Novel oxygenerator adsorption tower
By combining the support columns, connecting beams, and triangular support bases, the problem of inconvenient hoisting of traditional oxygen generator adsorption towers is solved, achieving hoisting and transportation effects with high stability and good safety.
Patent Information
- Application Number
- CN202422553532.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-22
- Publication Date
- 2025-11-28
- Estimated Expiration
- 2034-10-22
AI Technical Summary
Traditional oxygen generator adsorption towers are not easy to lift and transport, and are prone to tilting or tipping over during the lifting process, affecting efficiency and safety.
A novel oxygen generator adsorption tower was designed. Through the combination structure of supporting columns, connecting beams and triangular support bases, lifting lugs were added to facilitate overall lifting and transportation, thereby improving stability.
This resulted in a stable adsorption tower that was less prone to tipping over, improving construction efficiency and reducing safety risks.
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Figure CN223602286U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a novel oxygen generator adsorption tower belongs to oxygen generator production technical field. BACKGROUND
[0002] With the improvement of people's living standards and disease prevention consciousness, oxygen health care and oxygen therapy as an effective means to enhance physical fitness, prevent disease, are being more and more widely used. The working principle of oxygen production equipment is to use pressure swing adsorption technology, using the high pressure adsorption and low pressure desorption characteristics of molecular sieve to nitrogen, from the compressed air to separate oxygen and nitrogen. The adsorption tower as an important component in oxygen production technology, its function and structure directly affect the efficiency of oxygen production.
[0003] The utility model of patent number CN202322530116.3 discloses an oxygen generator adsorption tower device. The oxygen generator adsorption tower device includes adsorption tower assembly A, B, gas path pipe and oxygen production pipe, the adsorption tower assembly A, B all includes adsorption tower, the adsorption tower includes outer tower and inner tower, the interlayer of inner tower and outer tower forms airflow channel, the inner part of inner tower forms oxygen production channel, the gas path pipe is communicated with airflow channel, airflow channel is communicated with oxygen production channel, oxygen production channel is communicated with oxygen production pipe;The gas path pipe of adsorption tower assembly A, B is communicated respectively;The oxygen production pipe of adsorption tower assembly A, B is communicated respectively and still has parallel nitrogen discharge channel;The oxygen generator adsorption tower device still includes switching main valve, and this switching main valve is used for switching the gas path pipe, oxygen production pipe and / or nitrogen discharge channel arranged between adsorption tower assembly A, B.
[0004] The current technology does not consider comprehensively, has the following disadvantages: 1, the traditional oxygen generator adsorption tower is not convenient to be hoisted and transported. 2, when hoisting and transporting, there is only one supporting hanging force point, when hoisting operation, it is easy to skew, and then affects the efficiency of hoisting. 3, the oxygen generator adsorption tower is easy to overturn.
[0005] To solve one of the above problems, a novel oxygen generator adsorption tower is urgently needed. Utility model content
[0006] According to the above deficiencies in the prior art, the technical problem to be solved by the utility model is: how to realize the whole hoisting of the first tower body, the second tower body, the supporting column, the base beam, the triangular support seat A and the triangular support seat B by the hoist, facilitate transportation and installation, therefore a novel oxygen generator adsorption tower is provided.
[0007] The utility model discloses a novel oxygen generator adsorption tower, including first tower body, second tower body and the base crossbeam of supporting on ground, its characterized in that: still including the support column between first tower body, second tower body, support column and base crossbeam perpendicular connection, first tower body and support column are connected through first connecting crossbeam, second tower body and support column are connected through second connecting crossbeam, first connecting crossbeam and second connecting crossbeam are installed with left side lifting lug, right side lifting lug respectively, the outside wall on the bottom of first tower body is fixed with triangle support seat A, the outside wall on the bottom of second tower body is fixed with triangle support seat B, triangle support seat A, triangle support seat B all support on ground and are fixedly connected with the both ends of base crossbeam respectively.
[0008] First tower body, second tower body utilize first connecting crossbeam, second connecting crossbeam and support column synergic combination and form the main support, utilize triangle support seat A, triangle support seat B to first tower body, second tower body are assisted support respectively, and the stability of first tower body, second tower body whole support is good, and it is not easy to dump, and through the left side lifting lug and right side lifting lug of adding, the first tower body, second tower body, support column, base crossbeam, triangle support seat A and triangle support seat B are hoisted in whole by crane, and the whole is hoisted, and the construction efficiency can be improved effectively, and the safety risk in construction process is reduced.
[0009] Preferably, the first connecting crossbeam includes a left side horizontal I-beam welded to the outer wall of the first tower body, another end of the left side horizontal I-beam is welded with a connecting end plate A, a left side lower reinforcement plate is welded to the lower surface of the left side horizontal I-beam along the length direction thereof, the length of the left side lower reinforcement plate is shorter than the length of the left side horizontal I-beam, one end of the left side lower reinforcement plate is welded with the first tower body, and the other end is welded with a connecting end plate B, the connecting end plate A is detachably connected with the support column through a first connecting bolt, the connecting end plate B is detachably connected with a connecting end plate C through a second connecting bolt, the connecting end plate C is welded and connected with a left side lower I-beam on the support column, and the upper surface of the left side lower I-beam abuts against the lower surface of the left side horizontal I-beam. The detachable installation of the first tower body and the support column can be realized, the structure design of the left side horizontal I-beam, the left side lower reinforcement plate and the left side lower I-beam can also enhance the supporting capacity of the first connecting crossbeam, ensure the supporting effect of the first tower body, and the stability of the whole support of the first tower body and the second tower body is good, and it is not easy to dump.
[0010] Preferably, the second connecting crossbeam comprises a right horizontal I-beam welded on the outer wall of the second tower body, the other end of the right horizontal I-beam is welded with a connecting end plate D, the lower surface of the right horizontal I-beam is welded with a right lower layer rib plate along the length direction of the right horizontal I-beam, the length of the right lower layer rib plate is shorter than the length of the right horizontal I-beam, one end of the right lower layer rib plate is welded with the second tower body, the other end is welded with a connecting end plate E, the connecting end plate D is detachably connected with the supporting column through a third connecting bolt, the connecting end plate E is detachably connected with a connecting end plate F through a fourth connecting bolt, and the connecting end plate E is welded with the right lower layer I-beam on the supporting column. The supporting effect of the second tower body is guaranteed, the stability of the overall support of the first tower body and the second tower body is good, and the first tower body is not easy to fall.
[0011] Preferably, the left lifting lug and the right lifting lug are respectively arranged on the left horizontal I-beam and the right horizontal I-beam.
[0012] Preferably, the left lifting lug comprises a welded plate connected with the left horizontal I-beam, and a lifting lug hole is formed in the welded plate.
[0013] Preferably, the base crossbeam is a rectangular steel pipe.
[0014] Preferably, the triangular supporting seat A comprises a U-shaped seat with an opening facing downward, the U-shaped seat is clamped on the base crossbeam, the top of the U-shaped seat is connected with the base crossbeam through a fifth connecting bolt, and the two side edges of the U-shaped seat are respectively welded with an extension rod A and an extension rod B, the other end of the extension rod A and the other end of the extension rod B are respectively welded with an inclined inclined strut A and an inclined strut B, and the other end of the inclined strut A and the other end of the inclined strut B are respectively welded on the outer walls of the front and rear of the first tower body. Through the design of the U-shaped seat, the top of the U-shaped seat is connected with the base crossbeam through the fifth connecting bolt, so that the triangular supporting seat A and the base crossbeam can be detachably installed, and the triangular supporting system also guarantees the supporting effect of the first tower body, and the first tower body is not easy to fall.
[0015] Preferably, the extension rod A and the extension rod B are both rectangular steel pipes, and the lower surfaces of the two are in the same horizontal plane.
[0016] Preferably, the triangular supporting seat B is the same as the triangular supporting seat A in structure.
[0017] Compared with the prior art, the utility model has the following beneficial effects:
[0018] The novel oxygen generator adsorption tower, the first tower body and the second tower body are cooperatively combined with the supporting stand column through the first connecting cross beam and the second connecting cross beam to form main support, and the first tower body and the second tower body are assisted and supported through the triangular supporting seat A and the triangular supporting seat B respectively, the stability of the overall support of the first tower body and the second tower body is good, and the first tower body and the second tower body are not prone to falling, and through the left lifting lug and the right lifting lug, the first tower body, the second tower body, the supporting stand column, the base cross beam, the triangular supporting seat A and the triangular supporting seat B can be hoisted integrally by a hoisting machine, convenient for transfer and installation, and meanwhile, the construction efficiency can be effectively improved, and the safety risk in the construction process is reduced.
[0019] The novel oxygen generator adsorption tower, the first connecting cross beam can realize detachable installation of the first tower body and the supporting stand column, the structure design of the left side horizontal I-shaped steel, the left side lower layer rib plate and the left side lower layer I-shaped steel can also enhance the supporting capacity of the first connecting cross beam, the supporting effect of the first tower body is guaranteed, and the stability of the overall support of the first tower body and the second tower body is good, and the first tower body and the second tower body are not prone to falling.
[0020] The novel oxygen generator adsorption tower, through the design of the U-shaped seat, the top of the U-shaped seat is connected with the base cross beam through the fifth connecting bolt, detachable installation of the triangular supporting seat A and the base cross beam can be realized, meanwhile, the triangular supporting system also guarantees the supporting effect of the first tower body, and the first tower body is not prone to falling. BRIEF DESCRIPTION OF DRAWINGS
[0021] In order to more clearly illustrate the specific embodiments of the present application or the technical solutions in the prior art, the drawings needed to be used in the specific embodiments or the prior art description will be briefly introduced below. In all the drawings, similar elements or parts are generally identified by similar reference numerals. In the drawings, various elements or parts are not necessarily drawn according to the actual scale.
[0022] Figure 1 It is a structural schematic view of the present application;
[0023] Figure 2 It is an external structural schematic view of the first connecting cross beam of the present application;
[0024] Figure 3 It is an external structural schematic view of the triangular supporting seat A of the present application;
[0025] In the diagram: 1. First tower body; 2. Second tower body; 3. Support column; 4. Base beam; 5. Triangular support seat A; 5.1. U-shaped seat; 5.2. Fifth connecting bolt; 5.3. Extension rod A; 5.4. Extension rod B; 5.5. Diagonal brace A; 5.6. Diagonal brace B; 6. Triangular support seat B; 7. Left lifting lug; 8. Right lifting lug; 9. Left horizontal I-beam; 10. Left lower stiffening plate; 11. Connecting end plate A; 12. Connecting end plate B; 13. Left lower I-beam; 14. First connecting bolt; 15. Second connecting bolt; 16. Connecting end plate C. Detailed Implementation
[0026] The present invention will be further described below with reference to the accompanying drawings: The present invention will be further described below through specific embodiments, but it is not intended to limit the present invention. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention should be included within the protection scope of the present invention.
[0027] Example 1, such as Figures 1-2 As shown, the novel oxygen generator adsorption tower includes a first tower body 1, a second tower body 2, and a base beam 4 supported on the ground. It also includes a support column 3 located between the first tower body 1 and the second tower body 2. The support column 3 is vertically connected to the base beam 4. The first tower body 1 and the support column 3 are connected by a first connecting beam, and the second tower body 2 and the support column 3 are connected by a second connecting beam. A left lifting lug 7 and a right lifting lug 8 are respectively installed on the first connecting beam and the second connecting beam. A triangular support A5 is fixed on the outer wall of the bottom of the first tower body 1, and a triangular support B6 is fixed on the outer wall of the bottom of the second tower body 2. Both the triangular support A5 and the triangular support B6 are supported on the ground and are respectively fixedly connected to both ends of the base beam 4.
[0028] The first tower body 1 and the second tower body 2 are mainly supported by the first connecting beam, the second connecting beam and the supporting column 3. At the same time, the first tower body 1 and the second tower body 2 are supported by the triangular support bases A5 and B6 respectively. The overall support of the first tower body 1 and the second tower body 2 has good stability and is not easy to tilt. In addition, by adding the left lifting lug 7 and the right lifting lug 8, it is easy for the crane to lift the first tower body 1, the second tower body 2, the supporting column 3, the base beam 4, the triangular support base A5 and the triangular support base B6 as a whole, which facilitates transportation and installation. At the same time, it can effectively improve construction efficiency and reduce safety risks during construction.
[0029] Example 2, as Figures 1-3As shown, the new oxygen generator adsorption tower, including first tower body 1, second tower body 2 and support on the ground on the beam 4, also includes between the first tower body 1, second tower body 2 support column 3, the support column 3 and the beam 4 vertical connection, the first tower body 1 and support column 3 between the first connecting beam connection, the second tower body 2 and support column 3 between the second connecting beam connection, the first connecting beam and the second connecting beam are respectively installed with left side lifting lug 7, right side lifting lug 8, the first tower body 1 bottom outside wall is fixed with triangular support seat A 5, the second tower body 2 bottom outside wall is fixed with triangular support seat B 6, the triangular support seat A 5, triangular support seat B 6 are supported on the ground and are respectively fixedly connected with both ends of the beam 4.
[0030] Preferably, the first connecting beam includes the left side horizontal I-steel 9 welded on the outer wall of the first tower body 1, the other end of the left side horizontal I-steel 9 is welded with a connecting end plate A11, the lower surface of the left side horizontal I-steel 9 is welded with a left side lower layer rib plate 10 along the length direction thereof, the length of the left side lower layer rib plate 10 is shorter than that of the left side horizontal I-steel 9, one end of the left side lower layer rib plate 10 is welded with the first tower body 1, the other end is welded with a connecting end plate B12, the connecting end plate A11 is detachably connected with the support column 3 through a first connecting bolt 14, the connecting end plate B12 is detachably connected with a connecting end plate C16 through a second connecting bolt 15, the connecting end plate C16 is welded with the left side lower layer I-steel 13 on the support column 3, and the upper surface of the left side lower layer I-steel 13 abuts against the lower surface of the left side horizontal I-steel 9. The detachable installation of the first tower body 1 and the support column 3 can be realized, the structure design of the left side horizontal I-steel 9, the left side lower layer rib plate 10 and the left side lower layer I-steel 13 can also enhance the supporting capacity of the first connecting beam, ensure the supporting effect on the first tower body 1, and the stability of the overall support of the first tower body 1 and the second tower body 2 is good, and the first tower body 1 is not prone to falling.
[0031] Preferably, the second connecting beam includes the right side horizontal I-steel welded on the outer wall of the second tower body 2, the other end of the right side horizontal I-steel is welded with a connecting end plate D, the lower surface of the right side horizontal I-steel is welded with a right side lower layer rib plate along the length direction thereof, the length of the right side lower layer rib plate is shorter than that of the right side horizontal I-steel, one end of the right side lower layer rib plate is welded with the second tower body 2, the other end is welded with a connecting end plate E, the connecting end plate D is detachably connected with the support column 3 through a third connecting bolt, the connecting end plate E is detachably connected with a connecting end plate F through a fourth connecting bolt, and the connecting end plate E is welded with the right side lower layer I-steel on the support column 3. The supporting effect on the second tower body 2 is ensured, the stability of the overall support of the first tower body 1 and the second tower body 2 is good, and the first tower body 1 is not prone to falling.
[0032] Preferably, the left lifting lug 7 and the right lifting lug 8 are respectively mounted on the left horizontal I-shaped steel 9 and the right horizontal I-shaped steel.
[0033] Preferably, the left lifting lug 7 comprises a welding plate connected with the left horizontal I-shaped steel 9, and a lifting lug hole is formed in the welding plate.
[0034] Preferably, the base beam 4 is a rectangular steel pipe.
[0035] Preferably, the triangular support seat A 5 comprises a downwardly open U-shaped seat 5.1, the U-shaped seat is clamped on the base beam 4, the top of the U-shaped seat 5.1 is connected with the base beam 4 through a fifth connecting bolt 5.2, and the two side edges of the U-shaped seat 5.1 are respectively welded with an extension rod A 5.3 and an extension rod B 5.4, the other end of the extension rod A 5.3 and the other end of the extension rod B 5.4 are respectively welded with an inclined inclined strut A 5.5 and an inclined strut B 5.6, and the other end of the inclined strut A 5.5 and the other end of the inclined strut B 5.6 are respectively welded on the outer walls in front of and behind the first tower body 1. Through the design of the U-shaped seat 5.1, the top of the U-shaped seat 5.1 is connected with the base beam 4 through the fifth connecting bolt 5.2, which can realize the detachable installation of the triangular support seat A 5 and the base beam 4, and the triangular support system also guarantees the support effect of the first tower body 1, and is not easy to fall.
[0036] Preferably, the extension rod A 5.3 and the extension rod B 5.4 are both rectangular steel pipes, and the lower surfaces of the two are in the same horizontal plane.
[0037] Preferably, the triangular support seat B 6 has the same structure as the triangular support seat A 5.
[0038] The novel oxygen generator adsorption tower, the first tower body and the second tower body are cooperatively combined with the supporting columns through the first connecting beam and the second connecting beam to form main support, and the first tower body and the second tower body are respectively assisted by the triangular support seat A and the triangular support seat B, so that the stability of the overall support of the first tower body and the second tower body is good, and the first tower body and the second tower body are not easy to fall, and through the left lifting lug and the right lifting lug, the first tower body, the second tower body, the supporting column, the base beam, the triangular support seat A and the triangular support seat B can be hoisted by the hoisting machine, so that the transportation and installation are facilitated, the construction efficiency can be effectively improved, and the safety risk in the construction process can be reduced.
[0039] The novel oxygen generator adsorption tower, the first connecting beam can realize the detachable installation of the first tower body and the supporting column, the structure design of the left horizontal I-shaped steel, the left lower layer rib plate and the left lower layer I-shaped steel can also enhance the supporting capacity of the first connecting beam, the stability of the overall support of the first tower body and the second tower body is good, and the first tower body and the second tower body are not easy to fall.
[0040] The novel oxygen generator adsorption tower, through the design of the U-shaped seat, the top of the U-shaped seat is connected with the base beam through the fifth connecting bolt, which can realize the detachable installation of the triangular supporting seat A and the base beam, and the triangular supporting system also ensures the supporting effect of the first tower body, and is not easy to fall.
[0041] The basic principle, main features and advantages of the utility model are shown and described above. It should be understood by those skilled in the art that the utility model is not limited by the above examples, and the above examples and descriptions in the specification are only to illustrate the principles of the application. Without departing from the spirit and scope of the utility model, the utility model can also have various changes and improvements, and these changes and improvements all fall within the scope of the claimed utility model. The scope of protection of the utility model is defined by the appended claims and their equivalents.
[0042] The parts not described in detail in the present application are well-known to those skilled in the art.
Claims
1. A novel oxygen generator adsorption tower, comprising a first tower body, a second tower body, and a base beam supported on the ground, characterized in that: It also includes a supporting column located between the first tower body and the second tower body. The supporting column is vertically connected to the base beam. The first tower body and the supporting column are connected by a first connecting beam, and the second tower body and the supporting column are connected by a second connecting beam. The first connecting beam and the second connecting beam are respectively equipped with a left lifting lug and a right lifting lug. A triangular support A is fixed on the outer wall of the bottom of the first tower body, and a triangular support B is fixed on the outer wall of the bottom of the second tower body. Both triangular support A and triangular support B are supported on the ground and are respectively fixedly connected to both ends of the base beam.
2. The novel oxygen generator adsorption tower according to claim 1, characterized in that, The first connecting beam includes a left horizontal H-beam welded to the outer wall of the first tower body. A connecting end plate A is welded to the other end of the left horizontal H-beam. A left lower stiffening plate is welded along the length of the lower surface of the left horizontal H-beam. The length of the left lower stiffening plate is shorter than the length of the left horizontal H-beam. One end of the left lower stiffening plate is welded to the first tower body, and the other end is welded to a connecting end plate B. The connecting end plate A is detachably connected to the supporting column by a first connecting bolt. The connecting end plate B is detachably connected to the connecting end plate C by a second connecting bolt. The connecting end plate C is welded to the left lower H-beam on the supporting column. The upper surface of the left lower H-beam is in contact with the lower surface of the left horizontal H-beam.
3. The novel oxygen generator adsorption tower according to claim 2, characterized in that, The second connecting beam includes a right-side horizontal H-beam welded to the outer wall of the second tower body. A connecting end plate D is welded to the other end of the right-side horizontal H-beam. A right-side lower stiffening plate is welded along the length of the lower surface of the right-side horizontal H-beam. The length of the right-side lower stiffening plate is shorter than the length of the right-side horizontal H-beam. One end of the right-side lower stiffening plate is welded to the second tower body, and the other end is welded to a connecting end plate E. The connecting end plate D is detachably connected to the supporting column by a third connecting bolt. The connecting end plate E is detachably connected to the connecting end plate F by a fourth connecting bolt. The connecting end plate E is welded to the right-side lower H-beam on the supporting column.
4. The novel oxygen generator adsorption tower according to claim 3, characterized in that, The left and right lifting lugs are respectively installed on the left and right horizontal I-beams.
5. The novel oxygen generator adsorption tower according to claim 4, characterized in that, The left lifting lug includes a welded plate connected to the left horizontal I-beam, and a lifting lug hole is provided on the welded plate.
6. The novel oxygen generator adsorption tower according to claim 4, characterized in that, The base beam is a rectangular steel pipe.
7. The novel oxygen generator adsorption tower according to claim 6, characterized in that, The triangular support A includes a U-shaped seat with the opening facing downwards. The U-shaped seat is clamped on the base beam. The top of the U-shaped seat is connected to the base beam by a fifth connecting bolt. Extension rod A and extension rod B are welded to the two sides of the U-shaped seat, respectively. Inclined diagonal bracing rod A and diagonal bracing rod B are welded to the other ends of extension rod A and extension rod B, respectively. The other ends of diagonal bracing rod A and diagonal bracing rod B are welded to the outer walls of the front and rear of the first tower body, respectively.
8. The novel oxygen generator adsorption tower according to claim 7, characterized in that, Both extension rod A and extension rod B are rectangular steel pipes, and both are on the same horizontal plane as the lower surface of the base beam.
9. The novel oxygen generator adsorption tower according to claim 7, characterized in that, The triangular support B has the same structure as the triangular support A.
Citation Information
Patent Citations
Oxygen generator adsorption tower device
CN221015274U