A greenhouse for preventing cement clinker from being damp

By using a design that combines flexible film with sealing liquid in greenhouses, the problems of poor sealing performance and susceptibility to wind damage in greenhouses have been solved, achieving effective sealing and wind resistance, and reducing usage costs.

CN118704853BActive Publication Date: 2026-03-17LANXI ZHUGE SOUTH CEMENT CO LTD
View PDF 2 Cites 0 Cited by

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-08-29
Publication Date
2026-03-17

AI Technical Summary

Technical Problem

The existing greenhouse structure has poor sealing performance, making it susceptible to moisture and wind damage in windy weather.

Method used

A flexible membrane is used to form a sealed space with the base. The base includes a ring and a ring groove. A partition is set in the ring groove to divide it into an inner groove and an outer groove. The outer groove is filled with sealing fluid. The lower end of the flexible membrane is immersed in the sealing fluid. The shape of the flexible membrane is adjusted by support components and elastic elements to resist wind.

Benefits of technology

It achieves excellent sealing performance, preventing cement raw materials or clinker from getting damp, and reduces the risk of wind damage to the greenhouse in windy weather, while simplifying the structure and reducing the cost of use.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN118704853B_ABST
    Figure CN118704853B_ABST
Patent Text Reader

Abstract

The present application relates to cement production site auxiliary tool technical field, especially to a greenhouse for preventing cement clinker from dampness, the present application provides a greenhouse for preventing cement clinker from dampness, the technical problem of poor sealing performance of greenhouse in prior art, easy to be damaged by wind is solved.A greenhouse for preventing cement clinker from dampness, including base part and the flexible film of setting in the base part and with the base part forms sealed space, the base part is provided with the support component of supporting the flexible film;By filling sealing liquid in the outer tank, and, the lower end of flexible film is immersed in flexible liquid, the lower end of flexible film is sealed by using sealing liquid, so that the lower end of flexible film can be effectively sealed, prevent the sealed space from communicating with the outside world, outside gas or impurities is not easy to enter the sealed space. The lower end of flexible film is sealed by using sealing liquid, without setting up complex structure to seal the sealed space, the structure of greenhouse is simplified.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This invention relates to the field of auxiliary tools for cement production sites, and in particular to a shed for preventing cement clinker from getting damp. Background Technology

[0002] Cement production sites typically have a large number of large-scale equipment, and therefore usually occupy a large area. Cement raw materials or clinker are usually placed on the cement production site.

[0003] To prevent cement raw materials or clinker from getting damp, they usually need to be stored in warehouses. To reduce the construction cost of warehouses, existing technologies typically use shed-style warehouses to store raw materials or clinker.

[0004] However, the existing greenhouse structure is unreasonable and has poor sealing. During long-term use, the raw materials or clinker inside the greenhouse are prone to moisture. In addition, the greenhouse structure is usually quite tall, and the shape of the greenhouse is limited by the support structure. In windy weather, the greenhouse structure cannot automatically change its shape, causing the greenhouse structure space to be damaged by wind.

[0005] Therefore, existing greenhouses suffer from poor sealing performance and are easily damaged by wind. Summary of the Invention

[0006] The present invention provides a greenhouse for preventing cement clinker from getting damp, which solves the technical problems of poor sealing performance and easy damage by wind in the prior art.

[0007] Some implementation schemes for solving the above-mentioned technical problems include:

[0008] A greenhouse for preventing cement clinker from getting damp includes a base and a flexible membrane disposed on the base and forming a sealed space with the base. The base is provided with a support assembly to support the flexible membrane.

[0009] The base includes a ring body with an annular groove. A partition is provided inside the annular groove, dividing the annular groove into an inner groove and an outer groove. The lower end of the flexible membrane enters the outer groove through the inner groove. The flexible membrane is attached to the side wall and bottom wall of the inner groove. The outer groove is filled with a sealing liquid, and the lower end of the flexible membrane is immersed in the sealing liquid.

[0010] The level of the sealing fluid in the outer tank is lower than the height of the upper end of the partition.

[0011] The support assembly includes a bracket and an adjustment frame disposed on the upper end of the bracket. The adjustment frame is slidably connected to the bracket, and an elastic element is disposed between the adjustment frame and the bracket to push the adjustment frame away from the bracket.

[0012] Preferably, the base portion further includes a pressure ring, which includes an annular plate that mates with the annular groove. The annular plate is provided with an inner annular body extending into the inner groove and an outer annular body extending into the outer groove. The flexible membrane located in the inner groove is positioned by the inner annular body, and the flexible membrane located in the outer groove is positioned by the outer annular body.

[0013] Preferably, the flexible membrane located in the outer tank is attached to the side wall of the partition and the bottom wall of the outer tank, respectively, and the flexible membrane is attached to a portion of the side wall of the outer tank away from the partition.

[0014] Preferably, the outer ring body is provided with a through hole that penetrates the outer ring body. The through hole is evenly distributed along the circumference of the outer ring body. Both the outer ring body and the inner ring body are hollow structures, and the through hole communicates with the inner cavity of the outer ring body.

[0015] Preferably, a liquid level sensor for detecting the height of the sealing fluid is installed in the outer tank, and an alarm is also installed in the base part, which is controlled by the liquid level sensor.

[0016] Preferably, the pressure ring includes at least two splicing segments that are joined together to form the pressure ring, and the splicing segments are joined end to end to form the pressure ring.

[0017] Preferably, the adjusting frame includes a top plate that contacts the flexible membrane, the top plate is provided with a sleeve, the support is provided with a column that cooperates with the sleeve, the sleeve is slidably connected to the column, and the elastic element is provided inside the sleeve.

[0018] Preferably, the elastic element is a spring, with its upper end in contact with the top plate and its lower end in contact with the column.

[0019] Preferably, the bracket is further provided with a pushing assembly for pushing the adjusting frame away from the bracket. The pushing assembly includes a push rod rotatably connected to the bracket. One end of the push rod extends to the bottom of the sleeve, and the other end of the push rod is provided with a pull rope. The bracket is provided with a vertical plate, and the push rod is rotatably connected to the vertical plate via a rotating shaft. The vertical plate is located at the middle of the push rod in the length direction. Furthermore, the push rod contacts the bracket under the action of gravity when not under force.

[0020] Preferably, the lower end of the sleeve is provided with a contact plate to increase the contact area between the sleeve and the push rod. The contact plate and the sleeve are integrally formed. The push rod is provided with a recess, and a part of the column is located in the recess.

[0021] Compared with the prior art, the present invention has the following advantages:

[0022] 1. By filling the outer tank with sealing fluid and immersing the lower end of the flexible membrane in the fluid, the lower end of the flexible membrane is effectively sealed, preventing the sealed space from communicating with the outside world and making it difficult for external gases or impurities to enter the sealed space.

[0023] 2. Using a sealing liquid to seal the flexible membrane eliminates the need for complex structures to seal the space, simplifying the greenhouse structure and reducing operating costs. Simply filling the membrane with sealing liquid and immersing the lower end of the flexible membrane in it is sufficient to achieve a seal.

[0024] 3. By setting up an inner tank and an outer tank, and filling the outer tank with sealing fluid while leaving the inner tank unfilled, the flexible membrane undergoes multiple bends within the inner tank, which prevents the sealing fluid from entering the sealing space, thereby optimizing the sealing effect within the sealing space.

[0025] 4. By keeping the liquid level of the sealing fluid lower than the top of the partition plate, the sealing fluid cannot enter the inner tank, thus further improving the sealing performance of the sealing space.

[0026] 5. By setting up an adjustment frame, the height of the adjustment frame can be adjusted, thereby adjusting the shape of the flexible film. That is, the shape of the flexible film can be changed in actual application. When there is strong wind, the shape of the flexible film can be changed to make it easier for airflow to pass through the flexible film, thus making the greenhouse less susceptible to wind damage.

[0027] 6. By incorporating elastic elements, the shape of the flexible film can be automatically adjusted without manual intervention, further optimizing the greenhouse's performance. Attached Figure Description

[0028] For illustrative purposes, several embodiments of the invention are illustrated in the following figures. These figures are incorporated herein by reference and form part of the detailed description. In some instances, well-known structures and components are shown in block diagram form to avoid obscuring the concept of the subject matter of the invention.

[0029] Figure 1 This is a schematic diagram of the internal structure of the present invention.

[0030] Figure 2 For the present invention Figure 1 Enlarged view of point A in the middle.

[0031] Figure 3 For the present invention Figure 1 Enlarged view of section B in the middle.

[0032] Figure 4 This is a schematic diagram of the present invention.

[0033] Figure 5 This is a schematic diagram of the present invention with the flexible membrane omitted.

[0034] Figure 6 This is a schematic diagram of a flexible membrane.

[0035] Figure 7 This is a schematic diagram of the support.

[0036] Figure 8 This is a schematic diagram of the pressure ring.

[0037] In the picture:

[0038] 1. Basic part; 11. Ring body; 12. Partition plate; 13. Inner tank body; 14. Outer tank body; 141. Sealing fluid; 15. Pressure ring; 151. Annular plate; 152. Inner ring body; 153. Outer ring body; 1531. Through hole.

[0039] 2. Flexible membrane.

[0040] 3. Support components, 31. Bracket, 311. Column, 32. Adjustment frame, 321. Top plate, 322. Sleeve, 33. Elastic element.

[0041] 4. Sealed space.

[0042] 5. Pushing component, 51. Push rod, 52. Pull rope, 53. Vertical plate, 54. Rotating shaft, 55. Contact plate. Detailed Implementation

[0043] The specific embodiments shown below are intended to describe various configurations of the subject matter of the invention and are not intended to represent the only configuration in which the subject matter of the invention can be practiced. The specific embodiments include particular details intended to provide a thorough understanding of the subject matter of the invention. However, it will be clear and apparent to those skilled in the art that the subject matter of the invention is not limited to the specific details shown herein and can be practiced without these specific details.

[0044] Understandably, in this document, relational terms such as “first” and “second” are intended to distinguish one entity or operation from another, and are not intended to expressly or imply any actual relationship or order between these entities or operations.

[0045] The terms “comprising,” “including,” or any other variations thereof are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such a process, method, article, or apparatus. Without further limitation, an element defined by the phrase “comprising one…” does not exclude the presence of other identical elements in the process, method, article, or apparatus that includes said element.

[0046] Reference Figures 1 to 8 As shown, a greenhouse for preventing cement clinker from getting damp includes a base part 1 and a flexible membrane 2 disposed on the base part 1 and forming a sealed space 4 with the base part 1. The base part 1 is provided with a support component 3 to support the flexible membrane 2.

[0047] The base part 1 includes a ring body 11, which has an annular groove. A partition 12 is provided inside the annular groove, which divides the annular groove into an inner groove 13 and an outer groove 14. The lower end of the flexible membrane 2 enters the outer groove 14 through the inner groove 13. The flexible membrane 2 is attached to the side wall and bottom wall of the inner groove 13. The outer groove 14 is filled with a sealing liquid 141, and the lower end of the flexible membrane 2 is immersed in the sealing liquid 141.

[0048] The level of the sealing fluid 141 in the outer tank 14 is lower than the height of the upper end of the partition 12;

[0049] The support assembly 3 includes a bracket 31 and an adjustment frame 32 disposed on the upper end of the bracket 31. The adjustment frame 32 is slidably connected to the bracket 31, and an elastic element 33 is disposed between the adjustment frame 32 and the bracket 31 to push the adjustment frame 32 away from the bracket 31.

[0050] The foundation part 1 refers to the physical structure that forms the annular groove, which can be formed by masonry or by excavation on the ground. Since the outer tank body 14 of the foundation part 1 is filled with sealing liquid 141, the outer tank body 14 should have good waterproof performance to prevent leakage of the sealing liquid 141.

[0051] Meanwhile, the inner tank 13 should also have good waterproof performance to prevent water from seeping into the sealed space 4. Therefore, the entire base part 1 should have good water-proof performance so that the sealed space 4 can better protect the cement raw materials or clinker.

[0052] Typically, the foundation 1 can be constructed by excavation on the ground so that the bottom wall of the sealed space 4 is flush with the ground, making it easy to remove or place cement raw materials or clinker within the sealed space 4.

[0053] Waterproof layers can be applied to the sidewalls of both the inner tank 13 and the outer tank 14.

[0054] The sealing fluid 141 can be water or other liquids.

[0055] Reference Figures 1 to 8 As shown, in some embodiments, the flexible membrane 2 should be fitted to the sides of the inner groove 13 and the outer groove 14 to form a better sealing performance. That is, there should be no gap between the flexible membrane 2 and the sides of the inner groove 13 to prevent water vapor generated by the sealing liquid 141 from entering the sealing space 4. Therefore, the flexible membrane 2 needs to be fitted to the inner groove 13 and the outer groove 14. For example, the base part 1 also includes a pressure ring 15, which includes an annular plate 151 that cooperates with the annular groove. The annular plate 151 is respectively provided with an inner ring 152 extending to the inner groove 13 and an outer ring 153 extending to the outer groove 14. The flexible membrane 2 located in the inner groove 13 is positioned by the inner ring 152, and the flexible membrane 2 located in the outer groove 14 is positioned by the outer ring 153.

[0056] The outer ring 153 matches the shape of the outer groove 14, and the inner ring 152 matches the shape of the inner groove 13.

[0057] The flexible membrane 2 located inside the outer tank 14 is attached to the side wall of the partition 12 and the bottom wall of the outer tank 14, and the flexible membrane 2 is attached to a portion of the side wall of the outer tank 14 away from the partition 12.

[0058] The outer ring body 153 is provided with a through hole 1531 that passes through the outer ring body 153. The through hole 1531 is evenly arranged along the circumferential direction of the outer ring body 153. Both the outer ring body 153 and the inner ring body 152 are hollow structures. The through hole 1531 communicates with the inner cavity of the outer ring body 153.

[0059] The through hole 1531 is mainly used to prevent the outer ring 153 from dividing the outer groove 14 into two parts, so that the sealing liquid 141 in the outer groove 14 can be evenly distributed in the outer ring 153, thereby effectively sealing the lower end of the flexible membrane 2 and making the sealing space 4 have a better sealing effect.

[0060] The pressure ring 15 can also be replaced by other structures, as long as the flexible membrane 2 is fitted to the inner tank 13 and the outer tank 14. For example, the pressure ring 15 can be replaced by bricks. After the flexible membrane 2 is placed on the foundation, bricks can be placed in the outer tank 14 and the inner tank 13 to press the flexible membrane 2, so that the flexible membrane 2 is fitted to the inner tank 13 and the outer tank 14.

[0061] In some embodiments, a liquid level sensor for detecting the liquid level of the sealing liquid 141 is provided inside the outer tank 14, and an alarm is also provided in the base part 1, which is controlled by the liquid level sensor.

[0062] A water tank can also be installed around the base part 1. The water tank is filled with sealing fluid 141. A water pump can also be installed in the water tank. When the liquid level in the outer tank 14 is too low, the liquid level sensor sends a signal to the controller that controls the water pump. The controller controls the water pump to work according to the parameters of the liquid level sensor and automatically replenishes the sealing fluid 141 into the outer tank 14.

[0063] Of course, by setting up an alarm to alert relevant personnel, who can then manually replenish the sealing fluid 141, the usage requirements can also be met.

[0064] To slow down the evaporation rate of the sealing liquid 141, a cover plate can be placed on the outer tank 14 to slow down the evaporation rate of the sealing liquid 141.

[0065] In some embodiments, the pressure ring 15 includes at least two spliced ​​segments that are joined end-to-end to form the pressure ring 15. The lighter the weight of the pressure ring 15, the easier it is to handle. However, the pressure ring 15 should effectively compress the flexible membrane 2. Therefore, the pressure ring 15 adopts a split structure, i.e., it is formed by spliced ​​segments, each of which can be set with a lighter weight, making it easy to configure the pressure ring 15 on the base portion 1.

[0066] Reference Figures 1 to 8 As shown, in some embodiments, the adjusting frame 32 includes a top plate 321 that contacts the flexible membrane 2, the top plate 321 is provided with a sleeve 322, the support 31 is provided with a column 311 that cooperates with the sleeve 322, the sleeve 322 is slidably connected to the column 311, and the elastic element 33 is provided inside the sleeve 322.

[0067] The shape of the top plate 321 matches the shape of the flexible membrane 2, and the sleeve 322 can be integrated with the top plate 321. Specifically, during windy weather, the flexible membrane 2 bears a large force. At this time, the flexible membrane 2 applies pressure to the top plate 321, and the top plate 321 overcomes the elastic force of the elastic element 33 and moves downward a certain distance, thereby changing the shape of the flexible membrane 2, giving the flexible membrane 2 better aerodynamic performance, and preventing the greenhouse from being damaged by wind.

[0068] The elastic element 33 is a spring. The upper end of the elastic element 33 contacts the top plate 321, and the lower end of the elastic element 33 contacts the column 311.

[0069] The support frame 31 can be integrated with the column 311. When the wind stops, the flexible membrane 2 automatically returns to its original shape under the action of the elastic element 33.

[0070] Greenhouses typically have a large area, therefore, the flexible film 2 has a large space size, and multiple adjustment frames 32 can be set up, which provides a better adjustment effect.

[0071] In some embodiments, in practice, windy weather often brings rain. At this time, due to the change in shape of the flexible membrane 2, a depression may form on the flexible membrane 2, and rainwater will accumulate in the depression, which may damage the flexible membrane 2. For this reason, the support 31 is also provided with a pushing component 5 to push the adjusting frame 32 away from the support 31. The pushing component 5 includes a push rod 51 rotatably connected to the support 31. One end of the push rod 51 extends to the lower part of the sleeve 322, and the other end of the push rod 51 is provided with a pull rope 52. The support 31 is provided with a vertical plate 53, and the push rod 51 is rotatably connected to the vertical plate 53 through a rotating shaft 54. The vertical plate 53 is located at the middle part of the length direction of the push rod 51, and the push rod 51 contacts the support 31 under the action of gravity when not under force.

[0072] The lower end of the sleeve 322 is provided with a contact plate 55 to increase the contact area between the sleeve 322 and the push rod. The contact plate 55 and the sleeve 322 are integrally formed. The push rod 51 is provided with a recess, and a part of the column 311 is located in the recess.

[0073] When rainwater accumulates in the depression, the pull rope 52 can be pulled to rotate the push rod 51, thereby pushing the flexible membrane 2 in the depression higher and draining the rainwater, preventing the flexible membrane 2 from accumulating too much rainwater and causing damage to the flexible membrane 2.

[0074] The technical solution of the present invention and its corresponding details have been described above. It is understood that the above description is only some implementation schemes of the technical solution of the present invention, and some details may be omitted in the specific implementation.

[0075] Furthermore, in some embodiments of the above invention, multiple embodiments may be combined; however, due to space limitations, all such combinations will not be listed here. Those skilled in the art can freely combine and implement the above embodiments according to their needs to obtain a better application experience.

[0076] When implementing the subject matter of this invention, those skilled in the art can obtain other detailed configurations or drawings based on the subject matter and drawings. Obviously, these details are still within the scope of the subject matter of this invention without departing from it.

Claims

1. A shed for preventing cement clinker from getting wet, characterized by: The application relates to a flexible film (2) and a supporting assembly (3) for supporting the flexible film (2), and the supporting assembly (3) is arranged on a base part (1) and forms a sealed space (4) with the base part (1). The base part (1) comprises a ring body (11) provided with a ring groove, a partition plate (12) is arranged in the ring groove, the ring groove is divided into an inner groove body (13) and an outer groove body (14) by the partition plate (12), the lower end of the flexible film (2) enters the outer groove body (14) from the inner groove body (13), the flexible film (2) is attached to the side wall and the bottom wall of the inner groove body (13), the outer groove body (14) is filled with a sealing liquid (141), and the lower end of the flexible film (2) is immersed in the sealing liquid (141); the liquid level of the sealing liquid (141) in the outer groove body (14) is lower than the height of the upper end of the partition plate (12); the supporting assembly (3) comprises a support (31) and an adjusting frame (32) arranged at the upper end of the support (31), the adjusting frame (32) is slidably connected to the support (31), and an elastic member (33) for pushing the adjusting frame (32) away from the support (31) is arranged between the adjusting frame (32) and the support (31); the base part (1) further comprises a compression ring (15), the compression ring (15) comprises a ring-shaped plate (151) matched with the ring groove, the ring-shaped plate (151) is respectively provided with an inner ring body (152) extending into the inner groove body (13) and an outer ring body (153) extending into the outer groove body (14), the flexible film (2) located in the inner groove body (13) is positioned by the inner ring body (152), and the flexible film (2) located in the outer groove body (14) is positioned by the outer ring body (153); the flexible film (2) located in the outer groove body (14) is attached to the side wall of the partition plate (12) and the bottom wall of the outer groove body (14), and the flexible film (2) is attached to a part of the outer groove body (14) away from the side wall of the partition plate (12).

2. The shed for preventing moisture absorption of cement clinker according to claim 1, characterized in that: The outer ring body (153) is provided with through holes (1531) penetrating through the outer ring body (153), the through holes (1531) are uniformly arranged along the circumferential direction of the outer ring body (153), the outer ring body (153) and the inner ring body (152) are both hollow structures, and the through holes (1531) are communicated with the inner cavities of the outer ring body (153).

3. The shed for preventing cement clinker from being damp according to claim 2, characterized in that: A liquid level sensor for detecting the liquid level of the sealing liquid (141) is arranged in the outer groove body (14), and the base part (1) is further provided with an alarm controlled by the liquid level sensor.

4. The shed for preventing cement clinker from being damp according to claim 3, characterized in that: The compression ring (15) comprises at least two spliced segments for forming the compression ring (15), and the spliced segments are spliced at the head and tail to form the compression ring (15).

5. The shed for preventing cement clinker from being damp according to claim 1, wherein: The adjusting frame (32) comprises a top plate (321) in contact with the flexible film (2), the top plate (321) is provided with a sleeve (322), the support (31) is provided with a stand column (311) matched with the sleeve (322), the sleeve (322) is slidingly connected to the stand column (311), and the elastic member (33) is arranged in the sleeve (322).

6. The shed for preventing cement clinker from being damp according to claim 5, wherein: The elastic member (33) is a spring, an upper end of the elastic member (33) is in contact with the top plate (321), and a lower end of the elastic member (33) is in contact with the stand column (311).

7. The shed for preventing cement clinker from being damp according to claim 6, characterized in that: The support (31) is further provided with a pushing assembly (5) for pushing the adjusting frame (32) away from the support (31), the pushing assembly (5) comprises a push rod (51) rotationally connected to the support (31), one end of the push rod (51) extends below the sleeve (322), the other end of the push rod (51) is provided with a pull rope (52), the support (31) is provided with a vertical plate (53), the push rod (51) is rotationally connected to the vertical plate (53) through a rotating shaft (54), the vertical plate (53) is located at the middle of the length direction of the push rod (51), and the push rod (51) is in contact with the support (31) under the action of gravity when not under stress.

8. The shed for preventing cement clinker from being damp according to claim 7, characterized in that: A lower end of the sleeve (322) is provided with a contact plate (55) for increasing the contact area between the sleeve (322) and the push rod, the contact plate (55) and the sleeve (322) are in an integral structure, the push rod (51) is provided with a recess, and a part of the stand column (311) is located in the recess.

Citation Information

Patent Citations

  • High-temperature greenhouse with high sealing performance

    CN217850423U

  • Anti-water-soaking intelligent cooling car shed

    CN221119373U