WO2022071950A1 - Frame structure of aquaponic system assembled by module elements - Google Patents

Frame structure of aquaponic system assembled by module elements Download PDF

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Publication number
WO2022071950A1
WO2022071950A1 PCT/US2020/053691 US2020053691W WO2022071950A1 WO 2022071950 A1 WO2022071950 A1 WO 2022071950A1 US 2020053691 W US2020053691 W US 2020053691W WO 2022071950 A1 WO2022071950 A1 WO 2022071950A1
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WO
WIPO (PCT)
Prior art keywords
tenon
mortise
connecting member
frame
shaped
Prior art date
Application number
PCT/US2020/053691
Other languages
French (fr)
Inventor
Liang-Chi Chang
Original Assignee
Mytek International Inc.
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Mytek International Inc. filed Critical Mytek International Inc.
Priority to PCT/US2020/053691 priority Critical patent/WO2022071950A1/en
Publication of WO2022071950A1 publication Critical patent/WO2022071950A1/en

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Classifications

    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01GHORTICULTURE; CULTIVATION OF VEGETABLES, FLOWERS, RICE, FRUIT, VINES, HOPS OR SEAWEED; FORESTRY; WATERING
    • A01G31/00Soilless cultivation, e.g. hydroponics
    • A01G31/02Special apparatus therefor
    • A01G31/06Hydroponic culture on racks or in stacked containers
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02PCLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
    • Y02P60/00Technologies relating to agriculture, livestock or agroalimentary industries
    • Y02P60/20Reduction of greenhouse gas [GHG] emissions in agriculture, e.g. CO2
    • Y02P60/21Dinitrogen oxide [N2O], e.g. using aquaponics, hydroponics or efficiency measures

Definitions

  • the present invention relates to an aquaponic system, and more particularly to a frame structure assembled by module elements in the way of tenon-mortise structure and bearing at least one layer of cultivating tank.
  • Each of the connectors 21 is hollow and allows insertion of two of the upright tubes 22.
  • Each of the connectors 21 is provided with two mounting sleeves 29 allowing insertion of two of the transverse tubes 23.
  • the two mounting sleeves 29 are perpendicular to each other.
  • Each of the connectors 21, each of the mounting sleeves 29, each of the upright tubes 22, each of the transverse tubes 23 and each of the adjusting tubes 24 is provided with an aperture 211, 291, 221, 231 and 242 allowing insertion of the pins 27 and fastened by the fasteners 28.
  • Each of the pins 27 is provided with an annular groove 271.
  • Each of the fasteners 28 is provided with a C-shaped snap ring 281 retained in the annular groove 271 of one of the pins 27.
  • the frame structure of said aquaponic system must be assembled of numerous elements and fittings by skilled person with tools. Obviously, average consumers are incompetent for it. Once part of the elements is destroyed, it is unlikely to be replaced by standard part. Therefore, how to modularize and standardize the elements of the frame structure of aquaponic system for easy assembly without specific tools is a worthy topic to research and to develop in the current E-commerce business model of on-line distribution and after-sales logistics.
  • the main objective of the present invention is to modularize various elements of the frame structure of aquaponic system, so that the consumers can easy assemble without specific tools, the standardize elements are favorable for assembly and maintenance.
  • the present invention provides a frame structure of aquaponic system assembled by module elements, comprising a base, at least a cultivating tank, a fix cover and a plurality of connecting members. Said elements of a frame structure are connected by the friction of elements through mortise-tenon joint.
  • the base is a rectangular base composed of a first n -shaped base, a second n -shaped base and a connecting member transversely connecting the first n -shaped base and the second n -shaped base.
  • the fix cover is a rectangular frame composed of a first n -shaped frame, a second n -shaped frame and a connecting member transversely connecting the first n -shaped frame and the second n -shaped frame.
  • the long side of the cultivating tank is provided with connecting lugs for the connecting member to pass through.
  • one end of the connecting member is formed into a tenon, the other end is formed into a mortise.
  • the cross section of the mortise and tenon is a three-circle intersection of Venn diagram.
  • Fig.l is the structural diagram of the U.S. Patent No. 9,775,330.
  • Fig.2 is the partial exploded view of the frame structure of the U.S. Patent No. 9,775,330.
  • Fig.3 is the exploded diagram of the structure of the present invention.
  • Fig.4 is the combined diagram of the structure of the present invention.
  • a frame structure of aquaponic system assembled by module elements comprises a base, at least one cultivating tank, a fix cover and a plurality of connecting members. Said elements are connected by the friction of elements through mortise-tenon joint, wherein:
  • the base 3 is a rectangular frame, comprising a first n -shaped base 31, a second n -shaped base 32 and a first connecting member 41 transversely connecting the first n -shaped base 31 and the second n -shaped base 32.
  • a mortise 311 is arranged upwards at two comers of the first n -shaped base 31 respectively, two horizontal ends are formed into mortise 312 or tenon 313 respectively, so as to correspond to the tenon 411 or mortise 412 at one end of first connecting member 41.
  • a mortise 321 is arranged upwards at two comers of the second n -shaped base 32 respectively, and two horizontal ends are formed into mortise 323 or tenon 322 respectively, so as to correspond to the tenon 411 or mortise 412 at the other end of first connecting member 41.
  • the cross section of said mortise and tenon is not circle or square, but the three-circle intersection of Venn diagram, the frieze with clear dent at the intersection enhances the strength of elements, and avoids both of slide after inserting and influencing the stability.
  • the fix cover 6 is also a rectangular frame, comprising a first n -shaped frame 61, a second n -shaped frame 62 and a first connecting member 41 transversely connecting the first n -shaped frame 61 and the second n -shaped frame 62.
  • a tenon 611 is arranged downwards at two corners of the first n -shaped frame 62 respectively (as shown in partial enlarged view A), two horizontal ends are formed into mortise 613 or tenon 612 respectively, so as to correspond to the tenon 411 or mortise 412 at one end of the first connecting member 41.
  • a tenon (not shown in the figure) is arranged downwards at two comers of the second n -shaped frame 62 respectively, and two horizontal ends are formed into mortise 623 or tenon 622 respectively, so as to correspond to the tenon 411 or mortise 412 at the other end of the first connecting member 41.
  • the cross section of said mortise and tenon is three-circle intersection, so as to enhance the strength of elements and to avoid both of slide and influencing the stability.
  • the cultivating tanks 51, 52 are rectangular planters, the long sides of cultivating tanks 51, 52 correspond to the base comer mortises 311, 321 and fixed frame tenon 611, provided with connecting lugs 511, 521 for the connecting member to pass through.
  • the cross section of the connecting lugs is three-circle intersection, so as to enhance the strength of elements and to avoid both of the slide and influencing the stability.
  • One end of the connecting members 41, 42, 43, 44, 45 is formed into tenons 411, 421, 431, 441, 451, the other end is mortises 412, 422, 432, 442, 452, the members shall be joggled to extend the length.
  • the mortises 313, 323 or tenons 312, 322 at the horizontal end of the first n -shaped base 31 and the second n -shaped base 32 of base 3 are transversely connected to the tenon 411 or mortise 412 of the first connecting member 41 to form a rectangular frame.
  • the tenon 421 of the second connecting member 42 is longitudinally inserted in the mortises 311, 321 at the corners of the first n -shaped base 31 and the second n -shaped base 32.
  • the tenon 431 of the third connecting member 43 is inserted in the mortise 422 at the other end of the second connecting member 42, so as to extend the height longitudinally to form the first layer of support LI, the space enclosed by the first layer of support LI is provided for placing an aquarium like that shown in Fig.l of the U.S. Patent No. 9,775,330.
  • the first layer of cultivating tank 51 is located at the top end of the first layer of support LI, and fixed by the joint of the mortise 432 of the third connecting member 43, the connecting lug 511 of cultivating tank and the tenon 441 of the fourth connecting member 44.
  • the space enclosed by the second layer of support L2 formed by the fourth connecting member 44 is provided for planting.
  • the second layer of cultivating tank 52 is located at the top end of the second layer of support L2, and fixed by the joint of the mortise 442 of the fourth connecting member 44, the connecting lug 521 of cultivating tank and the tenon 451 of the fifth connecting member 45.
  • the space enclosed by the third layer of support L3 formed by the fifth connecting member 45 is also provided for planting.
  • the mortises 613, 623 or tenons 612, 622 of the first n -shaped frame 61 and the second n -shaped frame 62 of fix cover 6 are transversely connected to the tenon 411 or mortise 412 of the first connecting member 41 to form a rectangular frame.
  • the module base, cultivating tanks, fix cover and connecting members can be easy assembled by general users without specific tools.
  • module elements are convenient for assembly and disassembly, once an element is damaged, it can be replaced by a standard element immediately.
  • the frame structure disclosed in the U.S. Patent No. 9,775,330 comprises a plurality of connectors, a plurality of upright tubes, a plurality of transverse tubes, a plurality of pins and a plurality of fasteners, the assembly is complicated.
  • the module elements of the present invention can be easy assembled without specific tools and are convenient for replacement and maintenance.

Abstract

A frame structure of aquaponic system assembled by module elements, comprising a base, at least a cultivating tank, a fix cover and a plurality of connecting members. Said elements of a frame structure are connected by the friction of elements through mortise-tenon joint and are easy for assembly and maintenance.

Description

FRAME STRUCTURE OF AQUAPONIC SYSTEM ASSEMBEED BY MODULE ELEMENTS
BACKGROUND OF INVENTION
1. Field of the Invention
The present invention relates to an aquaponic system, and more particularly to a frame structure assembled by module elements in the way of tenon-mortise structure and bearing at least one layer of cultivating tank.
2. Description of Related Art
Referring to Fig. 1 and Fig. 2, the U.S. Patent No.9775330 disclosed an aquaponic system comprises an aquarium 10, a frame 20 and a plurality of cultivating tanks 30, wherein the frame 10 includes a plurality of connectors 21, a plurality of upright tubes 22, a plurality of transverse tubes 23, a plurality of pins 27 and a plurality of fasteners 28. Each of the connectors 21 is hollow and allows insertion of two of the upright tubes 22. Each of the connectors 21 is provided with two mounting sleeves 29 allowing insertion of two of the transverse tubes 23. The two mounting sleeves 29 are perpendicular to each other. Each of the connectors 21, each of the mounting sleeves 29, each of the upright tubes 22, each of the transverse tubes 23 and each of the adjusting tubes 24 is provided with an aperture 211, 291, 221, 231 and 242 allowing insertion of the pins 27 and fastened by the fasteners 28. Each of the pins 27 is provided with an annular groove 271. Each of the fasteners 28 is provided with a C-shaped snap ring 281 retained in the annular groove 271 of one of the pins 27.
The frame structure of said aquaponic system must be assembled of numerous elements and fittings by skilled person with tools. Obviously, average consumers are incompetent for it. Once part of the elements is destroyed, it is unlikely to be replaced by standard part. Therefore, how to modularize and standardize the elements of the frame structure of aquaponic system for easy assembly without specific tools is a worthy topic to research and to develop in the current E-commerce business model of on-line distribution and after-sales logistics.
SUMMARY OF THE INVENTION
The main objective of the present invention is to modularize various elements of the frame structure of aquaponic system, so that the consumers can easy assemble without specific tools, the standardize elements are favorable for assembly and maintenance.
Therefore, the present invention provides a frame structure of aquaponic system assembled by module elements, comprising a base, at least a cultivating tank, a fix cover and a plurality of connecting members. Said elements of a frame structure are connected by the friction of elements through mortise-tenon joint.
According to said structural feature, the base is a rectangular base composed of a first n -shaped base, a second n -shaped base and a connecting member transversely connecting the first n -shaped base and the second n -shaped base.
According to said structural feature, the fix cover is a rectangular frame composed of a first n -shaped frame, a second n -shaped frame and a connecting member transversely connecting the first n -shaped frame and the second n -shaped frame.
According to said structural feature, the long side of the cultivating tank is provided with connecting lugs for the connecting member to pass through.
According to said structural feature, one end of the connecting member is formed into a tenon, the other end is formed into a mortise.
According to said structural feature, the cross section of the mortise and tenon is a three-circle intersection of Venn diagram.
BRIEF DESCRIPTION OF THE DRAWINGS
Fig.l is the structural diagram of the U.S. Patent No. 9,775,330.
Fig.2 is the partial exploded view of the frame structure of the U.S. Patent No. 9,775,330.
Fig.3 is the exploded diagram of the structure of the present invention.
Fig.4 is the combined diagram of the structure of the present invention.
DETAILED DESCRIPTION OF THE INVENTION
To help those skilled in the art understand the objective of the present invention, a preferred embodiment of the present invention is described in detail with reference to the accompanying drawings:
The exploded diagram of the present invention is shown in Fig. 3 and the combined diagram of the present invention is shown in Fig. 4, where a frame structure of aquaponic system assembled by module elements comprises a base, at least one cultivating tank, a fix cover and a plurality of connecting members. Said elements are connected by the friction of elements through mortise-tenon joint, wherein:
The base 3 is a rectangular frame, comprising a first n -shaped base 31, a second n -shaped base 32 and a first connecting member 41 transversely connecting the first n -shaped base 31 and the second n -shaped base 32. A mortise 311 is arranged upwards at two comers of the first n -shaped base 31 respectively, two horizontal ends are formed into mortise 312 or tenon 313 respectively, so as to correspond to the tenon 411 or mortise 412 at one end of first connecting member 41. In like manner, a mortise 321 is arranged upwards at two comers of the second n -shaped base 32 respectively, and two horizontal ends are formed into mortise 323 or tenon 322 respectively, so as to correspond to the tenon 411 or mortise 412 at the other end of first connecting member 41. The cross section of said mortise and tenon is not circle or square, but the three-circle intersection of Venn diagram, the frieze with clear dent at the intersection enhances the strength of elements, and avoids both of slide after inserting and influencing the stability.
Similar to said base 3, the fix cover 6 is also a rectangular frame, comprising a first n -shaped frame 61, a second n -shaped frame 62 and a first connecting member 41 transversely connecting the first n -shaped frame 61 and the second n -shaped frame 62. A tenon 611 is arranged downwards at two corners of the first n -shaped frame 62 respectively (as shown in partial enlarged view A), two horizontal ends are formed into mortise 613 or tenon 612 respectively, so as to correspond to the tenon 411 or mortise 412 at one end of the first connecting member 41. In like manner, a tenon (not shown in the figure) is arranged downwards at two comers of the second n -shaped frame 62 respectively, and two horizontal ends are formed into mortise 623 or tenon 622 respectively, so as to correspond to the tenon 411 or mortise 412 at the other end of the first connecting member 41. In like manner, the cross section of said mortise and tenon is three-circle intersection, so as to enhance the strength of elements and to avoid both of slide and influencing the stability. The cultivating tanks 51, 52 are rectangular planters, the long sides of cultivating tanks 51, 52 correspond to the base comer mortises 311, 321 and fixed frame tenon 611, provided with connecting lugs 511, 521 for the connecting member to pass through. In like manner, the cross section of the connecting lugs is three-circle intersection, so as to enhance the strength of elements and to avoid both of the slide and influencing the stability.
One end of the connecting members 41, 42, 43, 44, 45 is formed into tenons 411, 421, 431, 441, 451, the other end is mortises 412, 422, 432, 442, 452, the members shall be joggled to extend the length.
For assembly, as shown in Fig.4, the mortises 313, 323 or tenons 312, 322 at the horizontal end of the first n -shaped base 31 and the second n -shaped base 32 of base 3 are transversely connected to the tenon 411 or mortise 412 of the first connecting member 41 to form a rectangular frame.
The tenon 421 of the second connecting member 42 is longitudinally inserted in the mortises 311, 321 at the corners of the first n -shaped base 31 and the second n -shaped base 32. The tenon 431 of the third connecting member 43 is inserted in the mortise 422 at the other end of the second connecting member 42, so as to extend the height longitudinally to form the first layer of support LI, the space enclosed by the first layer of support LI is provided for placing an aquarium like that shown in Fig.l of the U.S. Patent No. 9,775,330.
The first layer of cultivating tank 51 is located at the top end of the first layer of support LI, and fixed by the joint of the mortise 432 of the third connecting member 43, the connecting lug 511 of cultivating tank and the tenon 441 of the fourth connecting member 44. The space enclosed by the second layer of support L2 formed by the fourth connecting member 44 is provided for planting.
The second layer of cultivating tank 52 is located at the top end of the second layer of support L2, and fixed by the joint of the mortise 442 of the fourth connecting member 44, the connecting lug 521 of cultivating tank and the tenon 451 of the fifth connecting member 45. The space enclosed by the third layer of support L3 formed by the fifth connecting member 45 is also provided for planting.
The mortises 613, 623 or tenons 612, 622 of the first n -shaped frame 61 and the second n -shaped frame 62 of fix cover 6 are transversely connected to the tenon 411 or mortise 412 of the first connecting member 41 to form a rectangular frame.
Finally, the downward tenon 611 at the corners of the first n -shaped frame 61 and the second n -shaped frame 62 of fix cover is inserted in the mortise 452 of the fifth connecting member 45 to fix the third layer of support L3.
Through said assembly steps, the module base, cultivating tanks, fix cover and connecting members can be easy assembled by general users without specific tools. As module elements are convenient for assembly and disassembly, once an element is damaged, it can be replaced by a standard element immediately.
The frame structure disclosed in the U.S. Patent No. 9,775,330 comprises a plurality of connectors, a plurality of upright tubes, a plurality of transverse tubes, a plurality of pins and a plurality of fasteners, the assembly is complicated. The module elements of the present invention can be easy assembled without specific tools and are convenient for replacement and maintenance. Although the invention has been described with reference to specific embodiments, this description is not meant to be construed in a limiting sense. Various modifications of the disclosed embodiments, as well as alternative embodiments, will be apparent to persons skilled in the art. It is, therefore, contemplated that the appended claims will cover all modifications that fall within the true scope of the invention.

Claims

CLAIMS:
1. A frame structure of aquaponic system assembled by a base, at least a cultivating tank, a fixed frame and a plurality of connecting members in the way of mortise-tenon joint, wherein said base is a rectangular frame composed of a first n -shaped base, a second n -shaped base and a first connecting member transversely connecting the first n -shaped base and the second n -shaped base; said fixed frame is a rectangular frame composed of a first n -shaped frame, a second n -shaped frame and a first connecting member transversely connecting the first n -shaped frame and the second n -shaped frame; said cultivating tank is provided with connecting lugs for connecting member passing through; one end of said connecting member is formed into a tenon, the other end is formed into a mortise.
2. The frame structure of aquaponic system in Claim 1, wherein a mortise is arranged upwards at the comers of the first n -shaped base and the second n -shaped base respectively, two horizontal ends are formed into tenon or mortise respectively.
3. The frame structure of aquaponic system in Claim 2, wherein the mortise or tenon at the horizontal end of said first n -shaped base and said second n -shaped base is connected to the tenon or mortise of the first connecting member to form a rectangular frame.
4. The frame structure of aquaponic system in Claim 1, wherein a tenon is
8 arranged downwards at the comers of the first n -shaped frame and the second n -shaped frame of said fixed frame respectively, two horizontal ends are formed into mortise or tenon respectively.
5. The frame structure of aquaponic system in Claim 4, wherein the mortise or tenon at the horizontal end of said first n -shaped frame and said second n -shaped frame is connected to the tenon or mortise of the first connecting member to form a rectangular frame.
6. The frame structure of aquaponic system in Claim 2, wherein the tenon of the second connecting member is inserted in the mortises at the comers of said first n -shaped base and said second n -shaped base, the tenon of the third connecting member is inserted in the mortise at the other end of the second connecting member, forming a first layer of support.
7. The frame structure of aquaponic system in Claim 6, wherein the top end of said first layer of support fixes the first layer of cultivating tank by the joint of the mortise of the third connecting member, the connecting lug of cultivating tank and the tenon of the fourth connecting member, the space enclosed by the second layer of support formed by the fourth connecting member is provided for plantings.
8. The frame structure of aquaponic system in Claim 7, wherein the top end of said second layer of support fixes the second layer of cultivating tank by the joint of the mortise of the fourth connecting member, the connecting lug of cultivating tank and the tenon of the fifth connecting member, the space enclosed by the third layer of support formed by the fifth connecting member is provided for planting.
9. The frame structure of aquaponic system in Claim 8, wherein the downward tenons at the comers of the first n -shaped frame and the second
9 n -shaped frame of fix cover are inserted in the mortise of said fifth connecting member to fix the third layer of support.
10. The frame structure of aquaponic system in any of Claims 1 to 9, the cross section of said mortise and tenon is a three-circle intersection of Venn diagram.
10
PCT/US2020/053691 2020-10-01 2020-10-01 Frame structure of aquaponic system assembled by module elements WO2022071950A1 (en)

Priority Applications (1)

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PCT/US2020/053691 WO2022071950A1 (en) 2020-10-01 2020-10-01 Frame structure of aquaponic system assembled by module elements

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
PCT/US2020/053691 WO2022071950A1 (en) 2020-10-01 2020-10-01 Frame structure of aquaponic system assembled by module elements

Publications (1)

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WO2022071950A1 true WO2022071950A1 (en) 2022-04-07

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Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2003210047A (en) * 2002-01-23 2003-07-29 Tokai Bussan Kk Cultivation tank and framing for the same
US20090056217A1 (en) * 2006-05-01 2009-03-05 Dipaolo Frank Staking system for growing container
US9775330B1 (en) * 2017-06-07 2017-10-03 Chun-Ku Chen Aquaponic system
CN210113828U (en) * 2019-04-01 2020-02-28 张仲琦 Three-dimensional cultivation system specially designed for family gardening
CN210726421U (en) * 2019-06-01 2020-06-12 广东顺德鱼也乐农业科技有限公司 Detachable container formula fishery cultured equipment

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2003210047A (en) * 2002-01-23 2003-07-29 Tokai Bussan Kk Cultivation tank and framing for the same
US20090056217A1 (en) * 2006-05-01 2009-03-05 Dipaolo Frank Staking system for growing container
US9775330B1 (en) * 2017-06-07 2017-10-03 Chun-Ku Chen Aquaponic system
CN210113828U (en) * 2019-04-01 2020-02-28 张仲琦 Three-dimensional cultivation system specially designed for family gardening
CN210726421U (en) * 2019-06-01 2020-06-12 广东顺德鱼也乐农业科技有限公司 Detachable container formula fishery cultured equipment

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