CN212013873U - Three-dimensional cultivation system of net - Google Patents

Three-dimensional cultivation system of net Download PDF

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Publication number
CN212013873U
CN212013873U CN202020399282.8U CN202020399282U CN212013873U CN 212013873 U CN212013873 U CN 212013873U CN 202020399282 U CN202020399282 U CN 202020399282U CN 212013873 U CN212013873 U CN 212013873U
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China
Prior art keywords
sliding block
grid
motor
bracing piece
cultivation system
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CN202020399282.8U
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Chinese (zh)
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郎强军
杨义
王松
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Hangzhou Linan Dingxin Agricultural Technology Co ltd
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Hangzhou Linan Dingxin Agricultural Technology Co ltd
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Abstract

The utility model provides a three-dimensional cultivation system of net. The grid three-dimensional cultivation system comprises a supporting mechanism; a motor; a column; the cultivation mechanism comprises an installation sleeve in threaded connection with the external thread, a supporting plate is fixed on the side wall of the installation sleeve, a groove is formed in the supporting plate, and a square first sliding block and a square second sliding block are connected in the groove in a sliding mode; the supporting plate is rotatably connected with a screw rod, the screw rod is in threaded connection with the interiors of the first sliding block and the second sliding block, a rotary disc is fixed on the outer portion of the screw rod, baffles are fixed on the tops of the first sliding block and the second sliding block, and a grid disc is arranged between the baffles; the mechanism sprays, the utility model discloses can realize the rotation of different angles to the position of the net dish of cultivation system is adjusted according to different demands to the convenience, satisfies the control of elegant precious mushroom different periods to conditions such as light, temperature, humidity.

Description

Three-dimensional cultivation system of net
Technical Field
The utility model relates to a cultivation system technical field especially relates to a three-dimensional cultivation system of net.
Background
Like oyster mushroom, pleurotus geesteranus requires metabolism activity in the whole growth process, so strict requirements are required, suitable growth and development conditions are created for pleurotus geesteranus, and the main factors influencing the growth of pleurotus geesteranus comprise: the pleurotus geesteranus is a medium-low temperature variety, the requirements of different growth stages on temperature are different, the growth temperature of hyphae in a spawn running stage is 5-30 ℃, the hyphae grow fastest at 20-26 ℃, the hyphae grow slowly when the culture temperature exceeds 33 ℃, the hyphae stop growing or even die, and become yellow and aged when the hyphae is at a high temperature for a long time, the yield is seriously influenced, and therefore, the control on conditions such as environmental temperature, humidity and the like has an important influence on the growth of the pleurotus geesteranus.
To the elegant precious mushroom of different growth cycles, light, temperature, humidity that need all be different, need carry out position adjustment to elegant precious mushroom net dish, and simultaneously, traditional net three-dimensional cultivation system is stacked and is deposited densely, and is inconvenient when getting the net dish in intermediate level alone.
Therefore, there is a need to provide a new grid three-dimensional cultivation system to solve the above technical problems.
SUMMERY OF THE UTILITY MODEL
In order to solve the technical problem, the utility model provides a three-dimensional cultivation system of net.
The utility model provides a pair of three-dimensional cultivation system of net, include: a support mechanism; the motor is arranged on the supporting mechanism, and a motor shaft of the motor is fixedly connected with the rotating shaft; the shell is fixedly arranged on the supporting mechanism and is arranged outside the motor; the upright column which is a hollow cylinder is arranged on the shell, a plurality of sections of external threads are arranged outside the upright column, and a rotating shaft is arranged in the middle of the upright column; the cultivation mechanism is installed on the external thread of the upright post and comprises an installation sleeve in threaded connection with the external thread, a supporting plate is fixed on the side wall of the installation sleeve, a groove is formed in the supporting plate, and a square first sliding block and a square second sliding block are connected in the groove in a sliding mode; the supporting plate is rotatably connected with a screw rod, the screw rod is in threaded connection with the interiors of the first sliding block and the second sliding block, a rotary disc is fixed on the outer portion of the screw rod, baffles are fixed on the tops of the first sliding block and the second sliding block, and a grid disc is arranged between the baffles; the spraying mechanism comprises a supporting rod fixed at the top end of the rotating shaft, a connecting rod is sleeved inside the supporting rod, and the bearing box is installed at the bottom end of the connecting rod.
Preferably, the supporting mechanism comprises a base and pulleys, a plurality of pulleys are installed at the bottom end of the base, the motor is installed at the top end of the base, and a shell is fixed outside the motor.
Preferably, the spraying mechanism further comprises an adjusting nut, and a semicircular sliding groove is formed in the top of the connecting rod; the utility model discloses a bracing piece, including the bracing piece, the inside top of bracing piece is equipped with semicircular arch, the connecting rod with sliding connection between the bracing piece, just the bottom threaded connection of bracing piece has adjusting nut, just the connecting rod with it is fixed through adjusting nut between the bracing piece.
Preferably, the first sliding block and the second sliding block are internally provided with threads matched with the screw rod, and the thread directions of the first sliding block and the second sliding block are opposite.
Preferably, the multi-section external screw thread that the stand outside was equipped with is to opposite, and the external screw thread is to crisscross setting, and every the bottom coupling nut of external screw thread.
Preferably, the spacing between adjacent external threads is greater than the height of the grid plate.
Compared with the prior art, the utility model provides a three-dimensional cultivation system of net has following beneficial effect:
the utility model provides a three-dimensional cultivation system of net: rotation of different angles can be realized through threaded connection's cultivation system on the stand to the position of the grid dish of cultivation system is adjusted according to different demands to the convenience, satisfy the control of elegant precious mushroom different periods to conditions such as light, temperature, humidity, when needs get intermediate level grid dish and put, only need rotate the backup pad then rotate the rotary disk and can take and put the grid dish promptly, convenient to use, simultaneously, through the mechanism that sprays that the top set up, can realize evenly spraying.
Drawings
Fig. 1 is a schematic structural diagram of a preferred embodiment of a grid three-dimensional cultivation system provided by the present invention;
FIG. 2 is a schematic view of the overall structure shown in FIG. 1;
FIG. 3 is an enlarged view of a portion A of FIG. 1;
FIG. 4 is a schematic view of the connection between the support rod and the connecting rod shown in FIG. 1;
fig. 5 is a schematic view of the grid tray and the baffle shown in fig. 1.
Reference numbers in the figures: 1. the device comprises a supporting mechanism, 11, a base, 12, pulleys, 2, a motor, 21, a motor shaft, 22, a rotating shaft, 3, a shell, 4, an upright post, 41, external threads, 5, a cultivation mechanism, 51, a first sliding block, 52, a supporting plate, 53, a screw rod, 54, a groove, 55, a second sliding block, 56, a rotating disk, 57, a baffle, 58, a grid disk, 59, an installation sleeve, 6, a spraying mechanism, 61, a supporting rod, 611, a bump, 62, an adjusting nut, 63, a connecting rod, 631, a sliding chute, 64, a bearing box, 7 and a nut.
Detailed Description
The present invention will be further described with reference to the accompanying drawings and embodiments.
Referring to fig. 1, fig. 2, fig. 3, fig. 4 and fig. 5, a grid three-dimensional cultivation system includes: a support mechanism 1; the motor 2 is installed on the supporting mechanism 1, and a motor shaft 21 of the motor 2 is fixedly connected with a rotating shaft 22; the shell 3 is fixedly arranged on the supporting mechanism 1, and the shell 3 is arranged outside the motor 2; the upright post 4 is a hollow cylinder, the upright post 4 is installed on the shell 3, a plurality of sections of external threads 41 are arranged outside the upright post 4, and a rotating shaft 22 is installed in the middle of the upright post 4; the cultivation mechanism 5 is installed on the external thread 41 of the upright post 4, the cultivation mechanism 5 comprises an installation sleeve 59 in threaded connection with the external thread 41, a supporting plate 52 is fixed on the side wall of the installation sleeve 59, a groove 54 is formed in the supporting plate 52, and a square first sliding block 51 and a square second sliding block 55 are connected in the groove 54 in a sliding mode; a screw rod 53 is rotatably connected to the support plate 52, the screw rod 53 is in threaded connection with the inner parts of the first slider 51 and the second slider 55, a rotating disc 56 is fixed on the outer part of the screw rod 53, baffles 57 are fixed on the tops of the first slider 51 and the second slider 55, and a grid disc 58 is installed between the baffles 57; spray mechanism 6, spray mechanism 6 including fixing at the bracing piece 61 on rotation axis 22 top, just the inside cover of bracing piece 61 is equipped with connecting rod 63, just bearing box 64 is installed to the bottom of connecting rod 63.
In this embodiment, supporting mechanism 1 includes base 11 and pulley 12, a plurality of pulleys 12 are installed to base 11's bottom, just install on base 11's top motor 2, just motor 2's external fixation has shell 3, and shell 3 through setting up protects inside motor 2 and circuit and avoids weing, and simultaneously, the last access door that is equipped with of shell 3 makes things convenient for the later stage to maintain inside motor 2, and simultaneously, the pulley 12 through base 1 bottom makes things convenient for the removal of three-dimensional cultivation system.
Specifically, the spraying mechanism 6 further comprises an adjusting nut 62, and a semicircular sliding groove 631 is formed in the top of the connecting rod 63; the inside top of bracing piece 61 is equipped with semicircular arch 611, connecting rod 63 with sliding connection between the bracing piece 61, just the bottom threaded connection of bracing piece 61 has adjusting nut 62, just connecting rod 63 with it is fixed through adjusting nut 62 between the bracing piece 61, through adjusting nut 62 adjusting connecting rod 63 with bracing piece 61's interval makes inside nutrient solution or the water that bears of bearing box 64 can drive evenly at motor 2 pivoted in-process and spray to net dish 58, realizes evenly watering and nutritive supply, is favorable to the growth of elegant precious mushroom.
Specifically, the first slider 51 and the second slider 55 are internally provided with threads matched with the screw rod 53, the thread directions of the first slider 51 and the second slider 55 are opposite, the rotation of the screw rod 53 is realized by rotating the rotating disc 56, and the rotation of the screw rod 53 drives the first slider 51 and the second slider 55 to move in the same direction or in the opposite direction, so that the grid discs 58 with different specifications are used, and the application range is wide.
Preferably, the external screw thread 41 of the multistage that is equipped with of stand 4 outside turns to opposite, and the external screw thread 41 turns to crisscross setting, and every the bottom coupling nut 7 of external screw thread 41 is favorable to preventing to appear colliding when the adjustment position between two adjacent cultivation systems 5 through setting up the external screw thread 41 that turns to opposite.
Further, the distance between the adjacent external threads 41 is larger than the height of the grid plate 58, so that collision of the pleurotus geesteranus growing out when the grid plate 58 is rotated is prevented.
When the device is used, firstly, when the pleurotus geesteranus needs to be cultivated, a plurality of devices are pushed into a planting greenhouse, a connector lug of the motor 2 is externally connected with a switch, the operation of the motor 2 is controlled through the switch, the supporting plate 52 is manually pushed, the supporting plate 52 rotates to a proper angle around the external thread 41, the rotating disc 56 is manually rotated to drive the screw rod 53 and the supporting plate 52 to rotate, the first sliding block 51 and the second sliding block 55 to reversely move, when the distance between the inner parts of the baffles 57 is larger than the width of the grid disc 58, the grid disc 58 to be used is placed between the baffles 57, the rotating disc 56 is manually rotated to drive the screw rod 53 and the supporting plate 52 to rotate, the first sliding block 51 and the second sliding block 55 to move, so that the baffles 57 fix the grid disc 58, and liquid to be sprayed is placed in the bearing box 64, open the liquid outlet, open the switch of motor 2, motor 2 is the low-speed motor, make motor 2 normal operating, motor shaft 21 is driven in the rotation of motor 2, the rotation of motor shaft 21 drives rotation axis 22 and rotates, rotation axis 22 drives the mechanism 6 that sprays at top and rotates, the realization sprays on the net dish 58, thereby it is more even to make to spray, it is effectual to spray, simultaneously, adjust the interval between connecting rod 63 and the bracing piece 61 through adjusting nut 62, thereby realize spraying according to the condition of difference.
The above is only the embodiment of the present invention, not limiting the scope of the present invention, all the equivalent structures or equivalent processes of the present invention can be used in other related technical fields, directly or indirectly, or in the same way as the present invention.

Claims (6)

1. A grid three-dimensional cultivation system is characterized by comprising:
a support mechanism (1);
the motor (2), the motor (2) is installed on the supporting mechanism (1), and a motor shaft (21) of the motor (2) is fixedly connected with a rotating shaft (22);
the shell (3) is fixedly arranged on the supporting mechanism (1), and the shell (3) is arranged outside the motor (2);
the upright post (4) is a hollow cylinder, the upright post (4) is arranged on the shell (3), a plurality of sections of external threads (41) are arranged outside the upright post (4), and a rotating shaft (22) is arranged in the middle of the upright post (4);
the cultivation mechanism (5) is installed on an external thread (41) of the upright post (4), the cultivation mechanism (5) comprises an installation sleeve (59) in threaded connection with the external thread (41), a supporting plate (52) is fixed on the side wall of the installation sleeve (59), a groove (54) is formed in the supporting plate (52), and a square first sliding block (51) and a square second sliding block (55) are connected in the groove (54) in a sliding mode; a screw rod (53) is rotatably connected to the support plate (52), the screw rod (53) is in threaded connection with the inner parts of the first sliding block (51) and the second sliding block (55), a rotating disc (56) is fixed to the outer part of the screw rod (53), baffles (57) are fixed to the tops of the first sliding block (51) and the second sliding block (55), and a grid disc (58) is installed between the baffles (57);
spray mechanism (6), spray mechanism (6) including fixing bracing piece (61) on rotation axis (22) top, just the inside cover of bracing piece (61) is equipped with connecting rod (63), just bearing box (64) are installed to the bottom of connecting rod (63).
2. The grid stereoscopic cultivation system according to claim 1, wherein the supporting mechanism (1) comprises a base (11) and pulleys (12), a plurality of pulleys (12) are installed at the bottom end of the base (11), the motor (2) is installed at the top end of the base (11), and a housing (3) is fixed outside the motor (2).
3. The grid cultivation system according to claim 1, wherein the spraying mechanism (6) further comprises an adjusting nut (62), and the top of the connecting rod (63) is provided with a semicircular sliding groove (631); the utility model discloses a bracing piece, including bracing piece (61), connecting rod (63), bracing piece (61), connecting rod (63) and sliding connection between bracing piece (61), just the bottom threaded connection of bracing piece (61) has adjusting nut (62), just connecting rod (63) with be fixed through adjusting nut (62) between bracing piece (61).
4. The grid three-dimensional cultivation system according to claim 1, wherein the first sliding block (51) and the second sliding block (55) are internally provided with threads matched with the screw rod (53), and the thread directions of the first sliding block (51) and the second sliding block (55) are opposite.
5. The grid stereoscopic cultivation system according to claim 1, wherein the plurality of sections of external threads (41) provided on the outside of the upright post (4) have opposite rotation directions, the external threads (41) are arranged in a staggered manner, and the bottom of each external thread (41) is connected with a nut (7).
6. The grid cultivation system according to claim 1, wherein the spacing between adjacent external threads (41) is greater than the height of the grid tray (58).
CN202020399282.8U 2020-03-25 2020-03-25 Three-dimensional cultivation system of net Active CN212013873U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202020399282.8U CN212013873U (en) 2020-03-25 2020-03-25 Three-dimensional cultivation system of net

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202020399282.8U CN212013873U (en) 2020-03-25 2020-03-25 Three-dimensional cultivation system of net

Publications (1)

Publication Number Publication Date
CN212013873U true CN212013873U (en) 2020-11-27

Family

ID=73488037

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202020399282.8U Active CN212013873U (en) 2020-03-25 2020-03-25 Three-dimensional cultivation system of net

Country Status (1)

Country Link
CN (1) CN212013873U (en)

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