An I-beam concrete steam curing device

Through the adjustment and movement mechanism, the portability and uneven spraying problems of I-beam concrete steam health device are solved, and the effect of rapid strength compliance and convenient mold removal is achieved.

CN116423636BActive Publication Date: 2025-07-25CCCC SECOND HIGHWAY ENG CO LTD
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Patent Information

Application Number
CN202310436661.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-04-23
Publication Date
2025-07-25
Estimated Expiration
2043-04-23

AI Technical Summary

Technical Problem

The existing I-beam concrete steam health device is not convenient to move and adjust, resulting in uneven spraying, affecting the speed of the concrete strength meeting standard, and it is difficult to assist in the removal of the mold.

Method used

The adjustment mechanism and the moving mechanism are adopted to drive the bidirectional threaded rod and the limiting rod through a fixed motor to move the support base plate. Combined with the electric telescopic rod and fixed gear rack transmission, the adjustment of the device and the uniform spraying of steam are achieved, and the mold is removed through the fixing mechanism.

Benefits of technology

The portability and storage of the device are realized, while the concrete strength meets the standard speed is accelerated, and the uniformity of steam spraying and the convenience of mold removal are improved.

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Abstract

The present invention discloses an I-beam concrete steam curing device, comprising: a supporting bottom plate, there are two supporting bottom plates in total, and universal wheels are fixedly connected to the bottom of each supporting bottom plate near the four corners; installation components, there are four groups of installation components in total, and every two groups of installation components are respectively arranged on the two supporting bottom plates; an adjusting mechanism, through the adjustment of the adjusting mechanism, the two fixing plates drive the supporting bottom plate to move, so as to adjust the curing device to a suitable position, and after use, the steam curing device can be moved and stored through the adjusting mechanism, which is portable and reduces the storage area. After the supporting plate is pushed to the inner edge of the I-beam concrete mold through the cooperation of the adjusting mechanism and the electric telescopic rod, through the cooperation of the adjusting mechanism and the moving mechanism, it is convenient for the user to demold the I-beam concrete. Through the moving mechanism, steam can be evenly sprayed on the I-beam concrete, which can accelerate the speed of the I-beam concrete reaching the strength standard.
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Description

Technical Field

[0001] The invention belongs to the field of technical engineering construction, and particularly relates to a steam curing device for I-beam concrete. Background Art

[0002] Concrete refers to the general term of engineering composite materials that are cemented into a whole by cementitious materials. It is one of the most important civil engineering materials in modern times. Generally, cement is used as the cementitious material, sand and stone are used as aggregates, and water, and if necessary, admixtures and additives are mixed in a certain proportion, and then uniformly stirred, densely formed, and cured to form an artificial stone. The cement concrete obtained by stirring, and the I-beam concrete is composed of concrete and steel bars. After the concrete I-beam is poured in the construction pedestal, it needs to be cured to reach the demolding strength specified by the design before the formwork can be removed for transportation. There are mainly two ways of high-temperature curing of concrete: high-temperature water bath and high-temperature steam. Among them, the high-temperature steam curing method is to add steam to the enclosed concrete curing area, so that the air temperature and concrete temperature in the curing area rise, remain constant, and then decrease, and at the same time, a certain humidity is maintained in the curing area, so that the concrete strength can increase rapidly under high-temperature conditions.

[0003] In actual use, some of the existing steam curing devices for I-beam concrete are in fixed positions, which are not convenient for storage and movement. At the same time, it is not convenient to adjust according to the actual situation of the concrete I-beam. At the same time, it cannot assist the user to remove the I-beam concrete mold, resulting in poor practicability. And in actual use, some of the existing steam curing devices for I-beam concrete have uneven steam spraying on the I-beam concrete, resulting in a relatively slow speed for the I-beam concrete strength to meet the standard. Summary of the Invention

[0004] The object of the present invention is: an I-beam concrete steam curing device. By rotating the fixed motor, the bidirectional threaded rod can be rotated. Through the limitation of the limiting rod, the moving part can move on the bidirectional threaded rod. By the movement of the moving part, the angle between the connecting plates can be changed. Through the cooperation of the fixing parts, the two fixing plates can drive the supporting bottom plate to move. At the same time, the connecting rod can slide in the connecting cylinder. According to the width of the I-beam concrete, the curing device can be adjusted to a suitable position. After use, the steam curing device can be moved and stored through the adjusting mechanism, which is portable and reduces the storage area. Then, through the cooperation of the adjusting mechanism and the electric telescopic rod, the supporting plate can be pushed to the inner edge of the I-beam concrete mold. Then, through the cooperation of the adjusting mechanism and the moving mechanism, the supporting plates in the two moving mechanisms can push the mold to move, which is convenient for the user to demold the I-beam concrete. The steam generator transmits the steam through the steam delivery pipe to the nozzle and sprays it out. The steam is evenly sprayed out through the installation part. At the same time, the moving motor is started. The rotation of the moving motor makes the fixed gear rotate. Through the meshing of the fixed gear and the fixed rack and the limitation of the fixed rod, the fixed gear can drive the supporting plate and the nozzle to move on the fixed plate, so that the steam is evenly sprayed on the I-beam concrete, which can accelerate the speed of the I-beam concrete reaching the strength standard.

[0005] The technical solution adopted by the present invention is as follows: an I-beam concrete steam curing device, comprising:

[0006] Supporting bottom plates, two supporting bottom plates are provided in total. At the bottom of each supporting bottom plate near the four corners, universal wheels are fixedly connected.

[0007] Installation components, four groups of installation components are provided in total. Every two groups of installation components are respectively arranged on the two supporting bottom plates.

[0008] Adjusting mechanism, the adjusting mechanism includes two fixing plates, four groups of connecting components, fixing components, two groups of adjusting components and two groups of moving components. Each fixing plate is arranged on the installation component. Each group of connecting components and each group of adjusting components are arranged on the fixing plate. The fixing component is arranged on the connecting component. Each group of moving components is arranged on the two groups of adjusting components.

[0009] Moving mechanism, two groups of moving mechanisms are provided in total. Each group of moving mechanisms includes a first moving component, a constant temperature water tank, a steam delivery pipe, a steam generator and a plurality of nozzles. The first moving component is arranged on the fixing plate. The constant temperature water tank and the steam generator are fixedly connected to the top of the supporting bottom plate. The input end of the steam generator is connected in a communicating manner with the output end of the constant temperature water tank. One end of the steam delivery pipe is fixedly connected to the output end of the steam generator, and the steam delivery pipe is arranged on the first moving component. A plurality of nozzles are connected to the steam delivery pipe in a communicating manner. One end of each nozzle is fixedly connected with an installation part; and

[0010] Fixing mechanisms, there are two groups of the fixing mechanisms in total. Each group of the fixing mechanisms includes a power component and a supporting component. Both the power component and the supporting component are arranged on a supporting bottom plate, and the power component is arranged on the supporting component.

[0011] Among them, each group of the mounting components includes an electric telescopic rod and a vertical rod. The bottom end of the vertical rod is fixedly connected to the top of the supporting bottom plate. The electric telescopic rod is fixedly connected to the top end of the vertical rod, and the extending end of the electric telescopic rod is fixedly connected to the bottom of a fixing plate.

[0012] Among them, each group of the adjusting components includes a fixed motor, a bidirectional threaded rod, and a limiting rod. The bidirectional threaded rod is rotatably connected between the inner walls on both sides of the fixing plate. The fixed motor is fixedly connected to the outer surface of one side of the fixing plate. The output end of the fixed motor is fixedly connected to the bidirectional threaded rod. The limiting rod is fixedly connected between the inner walls on both sides of the fixing plate.

[0013] Among them, each group of the moving components includes two connecting pieces, two moving pieces, a fixing piece, and four connecting plates. The two connecting pieces are respectively fixedly connected to the outer surface of one side of the two fixing plates. The two moving pieces are respectively thread sleeved on the outer surfaces of the two bidirectional threaded rods, and the two moving pieces are respectively slidably sleeved on the outer surfaces of the two limiting rods. One end of each connecting plate is rotatably connected to the fixing piece. One end of two of the connecting plates is respectively rotatably connected to the two connecting pieces, and the other end of the other two connecting plates is respectively rotatably connected to the two moving pieces.

[0014] Among them, each group of the connecting components includes a connecting cylinder, a connecting rod, and a connecting spring. One end of the connecting cylinder is fixedly connected to the outer surface of one side of the fixing plate. One end of the connecting rod is slidably embedded in the other end of the connecting cylinder. The connecting spring is fixedly connected between the connecting cylinder and the connecting rod.

[0015] Among them, the fixing component includes two supporting blocks and a supporting rod. Each supporting block is fixedly connected between the two connecting rods. The supporting rod is fixedly connected between the two supporting blocks. The supporting rod fixedly penetrates through the two fixing pieces.

[0016] Among them, each group of the moving components one includes a supporting plate, a moving motor, a fixed gear, a fixed rack, and a fixed rod. A mounting through hole is formed on the outer surface of each fixing plate. The supporting plate is slidably embedded between the inner walls on the front and rear sides of the mounting through hole. The moving motor is fixedly connected to the outer surface at the back of the supporting plate. The fixed gear is rotatably sleeved on the output end of the moving motor. The fixed rack and the fixed rod are both fixedly connected between the inner walls on both sides of the mounting through hole. The fixed rack meshes with the fixed gear. The fixed rod slidably penetrates through the supporting plate, and a plurality of nozzles are embedded on the outer surface of the supporting plate.

[0017] Among them, each group of the support components includes two mounting blocks, a mounting rod, a plurality of support members and a stabilizing rod. The tops of the two mounting blocks are fixedly connected to the bottom of the support base plate. The mounting rod is rotatably connected between the two mounting blocks. One ends of the plurality of support members are fixedly sleeved on the outer surface of the mounting rod. The stabilizing rod fixedly penetrates through the plurality of support members.

[0018] Among them, each group of the power components includes a mounting box, a worm gear, a worm and a mounting motor. The top end of the mounting box is fixedly connected to the bottom of the support base plate. One end of the mounting rod rotatably penetrates through the outer surface of one side of the mounting box. The worm gear is fixedly sleeved on the outer surface of the mounting rod. The worm is rotatably connected between the front and rear inner walls of the mounting box, and the worm and the worm gear are meshed with each other. The mounting motor is fixedly connected to the outer surface of one side of the mounting box, and the output end of the mounting motor is fixedly connected to one end of the worm.

[0019] A using method of an I-beam concrete steam curing device includes the following steps:

[0020] Step 1, adjust the steam curing device: Move the curing device to a suitable position. Push the fixing plate to the position directly above the I-beam concrete through the electric telescopic rod. Then turn on the fixing motor. By the rotation of the fixing motor, the bidirectional threaded rod can be rotated. Through the limitation of the limiting rod, the moving member can move on the bidirectional threaded rod. By the movement of the moving member, the angle between the connecting plates can be changed. Through the cooperation of the fixing members, the two fixing plates can drive the support base plate to move. At the same time, the connecting rod can slide in the connecting cylinder. According to the width of the I-beam concrete, the curing device can be adjusted to a suitable position;

[0021] Step 2, fix the steam curing device: Turn on the mounting motor. The mounting motor rotates to drive the worm to rotate. Through the internal meshing of the worm and the worm gear, the worm gear can drive the mounting rod to rotate, so that the support members and the stabilizing rod rotate, and the support members and the stabilizing rod rotate to stably support the curing device;

[0022] Step 3, steam curing: Turn on the steam generator. The steam generator transports the steam to the nozzle through the steam delivery pipe and sprays it out. The steam is evenly sprayed out through the mounting member. At the same time, turn on the moving motor. The moving motor rotates to make the fixed gear rotate. Through the meshing of the fixed gear and the fixed rack and the limitation of the fixed rod, the fixed gear can drive the support plate and the nozzle to move on the fixing plate, so that the steam is evenly sprayed on the I-beam concrete;

[0023] Step 4. Disassemble and store the health preservation device: First, retract the fixing mechanism. Then, through the cooperation of the fixing motor and the electric telescopic rod, the support plate can be pushed to the inner edge of the I-beam concrete mold. After that, start the fixing motor to make the connecting plate push the fixing plate to move, so that the support plates in the two moving mechanisms push the mold to move. At the same time, start the moving motor to make the moving mechanism move, thus facilitating the user to demold the I-beam concrete.

[0024] To sum up, due to the adoption of the above technical solutions, the beneficial effects of the present invention are as follows:

[0025] (1) In the present invention, the rotation of the fixing motor can make the bidirectional threaded rod rotate. Through the limitation of the limiting rod, the moving part moves on the bidirectional threaded rod. Through the movement of the moving part, the angle between the connecting plates can change. Through the cooperation of the fixing parts, the two fixing plates can drive the support bottom plate to move. At the same time, the connecting rod can slide in the connecting cylinder. According to the width of the I-beam concrete, the health preservation device can be adjusted to a suitable position. After use, the steam health preservation device can be moved and stored through the adjustment mechanism, which is portable and reduces the storage area. Then, through the cooperation of the adjustment mechanism and the electric telescopic rod, the support plate can be pushed to the inner edge of the I-beam concrete mold. Then, through the cooperation of the adjustment mechanism and the moving mechanism, the support plates in the two moving mechanisms can push the mold to move, facilitating the user to demold the I-beam concrete and increasing its practicability.

[0026] (2) In the present invention, the steam generator transmits the steam through the steam delivery pipe to the nozzle for spraying. The steam is evenly sprayed through the installation part. At the same time, start the moving motor. The rotation of the moving motor makes the fixed gear rotate. Through the meshing of the fixed gear and the fixed rack and the limitation of the fixed rod, the fixed gear can drive the support plate and the nozzle to move on the fixed plate, so that the steam is evenly sprayed on the I-beam concrete, which can accelerate the speed of the I-beam concrete reaching the standard strength. Description of the Drawings

[0027] Figure 1 is the front perspective view of the present invention;

[0028] Figure 2 is the bottom perspective view of the present invention;

[0029] Figure 3 is the partial front perspective sectional view of the present invention;

[0030] Figure 4 is the partial front perspective sectional view of the present invention;

[0031] Figure 5 is the enlarged perspective view of part A of the present invention;

[0032] Figure 6 is the partial side perspective sectional view of the present invention;

[0033] Figure 7 Partial side view stereo cross-sectional view of the present invention;

[0034] Figure 8 Partial top view enlarged drawing of the fixing mechanism of the present invention;

[0035] Figure 9 Enlarged three-dimensional view of part B of the present invention;

[0036] Figure 10 Top view three-dimensional view of the present invention;

[0037] Figure 11 Partial top view stereo cross-sectional view of the present invention.

[0038] Reference numerals in the figure: 1, support bottom plate; 2, vertical rod; 3, electric telescopic rod; 4, adjustment mechanism; 401, fixing plate; 402, fixing motor; 403, bidirectional threaded rod; 404, limiting rod; 405, connecting member; 406, moving member; 407, connecting plate; 408, fixing member; 409, support block; 410, support rod; 411, connecting cylinder; 412, connecting rod; 413, connecting spring; 5, moving mechanism; 501, support plate; 502, moving motor; 503, fixed gear; 504, fixed rack; 505, fixed rod; 506, steam generator; 507, constant temperature water tank; 508, steam delivery pipe; 509, nozzle; 510, mounting member; 6, fixing mechanism; 601, mounting motor; 602, mounting block; 603, mounting rod; 604, support member; 605, stabilizing rod; 606, mounting box; 607, worm gear; 608, worm; 7, universal wheel. Detailed implementation manners

[0039] In order to make the objectives, technical solutions and advantages of the present invention clearer and more understandable, the present invention will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present invention and are not used to limit the present invention. Embodiment 1

[0040] Refer to Figures 1-11: The present invention provides a technical solution: an I-beam concrete steam curing device, comprising: a supporting bottom plate 1, two supporting bottom plates 1 are provided in total, and universal wheels 7 are fixedly connected to the bottom of each supporting bottom plate 1 near the four corners; mounting components, four groups of mounting components are provided in total, and every two groups of mounting components are respectively arranged on the two supporting bottom plates 1; an adjusting mechanism 4, the adjusting mechanism 4 includes two fixing plates 401, four groups of connecting components, fixing components, two groups of adjusting components and two groups of moving components, each fixing plate 401 is arranged on the mounting component, each group of connecting components and each group of adjusting components are arranged on the fixing plate 401, the fixing component is arranged on the connecting component, and each group of moving components is arranged on the two groups of adjusting components; a moving mechanism 5, two groups of moving mechanisms 5 are provided in total, each group of moving mechanisms 5 includes a first moving component, a constant temperature water tank 507, a steam delivery pipe 508, a steam generator 506 and a plurality of nozzles 509, the first moving component is arranged on the fixing plate 401, the constant temperature water tank 507 and the steam generator 506 are both fixedly connected to the top of the supporting bottom plate 1, the input end of the steam generator 506 is connected in communication with the output end of the constant temperature water tank 507, one end of the steam delivery pipe 508 is fixedly connected to the output end of the steam generator 506, and the steam delivery pipe 508 is arranged on the first moving component, a plurality of nozzles 509 are all connected in communication with the steam delivery pipe 508, and one end of each nozzle 509 is fixedly connected with a mounting member 510; and a fixing mechanism 6, two groups of fixing mechanisms 6 are provided in total, each group of fixing mechanisms 6 includes a power component and a supporting component, the power component and the supporting component are both arranged on the supporting bottom plate 1, and the power component is arranged on the supporting component.

[0041] In this embodiment: The supporting bottom plate 1 is provided for support, the universal wheels 7 are provided to enable the movement of the steam curing device, the mounting components are provided for connecting the supporting bottom plate 1 and the adjusting mechanism 4, the adjusting mechanism 4 can be adjusted according to the height of the I-beam concrete, which is convenient for the user to store, and at the same time can cooperate with the moving mechanism 5 to assist in removing the mold. The two fixing plates 401 are provided for installation, the four groups of connecting components are provided for connection, the fixing components are provided for assisting in supporting, the two groups of moving components and the two groups of adjusting components are provided for adjusting the position of the moving components, the moving components are provided for adjusting the position of the fixing plate 401, the moving mechanism 5 can spray steam evenly, the moving components can drive the nozzles 509 to move, the mounting members 510 can spray steam evenly, the constant temperature water tank 507 is provided for adjusting the water temperature, the steam delivery pipe 508 is provided for transmitting steam, the steam generator 506 is used for generating steam, and a plurality of nozzles 509 are used for transmitting steam. The structures and principles of the constant temperature water tank 507 and the steam generator 506 belong to the prior art and will not be introduced in detail here, and their models can be selected according to the actual use situation.

[0042] Specifically, each set of installation components includes an electric telescopic rod 3 and a vertical rod 2. The bottom end of the vertical rod 2 is fixedly connected to the top of the support bottom plate 1. The electric telescopic rod 3 is fixedly connected to the top end of the vertical rod 2, and the extending end of the electric telescopic rod 3 is fixedly connected to the bottom of the fixing plate 401.

[0043] In this embodiment: The electric telescopic rod 3 is provided to adjust the positions of the moving mechanism 5 and the adjusting mechanism 4. The vertical rod 2 is provided to connect the support bottom plate 1 and the electric telescopic rod 3. The structure and principle of the electric telescopic rod 3 belong to the prior art and will not be introduced in detail here. Its model can be selected according to the actual usage situation.

[0044] Specifically, each set of adjusting components includes a fixed motor 402, a bidirectional threaded rod 403, and a limiting rod 404. The bidirectional threaded rod 403 is rotatably connected between the inner walls on both sides of the fixing plate 401. The fixed motor 402 is fixedly connected to the outer surface of one side of the fixing plate 401. The output end of the fixed motor 402 is fixedly connected to the bidirectional threaded rod 403. The limiting rod 404 is fixedly connected between the inner walls on both sides of the fixing plate 401.

[0045] In this embodiment: The fixed motor 402 is provided to provide rotational force. Opposite threads are engraved on the outer surface of the bidirectional threaded rod 403, and the bidirectional threaded rod 403 is provided to adjust the positions of the moving components. The limiting rod 404 is provided for limiting. The structure and principle of the fixed motor 402 belong to the prior art and will not be introduced in detail here. Its model can be selected according to the actual usage situation.

[0046] Specifically, each set of moving components includes two connecting pieces 405, two moving pieces 406, a fixing piece 408, and four connecting plates 407. The two connecting pieces 405 are respectively fixedly connected to the outer surface of one side of the two fixing plates 401. The two moving pieces 406 are respectively thread sleeved on the outer surface of the two bidirectional threaded rods 403, and the two moving pieces 406 are respectively slidably sleeved on the outer surface of the two limiting rods 404. One end of each connecting plate 407 is rotatably connected to the fixing piece 408. The other ends of two of the connecting plates 407 are respectively rotatably connected to the two connecting pieces 405, and the other ends of the other two connecting plates 407 are respectively rotatably connected to the two moving pieces 406.

[0047] In this embodiment: The two connecting pieces 405 are provided to connect the connecting plates 407. The two moving pieces 406 are respectively located on two opposite threads of the bidirectional threaded rod 403. The fixing piece 408 is provided to support the connecting plates 407. The cooperation of the connecting piece 405, the moving piece 406, and the fixing piece 408 can adjust the positions between the two fixing plates 401.

[0048] Specifically, each set of connecting components includes a connecting cylinder 411, a connecting rod 412, and a connecting spring 413. One end of the connecting cylinder 411 is fixedly connected to the outer surface of one side of the fixing plate 401. One end of the connecting rod 412 is slidably inserted into the other end of the connecting cylinder 411. The connecting spring 413 is fixedly connected between the connecting cylinder 411 and the connecting rod 412.

[0049] In this embodiment: The cooperation of the connecting cylinder 411, the connecting rod 412, and the connecting spring 413 is used for connection and limitation. The connecting rod 412 can stably slide within the connecting cylinder 411.

[0050] Specifically, the fixing components include two support blocks 409 and a support rod 410. Each support block 409 is fixedly connected between the two connecting rods 412. The support rod 410 is fixedly connected between the two support blocks 409. The support rod 410 fixedly penetrates through the two fixing members 408.

[0051] In this embodiment: The setting of the support block 409 is used to install the support rod 410, and the setting of the support rod 410 is used to support the fixing member 408.

[0052] Specifically, each set of moving components one includes a support plate 501, a moving motor 502, a fixed gear 503, a fixed rack 504, and a fixed rod 505. Installation through holes are formed on the outer surface of each fixing plate 401. The support plate 501 is slidably inserted between the inner walls on the front and rear sides of the installation through hole. The moving motor 502 is fixedly connected to the outer surface at the rear of the support plate 501. The fixed gear 503 is rotatably sleeved on the output end of the moving motor 502. The fixed rack 504 and the fixed rod 505 are both fixedly connected between the inner walls on both sides of the installation through hole. The fixed rack 504 meshes with the fixed gear 503. The fixed rod 505 slidably penetrates through the support plate 501, and multiple nozzles 509 are embedded in the outer surface of the support plate 501.

[0053] In this embodiment: The setting of the support plate 501 is used for support, the setting of the moving motor 502 is used to provide rotational force, the setting of the fixed gear 503 and the fixed rack 504 is used for transmission, and the setting of the fixed rod 505 is used for limitation. By rotating the moving motor 502, the fixed gear 503 can be rotated. Through the meshing of the fixed gear 503 and the fixed rack 504, and with the limitation of the fixed rod 505, the support plate 501 can move on the fixing plate 401. The structure and principle of the moving motor 502 belong to the prior art and will not be introduced in detail here. Its model can be selected according to actual usage.

[0054] Specifically, each group of support components includes two mounting blocks 602, a mounting rod 603, a plurality of support members 604, and a stabilizing rod 605. The tops of the two mounting blocks 602 are fixedly connected to the bottom of the support base plate 1. The mounting rod 603 is rotatably connected between the two mounting blocks 602. One ends of the plurality of support members 604 are fixedly sleeved on the outer surface of the mounting rod 603. The stabilizing rod 605 fixedly penetrates through the plurality of support members 604.

[0055] In this embodiment: The two mounting blocks 602 are provided to support the mounting rod 603. The mounting rod 603 is provided to mount the support members 604. The plurality of support members 604 and the stabilizing rod 605 are provided to increase the stability of the support base plate 1.

[0056] Specifically, each group of power components includes a mounting box 606, a worm gear 607, a worm 608, and a mounting motor 601. The top end of the mounting box 606 is fixedly connected to the bottom of the support base plate 1. One end of the mounting rod 603 rotatably penetrates through the outer surface of one side of the mounting box 606. The worm gear 607 is fixedly sleeved on the outer surface of the mounting rod 603. The worm 608 is rotatably connected between the front and rear inner walls of the mounting box 606, and the worm 608 and the worm gear 607 are meshed with each other. The mounting motor 601 is fixedly connected to the outer surface of one side of the mounting box 606, and the output end of the mounting motor 601 is fixedly connected to one end of the worm 608.

[0057] In this embodiment: The mounting box 606 is provided for installation and support. The worm gear 607 and the worm 608 are provided for transmission. The mounting motor 601 is provided to provide rotational power. The mounting motor 601 rotates to drive the worm 608 to rotate. Through the internal meshing of the worm 608 and the worm gear 607, the worm gear 607 can drive the mounting rod 603 to rotate, so that the support members 604 and the stabilizing rod 605 rotate, and the support members 604 and the stabilizing rod 605 rotate to stably support the health care device. The structure and principle of the mounting motor 601 belong to the prior art and will not be introduced in detail here. Its model can be selected according to the actual use situation.

[0058] The following is a detailed description of the usage method of an I-beam concrete steam curing device provided by an embodiment of the present invention. The usage method includes the following steps: Step 1, adjust the steam curing device: Move the curing device to a suitable position. Push the fixed plate 401 to the position directly above the I-beam concrete through the electric telescopic rod 3. Then turn on the fixed motor 402. By rotating the fixed motor 402, the bidirectional threaded rod 403 can be rotated. Through the limitation of the limiting rod 404, the moving part 406 can move on the bidirectional threaded rod 403. By moving the moving part 406, the angle between the connecting plates 407 can be changed. Through the cooperation of the fixing part 408, the two fixed plates 401 can drive the support bottom plate 1 to move. At the same time, the connecting rod 412 can slide in the connecting cylinder 411. According to the width of the I-beam concrete, the curing device can be adjusted to a suitable position; Step 2, fix the steam curing device: Turn on the installation motor 601. The installation motor 601 rotates to drive the worm 608 to rotate. Through the internal engagement of the worm 608 and the worm wheel 607, the worm wheel 607 can drive the installation rod 603 to rotate, so that the support member 604 and the stabilizing rod 605 rotate, and the support member 604 and the stabilizing rod 605 rotate to stably support the curing device; Step 3, steam curing: Turn on the steam generator 506. The steam generator 506 transmits the steam to the nozzle 509 through the steam delivery pipe 508 and sprays it out. The steam is evenly sprayed out through the installation member 510. At the same time, turn on the moving motor 502. The moving motor 502 rotates to drive the fixed gear 503 to rotate. Through the engagement of the fixed gear 503 and the fixed rack 504 and the limitation of the fixed rod 505, the fixed gear 503 can drive the support plate 501 and the nozzle 509 to move on the fixed plate 401, so that the steam is evenly sprayed on the I-beam concrete; Step 4, disassemble and store the curing device: First, retract the fixing mechanism 6. Then, through the cooperation of the fixed motor 402 and the electric telescopic rod 3, the support plate 501 can be pushed to the inner edge of the I-beam concrete mold. Then turn on the fixed motor 402 to make the connecting plate 407 push the fixed plate 401 to move, so that the support plate 501 in the two moving mechanisms 5 pushes the mold to move. At the same time, turn on the moving motor 502 to make the moving mechanism 5 move, so as to facilitate the user to demold the I-beam concrete.

[0059] The above are only the preferred embodiments of the present invention and are not intended to limit the present invention. Any modifications, equivalent replacements, and improvements made within the spirit and principles of the present invention shall be included in the protection scope of the present invention.

Claims

1. An I-beam concrete steam curing device, characterized in that Including: Support bottom plates (1), there are two support bottom plates (1) in total, and universal wheels (7) are fixedly connected to the bottom of each support bottom plate (1) near the four corners; Installation components, there are four groups of installation components in total, and every two groups of installation components are respectively arranged on the two support bottom plates (1); Adjusting mechanism (4), the adjusting mechanism (4) includes two fixing plates (401), four groups of connecting components, fixing components, two groups of adjusting components and two groups of moving components. Each fixing plate (401) is arranged on the installation component, each group of connecting components and each group of adjusting components are arranged on the fixing plate (401), the fixing component is arranged on the connecting component, and each group of moving components is arranged on the two groups of adjusting components; Moving mechanism (5), there are two groups of moving mechanisms (5) in total. Each group of moving mechanisms (5) includes a first moving component, a constant temperature water tank (507), a steam delivery pipe (508), a steam generator (506) and a plurality of nozzles (509). The first moving component is arranged on the fixing plate (401), the constant temperature water tank (507) and the steam generator (506) are fixedly connected to the top of the support bottom plate (1). The input end of the steam generator (506) is connected in communication with the output end of the constant temperature water tank (507). One end of the steam delivery pipe (508) is fixedly connected to the output end of the steam generator (506), and the steam delivery pipe (508) is arranged on the first moving component. A plurality of nozzles (509) are all connected in communication with the steam delivery pipe (508), and one end of each nozzle (509) is fixedly connected with a mounting member (510); and Fixing mechanism (6), there are two groups of fixing mechanisms (6) in total. Each group of fixing mechanisms (6) includes a power component and a support component. The power component and the support component are both arranged on the support bottom plate (1), and the power component is arranged on the support component; Each group of installation components includes an electric telescopic rod (3) and a vertical rod (2). The bottom end of the vertical rod (2) is fixedly connected to the top of the support bottom plate (1), the electric telescopic rod (3) is fixedly connected to the top end of the vertical rod (2), and the extending end of the electric telescopic rod (3) is fixedly connected to the bottom of the fixing plate (401); Each group of adjusting components includes a fixed motor (402), a bidirectional threaded rod (403) and a limiting rod (404). The bidirectional threaded rod (403) is rotatably connected between the inner walls on both sides of the fixing plate (401), the fixed motor (402) is fixedly connected to the outer surface of one side of the fixing plate (401), the output end of the fixed motor (402) is fixedly connected to the bidirectional threaded rod (403), and the limiting rod (404) is fixedly connected between the inner walls on both sides of the fixing plate (401); Each set of the moving components includes two connecting members (405), two moving members (406), a fixing member (408) and four connecting plates (407). The two connecting members (405) are respectively fixedly connected to the outer surfaces of one side of the two fixing plates (401). The two moving members (406) are respectively threadedly sleeved on the outer surfaces of the two bidirectional threaded rods (403), and the two moving members (406) are respectively slidably sleeved on the outer surfaces of the two limiting rods (404). One end of each connecting plate (407) is rotatably connected to the fixing member (408), wherein the other ends of two of the connecting plates (407) are respectively rotatably connected to the two connecting members (405), and the other ends of the other two connecting plates (407) are respectively rotatably connected to the two moving members (406). Each set of the connecting components includes a connecting cylinder (411), a connecting rod (412) and a connecting spring (413). One end of the connecting cylinder (411) is fixedly connected to the outer surface of one side of the fixing plate (401). One end of the connecting rod (412) is slidably embedded in the other end of the connecting cylinder (411). The connecting spring (413) is fixedly connected between the connecting cylinder (411) and the connecting rod (412). The fixing components include two supporting blocks (409) and a supporting rod (410). Each supporting block (409) is fixedly connected between the two connecting rods (412). The supporting rod (410) is fixedly connected between the two supporting blocks (409). The supporting rod (410) fixedly penetrates through the two fixing members (408). Each set of the first moving components includes a supporting plate (501), a moving motor (502), a fixed gear (503), a fixed rack (504) and a fixed rod (505). Through holes for installation are formed in the outer surfaces of the fixing plates (401). The supporting plate (501) is slidably embedded between the inner walls of the front and rear sides of the through holes for installation. The moving motor (502) is fixedly connected to the outer surface at the rear of the supporting plate (501). The fixed gear (503) is rotatably sleeved on the output end of the moving motor (502). The fixed rack (504) and the fixed rod (505) are both fixedly connected between the inner walls of the two sides of the through holes for installation. The fixed rack (504) meshes with the fixed gear (503). The fixed rod (505) slidably penetrates through the supporting plate (501), and a plurality of nozzles (509) are embedded in the outer surface of the supporting plate (501).

2. The I-beam concrete steam curing device according to claim 1, characterized in that: Each set of the supporting components includes two mounting blocks (602), a mounting rod (603), a plurality of supporting members (604) and a stabilizing rod (605). The tops of the two mounting blocks (602) are both fixedly connected to the bottom of the supporting bottom plate (1). The mounting rod (603) is rotatably connected between the two mounting blocks (602). One ends of the plurality of supporting members (604) are fixedly sleeved on the outer surface of the mounting rod (603). The stabilizing rod (605) fixedly penetrates through the plurality of supporting members (604).

3. The I-beam concrete steam curing device according to claim 2, characterized in that: Each of the power components includes an installation box (606), a worm gear (607), a worm (608), and an installation motor (601). The top end of the installation box (606) is fixedly connected to the bottom of the support base plate (1). One end of the installation rod (603) rotatably penetrates through the outer surface of one side of the installation box (606). The worm gear (607) is fixedly sleeved on the outer surface of the installation rod (603). The worm (608) is rotatably connected between the front and rear inner walls of the installation box (606), and the worm (608) and the worm gear (607) are meshed with each other. The installation motor (601) is fixedly connected to the outer surface of one side of the installation box (606), and the output end of the installation motor (601) is fixedly connected to one end of the worm (608).

4. A method for using a steam curing device for I-beam concrete, characterized in that, Applied to an I-beam concrete steam curing device described in any one of claims 1-3, it includes the following steps: S1. Adjust the steam curing device: Move the curing device to a suitable position. Push the fixing plate (401) to the position directly above the I-beam concrete through the electric telescopic rod (3). Then turn on the fixing motor (402). By the rotation of the fixing motor (402), the bidirectional threaded rod (403) rotates. Through the limitation of the limiting rod (404), the moving part (406) moves on the bidirectional threaded rod (403). By the movement of the moving part (406), the angle between the connecting plates (407) changes. Through the cooperation of the fixing parts (408), the two fixing plates (401) drive the support base plate (1) to move. At the same time, the connecting rod (412) slides in the connecting cylinder (411). According to the width of the I-beam concrete, adjust the curing device to a suitable position. S2. Fix the steam curing device: Turn on the installation motor (601). The installation motor (601) rotates to drive the worm (608) to rotate. Through the internal meshing of the worm (608) and the worm gear (607), the worm gear (607) drives the installation rod (603) to rotate, so that the support part (604) and the stabilizing rod (605) rotate, and the support part (604) and the stabilizing rod (605) rotate to stably support the curing device. S3. Steam curing: Turn on the steam generator (506). The steam generator (506) transmits the steam through the steam delivery pipe (508) to the nozzle (509) and sprays it out. The steam is evenly sprayed out through the installation part (510). At the same time, turn on the moving motor (502). The moving motor (502) rotates to drive the fixed gear (503) to rotate. Through the meshing of the fixed gear (503) and the fixed rack (504) and the limitation of the fixed rod (505), the fixed gear (503) drives the support plate (501) and the nozzle (509) to move on the fixing plate (401), so that the steam is evenly sprayed on the I-beam concrete. S4. Dismantle and store the health care device: First, retract the fixing mechanism (6). Then, through the cooperation of the fixing motor (402) and the electric telescopic rod (3), the support plate (501) is pushed to the inner edge of the I-beam concrete mold. After that, the fixing motor (402) is turned on to make the connecting plate (407) push the fixing plate (401) to move, so that the support plates (501) in the two moving mechanisms (5) push the mold to move. At the same time, the moving motor (502) is turned on to make the moving mechanism (5) move, thus facilitating the user to demold the I-beam concrete.

Citation Information

Patent Citations

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