Special box placing rack for apis cerana breeding back to rock wall
By designing a special box rack for Chinese bee farming back against the rock wall, the problem of rough and inconvenient management of rock wall farming methods in the existing technology is solved, efficient beehive layout and management is achieved, and the production efficiency and bee colony health of the farm are improved.
Patent Information
- Application Number
- CN202420400573.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-03-03
- Publication Date
- 2025-06-27
- Estimated Expiration
- 2034-03-03
AI Technical Summary
In the prior art, the method of using rock walls to breed Chinese bees is rough and simple, which is inconvenient for daily feeding and management, and is even more unfavorable for large-scale breeding, resulting in low production efficiency.
A special box rack for Chinese bee breeding with a back against the rock wall was designed. Through the combination of the main support frame and the beehive bottom bracket, a stable and easy-to-manage beehive architecture is provided to adapt to the rock wall terrain and realize the efficient arrangement and management of beehives.
By using a special box rack, the daily management convenience and production efficiency of Chinese bee farms are improved, suitable for large-scale breeding, and effectively reduce the occurrence of pests and diseases, creating a good bee colony living environment.
Smart Images

Figure CN223025223U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the field of Chinese honeybee breeding in the technical field of animal husbandry breeding, and particularly relates to a special box placing rack for Chinese honeybee breeding with its back against a rock wall. Background Art
[0002] The Chinese honeybee, abbreviated as Chinese bee or Apis cerana cerana, is a unique honeybee variety in China, commonly known as the "native bee", and has a breeding history of thousands of years in China. It is extremely suitable for breeding in vast mountainous and forest areas. Many mountainous areas have diverse terrains, primitive ecosystems, high vegetation coverage rates, and a large variety of nectar and pollen source flowering plants, which are very suitable for the survival and reproduction of Chinese honeybees. Over the past thousands of years, a large number of Chinese honeybee colonies have naturally formed in the mountains and forests. They have excellent local adaptability, strong cold resistance and disease resistance, and are good at using various scattered nectar and pollen sources to brew high-quality multi-flower honey. In addition to being suitable for beekeeping, some mountainous areas are also characterized by numerous rock walls in terms of topography and landforms. The local people's saying "where there is a mountain, there must be a rock" refers to the rock wall. At the same time, the Chinese honeybees in the mountains have a great preference for rock walls that can shelter from the wind and rain. There are many rock walls with Chinese honeybee colonies that have naturally found caves to live in. Therefore, local people often place beehives on the rock walls near their residences for Chinese honeybee breeding. Therefore, making full use of the mountain rock walls for beekeeping has great development prospects.
[0003] When the masses use the rock walls near their residences for beekeeping, the usual practice is to directly place the beehives on the stone platforms, stone cracks and stone caves of the rock walls, or simply stack stones and timbers at the foot of the rock wall to place the beehives. These methods are all rough and simple, not convenient for daily feeding management, and even less conducive to large-scale breeding, resulting in significantly low production efficiency. Summary of the Invention
[0004] In order to solve the above problems existing in the prior art, the utility model provides a special box placing rack for Chinese honeybee breeding with its back against a rock wall. By using the special box placing rack, it is more convenient for daily feeding management, and at the same time is conducive to large-scale breeding, thereby improving production efficiency.
[0005] The technical problems to be solved by the utility model are realized through the following technical solutions:
[0006] A special box placing rack for Chinese honeybee breeding with its back against a rock wall:
[0007] The special beehive rack includes a main support frame A, which consists of a first support rod A perpendicular to the ground, a second support rod A at an angle of 70 degrees with the ground, and a third support rod A parallel to the ground and perpendicular to the first support rod A, which are jointly connected at a position 260 cm above the ground on the first support rod A. The inner end of the third support rod A and the top end of the second support rod A are connected to the rock wall. The first support rod A and the second support rod A are respectively connected by a fifth support rod A, a sixth support rod A, a seventh support rod A, and an eighth support rod A that are parallel to the ground and perpendicular to the first support rod A at positions 40 cm, 95 cm, 150 cm, and 205 cm above the ground on the first support rod A. The fifth support rod A, the sixth support rod A, the seventh support rod A, and the eighth support rod A respectively serve as the left support rods of the first, second, third, and fourth layers of beehive bottom brackets on the left side of M.
[0008] The special beehive rack includes a main support frame B, which consists of a first support rod B perpendicular to the ground, a second support rod B at an angle of 70 degrees with the ground, and a third support rod B parallel to the ground and perpendicular to the first support rod B, which are jointly connected at a position 260 cm above the ground on the first support rod B. The inner end of the third support rod B and the top end of the second support rod B are connected to the rock wall. The first support rod B and the second support rod B are respectively connected by a fifth support rod B, a sixth support rod B, a seventh support rod B, and an eighth support rod B that are parallel to the ground and perpendicular to the first support rod B at positions 40 cm, 95 cm, 150 cm, and 205 cm above the ground on the first support rod B. The fifth support rod B, the sixth support rod B, the seventh support rod B, and the eighth support rod B respectively serve as the right support rods of the first, second, third, and fourth layers of beehive bottom brackets on the left side of M.
[0009] The special beehive rack includes a main support frame C, which consists of a first support rod C perpendicular to the ground, a second support rod C at an angle of 70 degrees with the ground, and a third support rod C parallel to the ground and perpendicular to the first support rod C, which are jointly connected at a position 260 cm above the ground on the first support rod C. The inner end of the third support rod C and the top end of the second support rod C are connected to the rock wall. The first support rod C and the second support rod C are respectively connected by a fifth support rod C, a sixth support rod C, a seventh support rod C, and an eighth support rod C that are parallel to the ground and perpendicular to the first support rod C at positions 40 cm, 95 cm, 150 cm, and 205 cm above the ground on the first support rod C. The fifth support rod C, the sixth support rod C, the seventh support rod C, and the eighth support rod C respectively serve as the right support rods of the first, second, third, and fourth layers of beehive bottom brackets on the right side of M.
[0010] The inner ends of the left support rods of the first, second, third, and fourth layer beehive bottom brackets on the left side of M are respectively connected to the inner ends of the right support rods of the first, second, third, and fourth layer beehive bottom brackets on the left side of M by the ninth support rod A, tenth support rod A, eleventh support rod A, and twelfth support rod A; the outer ends of the left support rods of the first, second, third, and fourth layer beehive bottom brackets on the left side of M are respectively connected to the outer ends of the right support rods of the first, second, third, and fourth layer beehive bottom brackets on the left side of M by the thirteenth support rod A, fourteenth support rod A, fifteenth support rod A, and sixteenth support rod A.
[0011] The ninth support rod A, tenth support rod A, eleventh support rod A, and twelfth support rod A respectively become the inner support rods of the first, second, third, and fourth layer beehive bottom brackets on the left side of M; the thirteenth support rod A, fourteenth support rod A, fifteenth support rod A, and sixteenth support rod A respectively become the outer support rods of the first, second, third, and fourth layer beehive bottom brackets on the left side of M.
[0012] The left support rods, right support rods, inner support rods, and outer support rods of the first, second, third, and fourth layer beehive bottom brackets on the left side of M respectively together constitute the first, second, third, and fourth layer beehive bottom brackets on the left side of M.
[0013] The inner ends of the right support rods of the first, second, third, and fourth layer beehive bottom brackets on the left side of M are respectively connected to the inner ends of the right support rods of the first, second, third, and fourth layer beehive bottom brackets on the right side of M by the ninth support rod B, tenth support rod B, eleventh support rod B, and twelfth support rod B; the outer ends of the right support rods of the first, second, third, and fourth layer beehive bottom brackets on the left side of M are respectively connected to the outer ends of the right support rods of the first, second, third, and fourth layer beehive bottom brackets on the right side of M by the thirteenth support rod B, fourteenth support rod B, fifteenth support rod B, and sixteenth support rod B.
[0014] The ninth support rod B, tenth support rod B, eleventh support rod B, and twelfth support rod B respectively become the inner support rods of the first, second, third, and fourth layer beehive bottom brackets on the right side of M; the thirteenth support rod B, fourteenth support rod B, fifteenth support rod B, and sixteenth support rod B respectively become the outer support rods of the first, second, third, and fourth layer beehive bottom brackets on the right side of M.
[0015] The right support rods of the first, second, third, and fourth layer beehive bottom brackets on the left side of M, the right support rods of the first, second, third, and fourth layer beehive bottom brackets on the right side of M, as well as the inner support rods and outer support rods of the first, second, third, and fourth layer beehive bottom brackets on the right side of M respectively together constitute the first, second, third, and fourth layer beehive bottom brackets on the right side of M.
[0016] The first, second, third, and fourth layer hive bottom brackets on the left side of M and the first, second, third, and fourth layer hive bottom brackets on the right side of M are the 4-layer hive bottom brackets adjacent to each other on the left and right sides of the M section. One hive is placed on each layer of the brackets, so a total of 8 hives are placed in the M section. The layer spacing of the 4-layer hive bottom brackets is 55 cm.
[0017] The dedicated hive placement rack includes a main support frame C'. The main support frame C' is composed of a first support rod C' perpendicular to the ground, a second support rod C' at an angle of 70 degrees with the ground, and a third support rod C' parallel to the ground and perpendicular to the first support rod C', which are jointly connected at a position 260 cm above the ground on the first support rod C'. The inner end of the third support rod C' and the top end of the second support rod C' are in contact with the rock wall. The first support rod C' and the second support rod C' are respectively connected by a fifth support rod C', a sixth support rod C', a seventh support rod C', and an eighth support rod C' that are parallel to the ground and perpendicular to the first support rod C' at positions 40 cm, 95 cm, 150 cm, and 205 cm above the ground on the first support rod C'. The fifth support rod C', the sixth support rod C', the seventh support rod C', and the eighth support rod C' respectively serve as the right support rods for the first, second, third, and fourth layer hive bottom brackets on the right side of L.
[0018] The second support rod A of the M section is composed of a seventeenth support rod A, an eighteenth support rod A, a nineteenth support rod A, a twentieth support rod A, a twenty-first support rod A, a twenty-second support rod A, a twenty-third support rod A, and a twenty-fourth support rod A, each with a length of 50 cm, which are respectively connected to the second support rod C' to form the left side ladder of the M section.
[0019] The first support rod A of the M section is composed of a twenty-fifth support rod A, a twenty-sixth support rod A, and a twenty-seventh support rod A, each with a length of 50 cm, which are respectively connected to the first support rod C' to become the inner support rod of the left side ladder of the M section, used to reinforce the structure behind the left side ladder of the M section.
[0020] The top end of the second support rod A and the outer end of the third support rod A are connected by a fourth support rod A; the top end of the second support rod B and the outer end of the third support rod B are connected by a fourth support rod B; the top end of the second support rod C and the outer end of the third support rod C are connected by a fourth support rod C; the top end of the second support rod C' and the outer end of the third support rod C' are connected by a fourth support rod C'.
[0021] The fourth support rod A is composed of a twenty-eighth support rod A, a twenty-ninth support rod A, and a thirtieth support rod A, which are respectively connected to the fourth support rod B; the fourth support rod B is composed of a twenty-eighth support rod B, a twenty-ninth support rod B, and a thirtieth support rod B, which are respectively connected to the fourth support rod C.
[0022] The fourth support rod A, the fourth support rod B, the fourth support rod C, the twenty-eighth support rod A, the twenty-ninth support rod A, the thirtieth support rod A, the twenty-eighth support rod B, the twenty-ninth support rod B, and the thirtieth support rod B together form the M-section ceiling bracket.
[0023] The fourth support rod A is composed of the twenty-eighth support rod C, the twenty-ninth support rod C, and the thirtieth support rod C, which are respectively connected to the fourth support rod C', and together form the left-side staircase ceiling bracket of the M-section.
[0024] At a position 260 cm above the ground of the first support rod A, it is connected by the thirty-first support rod A to the position 260 cm above the ground of the first support rod B; at a position 260 cm above the ground of the first support rod B, it is connected by the thirty-first support rod B to the position 260 cm above the ground of the first support rod C. The thirty-first support rod A and the thirty-first support rod B become the support rods connecting the main body support frame.
[0025] On the right side of the M-section and sharing the first support rod C and the second support rod C of the M-section, an N-section left-side staircase with the same structure as the left-side staircase of the M-section is provided; on the right side of the M-section and sharing the third support rod C and the fourth support rod C of the M-section, an N-section left-side staircase ceiling bracket with the same structure as the left-side staircase ceiling bracket of the M-section is provided. On the right side of the N-section left-side staircase and in the way of sharing support rods, an N-section with the same structure as the M-section is provided; on the right side of the N-section left-side staircase ceiling bracket and in the way of sharing support rods, an N-section ceiling bracket with the same structure as the M-section ceiling bracket is provided.
[0026] On the left side of the left-side staircase of the M-section and sharing the first support rod C' and the second support rod C', an L-section with the same structure as the M-section is provided. On the left side of the left-side staircase ceiling bracket of the M-section and sharing the third support rod C' and the fourth support rod C', an L-section ceiling bracket with the same structure as the M-section ceiling bracket is provided. On the left side of the L-section and in the way of sharing support rods, an L-section left-side staircase with the same structure as the left-side staircase of the M-section is provided; on the left side of the L-section ceiling bracket and in the way of sharing support rods, an L-section left-side staircase ceiling bracket with the same structure as the left-side staircase ceiling bracket of the M-section is provided.
[0027] Taking one section and its left-side staircase among the L-section and its left-side staircase, the M-section and its left-side staircase, and the N-section and its left-side staircase as a breeding base section, each breeding base section can hold 8 beehives and has 1 staircase, and the staircase is mainly used for managing the beehives placed on the beehive bottom brackets on the third and fourth floors.
[0028] For each additional beekeeping base section, 8 beehive racks are added. Then, at the rightmost side of all interconnected beekeeping base sections, a staircase and a staircase ceiling structure are added (to provide a complete staircase structure for the beehives on the right side of the rightmost base section to facilitate beekeepers' management). Waterproof and sun-proof materials such as tarpaulins and asbestos tiles are fixed on all ceiling brackets, thus forming the special beehive rack in practical application.
[0029] Advantages of the present utility model:
[0030] 1. The present utility model enables the Apis cerana cerana farm with its back against the rock wall to be convenient for daily feeding management and carry out healthy breeding. By using the special beehive rack in the farm, the breeding activities become more convenient and controllable. The beehive rack makes the environmental conditions outside the beehives cleaner, and can more effectively provide rain shelter, moisture-proof, cold-proof and heat-proof functions, which can significantly reduce the probability of pests and diseases, and create a good living and developing environment for the bee colony; through the facility conditions, the beehive rack greatly facilitates the beekeeper to daily manage the beehives and the bee colonies inside the beehives, thereby effectively improving the production efficiency.
[0031] 2. The present utility model enables the Apis cerana cerana farm with its back against the rock wall to achieve large-scale breeding. The special beehive rack can make full use of rich resources such as wood and bamboo in the mountain forest during production, taking materials locally, being convenient and practical, and easy to maintain. The beehive rack adopts a three-dimensional centralized breeding mode with 8 beehives placed in each beekeeping base section, which can breed more bee colonies on a limited site area; carrying out centralized breeding operations on the beehive rack with appropriate height and staircase is convenient for the beekeeper to carry out centralized and unified management of the bee colonies, and at the same time, the safety of daily production is more guaranteed. Description of the Drawings
[0032] The present utility model will be further described below in conjunction with the drawings and embodiments.
[0033] Figure 1 It is a side structure diagram of the main support frame.
[0034] Figure 2 It is a structural schematic diagram of the M-section support rod.
[0035] Figure 3 It is a structural schematic diagram of the 4-layer beehive bottom brackets adjacent to the left and right of the M-section.
[0036] Figure 4 It is a structural schematic diagram of the left staircase of the M-section and the inner support rod of the left staircase of the M-section.
[0037] Figure 5 It is a structural schematic diagram of the M-section ceiling bracket and the left staircase ceiling bracket of the M-section.
[0038] Figure 6 It is a structural schematic diagram of the L-section, M-section, N-section and beekeeping base section.
[0039] In the figure, for the convenience of marking and understanding, the so-called "first support rod", "second support rod", "third support rod",... "thirty-first support rod" are general terms for the support rods in this series that have the same structural function and are located on the same horizontal projection plane or the same front projection plane. For example, the first support rod is a general term for the first support rod A, the first support rod B, the first support rod C, and the first support rod C'; the thirty-first support rod is a general term for the thirty-first support rod A and the thirty-first support rod B.
[0040] In the figure, 1. ground, 2. rock wall, 3. first support rod, 4. second support rod, 5. third support rod, 6. fourth support rod, 7. fifth support rod, 8. sixth support rod, 9. seventh support rod, 10. eighth support rod, 11. ninth support rod, 12. tenth support rod, 13. eleventh support rod, 14. twelfth support rod, 15. thirteenth support rod, 16. fourteenth support rod, 17. fifteenth support rod, 18. sixteenth support rod, 19. first layer beehive bottom bracket of section M, 20. second layer beehive bottom bracket of section M, 21. third layer beehive bottom bracket of section M, 22. fourth layer beehive bottom bracket of section M, 23. seventeenth support rod, 24. eighteenth support rod, 25. nineteenth support rod, 26. twentieth support rod, 27. twenty-first support rod, 28. twenty-second support rod, 29. twenty-third support rod, 30. twenty-fourth support rod, 31. twenty-fifth support rod, 32. twenty-sixth support rod, 33. twenty-seventh support rod, 34. twenty-eighth support rod, 35. twenty-ninth support rod, 36. thirtieth support rod, 37. thirty-first support rod, 38. section L, 39. section M, 40. section N, 41. breeding base section. Specific embodiments
[0041] The present invention will be further described below through the description of specific embodiments. However, this is not a limitation on the present invention. Those skilled in the art can make various modifications or improvements according to the basic idea of the present invention. However, as long as they do not depart from the basic idea of the present invention, they are within the scope of the present invention.
[0042] Embodiment
[0043] A special beehive placement rack for breeding Chinese honeybees against a rock wall includes:
[0044] (1) Fabricate the main support frame and 4 layers of beehive bottom brackets
[0045] The special beehive rack includes a main support frame A, which is composed of a first support rod A perpendicular to the ground, a second support rod A at an angle of 70 degrees with the ground, and a third support rod A parallel to the ground and perpendicular to the first support rod A, and they are jointly connected at a position 260 cm above the ground on the first support rod A. The inner end of the third support rod A and the top end of the second support rod A are in contact with the rock wall. The first support rod A and the second support rod A are respectively connected by a fifth support rod A, a sixth support rod A, a seventh support rod A, and an eighth support rod A that are parallel to the ground and perpendicular to the first support rod A at positions 40 cm, 95 cm, 150 cm, and 205 cm above the ground on the first support rod A. The fifth support rod A, the sixth support rod A, the seventh support rod A, and the eighth support rod A respectively serve as the left support rods of the first, second, third, and fourth layers of beehive bottom brackets on the left side of M.
[0046] The special beehive rack includes a main support frame B, which is composed of a first support rod B perpendicular to the ground, a second support rod B at an angle of 70 degrees with the ground, and a third support rod B parallel to the ground and perpendicular to the first support rod B, and they are jointly connected at a position 260 cm above the ground on the first support rod B. The inner end of the third support rod B and the top end of the second support rod B are in contact with the rock wall. The first support rod B and the second support rod B are respectively connected by a fifth support rod B, a sixth support rod B, a seventh support rod B, and an eighth support rod B that are parallel to the ground and perpendicular to the first support rod B at positions 40 cm, 95 cm, 150 cm, and 205 cm above the ground on the first support rod B. The fifth support rod B, the sixth support rod B, the seventh support rod B, and the eighth support rod B respectively serve as the right support rods of the first, second, third, and fourth layers of beehive bottom brackets on the left side of M.
[0047] The special beehive rack includes a main support frame C, which is composed of a first support rod C perpendicular to the ground, a second support rod C at an angle of 70 degrees with the ground, and a third support rod C parallel to the ground and perpendicular to the first support rod C, and they are jointly connected at a position 260 cm above the ground on the first support rod C. The inner end of the third support rod C and the top end of the second support rod C are in contact with the rock wall. The first support rod C and the second support rod C are respectively connected by a fifth support rod C, a sixth support rod C, a seventh support rod C, and an eighth support rod C that are parallel to the ground and perpendicular to the first support rod C at positions 40 cm, 95 cm, 150 cm, and 205 cm above the ground on the first support rod C. The fifth support rod C, the sixth support rod C, the seventh support rod C, and the eighth support rod C respectively serve as the right support rods of the first, second, third, and fourth layers of beehive bottom brackets on the right side of M.
[0048] The inner ends of the left support rods of the first, second, third, and fourth layers of the beehive bottom brackets on the left side of M are respectively connected to the inner ends of the right support rods of the first, second, third, and fourth layers of the beehive bottom brackets on the left side of M by the ninth support rod A, the tenth support rod A, the eleventh support rod A, and the twelfth support rod A; the outer ends of the left support rods of the first, second, third, and fourth layers of the beehive bottom brackets on the left side of M are respectively connected to the outer ends of the right support rods of the first, second, third, and fourth layers of the beehive bottom brackets on the left side of M by the thirteenth support rod A, the fourteenth support rod A, the fifteenth support rod A, and the sixteenth support rod A.
[0049] The ninth support rod A, the tenth support rod A, the eleventh support rod A, and the twelfth support rod A respectively become the inner support rods of the first, second, third, and fourth layers of the beehive bottom brackets on the left side of M; the thirteenth support rod A, the fourteenth support rod A, the fifteenth support rod A, and the sixteenth support rod A respectively become the outer support rods of the first, second, third, and fourth layers of the beehive bottom brackets on the left side of M.
[0050] The left support rods, right support rods, inner support rods, and outer support rods of the first, second, third, and fourth layers of the beehive bottom brackets on the left side of M respectively together constitute the first, second, third, and fourth layers of the beehive bottom brackets on the left side of M.
[0051] The inner ends of the right support rods of the first, second, third, and fourth layers of the beehive bottom brackets on the left side of M are respectively connected to the inner ends of the right support rods of the first, second, third, and fourth layers of the beehive bottom brackets on the right side of M by the ninth support rod B, the tenth support rod B, the eleventh support rod B, and the twelfth support rod B; the outer ends of the right support rods of the first, second, third, and fourth layers of the beehive bottom brackets on the left side of M are respectively connected to the outer ends of the right support rods of the first, second, third, and fourth layers of the beehive bottom brackets on the right side of M by the thirteenth support rod B, the fourteenth support rod B, the fifteenth support rod B, and the sixteenth support rod B.
[0052] The ninth support rod B, the tenth support rod B, the eleventh support rod B, and the twelfth support rod B respectively become the inner support rods of the first, second, third, and fourth layers of the beehive bottom brackets on the right side of M; the thirteenth support rod B, the fourteenth support rod B, the fifteenth support rod B, and the sixteenth support rod B respectively become the outer support rods of the first, second, third, and fourth layers of the beehive bottom brackets on the right side of M.
[0053] The right support rods of the first, second, third, and fourth layers of the beehive bottom brackets on the left side of M, the right support rods of the first, second, third, and fourth layers of the beehive bottom brackets on the right side of M, as well as the inner support rods and outer support rods of the first, second, third, and fourth layers of the beehive bottom brackets on the right side of M respectively together constitute the first, second, third, and fourth layers of the beehive bottom brackets on the right side of M.
[0054] The first, second, third, and fourth layer beehive bottom brackets on the left side of M and the first, second, third, and fourth layer beehive bottom brackets on the right side of M are the 4 - layer beehive bottom brackets adjacent to each other on the left and right sides of the M section. One beehive is placed on each layer of the brackets, so a total of 8 beehives are placed in the M section. The layer spacing of the 4 - layer beehive bottom brackets is 55 cm.
[0055] (2) Fabricate the left - hand staircase of the M section and the inner support rods forming the left - hand staircase of the M section
[0056] The special beehive - placing rack includes a main support frame C'. The main support frame C' is jointly connected at a position 260 cm above the ground by a first support rod C' perpendicular to the ground, a second support rod C' at an angle of 70 degrees to the ground, and a third support rod C' parallel to the ground and perpendicular to the first support rod C'. The inner end of the third support rod C' and the top end of the second support rod C' are in contact with the rock wall. The first support rod C' and the second support rod C' are respectively connected by a fifth support rod C', a sixth support rod C', a seventh support rod C', and an eighth support rod C' that are parallel to the ground and perpendicular to the first support rod C' at positions 40 cm, 95 cm, 150 cm, and 205 cm above the ground of the first support rod C'. The fifth support rod C', the sixth support rod C', the seventh support rod C', and the eighth support rod C' respectively serve as the right support rods of the first, second, third, and fourth layer beehive bottom brackets on the right side of L.
[0057] The second support rod A of the M section is composed of a seventeenth support rod A, an eighteenth support rod A, a nineteenth support rod A, a twentieth support rod A, a twenty - first support rod A, a twenty - second support rod A, a twenty - third support rod A, and a twenty - fourth support rod A, each with a length of 50 cm, which are respectively connected to the second support rod C' to form the left - hand staircase of the M section.
[0058] The first support rod A of the M section is composed of a twenty - fifth support rod A, a twenty - sixth support rod A, and a twenty - seventh support rod A, each with a length of 50 cm, which are respectively connected to the first support rod C' to become the inner support rods of the left - hand staircase of the M section, used to reinforce the structure behind the left - hand staircase of the M section.
[0059] (3) Fabricate the ceiling brackets of the M section and the ceiling brackets of the left - hand staircase of the M section
[0060] The top end of the second support rod A and the outer end of the third support rod A are connected by a fourth support rod A; the top end of the second support rod B and the outer end of the third support rod B are connected by a fourth support rod B; the top end of the second support rod C and the outer end of the third support rod C are connected by a fourth support rod C; the top end of the second support rod C' and the outer end of the third support rod C' are connected by a fourth support rod C'.
[0061] The fourth support rod A is connected to the fourth support rod B by the twenty-eighth support rod A, the twenty-ninth support rod A, and the thirtieth support rod A respectively; the fourth support rod B is connected to the fourth support rod C by the twenty-eighth support rod B, the twenty-ninth support rod B, and the thirtieth support rod B respectively.
[0062] The fourth support rod A, the fourth support rod B, the fourth support rod C, the twenty-eighth support rod A, the twenty-ninth support rod A, the thirtieth support rod A, the twenty-eighth support rod B, the twenty-ninth support rod B, and the thirtieth support rod B together form an M-section ceiling bracket.
[0063] The fourth support rod A is connected to the fourth support rod C' by the twenty-eighth support rod C, the twenty-ninth support rod C, and the thirtieth support rod C respectively, together forming an M-section left-side staircase ceiling bracket.
[0064] (4) Connect the main support frame with support rods
[0065] At a height of 260 cm from the ground, the first support rod A is connected to the first support rod B at the same height by the thirty-first support rod A; at a height of 260 cm from the ground, the first support rod B is connected to the first support rod C at the same height by the thirty-first support rod B. The thirty-first support rod A and the thirty-first support rod B are the support rods connecting the main support frame.
[0066] (5) Form N-section left-side staircases, N-section left-side staircase ceiling brackets, N sections, and N-section ceiling brackets
[0067] To the right of the M section and sharing the first support rod C and the second support rod C of the M section, N-section left-side staircases with the same structure as the M-section left-side staircase are provided; to the right of the M section and sharing the third support rod C and the fourth support rod C of the M section, N-section left-side staircase ceiling brackets with the same structure as the M-section left-side staircase ceiling bracket are provided. To the right of the N-section left-side staircases and in a way of sharing support rods, N sections with the same structure as the M section are provided; to the right of the N-section left-side staircase ceiling brackets and in a way of sharing support rods, N-section ceiling brackets with the same structure as the M-section ceiling bracket are provided.
[0068] (6) Form L sections, L-section ceiling brackets, L-section left-side staircases, and L-section left-side staircase ceiling brackets
[0069] On the left side of the M-section left staircase, the first support rod C' and the second support rod C' are shared. Let there be an L-section with the same structure as the M-section. On the left side of the ceiling bracket of the M-section left staircase, the third support rod C' and the fourth support rod C' are shared. Let there be a ceiling bracket for the L-section with the same structure as the ceiling bracket of the M-section. On the left side of the L-section, an L-section left staircase with the same structure as the M-section left staircase is provided in a way of sharing support rods. On the left side of the ceiling bracket of the L-section, an L-section left staircase ceiling bracket with the same structure as the ceiling bracket of the M-section left staircase is provided in a way of sharing support rods.
[0070] (7) Form a breeding base section
[0071] Taking one section and its left staircase among the L-section and the L-section left staircase, the M-section and the M-section left staircase, and the N-section and the N-section left staircase as a breeding base section, each breeding base section can hold 8 beehives and has 1 staircase, and the staircase is mainly used to manage the beehives placed on the beehive bottom brackets on the third and fourth floors.
[0072] For each additional breeding base section, 8 beehive racks are added. Then, at the rightmost part of all interconnected breeding base sections, a staircase and a staircase ceiling structure are added (to provide a complete staircase structure for the rightmost beehives in the rightmost base section to facilitate management by the breeder). Finally, waterproof and sun-proof materials such as tarpaulin and asbestos tiles are fixed on all ceiling brackets, and the production of the special beehive rack in practical application is completed.
[0073] When actually making 3 breeding base sections plus 1 rightmost staircase and staircase ceiling structure, there will be 24 beehive racks and 4 staircases at the left, middle left, middle right, and right positions during breeding use. The middle staircases at the middle left and middle right positions can be shared when managing the beehives on their left and right sides.
[0074] In the description of this application, it should be noted that the orientation or positional relationship indicated by the terms "upper", "lower", "left", "right", "inner", "outer", etc. is based on the orientation or positional relationship shown in the drawings. It is only for the convenience of describing this application and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation. Therefore, it cannot be understood as a limitation to this application unless otherwise clearly specified and defined. The terms "connected", "provided", "fixed", etc. should be understood in a broad sense. For example, it can be fixedly connected to each other, or detachably connected to each other, or integrally connected to each other: it can be directly connected, or indirectly connected through an intermediate medium. For those of ordinary skill in the art, the specific meanings of the above terms in this application can be understood according to specific circumstances. The device not only includes those elements, but also includes other elements not explicitly listed, or also includes elements inherent in such a process, method, article or device.
[0075] The above are only specific embodiments of the present application, enabling those skilled in the art to understand or implement the present application. Various modifications to these embodiments will be obvious to those skilled in the art, and the general principles defined herein can be implemented in other embodiments without departing from the spirit or scope of the present application. Therefore, the present application will not be limited to these embodiments shown herein, but rather to the broadest scope consistent with the principles and novel features claimed herein.
Claims
1. A special honey bee breeding box rack backed by a rock wall, characterized in that: The special box rack comprises a main support frame A, which is composed of a first support rod A perpendicular to the ground, a second support rod A at an angle of 70 degrees to the ground, and a third support rod A parallel to the ground and perpendicular to the first support rod A, which are connected together at a position where the first support rod A is 260 cm above the ground; the inner end of the third support rod A and the top end of the second support rod A are connected to the rock wall; the first support rod A and the second support rod A are connected by a fifth support rod A, a sixth support rod A, a seventh support rod A, and an eighth support rod A, which are parallel to the ground and perpendicular to the first support rod A, at positions where the first support rod A is 40 cm, 95 cm, 150 cm, and 205 cm above the ground, respectively; the fifth support rod A, the sixth support rod A, the seventh support rod A, and the eighth support rod A, which are parallel to the ground and perpendicular to the first support rod A, respectively. The seventh support rod A and the eighth support rod A become the left support rods of the first, second, third and fourth beehive bottom brackets on the left side of M respectively; the special box placing rack includes a main support frame B, and the main support frame B is composed of a first support rod B perpendicular to the ground, a second support rod B forming an angle of 70 degrees with the ground, and a third support rod B parallel to the ground and perpendicular to the first support rod B, which are connected together at a point where the first support rod B is 260 cm from the ground; the inner end of the third support rod B and the top end of the second support rod B are connected to the rock wall; the first support rod B and the second support rod B are respectively connected by a third support rod B parallel to the ground and perpendicular to the first support rod B at a point where the first support rod B is 40 cm, 95 cm, 150 cm and 205 cm from the ground The fifth support rod B, the sixth support rod B, the seventh support rod B, and the eighth support rod B are connected to each other perpendicular to B, and the fifth support rod B, the sixth support rod B, the seventh support rod B, and the eighth support rod B respectively become the right support rods of the first, second, third, and fourth beehive bottom brackets on the left side of M; the special box placement rack includes a main body support frame C, and the main body support frame C is composed of a first support rod C perpendicular to the ground, a second support rod C forming an angle of 70 degrees with the ground, and a third support rod C parallel to the ground and perpendicular to the first support rod C, which are connected together at a position where the first support rod C is 260 cm from the ground; the inner end of the third support rod C and the top end of the second support rod C are connected to the rock wall; the first support rod C and the second support rod C are connected at a first support The support rod C is connected by the fifth support rod C, the sixth support rod C, the seventh support rod C and the eighth support rod C which are parallel to the ground and perpendicular to the first support rod C at 40cm, 95cm, 150cm and 205cm from the ground respectively, and the fifth support rod C, the sixth support rod C, the seventh support rod C and the eighth support rod C respectively become the right support rod of the first layer, the second layer, the third layer and the fourth layer beehive bottom bracket on the right side of M; the inner end of the left support rod of the first layer, the second layer, the third layer and the fourth layer beehive bottom bracket on the left side of M is connected to the inner end of the right support rod of the first layer, the second layer, the third layer and the fourth layer beehive bottom bracket on the left side of M by the ninth support rod A, the tenth support rod A, the eleventh support rod A and the twelfth support rod A respectively;The outer end of the left supporting rod of the first, second, third and fourth layer beehive bottom bracket on the left side of M is connected to the outer end of the right supporting rod of the first, second, third and fourth layer beehive bottom bracket on the left side of M by the thirteenth supporting rod A, the fourteenth supporting rod A, the fifteenth supporting rod A and the sixteenth supporting rod A respectively; the ninth supporting rod A, the tenth supporting rod A, the eleventh supporting rod A and the twelfth supporting rod A respectively become the inner supporting rods of the first, second, third and fourth layer beehive bottom bracket on the left side of M; the thirteenth supporting rod A, the fourteenth supporting rod A, the fifteenth supporting rod A and the sixteenth supporting rod A respectively become the outer supporting rods of the first, second, third and fourth layer beehive bottom bracket on the left side of M; the first, second, third and fourth layer beehive on the left side of M The left supporting rod, right supporting rod, inner supporting rod and outer supporting rod of the bottom bracket respectively constitute the first, second, third and fourth layer beehive bottom bracket on the left side of M; the inner end of the right supporting rod of the first, second, third and fourth layer beehive bottom bracket on the left side of M is connected with the inner end of the right supporting rod of the first, second, third and fourth layer beehive bottom bracket on the right side of M by the ninth supporting rod B, the tenth supporting rod B, the eleventh supporting rod B and the twelfth supporting rod B respectively; the outer end of the right supporting rod of the first, second, third and fourth layer beehive bottom bracket on the left side of M is connected with the outer end of the right supporting rod of the first, second, third and fourth layer beehive bottom bracket on the right side of M by the thirteenth supporting rod B, the fourteenth supporting rod B, the fifteenth supporting rod B and the sixteenth supporting rod B respectively. The ninth support rod B, the tenth support rod B, the eleventh support rod B, and the twelfth support rod B respectively become the inner support rods of the first, second, third, and fourth layer beehive bottom brackets on the right side of M; the thirteenth support rod B, the fourteenth support rod B, the fifteenth support rod B, and the sixteenth support rod B respectively become the outer support rods of the first, second, third, and fourth layer beehive bottom brackets on the right side of M; the right support rod of the first, second, third, and fourth layer beehive bottom brackets on the left side of M, and the right support rod of the first, second, third, and fourth layer beehive bottom brackets on the right side of M, as well as the inner support rods and outer support rods of the first, second, third, and fourth layer beehive bottom brackets on the right side of M, respectively constitute the first, second, third, and fourth layer beehive bottom brackets on the right side of M. The fourth layer of beehive bottom bracket; the first layer, second layer, third layer, and fourth layer of beehive bottom brackets on the left side of M and the first layer, second layer, third layer, and fourth layer of beehive bottom brackets on the right side of M, that is, the four layers of beehive bottom brackets adjacent to each other on the left and right sides of the M section, one beehive is placed on each layer of bracket, and a total of eight beehives are placed on the M section; the interlayer spacing of the four layers of beehive bottom brackets is 55 cm; the special box placement rack includes a main body support frame C', the main body support frame C' is composed of a first support rod C' perpendicular to the ground, a second support rod C' forming an angle of 70 degrees with the ground, and a third support rod C' parallel to the ground and perpendicular to the first support rod C', and the first support rod C' is connected together at a distance of 260 cm from the ground; the inner end of the third support rod C' and the top end of the second support rod C' are connected to the rock wall;The first support rod C' and the second support rod C' are connected by the fifth support rod C', the sixth support rod C', the seventh support rod C' and the eighth support rod C' which are parallel to the ground and perpendicular to the first support rod C' at the positions where the first support rod C' is 40 cm, 95 cm, 150 cm and 205 cm from the ground respectively, and the fifth support rod C', the sixth support rod C', the seventh support rod C' and the eighth support rod C' respectively become the right support rods of the first layer, the second layer, the third layer and the fourth layer beehive bottom bracket on the right side of L; the M section second support rod A is composed of the seventeenth support rod A, the eighteenth support rod A, the nineteenth support rod A, the twentieth support rod A, the twenty-first support rod A, the twenty-second support rod A, the second support rod A, the The thirteenth support rod A and the twenty-fourth support rod A are connected to the second support rod C' respectively to form the M-section left-side step ladder; the M-section first support rod A is composed of the twenty-fifth support rod A, the twenty-sixth support rod A, and the twenty-seventh support rod A, each with a length of 50 cm, which are connected to the first support rod C' respectively to become the inner support rod of the M-section left-side step ladder; the top end of the second support rod A and the outer end of the third support rod A are connected by the fourth support rod A; the top end of the second support rod B and the outer end of the third support rod B are connected by the fourth support rod B; the top end of the second support rod C and the outer end of the third support rod C are connected by the fourth support rod C; the top end of the second support rod C' and the outer end of the third support rod C' are connected by the fourth support rod C'; The fourth support rod A is connected to the fourth support rod B by the twenty-eighth support rod A, the twenty-ninth support rod A and the thirtieth support rod A respectively; the fourth support rod B is connected to the fourth support rod C by the twenty-eighth support rod B, the twenty-ninth support rod B and the thirtieth support rod B respectively; the fourth support rod A, the fourth support rod B, the fourth support rod C and the twenty-eighth support rod A, the twenty-ninth support rod A, the thirtieth support rod A, the twenty-eighth support rod B, the twenty-ninth support rod B and the thirtieth support rod B together constitute the M-section ceiling bracket; the fourth support rod A is connected to the fourth support rod C' by the twenty-eighth support rod C, the twenty-ninth support rod C and the thirtieth support rod C respectively, and together constitute the M-section left side step ladder ceiling bracket; the first support rod A At 260cm from the ground, the 31st support rod A is connected to the first support rod B at 260cm from the ground; the first support rod B is connected to the first support rod C at 260cm from the ground by the 31st support rod B; the 31st support rod A and the 31st support rod B become support rods connecting the main support frame; the right of the M section and the shared M section first support rod C and the second support rod C are provided with N sections of left-side step ladders with the same structure as the M section left-side step ladder; the right of the M section and the shared M section third support rod C and the fourth support rod C are provided with N sections of left-side step ladder ceiling brackets with the same structure as the M section left-side step ladder ceiling brackets; the right of the N sections of left-side step ladders and in the form of shared support rods are provided with N sections with the same structure as the M section;To the right of the N-section left-side step ladder ceiling bracket and in the form of a shared support rod, an N-section ceiling bracket having the same structure as the M-section ceiling bracket is provided; to the left of the M-section left-side step ladder and in the form of a shared first support rod C' and a second support rod C', an L-section ceiling bracket having the same structure as the M-section is provided; to the left of the M-section left-side step ladder ceiling bracket and in the form of a shared third support rod C' and a fourth support rod C', an L-section ceiling bracket having the same structure as the M-section ceiling bracket is provided; to the left of the L-section and in the form of a shared support rod, an L-section left-side step ladder having the same structure as the M-section left-side step ladder is provided; To the left of the ceiling bracket, a L-section left ladder ceiling bracket with the same structure as the M-section left ladder ceiling bracket is provided in the form of a shared support rod; the L-section and the L-section left ladder, the M-section and the M-section left ladder, the N-section and one of the N-section left ladders and their left ladders are a breeding base section, and each breeding base section can hold 8 beehives and has 1 ladder; each additional breeding base section means 8 additional beehive racks, and a ladder and ladder ceiling structure are added to the rightmost of all interconnected breeding base sections; rain and sun protection materials are fixed on all ceiling brackets. ;
Citation Information
Cited By
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