Paper carrying plant seeds and production equipment thereof
By entraining plant seed particles and operating nutrient solution soaked fiber ropes in the seed paper, and using automatic production equipment to achieve uniform distribution of seeds, the problem of seeds staying on the surface of the paper in the seed paper is solved, the quality and germination rate are improved, and the production efficiency is improved.
Patent Information
- Application Number
- CN202311464985.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-11-07
- Publication Date
- 2025-05-06
- Estimated Expiration
- 2043-11-07
AI Technical Summary
During the production of existing seed paper, the seeds tend to stay on the surface of the paper body, resulting in the seeds inside the paper body being unable to fully absorb nutrients during subsequent fertilization, affecting the quality and germination rate.
By inserting plant seed particles and fiber ropes soaked in the vegetable nutrient solution in the paper body, the paper body is made by layer laying method to prevent seeds from being attached to the surface of the paper body, and automatic production is achieved through production equipment to ensure uniform distribution of seeds and molding of the paper body.
It effectively avoids long-term soaking of seeds in the pulp, improves the uniformity of the distribution and nutrient absorption efficiency of the seeds inside the paper body, improves the quality and germination rate of the seed paper, and improves the production efficiency and uniformity of the paper body thickness.
Smart Images

Figure CN117265913B_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of seed production, in particular to paper carrying plant seeds and production equipment thereof. Background Art
[0002] In the process of papermaking, seeds are added to the wood pulp, which can be dyed with various colors, thus producing paper containing seeds, called seed paper. This is a new environmentally friendly product. After use, this kind of paper can be discarded in the soil. At the right time and temperature and humidity, the seeds in the paper can germinate and grow small seedlings.
[0003] When the existing seed paper is produced, the seeds need to be mixed into the pulp. Due to the long-term soaking, the storage time of the seeds is easily affected. In the process of scooping the paper, the seeds are easy to stay on the surface of the paper. When fertilizing later, the seeds inside the paper cannot fully absorb nutrients, which affects the quality and germination rate of the seed paper. Summary of the invention
[0004] The object of the present invention is to provide a paper carrying plant seeds and a production device thereof, so as to solve the problem that the existing seed paper proposed in the above background technology needs to put seeds into the pulp for mixing during papermaking production, and the long-term soaking easily affects the storage time of the seeds. In addition, during the papermaking process, the seeds are easy to stay on the surface of the paper body. During subsequent fertilization, the seeds inside the paper body cannot fully absorb nutrients, which affects the quality and germination rate of the seed paper.
[0005] To achieve the above object, the present invention provides the following technical solutions:
[0006] A paper carrying plant seeds comprises: a paper body, wherein the paper body is made of pulp and formed by laying multiple layers of pulp; plant seeds and fiber ropes are sandwiched in the paper body; the fiber ropes are multiple and dispersed; the plant seeds are located around the fiber ropes; and the fiber ropes are soaked in nutrient solution.
[0007] Preferably, the fiber rope is made of a soft material and has a colloid coated on its outer surface, and the colloid needs to be soaked in water for a long time before it can be dissolved.
[0008] A seed paper production device, the device includes a machine body, the machine body is provided with a pool body, the pool body is used to hold paper pulp, the pool body is provided with multiple groups of stirring mechanisms, two guide rails are fixedly installed horizontally on the upper side of the machine body, a mobile frame mechanism is slidably embedded in the outer sides of the two guide rails, a delivery component is arranged on the mobile frame mechanism, a paper forming component is slidably embedded in the inner sides of the two guide rails, the delivery component is used for delivering plant seeds and fiber ropes, and the paper forming component is used for forming a paper body.
[0009] Preferably, the delivery assembly includes a seed delivery component and a fiber delivery component, the seed delivery component includes a box body, two first telescopic cylinders, a material storage box, multiple hoses, multiple material guide pipes and multiple solenoid valves, the box body is fixedly installed on the upper side of the movable frame mechanism, the two first telescopic cylinders are horizontally fixedly installed on the inner walls on both sides of the box body, the material storage box is horizontally arranged, and the two ends are respectively fixedly connected to the ends of the two first telescopic cylinders close to each other, the multiple material guide pipes are fixedly embedded in the front side of the box body, the multiple hoses are fixedly installed at the bottom of the material storage box, and the bottom ends are fixedly connected to the top ends of the material guide pipes through multiple solenoid valves.
[0010] Preferably, the fiber delivery component includes a hopper, a transverse axis, two brackets, two rollers, a first power device and two support rods, the hopper is fixedly mounted on the bottom surface of the mobile frame mechanism, the two brackets are respectively fixedly mounted on the inner side walls of the hopper, both ends of the transverse axis are rotatably mounted in the two brackets, a plurality of spools are rotatably sleeved on the transverse axis, and fiber ropes are wound in the spools, the two support rods are horizontally opposed, and both ends are rotatably sleeved in the two inner side walls of the hopper, the two rollers are respectively fixedly sleeved on the two support rods, the first power device is fixedly mounted in the inner wall of the hopper, and the output end is fixedly connected to the two support rods to realize torque transmission, the two support rods are driven by the first power device to rotate in opposite directions at the same time, so that the two rollers transport the fiber rope downward, two groups of dividing components are provided on the bottom side of the roller, and the bottom ends of the plurality of guide pipes are fixedly sleeved in the side walls of the hopper.
[0011] Preferably, the two groups of the splitting components are horizontally opposed, and the splitting components include a cutting knife, two connecting frames, two second telescopic cylinders and two brackets, the two brackets are respectively fixedly mounted on the inner walls on both sides of the hopper, the two second telescopic cylinders are respectively fixedly sleeved in the two brackets, the two connecting frames are respectively fixedly mounted on the output ends of the two second telescopic cylinders, the cutting knife is horizontally arranged, and the two ends are respectively fixedly connected to the two connecting frames, the two cutting knives are opposite, and the side close to each other is a blade portion, which is used to split the fiber rope.
[0012] Preferably, the paper forming assembly includes an outer frame, an inner frame, a second power device, a screen plate, two first sliding mechanisms, a conveying component and a separation component. The two first sliding mechanisms are respectively slidably embedded in the inner sides of two guide rails. The two sides of the outer frame are indefinitely connected to the sides of the two first sliding mechanisms close to each other. The inner frame is rotatably installed in the outer frame through two pins. The second power device is fixed to the outside of the outer frame, and the output end is connected to the pin. The screen plate is arranged in the inner frame, and the screen plate is foldable.
[0013] Preferably, the conveying component includes a pump body, a dispersion pipe, a drainage pipe and a guide pipe. The dispersion pipe is fixedly installed on the bottom surface of the movable frame mechanism, and a nozzle is horizontally opened on the bottom side. The pump body is fixedly installed on the upper side of the movable frame mechanism, and the output end is connected to the dispersion pipe through the drainage pipe, and the input end is connected to the inside of the pool body through the guide pipe. A concentration detection device is fixedly installed in the pool body for detecting the concentration of the pulp. A compensation device is fixedly installed on the outside of the machine body for replenishing solution and pulp raw material into the pool body.
[0014] Preferably, the separation component includes two second sliding mechanisms, two cross beams, four drums, four pull ropes, two main shafts and two third power devices, the two second sliding mechanisms are respectively slidably embedded in the inner frame on both sides, the two cross beams are both arranged in the inner frame, and one is fixedly connected to the inner frame, and the other is fixedly connected to the two second sliding mechanisms at both ends, the two main shafts are rotatably installed in the two cross beams, the four drums are respectively fixedly sleeved on the two ends of the two main shafts, the four pull ropes are respectively wound around the four drums, and the top ends are fixedly connected to the screen plate, the two third power devices are respectively arranged in the two cross beams, and the output ends are respectively connected to the two main shafts for outputting torque, the end of the body is provided with a filter press component, a base is fixedly installed at the bottom of the inner frame, and a plurality of impeller devices are fixedly installed in the base.
[0015] Preferably, the filter press component includes two pairs of plates and multiple groups of conveyor belt mechanisms, the two pairs of plates are vertically fixed on the machine body, the multiple groups of conveyor belt mechanisms are horizontally arranged, and the two ends are respectively installed in the two pairs of plates, the multiple groups of conveyor belt mechanisms are stacked up and down, and the sides close to each other form an extrusion surface, the ends of the two adjacent conveyor belt mechanisms are staggered, and the conveyor belt mechanisms are provided with through holes.
[0016] The beneficial effects of the present invention are as follows:
[0017] (1) The paper body is made by a layering method. When the layers are laid, the plant seeds are placed inside the paper body, which can effectively prevent the plant seeds from adhering to the surface of the paper body, so that the plant seeds are stored inside the paper body. Moreover, the plant seeds are added when the paper pulp is laid, which prevents the seeds from being soaked in the paper pulp.
[0018] (2) Adding fiber ropes soaked in nutrient solution to the paper body can make the paper body more solid, and the plant seeds will fall near the fiber ropes. In the later planting process, the nutrients in the fiber ropes will be integrated into the water, making it easier for the plant seeds to absorb nutrients and improve the germination rate;
[0019] (3) Automatic production is achieved through production equipment, which improves production efficiency compared to manual paper scooping, and can make the thickness of the paper uniform, thereby improving the production quality of the paper. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] Figure 1 This is a schematic diagram of a top cross-sectional structure of a paper body in a paper carrying plant seeds proposed by the present invention;
[0021] Figure 2 This is a schematic diagram of the side cross-sectional structure of a paper body in a paper carrying plant seeds proposed by the present invention;
[0022] Figure 3 This is a right-side perspective structural schematic diagram of a production device for paper carrying plant seeds proposed by the present invention;
[0023] Figure 4 This is a left-side perspective structural schematic diagram of a production device for paper carrying plant seeds proposed by the present invention;
[0024] Figure 5 It is a right side partial cross-sectional structural schematic diagram of a production device for paper carrying plant seeds proposed by the present invention;
[0025] Figure 6 for Figure 5 A magnified view of the structure at A;
[0026] Figure 7 for Figure 5 A magnified view of the structure at B in FIG.
[0027] Figure 8 for Figure 5 Enlarged view of the structure at position C in the figure.
[0028] In the figure: 1, paper body; 2, plant seeds; 3, fiber rope; 4, bracket; 5, machine body; 6, tank body; 7, guide rail; 8, mobile frame mechanism; 9, box body; 10, first telescopic cylinder; 11, storage box; 12, hose; 13, material guide pipe; 14, solenoid valve; 15, hopper; 16, horizontal axis; 17, bracket; 18, roller; 19, first power device; 20, support rod; 21, cutter; 22, connecting frame; 23, second telescopic cylinder; 24, outer frame; 25, inner frame; 26. Second power device; 27. Sieve plate; 28. First sliding mechanism; 29. Pin shaft; 30. Pump body; 31. Dispersion pipe; 32. Drainage pipe; 33. Guide pipe; 34. Concentration detection device; 35. Compensation device; 36. Second sliding mechanism; 37. Crossbeam; 38. Reel; 39. Pull rope; 40. Main shaft; 41. Third power device; 42. Vertical plate; 43. Conveyor belt mechanism; 44. Through hole; 45. Base; 46. Impeller device; 47. Stirring mechanism. DETAILED DESCRIPTION
[0029] The technical solution of the present invention will be described clearly and completely below in conjunction with the accompanying drawings. Obviously, what is described is only a part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.
[0030] See also Figure 1-8 A paper carrying plant seeds includes: a paper body 1, which is made of pulp. The paper body 1 is formed by laying multiple layers of pulp. Plant seeds 2 and fiber ropes 3 are sandwiched in the paper body 1. The fiber ropes 3 are multiple and dispersed. The plant seeds 2 are located around the fiber ropes 3, and the fiber ropes 3 are soaked in nutrient solution.
[0031] The fiber rope 3 is made of soft material and coated with colloid on its outer surface. The colloid needs to be soaked in water for a long time before it can be dissolved.
[0032] The fiber rope 3 is prepared in advance, and during production, the segmented fiber rope 3 can be directly added into the paper body 1 .
[0033] When scooping paper, the paper body 1 can be made by layering. When layering, the plant seeds 2 are put into the paper body 1, which can effectively prevent the plant seeds 2 from adhering to the surface of the paper body 1, so that the plant seeds 2 are stored in the paper body 1.
[0034] The paper body 1 is formed by layering, and the fiber rope 3 can make the paper body 1 more solid.
[0035] A device for producing the above-mentioned seed paper, the device includes a body 5, the body 5 is provided with a pool body 6, the pool body 6 is used to hold paper pulp, a plurality of stirring mechanisms 47 are arranged in the pool body 6, two guide rails 7 are horizontally fixedly installed on the upper side of the body 5, a mobile frame mechanism 8 is slidably embedded in the outer side of the two guide rails 7, a delivery component is arranged on the mobile frame mechanism 8, a paper forming component is slidably embedded in the inner side of the two guide rails 7, the delivery component is used for delivering plant seeds 2 and fiber ropes 3, and the paper forming component is used for forming a paper body 1.
[0036] The delivery assembly includes a seed delivery component and a fiber delivery component. The seed delivery component includes a box body 9, two first telescopic cylinders 10, a material storage box 11, multiple hoses 12, multiple material guide pipes 13 and multiple solenoid valves 14. The box body 9 is fixedly installed on the upper side of the mobile frame mechanism 8, and the two first telescopic cylinders 10 are respectively fixedly installed horizontally on the inner walls on both sides of the box body 9. The material storage box 11 is horizontally arranged, and the two ends are respectively fixedly connected to the ends of the two first telescopic cylinders 10 that are close to each other. Multiple material guide pipes 13 are all fixedly embedded in the front side of the box body 9, and multiple hoses 12 are all fixedly installed at the bottom of the material storage box 11, and the bottom ends are respectively fixedly connected to the top of the material guide pipe 13 through multiple solenoid valves 14.
[0037] The fiber delivery component includes a hopper 15, a transverse axis 16, two brackets 17, two rollers 18, a first power device 19 and two support rods 20. The hopper 15 is fixedly mounted on the bottom surface of the mobile frame mechanism 8. The two brackets 17 are respectively fixedly mounted on the inner side walls of the hopper 15. The two ends of the transverse axis 16 are respectively rotatably mounted in the two brackets 17. A plurality of spools are rotatably sleeved on the transverse axis 16, and a fiber rope 3 is wound in the spools. The two support rods 20 are horizontally opposed, and both ends are rotatably sleeved in the two inner side walls of the hopper 15. The two rollers 18 are respectively fixedly sleeved on the two support rods 20. The first power device 19 is fixedly mounted in the inner wall of the hopper 15, and the output end is fixedly connected to the two support rods 20 to realize the transmission of torque. The two support rods 20 rotate in opposite directions at the same time under the drive of the first power device 19, so that the two rollers 18 transport the fiber rope 3 downward. Two groups of dividing components are provided on the bottom side of the roller 18, and the bottom ends of multiple material guide pipes 13 are fixedly sleeved in the side walls of the hopper 15.
[0038] The two groups of splitting components are horizontally opposed, and the splitting components include a cutting knife 21, two connecting frames 22, two second telescopic cylinders 23 and two brackets 4. The two brackets 4 are respectively fixedly mounted on the inner walls on both sides of the hopper 15, and the two second telescopic cylinders 23 are respectively fixedly sleeved in the two brackets 4. The two connecting frames 22 are respectively fixedly mounted on the output ends of the two second telescopic cylinders 23. The cutting knife 21 is horizontally arranged, and the two ends are respectively fixedly connected to the two connecting frames 22. The two cutting knives 21 are opposite to each other, and the side close to each other is a blade, which is used to split the fiber rope 3.
[0039] The paper forming assembly includes an outer frame 24, an inner frame 25, a second power device 26, a screen plate 27, two first sliding mechanisms 28, a conveying component and a separation component. The two first sliding mechanisms 28 are respectively slidably embedded in the inner sides of the two guide rails 7. The two sides of the outer frame 24 are respectively connected to the sides of the two first sliding mechanisms 28 that are close to each other. The inner frame 25 is rotatably installed in the outer frame 24 through two pins 29. The second power device 26 is fixed to the outside of the outer frame 24, and the output end is connected to the pin 29. The screen plate 27 is arranged in the inner frame 25, and the screen plate 27 is foldable.
[0040] The conveying components include a pump body 30, a dispersion pipe 31, a drainage pipe 32 and a guide pipe 33. The dispersion pipe 31 is fixedly installed on the bottom surface of the mobile frame mechanism 8, and a nozzle is horizontally opened on the bottom side. The pump body 30 is fixedly installed on the upper side of the mobile frame mechanism 8, and the output end is connected to the dispersion pipe 31 through the drainage pipe 32, and the input end is connected to the inside of the tank body 6 through the guide pipe 33. The guide pipe 33 is made of flexible material. A concentration detection device 34 is fixedly installed in the tank body 6 for detecting the concentration of pulp. A compensation device 35 is fixedly installed outside the body 5 for replenishing solution and pulp raw materials into the tank body 6. During the paper scooping process, the pulp is continuously reduced. The concentration detection device 34 monitors the pulp solution in the tank body 6 in real time. The compensation device 35 replenishes the pulp solution in the tank body 6 according to the feedback monitoring data, so that the pulp solution is maintained at a stable concentration.
[0041] The end of the guide pipe 33 located in the tank body 6 is forked, and pulp is extracted from different areas to further ensure the uniformity of the pulp solution. The output end of the compensation device 35 is connected to the inside of the tank body 6, and the input end is connected to the external raw material replenishment mechanism.
[0042] The separation component includes two second sliding mechanisms 36, two cross beams 37, four reels 38, four pull ropes 39, two main shafts 40 and two third power devices 41. The two second sliding mechanisms 36 are respectively slidably embedded in the inner frame 25 on both sides. The two cross beams 37 are both arranged in the inner frame 25, and one is fixedly connected to the inner frame 25, and the other is fixedly connected to the two second sliding mechanisms 36 at both ends. The two main shafts 40 are rotatably installed in the two cross beams 37, respectively. The four reels 38 are respectively fixedly sleeved on the two ends of the two main shafts 40, and the four pull ropes 39 are respectively wound around the four reels 38, and the top ends are fixedly connected to the sieve plate 27. The two third power devices 41 are respectively arranged in the two cross beams 37, and the output ends are respectively connected to the two main shafts 40 for outputting torque. A filter press component is provided at the end of the body 5, and a base 45 is fixedly installed at the bottom of the inner frame 25, and a plurality of impeller devices 46 are fixedly installed in the base 45.
[0043] The filter press component includes two pairs of plates 42 and multiple groups of conveyor belt mechanisms 43. The two pairs of plates 42 are vertically fixed on the machine body 5. The multiple groups of conveyor belt mechanisms 43 are horizontally arranged, and the two ends are respectively installed in the two pairs of plates 42. The multiple groups of conveyor belt mechanisms 43 are stacked up and down, and the sides close to each other form an extrusion surface. The ends of the two adjacent conveyor belt mechanisms 43 are staggered, and the conveyor belt mechanisms 43 are provided with through holes 44.
[0044] When the device is used for paper production, the conveying component operates, the pump body 30 operates, pulp is extracted from the pool body 6 through the guide pipe 33, and introduced into the dispersion pipe 31 through the drainage pipe 32, and finally discharged from the nozzle at the bottom of the dispersion pipe 31 and falls on the screen plate 27. The movable frame mechanism 8 operates, so that the pulp discharged from the dispersion pipe 31 is evenly laid on the upper side of the screen plate 27 to form a pulp layer, and the multi-layer pulp is made into a paper body 1.
[0045] When laying the pulp layer, the delivery component operates to add plant seeds 2 and fiber ropes 3 into the pulp layer. When delivering, the delivery component and the fiber delivery component operate simultaneously to deliver. The two first telescopic cylinders 10 cooperate to make the storage box 11 shake, and the plant seeds 2 flow from the storage box 11 to the hose 12. When the solenoid valve 14 is turned on, the plant seeds 2 enter the hopper 15 from the guide pipe 13, and finally slide out of the hopper 15 and fall on the upper side of the pulp layer. The two first power devices 19 operate to make the two support rods 20 rotate, and the two support rods 20 drive the two The two rollers 18 rotate, and the two rollers 18 pull the multiple fiber ropes 3 downward, and the second telescopic cylinder 23 in the dividing component operates, so that the two cutting knives 21 cooperate to divide the fiber ropes 3. After the multiple fiber ropes 3 are divided, they leak out of the hopper 15 together with the plant seeds 2, and are then covered by a new pulp layer, and the plant seeds 2 will fall near the fiber ropes 3. In the later planting process, the colloid on the fiber ropes 3 after being soaked in water will dissolve, and the nutrients in the fiber ropes 3 will be integrated into the water, which is convenient for the plant seeds 2 to absorb nutrients and improve the germination rate.
[0046] When the plant seeds 2 and the fiber ropes 3 are being placed, the placing assembly may move intermittently to control the placement interval so that the plant seeds 2 and the fiber ropes 3 are evenly distributed in the paper body 1 .
[0047] After the laying is completed, the paper body 1 is formed and laid flat on the screen plate 27. Water leaks out of the screen plate 27 and returns to the pool body 6. Then the movable frame mechanism 8 transfers the paper body 1 to the conveyor belt mechanism 43. At the same time, the second power device 26 operates, and drives the inner frame 25 to rotate slowly through the pin shaft 29, so that the paper body 1 is turned downward. When it moves to the top of the conveyor belt mechanism 43, the two third power devices 41 operate to rotate the two main shafts 40, and the four reels 38 rotate to release the pull rope 39, so that the screen plate 27 moves down, and the paper body 1 falls on the conveyor belt mechanism 43. Then the conveyor belt mechanism 43 operates and moves. At the same time, the two second sliding mechanisms 36 operate to drive the crossbeam 37 to move. The crossbeam 37 pulls the screen plate 27 to move through the two pull ropes 39, and the moving direction is opposite to the conveyor belt mechanism 43, so as to realize the separation of the paper body 1. After separation, the screen plate 27 is reset, the paper forming assembly is reset, and the production of the next paper body 1 is carried out.
[0048] After the inner frame 25 is turned over, the paper body 1 will adhere to the screen plate 27 and will not fall off. At the same time, the impeller device 46 exhausts air upwards, which has an adsorption effect on the paper body 1, further making the paper body 1 adhere to the screen plate 27.
[0049] The paper body 1 separated onto the conveyor belt mechanism 43 is conveyed and transferred. During the transfer process, the paper body 1 is squeezed by two upper and lower adjacent conveyor belt mechanisms 43 to fully squeeze out the moisture in the paper body 1, which flows out from the through holes 44 and is finally output by the conveyor belt mechanism 43 at the bottom layer.
[0050] During the paper laying process, multiple impeller devices 46 operate to exhaust air downward, so that moisture flows out and preliminary filtering can be performed. During the separation process, after the paper body 1 reaches the upper side of the conveyor belt mechanism 43, the impeller device 46 rotates in the opposite direction and also exhausts air downward, so that the paper body 1 is quickly separated from the screen plate 27 and the paper body 1 is air-dried at the same time.
[0051] By the above method, the layered production of the paper body 1 can be realized, so that the plant seeds 2 are sandwiched inside the paper body 1 and are not exposed to the outside, and the plant seeds 2 are added when the paper pulp is laid, avoiding the seeds from being soaked in the paper pulp.
[0052] The entire production process can realize automatic production, which improves production efficiency compared to manual paper scooping, and can make the thickness of the paper body 1 uniform, thereby improving the production quality of the paper body 1.
[0053] Each electrical device is powered by an external power supply, and the entire device is controlled by a control terminal. Since the control terminal is a commonly used device and belongs to existing mature technology, its electrical connection relationship and specific circuit structure will not be described in detail here.
[0054] Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions and variations may be made to the embodiments without departing from the principles and spirit of the present invention, and that the scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A production device for paper carrying plant seeds, characterized in that: The device comprises a machine body (5), the machine body (5) being provided with a pool body (6), the pool body (6) being used to hold paper pulp, the pool body (6) being provided with a plurality of stirring mechanisms (47), two guide rails (7) being fixedly mounted horizontally on the upper side of the machine body (5), a movable frame mechanism (8) being slidably embedded on the outer sides of the two guide rails (7), a delivery assembly being provided on the movable frame mechanism (8), a paper forming assembly being slidably embedded on the inner sides of the two guide rails (7), the delivery assembly being used to deliver plant seeds (2) and fiber ropes (3), and the paper forming assembly being used to form a paper body (1); The delivery assembly comprises a seed delivery component and a fiber delivery component, the seed delivery component comprises a box body (9), two first telescopic cylinders (10), a material storage box (11), a plurality of hoses (12), a plurality of material guide pipes (13) and a plurality of solenoid valves (14), the box body (9) is fixedly mounted on the upper side of the movable frame mechanism (8), the two first telescopic cylinders (10) are respectively fixedly mounted horizontally on the inner walls of both sides of the box body (9), the material storage box (11) is arranged horizontally, and both ends are respectively fixedly connected to the ends of the two first telescopic cylinders (10) that are close to each other, the plurality of material guide pipes (13) are all fixedly embedded in the front side of the box body (9), the plurality of hoses (12) are all fixedly mounted on the bottom of the material storage box (11), and the bottom ends are respectively fixedly connected to the top ends of the material guide pipes (13) through a plurality of solenoid valves (14); The fiber delivery component comprises a hopper (15), a transverse axis (16), two brackets (17), two rollers (18), a first power device (19) and two support rods (20); the hopper (15) is fixedly mounted on the bottom surface of the mobile frame mechanism (8); the two brackets (17) are respectively fixedly mounted on the inner side walls of the hopper (15); the two ends of the transverse axis (16) are respectively rotatably mounted in the two brackets (17); a plurality of spools are rotatably sleeved on the transverse axis (16), and the spools are wound with fiber ropes (3); the two support rods (20) are horizontally opposed, and both ends are rotatable. The rollers (18) are sleeved in the two inner side walls of the hopper (15), the two rollers (18) are respectively fixedly sleeved on the two support rods (20), the first power device (19) is fixedly installed in the inner wall of the hopper (15), and the output end is fixedly connected to the two support rods (20) to achieve torque transmission, the two support rods (20) are driven by the first power device (19) to rotate in opposite directions at the same time, so that the two rollers (18) transport the fiber rope (3) downward, two groups of dividing components are provided on the bottom side of the roller (18), and the bottom ends of the plurality of guide pipes (13) are fixedly sleeved in the side wall of the hopper (15); The paper forming assembly comprises an outer frame (24), an inner frame (25), a second power device (26), a screen plate (27), two first sliding mechanisms (28), a conveying component and a separation component. The two first sliding mechanisms (28) are respectively slidably embedded in the inner sides of two guide rails (7). The two sides of the outer frame (24) are respectively indefinitely connected to the sides of the two first sliding mechanisms (28) that are close to each other. The inner frame (25) is rotatably mounted in the outer frame (24) via two pins (29). The second power device (26) is fixed to the outer side of the outer frame (24), and the output end is connected to the pin (29). The screen plate (27) is arranged in the inner frame (25), and the screen plate (27) is foldable. The conveying component comprises a pump body (30), a dispersion pipe (31), a drainage pipe (32) and a guide pipe (33); the dispersion pipe (31) is fixedly mounted on the bottom surface of the movable frame mechanism (8), and a nozzle is horizontally opened on the bottom side; the pump body (30) is fixedly mounted on the upper side of the movable frame mechanism (8), and the output end is connected to the dispersion pipe (31) through the drainage pipe (32), and the input end is connected to the inside of the tank body (6) through the guide pipe (33); a concentration detection device (34) is fixedly mounted inside the tank body (6) for detecting the concentration of the pulp; and a compensation device (35) is fixedly mounted outside the machine body (5) for replenishing solution and pulp raw materials into the tank body (6); The paper carrying plant seeds produced by the above-mentioned device comprises a paper body (1), wherein the paper body (1) is made of pulp and is formed by laying multiple layers of pulp. Plant seeds (2) and fiber ropes (3) are sandwiched in the paper body (1). The fiber ropes (3) are multiple and dispersed. The plant seeds (2) are located around the fiber ropes (3), and the fiber ropes (3) are soaked in nutrient solution.
2. The production equipment of paper carrying plant seeds according to claim 1, characterized in that: The two groups of splitting components are horizontally opposed, and the splitting components include a cutting knife (21), two connecting frames (22), two second telescopic cylinders (23) and two brackets (4). The two brackets (4) are respectively fixedly mounted on the inner walls of both sides of the hopper (15). The two second telescopic cylinders (23) are respectively fixedly sleeved in the two brackets (4). The two connecting frames (22) are respectively fixedly mounted on the output ends of the two second telescopic cylinders (23). The cutting knife (21) is horizontally arranged, and its two ends are respectively fixedly connected to the two connecting frames (22). The two cutting knives (21) are opposed to each other, and the sides close to each other are blades for splitting the fiber rope (3).
3. The production equipment of paper carrying plant seeds according to claim 1, characterized in that: The separation component comprises two second sliding mechanisms (36), two cross beams (37), four reels (38), four pull ropes (39), two main shafts (40) and two third power devices (41). The two second sliding mechanisms (36) are respectively slidably embedded in the inner frame (25) at two sides. The two cross beams (37) are both arranged in the inner frame (25), one of which is fixedly connected to the inner frame (25), and the other is respectively fixedly connected to the two second sliding mechanisms (36) at two ends. The two main shafts (40) are respectively rotatably mounted on the two cross beams (37). ), the four reels (38) are respectively fixedly sleeved on the two ends of the two main shafts (40), the four pull ropes (39) are respectively wound around the four reels (38), and the top ends are fixedly connected to the screen plate (27), the two third power devices (41) are respectively arranged in the two cross beams (37), and the output ends are respectively connected to the two main shafts (40) for outputting torque, the end of the body (5) is provided with a filter press component, the bottom of the inner frame (25) is fixedly mounted with a base (45), and a plurality of impeller devices (46) are fixedly mounted in the base (45).
4. The production equipment of paper carrying plant seeds according to claim 3, characterized in that: The filter press component comprises two pairs of plates (42) and a plurality of conveyor belt mechanisms (43). The two pairs of plates (42) are vertically fixedly mounted on the machine body (5). The plurality of conveyor belt mechanisms (43) are horizontally arranged, and both ends are respectively mounted in the two pairs of plates (42). The plurality of conveyor belt mechanisms (43) are stacked up and down, and the sides close to each other form an extrusion surface. The ends of two adjacent conveyor belt mechanisms (43) are staggered, and the conveyor belt mechanisms (43) are each provided with a through hole (44).
Citation Information
Patent Citations
Paper carrying plant seeds and preparation method thereof
CN107022928A
Paper capable of sprouting
CN204350578U