CN214015523U - Heat preservation beehive - Google Patents

Heat preservation beehive Download PDF

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Publication number
CN214015523U
CN214015523U CN202022596708.1U CN202022596708U CN214015523U CN 214015523 U CN214015523 U CN 214015523U CN 202022596708 U CN202022596708 U CN 202022596708U CN 214015523 U CN214015523 U CN 214015523U
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CN
China
Prior art keywords
beehive
temperature
honeycomb
humidity sensing
cavity
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Expired - Fee Related
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CN202022596708.1U
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Chinese (zh)
Inventor
卢奇
贾金龙
王乐萍
李熙年
郑佳明
刘浩
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Lanzhou Institute of Technology
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Lanzhou Institute of Technology
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Abstract

The utility model discloses a heat preservation beehive belongs to honeybee cultivation technical field, which comprises a base, base upper end fixed mounting has beehive and control system device, the inside beehive chamber of having seted up of beehive, the inside inlay of beehive intracavity installs two-layer honeycomb steamer tray, the inside bottom of beehive intracavity has seted up intensification steam chamber, intensification steam chamber lower extreme welded mounting has the electrical heating chamber, electrical heating chamber and intensification steam chamber junction are inlayed and are installed a plurality of electrical heating ladder post ware. The utility model relates to a novelty, be convenient for operation and excellent in use effect can be when summer high temperature, for the beehive processing of cooling down, conveniently be fit for the honeybee and adopt honey to can be when winter low temperature is low excessively, for the beehive processing of heating up, conveniently be fit for the honeybee survival, still can be with the beehive design for the bilayer, be convenient for manage honeycomb and the honeybee in the beehive, improved bee-keeping efficiency, can carry out automatically regulated temperature to the beehive, keep warm to the beehive.

Description

Heat preservation beehive
Technical Field
The utility model relates to a honeybee breeding technology field especially relates to a heat preservation beehive.
Background
The beehive is an essential object for bee breeding and provides a necessary place for the survival and the multiplication of bee colonies. Since 1851, after Langmuir bee breeders in Philadelphia, USA discovered the bee-pass principle, various beehives suitable for feeding bees were developed around the world, such as Langmuir beehives, Dadan beehives, twelve-frame square beehives, high-narrow type medium beehives, subordinate type medium beehives, medium type medium beehives, and medium bee ten-frame standard beehives. The beehives are slightly different in bee space structures, frame length-width ratios and the like, but the appearance shapes, manufacturing materials and the like of the beehives are basically consistent, and the beehives which are mostly applied in the beekeeping production in the world are still made of wood at present.
Patent No. CN206024870U discloses a beehive, including a plurality of range upon range of beehive box bottom plates and set up cover and top cap on the beehive box, the box comprises the box curb plate that closes by the four sides enclosure, the box curb plate includes a pair of planking and sets up the core between a pair of planking and constitutes, the core comprises the supporter that a plurality of equipartitions were arranged. The utility model has simple structure, because the multi-layer structure is adopted and the core material has continuous closed pore structure, the whole intensity of the beehive is improved while the good heat preservation and insulation effect is brought, the beehive is beneficial to long-term use, simultaneously, the weight of the whole beehive is reduced to a great extent, the operation of bee keeping management is convenient, and particularly, the beehive is used for transferring bees; the utility model discloses low cost processing performance is good, connects easy dismounting through the hasp between each beehive simultaneously, and the cooperation is inseparable, but the mould ization production, and the production standardization level is high.
The above patents have the following disadvantages: 1. the temperature is too high in summer, so that the beehive cannot be cooled; 2. the temperature is too low in winter, so that bees are not suitable for survival, and the temperature of the beehive cannot be raised; 3. Honeycomb and bees in the beehive are inconvenient to manage, and bee keeping efficiency is reduced; 4. the temperature can not be automatically adjusted, and the beehive is insulated. Therefore, we propose a heat preservation beehive.
SUMMERY OF THE UTILITY MODEL
The utility model provides a heat preservation beehive, which has novel design, convenient operation and good use effect, and aims to carry out cooling treatment on the beehive through a silent fan and a cooling air pipe when the temperature is too high in summer, thereby being convenient for being suitable for honey collection of bees; the electric heating ladder column device and the warming steam cavity can be used for warming the beehive when the temperature is too low in winter, so that the beehive is convenient and suitable for bee survival; the beehive can be designed into a double layer through the honeycomb drawer, so that the honeycomb and the bees in the beehive can be managed conveniently, and the bee keeping efficiency is improved; through temperature and humidity sensor, control system device and solar panel, can carry out automatically regulated temperature to the beehive, keep warm to the beehive.
The utility model provides a specific technical scheme as follows:
the utility model provides a pair of heat preservation beehive, which comprises a base, base upper end fixed mounting has beehive and control system device, the inside beehive chamber of having seted up of beehive, the inside embedding of beehive intracavity installs two-layer honeycomb steamer tray, honeycomb steamer tray and beehive right-hand member intercommunication have seted up the honeycomb mouth, the intensification steam chamber has been seted up to beehive intracavity portion bottom, intensification steam chamber and beehive chamber junction fixed mounting have the drawing heat layer, the water liquid filling opening is installed to the intercommunication on the wall of intensification steam chamber right side, fixed embedding installs the water liquid filling valve on the water liquid filling opening, intensification steam chamber lower extreme welded mounting has the electrical heating chamber, electrical heating chamber and the embedding of intensification steam chamber junction install a plurality of electrical heating ladder post ware.
Optionally, fixed the inlaying on the lateral wall of beehive chamber upper end installs cooling tuber pipe and temperature and humidity sensor, the silence fan is installed to cooling tuber pipe upper end intercommunication, the silence fan passes through circular telegram line electric connection on the control system device, the sunshading board is installed through support frame welded mounting to beehive upper end lateral wall, sunshading board upper end fixed mounting has solar panel, solar panel is on the control system device through circular telegram line electric connection equally.
Optionally, the temperature and humidity sensor center internally mounted has a temperature and humidity sensing signal piece, a temperature and humidity sensing signal transmission pipe is installed at the temperature and humidity sensing signal piece upper end, a temperature and humidity sensing signal transmitting piece and a temperature and humidity sensing signal compensating piece are fixedly installed on the temperature and humidity sensing signal transmission pipe, and an electrified wire is fixedly connected to the temperature and humidity sensing signal transmission pipe upper end.
Optionally, the temperature and humidity sensing signal piece lower extreme is connected and is installed temperature and humidity sensing conversion installed part and temperature and humidity sensing installed part, temperature and humidity sensing installed part lower extreme fixed mounting has the temperature sensing wet pipe.
Optionally, the mute fan is internally provided with a fan, the fan is fixedly provided with fan blades, the upper end of the mute fan is provided with an air inlet grille, and two ends of the mute fan are connected with the power-on columns.
Optionally, install electrical heating ladder post stick on the electrical heating ladder post ware, insulating protective sheath is installed to electrical heating ladder post stick lower extreme, insulating protective sheath lower extreme runs through fixedly connected with circular telegram line.
Optionally, honeycomb steamer tray left end welded mounting has the steamer tray board, fixed mounting has the handle on the steamer tray board lateral wall, the honeycomb chamber has been seted up to honeycomb steamer tray inside, the honeycomb steamer tray slides on the spout.
Optionally, the lower layer inside the control system device is provided with a storage battery, the upper end of the storage battery is fixedly provided with a control system module, and the outer side wall of the upper end of the control system device is fixedly provided with a power supply column.
Optionally, a main air pipe is installed on the cooling air pipe, an air inlet nozzle is installed at the lower end of the main air pipe in a communicated mode, and a plurality of air holes are formed in the air inlet nozzle in a communicated mode.
The utility model has the advantages as follows:
1. the utility model relates to a novelty, be convenient for operation and excellent in use effect, through being equipped with silence fan and cooling tuber pipe, when the high temperature in summer, need cool down the beehive, open switch, silence fan circular telegram work, the fan is rotatory, it is rotatory to drive the flabellum, the air current is absorb in the production, inhale through the air intake grille, enter into the cooling tuber pipe, circulate to the inlet nozzle of each by the main tuber pipe of cooling tuber pipe, blow to the beehive chamber of beehive in by the wind hole on the inlet nozzle, the velocity of flow of air inlet current has been improved in the wind hole, make air current temperature descend, the beehive chamber temperature to the beehive carries out the cooling effect, so, can be when the high temperature in summer, cool down the processing for the beehive, conveniently be fit for honeybee collection honey.
2. The utility model is provided with the electric heating ladder post device and the warming steam cavity, when the temperature is too low in winter, when the beehive is required to be heated, the power switch is turned on, the electric heating ladder post device is electrified to work, the electric heating ladder post rod on the electric heating ladder post device is a huge resistance rod, and when the electric heating ladder post device is electrified, the resistance rod can generate huge heat, the larger the voltage is, the larger the heat generated by the resistance rod is, the storage battery provides huge voltage for the electric heating ladder post rod on the electric heating ladder post device, the electric heating ladder post rod generates heat and transfers the heat to water liquid in the temperature-rising steam cavity, heating the beehive to generate high-temperature steam, absorbing heat by a heat absorbing layer at the upper end of a temperature-rising steam cavity, transferring temperature into the beehive cavity of the beehive to achieve the effect of temperature rise, therefore, when the temperature is too low in winter, the temperature of the beehive can be raised, and the beehive is convenient to be suitable for bee survival.
3. The utility model discloses a be equipped with the honeycomb steamer tray, inlay in the beehive chamber of beehive and install two-layer honeycomb steamer tray, and honeycomb steamer tray and beehive right-hand member intercommunication have seted up the honeycomb mouth, the business turn over of the honeybee of being convenient for of honeycomb mouth, the honeycomb chamber in the honeycomb steamer tray is used for the honeybee to build the honeycomb and adopts honey, manage honeycomb and honeybee in the beehive as required, observe and when getting honey, bee-keeping personnel only need the handle of manual pulling honeycomb steamer tray to stimulate the honeycomb steamer tray and stimulate the honeycomb steamer tray, take out the honeycomb steamer tray can, so, can be double-deck with the beehive design, be convenient for manage honeycomb and honeybee in the beehive, bee-keeping efficiency has been improved.
4. The utility model is provided with a temperature and humidity sensor, a control system device and a solar panel, the temperature and humidity sensor is arranged in the beehive, the temperature and humidity sensor is provided with a temperature sensing wet pipe which is used for sensing the temperature and the humidity in the beehive, the temperature sensing wet pipe senses the temperature and the humidity, the temperature and humidity sensing signal part and the temperature and humidity sensing signal emitting part are used for emitting electric signals which are converted into electric transmission signals through the temperature and humidity sensing installation part and the temperature and humidity sensing conversion installation part, the temperature and humidity sensing signal transmission pipe is used for transmitting the temperature and humidity sensing signal, the temperature and humidity sensing signal transmission pipe is transmitted to the control system module through the transmission line, the temperature and humidity data are displayed by judging the control system module, then the working state of the mute fan and the electric heating ladder post device is controlled according to the set constant temperature value, the temperature rise and the temperature drop inside the beehive are carried out, and therefore the temperature can be automatically adjusted for the beehive, and the heat preservation is carried out on the beehive.
Drawings
In order to more clearly illustrate the technical solutions in the embodiments of the present invention, the drawings needed to be used in the description of the embodiments will be briefly described below, and it is obvious that the drawings in the following description are only some embodiments of the present invention, and it is obvious for those skilled in the art to obtain other drawings without creative efforts.
FIG. 1 is a schematic view of the overall structure of a heat preservation beehive according to an embodiment of the present invention;
fig. 2 is a schematic structural view of a temperature and humidity sensor of a heat preservation beehive according to an embodiment of the present invention;
FIG. 3 is a schematic structural view of a silent fan of a heat preservation beehive according to an embodiment of the present invention;
FIG. 4 is a schematic structural view of an electrically heated ladder device of a heat preservation beehive according to an embodiment of the present invention;
FIG. 5 is a schematic view of a honeycomb drawer of a thermal insulation beehive according to an embodiment of the present invention;
FIG. 6 is a schematic structural view of a control system device of a heat preservation beehive according to an embodiment of the present invention;
FIG. 7 is a schematic view of a cooling air duct structure of a heat preservation beehive according to an embodiment of the present invention;
fig. 8 is a schematic view of the air intake nozzle of the heat preservation beehive according to the embodiment of the present invention.
In the figure: 1. a base; 2. a control system device; 3. a heat sink layer; 4. a honeycomb drawer; 5. electrifying the wire; 6. a temperature and humidity sensor; 7. a mute fan; 8. a solar panel; 9. a cooling air pipe; 10. a sun visor; 11. a support frame; 12. a beehive cavity; 13. a beehive; 14. a honeycomb opening; 15. a water liquid injection port; 16. a water liquid injection valve; 17. a temperature-rising steam cavity; 18. an electric heating cavity; 19. electrically heating the ladder post; 20. a temperature sensing wet pipe; 21. a temperature-and-humidity-sensitive mounting member; 22. a temperature-humidity sensing conversion mounting member; 23. a temperature and humidity sensing signal element; 24. a temperature and humidity sensing signal emitting member; 25. a temperature and humidity sensing signal compensator; 26. a temperature and humidity sensing signal transmission pipe; 27. a fan blade; 28. a current-carrying column; 29. an air intake grille; 30. a fan machine; 31. electrically heating the ladder post rod; 32. an insulating protective sleeve; 33. a handle; 34. a drawer plate; 35. a honeycomb cavity; 36. a chute; 37. a power supply post; 38. a control system module; 39. a storage battery; 40. a main air duct; 41. an air inlet nozzle; 42. and (4) air holes.
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention clearer, the present invention will be described in further detail with reference to the accompanying drawings, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative efforts belong to the protection scope of the present invention.
A thermal insulation beehive according to an embodiment of the present invention will be described in detail with reference to fig. 1 to 8.
Referring to fig. 1, a heat preservation beehive provided by the embodiment of the present invention comprises a base 1, a beehive 13 and a control system device 2 are fixedly installed at the upper end of the base 1, a beehive cavity 12 is opened inside the beehive 13, two layers of honeycomb drawers 4 are installed inside the beehive cavity 12 in an embedded manner, a honeycomb opening 14 is opened at the right end of the honeycomb drawers 4 and the beehive 13 in a communicating manner, a warming steam cavity 17 is opened at the bottom end inside the beehive cavity 12, a heat absorption layer 3 is fixedly installed at the joint of the warming steam cavity 17 and the beehive cavity 12, a water liquid injection port 15 is installed on the right side wall of the warming steam cavity 17 in a communicating manner, a water liquid injection valve 16 is fixedly installed on the water liquid injection port 15 in an embedded manner, an electric heating cavity 18 is welded at the lower end of the warming steam cavity 17, a plurality of electric heating ladder columns 19 are installed at the joint of the electric heating cavity 18 and the warming steam cavity 17 in an embedded manner, can be when summer high temperature, cool down the processing for the beehive, conveniently be fit for the honeybee and adopt honey to can be when winter low temperature is low, for the beehive intensifies the processing, conveniently be fit for the honeybee and survive, still can be double-deck with the beehive design, be convenient for manage honeycomb and honeybee in the beehive, improved bee-keeping efficiency, can carry out automatically regulated temperature to the beehive, keep warm to the beehive.
Referring to fig. 1, fixed the inlaying is installed cooling tuber pipe 9 and temperature and humidity sensor 6 on the lateral wall of 12 upper ends of beehive chamber, silence fan 7 is installed to cooling tuber pipe 9 upper end intercommunication, silence fan 7 is through 5 electric connection of circular telegram line on control system device 2, 13 upper end lateral walls of beehive have sunshading board 10 through support frame 11 welded mounting, 10 upper end fixed mounting of sunshading board have solar panel 8, solar panel 8 is on control system device 2 through 5 electric connection of circular telegram line equally, and silence fan 7 is the inside processing of cooling of beehive 13.
Referring to fig. 2, there is temperature and humidity sensing signal piece 23 in temperature and humidity sensor 6 center internally mounted, temperature and humidity sensing signal transmission pipe 26 is installed to temperature and humidity sensing signal piece 23 upper end, fixed mounting has temperature and humidity sensing signal transmitting part 24 and temperature and humidity sensing signal compensation piece 25 on temperature and humidity sensing signal transmission pipe 26, temperature and humidity sensing signal transmission pipe 26 upper end fixedly connected with live wire 5, and temperature and humidity sensor 6 is used for carrying out the automatically regulated temperature to the beehive, keeps warm to the beehive.
Referring to fig. 2, a temperature and humidity sensing conversion mounting member 22 and a temperature and humidity sensing mounting member 21 are connected to the lower end of the temperature and humidity sensing signal member 23, and a temperature and humidity sensing pipe 20 is fixedly mounted to the lower end of the temperature and humidity sensing mounting member 21.
Referring to fig. 3, a fan 30 is installed inside the mute fan 7, fan blades 27 are fixedly installed on the fan 30, an air inlet grille 29 is installed at the upper end of the mute fan 7, and two ends of the mute fan 7 are connected with a power-on post 28.
Referring to fig. 4, install electrical heating ladder post stick 31 on the electrical heating ladder post ware 19, insulating protective sheath 32 is installed to electrical heating ladder post stick 31 lower extreme, fixedly connected with circular telegram line 5 is run through to insulating protective sheath 32 lower extreme, and electrical heating ladder post ware 19 is used for raising the temperature for the beehive and handles, conveniently is fit for the honeybee and survives.
Referring to fig. 5, drawer plate 34 is installed in the welding of honeycomb drawer 4 left end, fixed mounting has handle 33 on the lateral wall of drawer plate 34, honeycomb chamber 35 has been seted up to honeycomb drawer 4 inside, honeycomb drawer 4 slides on spout 36, and honeycomb drawer 4 designs the beehive for double-deck, is convenient for manage honeycomb and the honeybee in the beehive, has improved bee-keeping efficiency.
Referring to fig. 6, a storage battery 39 is installed at the lower layer inside the control system device 2, a control system module 38 is fixedly installed at the upper end of the storage battery 39, a power supply column 37 is fixedly installed on the outer side wall of the upper end of the control system device 2, and the control system device 2 is used for controlling power storage and beehive heat preservation control.
Referring to fig. 7 and 8, a main air duct 40 is installed on the cooling air duct 9, an air inlet nozzle 41 is installed at the lower end of the main air duct 40 in a communicating manner, and a plurality of air holes 42 are opened on the air inlet nozzle 41 in a communicating manner.
The embodiment of the utility model provides a heat preservation beehive, when in use, the silent fan 7 and the electric heating ladder post device 19 are controlled by the storage battery 39 to supply power, through the silent fan 7 and the cooling air pipe 9, when the temperature is too high in summer, the beehive 13 needs to be cooled, the power switch is turned on, the mute fan 7 is electrified to work, the fan 30 rotates to drive the fan blades 27 to rotate to generate suction airflow, sucked by the air inlet grille 29, enters the cooling air pipe 9, flows to each air inlet 41 through the main air pipe 40 of the cooling air pipe 9, is blown into the beehive cavity 12 of the beehive 13 through the air holes 42 on the air inlets 41, improves the flow speed of the inlet air flow by the air holes 42, reduces the temperature of the air flow, the temperature of the beehive cavity 12 of the beehive 13 is cooled, so that the beehive 13 can be cooled in summer when the temperature is too high, and the beehive is convenient to adapt to honey collection; by arranging the electric heating ladder post device 19 and the warming steam cavity 17, when the temperature is too low in winter, the beehive 13 needs to be warmed up, the power switch is turned on, the electric heating ladder post device 19 is electrified to work, the electric heating ladder post rod 31 on the electric heating ladder post device 19 is a huge resistance rod, when the electric heating ladder post device is electrified, the resistance rod can generate huge heat, the larger the voltage is, the larger the heat generated by the resistance rod is, the storage battery 39 provides huge voltage for the electric heating ladder post rod 31 on the electric heating ladder post device 19, the electric heating ladder post rod 31 generates heat, and the heat is transferred to the water liquid in the warming steam cavity 17, heating the honeycomb structure to generate high-temperature steam, absorbing heat by the heat absorbing layer 3 at the upper end of the temperature-rising steam cavity 17, transferring the temperature into the honeycomb cavity 12 of the honeycomb 13 to achieve the temperature-rising effect, and thus, the temperature of the beehive 13 can be raised when the temperature is too low in winter, so that the beehive is convenient and suitable for bee survival; by arranging the honeycomb drawer 4, two layers of honeycomb drawers 4 are embedded in the honeycomb cavity 12 of the beehive 13, the honeycomb opening 14 is formed in the honeycomb drawer 4 and the right end of the beehive 13 in a communicating mode, the honeycomb opening 14 facilitates the entrance and exit of bees, the honeycomb cavity 12 in the honeycomb drawer 4 is used for bee nesting and honey collection, when the honeycomb and the bees in the beehive 13 need to be managed, observed and taken, a beehive worker only needs to manually pull the handle 33 of the honeycomb drawer 4 to pull the honeycomb drawer 4 to draw out the honeycomb drawer 4, and therefore the beehive 13 can be designed to be double-layer, the honeycomb and the bees in the beehive 13 can be managed conveniently, and the beehive efficiency is improved; the temperature and humidity sensor 6, the control system device 2 and the solar panel 8 are arranged, the temperature and humidity sensor 6 is arranged in the beehive 13, the temperature and humidity sensor 6 is provided with the temperature and humidity sensing pipe 20, the temperature and humidity sensing pipe 20 is used for sensing the temperature and the humidity in the beehive 13, the temperature and the humidity are sensed by the temperature and humidity sensing pipe 20, the temperature and the humidity are converted into electric transmission signals through the temperature and humidity sensing installation part 21 and the temperature and humidity sensing conversion installation part 22, the electric transmission signals are transmitted by the temperature and humidity sensing signal transmitting part 23 and the temperature and humidity sensing signal transmitting part 24, the electric transmission signals are transmitted through the temperature and humidity sensing signal transmission pipe 26 and are transmitted to the control system module 38 through the transmission line, the temperature and the humidity data are displayed through the judgment of the control system module 38, the working states of the mute fan 7 and the electric heating ladder column device 19 are controlled according to artificially set constant temperature values, the temperature inside the beehive 13 is heated and cooled, and the temperature of the beehive can be automatically adjusted, the beehive 13 is insulated.
The mute fan 7 is a common DM-D-263-H model in the market; the electrically heated ladder post 19 is a common model DN50 on the market; the battery 39 is a conventional ternary/lithium iron phosphate battery type available on the market.
It should be noted that the utility model relates to a heat preservation beehive, including base 1, control system device 2, heat absorption layer 3, honeycomb steamer tray 4, circular telegram line 5, temperature and humidity sensor 6, silence fan 7, solar panel 8, cooling tuber pipe 9, sunshading board 10, support frame 11, beehive chamber 12, beehive 13, honeycomb mouth 14, water liquid filling opening 15, water liquid filling valve 16, intensification steam chamber 17, electric heating chamber 18, electric heating ladder post 19, temperature and humidity sensing pipe 20, temperature and humidity sensing installed part 21, temperature and humidity sensing conversion installed part 22, temperature and humidity sensing signal part 23, temperature and humidity sensing signal emission part 24, temperature and humidity sensing signal compensation part 25, temperature and humidity sensing signal transmission pipe 26, flabellum 27, circular telegram post 28, air inlet grille 29, fan 30, electric heating ladder post rod 31, insulating protective sheath 32, handle 33, steamer tray board 34, honeycomb chamber 35, spout 36, power post 37, control system module 38, The electric appliance comprises a storage battery 39, a main air pipe 40, an air inlet nozzle 41 and an air hole 42, wherein the electric appliance elements are all products in the prior art, the electric appliance elements are selected, installed and debugged according to use requirements by technicians in the field to ensure that all electric appliances can normally work, the parts are all universal standard parts or parts known by the technicians in the field, the structure and the principle of the parts are known by the technicians in the field through technical manuals or conventional experimental methods, and the applicant does not specifically limit the parts.
It is apparent that those skilled in the art can make various changes and modifications to the embodiments of the present invention without departing from the spirit and scope of the embodiments of the present invention. Thus, if such modifications and variations of the embodiments of the present invention fall within the scope of the claims and their equivalents, the present invention is also intended to include such modifications and variations.

Claims (9)

1. The utility model provides a heat preservation beehive which characterized in that: comprises a base (1), a beehive (13) and a control system device (2) are fixedly arranged at the upper end of the base (1), a beehive cavity (12) is arranged in the beehive (13), two layers of honeycomb drawers (4) are embedded in the beehive cavity (12), the honeycomb drawer (4) is communicated with the right end of the beehive (13) and is provided with a honeycomb opening (14), a temperature-raising steam cavity (17) is arranged at the bottom end inside the beehive cavity (12), a heat absorbing layer (3) is fixedly arranged at the joint of the temperature-raising steam cavity (17) and the beehive cavity (12), a water liquid injection port (15) is communicated and arranged on the right side wall of the temperature-rising steam cavity (17), a water liquid injection valve (16) is fixedly embedded on the water liquid injection port (15), the lower end of the temperature-rising steam cavity (17) is welded with an electric heating cavity (18), a plurality of electric heating ladder column devices (19) are embedded and installed at the joint of the electric heating cavity (18) and the temperature rising steam cavity (17).
2. The heat-insulating beehive of claim 1, wherein: fixed the inlaying on the lateral wall of beehive chamber (12) upper end installs cooling tuber pipe (9) and temperature and humidity sensor (6), silence fan (7) are installed to cooling tuber pipe (9) upper end intercommunication, silence fan (7) are through circular telegram line (5) electric connection on control system device (2), beehive (13) upper end lateral wall has sunshading board (10) through support frame (11) welded mounting, sunshading board (10) upper end fixed mounting has solar panel (8), solar panel (8) are on control system device (2) through circular telegram line (5) electric connection equally.
3. A thermally insulating beehive according to claim 2, in which: temperature and humidity sensor (6) center internally mounted has temperature and humidity sensing signal spare (23), temperature and humidity sensing signal transmission pipe (26) is installed to temperature and humidity sensing signal spare (23) upper end, fixed mounting has temperature and humidity sensing signal transmission piece (24) and temperature and humidity sensing signal compensation piece (25) on temperature and humidity sensing signal transmission pipe (26), temperature and humidity sensing signal transmission pipe (26) upper end fixedly connected with circular telegram line (5).
4. A thermal beehive as defined in claim 3 in which: the temperature and humidity sensing device is characterized in that the lower end of the temperature and humidity sensing signal part (23) is connected with a temperature and humidity sensing conversion mounting part (22) and a temperature and humidity sensing mounting part (21), and a temperature and humidity sensing pipe (20) is fixedly mounted at the lower end of the temperature and humidity sensing mounting part (21).
5. A thermally insulating beehive according to claim 2, in which: silence fan (7) internally mounted has fan (30), fixed mounting has flabellum (27) on fan (30), air-inlet grille (29) are installed to silence fan (7) upper end, silence fan (7) both ends are connected and are installed circular telegram post (28).
6. The heat-insulating beehive of claim 1, wherein: install electrical heating ladder post stick (31) on electrical heating ladder post ware (19), insulating protective sheath (32) are installed to electrical heating ladder post stick (31) lower extreme, fixedly connected with circular telegram line (5) are run through to insulating protective sheath (32) lower extreme.
7. The heat-insulating beehive of claim 1, wherein: honeycomb steamer tray (4) left end welded mounting has steamer tray board (34), fixed mounting has handle (33) on steamer tray board (34) lateral wall, honeycomb chamber (35) have been seted up to honeycomb steamer tray (4) inside, honeycomb steamer tray (4) slide on spout (36).
8. The heat-insulating beehive of claim 1, wherein: the storage battery (39) is installed to the inside lower floor of control system device (2), storage battery (39) upper end fixed mounting control system module (38), control system device (2) upper end lateral wall fixed mounting has power column (37).
9. A thermally insulating beehive according to claim 2, in which: install main tuber pipe (40) on cooling tuber pipe (9), air inlet nozzle (41) are installed in main tuber pipe (40) lower extreme intercommunication, switch on air inlet nozzle (41) and offer a plurality of wind hole (42).
CN202022596708.1U 2020-11-11 2020-11-11 Heat preservation beehive Expired - Fee Related CN214015523U (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115250905A (en) * 2022-08-30 2022-11-01 吉林省养蜂科学研究所(吉林省蜂产品质量管理监督站、吉林省蜜蜂遗传资源基因保护中心) Bee pollination device for facility crops

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115250905A (en) * 2022-08-30 2022-11-01 吉林省养蜂科学研究所(吉林省蜂产品质量管理监督站、吉林省蜜蜂遗传资源基因保护中心) Bee pollination device for facility crops

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