient heating, thereby effectively improving the efficiency and quality of construction material drying, ensuring the consistency and reliability of construction material processing, and enabling the processed materials to better meet construction requirements, thereby improving the operating quality and stability of the construction material dryer at the construction site.
[0032] Please see attached Figure 2 and attached Figure 7 The control component 9 includes a PLC controller 91 , which is mounted on a side of the box 3 away from the inlet fan 81 , and a temperature detector 92 is mounted inside the box 3 .
[0033] The temperature data inside the box 3 is monitored in real time by the temperature detector 92, and the data is transmitted to the PLC controller 91. The PLC controller 91 analyzes and processes the received data according to the preset temperature control program. When the temperature is lower than the lower limit of the set drying suitable temperature range, the PLC controller 91 will issue an instruction to increase the heating power of the heating rod 82 to increase the temperature inside the box. If the temperature is higher than the upper limit of the set range, the PLC controller 91 will reduce the power of the heating rod 82 or adjust the speed of the ventilation fan 15 to speed up the heat dissipation, thereby maintaining the temperature inside the box stable in the suitable range. This method can control the temperature of the drying process, avoid the impact of excessive temperature fluctuations on the drying quality of construction materials, ensure that each batch of materials can be processed under optimal temperature conditions, improve the stability and consistency of material processing, reduce problems such as material damage or insufficient drying due to temperature out of control, and improve the automation and intelligence level of the construction material dryer on the entire construction site.
[0034] Please see attached Figure 1 -Attached Figure 2A storage plate 12 is slidably connected between a pair of protrusions 11 , a plurality of heat dissipation holes 13 are evenly distributed in the middle of the storage plate 12 , a ventilation fan 15 is disposed on the top of the box body 3 , and an observation window 16 is disposed in the middle of the box door 10 .
[0035] The heat dissipation holes 13 evenly distributed in the middle are conducive to the circulation of hot air up and down the storage plate 12, so that the construction materials placed thereon are heated more evenly, ensuring the uniformity of heating of the materials and helping to improve the processing quality. The ventilation fan 15 accelerates the drying process and reduces the processing time. The observation window 16 can observe the internal situation of the box body 3, enhances the visibility and monitoring during the operation, and facilitates timely detection of problems and adjustment of processing parameters, thereby improving the practicality of the construction material dryer on the construction site and the controllability of the processing effect.
[0036] Working principle: When placing construction materials on a construction site, the construction materials are placed on the storage plate 12, and the bolt 41 is rotated. The bolt 41 pushes the limit rod 42 to move, and the limit rod 42 drives the connecting block 43 to move and stretch the spring 44. A pair of connecting blocks 43 fasten the construction materials in the storage plate 12, so that the limit rod 42 can be adaptively adjusted according to the size of the construction materials, thereby effectively limiting the construction materials in the horizontal direction to prevent them from lateral displacement on the storage plate 12. At the same time, the spring sheet 52 squeezes downward to generate a thrust on the pressing block 51, so that the pressing block 51 drives the insert block 54 to be inserted into the slot 55, and stabilizes the storage plate 12 from the vertical direction to prevent the storage plate 12 from shaking or deflecting during the drying process. Pushing the pressing block 51 upward can squeeze the spring sheet 52 and drive the insert block 54 away from the slot 55, thereby realizing the function of quickly disassembling the storage plate 12.
[0037] When the construction material dryer is in drying operation, the inlet fan 81 is turned on to introduce air into the installation slot 83 area. At the same time, the heating rod 82 starts to work, and the heat generated by it causes the air entering the installation slot 83 to heat up rapidly, forming a hot air flow. The hot air flow rises in the box 3 and passes through the heat dissipation hole 13, fully contacting the construction materials on the construction site. The moisture in the material gradually evaporates into a water vapor state due to the heat. Driven by the ventilation fan 15, the water vapor moves upward and is finally discharged from the box 3 through the heat exhaust pipe 14. During the drying process, the temperature detector 92 continuously monitors the temperature environment in the box 3 and transmits the acquired temperature data to the PLC controller 91 in real time. The PLC controller 91 adjusts the heating power of the heating rod 82 to ensure that the temperature in the box 3 is always in a suitable drying temperature range, thereby ensuring the efficiency and stability of the drying operation. At the same time, the PLC controller 91 can also adjust the speed of the ventilation fan 15 according to the temperature data, thereby effectively controlling the humidity level in the box 3.
[0038] When the heat exhaust pipe 14 discharges high-temperature humid hot air, a part of the humid hot air enters the heat converter 74 through the conveying pipe 1 75. The heat converter 74 recovers and converts the heat therein and then sends it to the heat recovery box 71 through the conveying pipe 2 73. The heat of the heat recovery box 71 is dissipated to the storage plate 12 through the heat dissipation hole 2 72, thereby improving the energy utilization efficiency of the desiccant for building construction materials.
[0039] When adjusting the height of the dryer, the hydraulic rod 61 is started. Through the telescopic function of the hydraulic rod 61, combined with the auxiliary support of the telescopic rod 62, and the linkage effect of the connecting rod 1 63, the rotating shaft 64, the connecting rod 2 65 and the pulley 66, the height of the box 3 can be flexibly adjusted to facilitate the convenient placement and removal of construction materials.
[0040] Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions and variations may be made to the embodiments without departing from the principles and spirit of the present invention, and that the scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A civil engineering construction material processing device, comprising a base (1), characterized in that: The top of the base (1) is slidably connected to a support plate (2), the top of the support plate (2) is equipped with a box (3), a height adjustment component (6) is arranged between the base (1) and the support plate (2), a storage plate (12) is slidably connected inside the box (3), a heat exhaust pipe (14) is arranged on the top of the box (3), a fixing component (4) is arranged in the middle of the storage plate (12), a mounting component (5) is arranged at the bottom of the storage plate (12), a heat recovery component (7) is arranged directly above the storage plate (12), a heating component (8) is arranged on the left outer wall of the box (3), a control component (9) is arranged on the right outer wall of the box (3), a box door (10) is arranged on the outside of the box (3), and a pair of protrusions (11) are fixedly connected to the inner wall of the box (3); The fixing assembly (4) comprises a bolt (41) which is threadedly connected to the middle portion of the storage plate (12); a pair of connecting blocks (43) are slidably connected to the middle portion of the storage plate (12); and a limiting rod (42) is fixedly connected between the pair of connecting blocks (43).
2. A civil engineering construction material processing device according to claim 1, characterized in that: The mounting assembly (5) comprises a fixing block (53), the fixing block (53) being fixedly connected to the bottom of the storage plate (12), a pressing block (51) being rotatably connected to the bottom of the fixing block (53), a spring sheet (52) being abutted between the storage plate (12) and the pressing block (51), and an inserting block (54) being fixedly connected to a side of the pressing block (51) close to the storage plate (12).
3. A civil engineering construction material processing device according to claim 1, characterized in that: The height adjustment assembly (6) comprises a hydraulic rod (61), wherein the hydraulic rod (61) is arranged between the base (1) and the support plate (2), and a telescopic rod (62) is also arranged between the base (1) and the support plate (2). The inner wall of the base (1) is rotatably connected to a connecting rod 1 (63), and the bottom of the support plate (2) is slidably connected to a connecting rod 2 (65). A rotating shaft (64) is arranged between the connecting rod 1 (63) and the connecting rod 2 (65), and one end of the connecting rod 2 (65) is rotatably connected to a pulley (66).
4. The civil engineering construction material processing device according to claim 1, characterized in that: The heat recovery component (7) comprises a heat converter (74), the heat converter (74) being mounted on the top of the box body (3), a delivery pipe 1 (75) being mounted on one end of the heat converter (74) close to the heat exhaust pipe (14), a delivery pipe 2 (73) being mounted on one end of the heat converter (74) away from the delivery pipe 2 (75), a heat recovery box (71) being fixedly connected directly above the storage plate (12), a plurality of heat dissipation holes 2 (72) being formed at the bottom of the heat recovery box (71), and the heat recovery box (71) being fixedly connected to one end of the delivery pipe 2 (73) away from the heat converter (74).
5. The civil engineering construction material processing device according to claim 1, characterized in that: The heating assembly (8) comprises an air inlet fan (81), the air inlet fan (81) being arranged in the middle of the box body (3), a heating rod (82) being mounted on a side of the air inlet fan (81) close to the box body (3), a mounting groove (83) being provided in the middle of the box body (3), the air inlet fan (81) and the heating rod (82) being both arranged in the middle of the mounting groove (83).
6. A civil engineering construction material processing device according to claim 5, characterized in that: The control component (9) comprises a PLC controller (91), the PLC controller (91) being mounted on a side of the box (3) away from the air inlet fan (81), and a temperature detector (92) being mounted inside the box (3).
7. The civil engineering construction material processing device according to claim 1, characterized in that: The storage plate (12) is slidably connected between a pair of protrusions (11), and a plurality of heat dissipation holes (13) are evenly distributed in the middle of the storage plate (12).
8. The civil engineering construction material processing device according to claim 1, characterized in that: The limiting rod (42) is in contact with an end of the bolt (41) away from the box door (10), and a spring (44) is provided between the bolt (41) and the connecting block (43), and between the connecting block (43).
9. The civil engineering construction material processing device according to claim 2, characterized in that: A slot (55) is provided at the bottom of the protrusion (11), and the insert block (54) is slidably connected to the middle of the slot (55).
10. The civil engineering construction material processing device according to claim 1, characterized in that: A ventilation fan (15) is provided at the top of the box body (3), and an observation window (16) is provided at the middle of the box door (10).