Intelligent delivery tube

By installing a guide cover and flow metering pipe below the intelligent conveying pipe, the flow rate is detected in real time, and the leaked material is caught when the pipe breaks. This solves the problem of blockage and breakage caused by corrosion in the open environment, and realizes efficient and accurate material transmission and timely maintenance.

CN121573370BActive Publication Date: 2026-04-24FUJIAN SUNNER DEV
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
FUJIAN SUNNER DEV
Filing Date
2026-01-21
Publication Date
2026-04-24

AI Technical Summary

Technical Problem

Existing intelligent conveying pipes are exposed outdoors, making them susceptible to vibrations from augers and fans, as well as corrosion from the open environment. This can lead to materials absorbing moisture, clumping, and getting stuck. Furthermore, excessive spacing between supports during installation can cause pipe ruptures and material waste.

Method used

A guide cover is installed below the material conveying pipe, equipped with a flow meter to detect the flow rate in real time, and to collect the leaked material through a return channel when the pipe breaks, preventing waste, and at the same time issuing a maintenance signal.

Benefits of technology

It enables the collection and timely repair of leaked materials, reduces the corrosive effects of the open-air environment, minimizes material waste, and improves the accuracy and reliability of transportation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses an intelligent feeding pipe. The intelligent feeding pipe comprises a feeding pipe, a pipe body arranged in the feeding pipe, pipe side clamps fixed on both sides of the outer wall of the pipe body, connecting flanges installed at both ends of the pipe body, a lower material guiding shield installed below the pipe side clamps, an upper covering assembly installed above the pipe side clamps, and a flow measuring pipe connected to one end of the pipe body; a pipe body rear connecting block is bolted to the outer wall of the pipe body, a plurality of jacks are installed on the pipe body rear connecting block, a rear locking lug is arranged above the pipe body rear connecting block, an outer discharge guide groove is formed in the pipe body, an even number of return guide grooves are formed in the pipe body, and an even number of clamp upper clamping grooves are formed in the pipe side clamps. The lower material guiding shield is installed below the material conveying pipe body, the built-in flow measuring pipe detects the flow in real time during conveying, the return flow groove in the shield can receive the leaked material if the pipe body is broken, the waste caused by external falling is prevented, the flow measuring pipe sends a signal inconsistent with the actual conveying amount, and personnel are timely prompted for spot maintenance.
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Description

Technical Field

[0001] This invention relates to the field of pipeline technology, specifically to an intelligent material conveying pipe. Background Technology

[0002] Intelligent conveying pipes connect the supply end and the distribution end through a pipeline network. They adopt spiral auger or pneumatic conveying technology, are equipped with electrical control units and sensors, and can automatically start and stop and adjust the feeding amount to ensure that materials are evenly conveyed to each distribution point, meeting the high-efficiency and precise requirements of large-scale material transmission.

[0003] However, the existing technology has the following shortcomings: the current feeding pipe is exposed to the outdoors, and the pipe is subject to long-term vibration from the auger and fan and corrosion from the open environment. The internal material is prone to moisture absorption and clumping, which can cause blockage. Blockage can lead to upstream overpressure. In addition, the spacing between the supports exceeds the standard during installation. These factors together cause the pipe to rupture after a certain period of use. If it is not detected in time, it will continue to cause material waste. Summary of the Invention

[0004] Other features and advantages of the invention will be set forth in the description which follows, and will be apparent in part from the description, or may be learned by practicing the invention. The objects and other advantages of the invention may be realized and obtained by means of the structures particularly pointed out in the description and other accompanying drawings.

[0005] The purpose of this invention is to overcome the above-mentioned shortcomings and provide an intelligent conveying pipe. By installing a guide cover below the material conveying pipe, a flow meter is built in to detect the flow rate in real time during the conveying process. When the pipe breaks, the return groove inside the cover receives the leaked material to prevent it from falling out and being wasted. At the same time, the flow meter sends a signal that does not match the conveying volume, prompting timely maintenance.

[0006] To achieve the above objectives, the present invention is implemented through the following technical solution: an intelligent conveying pipe, comprising a feeding pipe, a pipe body disposed within the feeding pipe, pipe-side clamps fixed on both sides of the outer wall of the pipe body, connecting flanges installed at both ends of the pipe body, a lower guide cover installed below the pipe-side clamps, an upper cover assembly installed above the pipe-side clamps, and a flow measuring pipe connected to one end of the pipe body; a pipe body rear connecting block bolted to the outer wall of the pipe body, several top rods installed on the pipe body rear connecting block, a rear locking lug provided above the pipe body rear connecting block, an external discharge guide groove opened inside the pipe body, an even number of return guide grooves opened inside the pipe body, and an even number of clamping slots opened on the pipe-side clamps; a cover disposed within the lower guide cover, a first guide cylinder installed at one end of the cover, an external guide sealing cylinder installed at the other end of the cover, a second guide cylinder disposed beside the external guide sealing cylinder, and an internal return groove opened inside the cover. The inner reflux trough mainly covers the bottom of the pipe, thereby covering the easily broken parts of the pipe and completing the collection and reception of leaking material.

[0007] A further improvement to the present invention is that a threaded cylinder is provided inside the second guide cylinder, and a rotary cylinder seal is connected to the threaded cylinder. A rotary cylinder is provided inside the outer guide cylinder, and a rotary seal is installed on the rotary cylinder. The rotary cylinder seal is mainly used to cooperate with the threaded cylinder for rotary fixing, thereby completing the sealing of the return guide groove and ensuring that the material conveying work can be completed normally in the event of an abnormality in the pipe.

[0008] A further improvement to the present invention is that a screw-connecting rod is provided inside the rotary cylinder seal, a threaded ring is fixed on the screw-connecting rod, and a pipe adapter sealing block is fixed at the end of the screw-connecting rod. The adapter sealing block is mainly used to seal the return guide groove, and its overall shape is adapted to the notch of the return guide groove.

[0009] A further improvement to the present invention is that the pipe adapter sealing block is adapted to the return guide groove, the screw-on rod is screwed to the threaded cylinder body through the threaded ring on the rod, the screw-on cylinder body is connected to the external discharge guide groove, and the threaded cylinder body is interconnected with both the return guide groove and the inner return groove of the cover. The screw-on cylinder body is mainly interconnected through the external discharge guide groove, so that when the pipe body malfunctions, the screw-on sealing cap on the screw-on cylinder body can be opened to complete the insertion of cleaning parts and the external discharge of materials during maintenance and replacement.

[0010] In a further improvement to the invention, the clamping slots engage with the lower guide cover and the upper cover assembly, the top rod connects to the outer wall of the cover, the rear locking lug is fixed to the tube body using oblique locking bolts, and the rear locking lug prevents the upper cover assembly from detaching. The flow measuring tube is connected to the connecting flange. After the rear locking lug is fixed to the side wall of the tube body with bolts, it secures the side clamping block and prevents the side clamping block from detaching from the clamping slots.

[0011] A further improvement to the invention is that an omnidirectional frame is fixed to the outer surface of the flow measuring tube, a signal transceiver is installed between the omnidirectional frames, a support platform is fixed above the omnidirectional frames, a photovoltaic panel is fixed to the surface of the support platform, an energy storage box is installed on the lower surface of the support platform, a fixed base is provided below the signal transceiver, a hollow column is installed on the fixed base, an even number of flow-expanding guide plates are fixed on the hollow column, and an even number of induction rotating plates are installed between the hollow columns. The induction rotating plates are mainly moved during material transfer, and the number of rotations is used to convert data and complete the measurement of the amount of material transferred in the tube.

[0012] A further improvement to the present invention is that the inductive rotating plate is electrically coupled to the signal transceiver, the fixing base is fixed to the inner surface of the current measuring tube, the photovoltaic panel is used to supply power to the energy storage box, the energy storage box is electrically coupled to the signal transceiver, and the support platform covers the signal transceiver. The energy storage box is mainly used for the conversion of light energy absorbed by the photovoltaic panel, thereby powering the signal transceiver and eliminating the need for an external power source.

[0013] A further improvement to the present invention is that the upper cover assembly is provided with a plurality of side support blocks, and connecting rods are connected between the plurality of side support blocks. A rod-mounted lifting clamp is fixed on the connecting rod. A cover plate is installed above the side support blocks, and a plurality of alignment sleeves are provided on the inner surface of the cover plate. A fixing rod is fixed in the cover plate. The rod-mounted lifting clamp is mainly used to fix the pipe body to the connecting rod and, with the help of nuts, to complete the overall auxiliary suspension of the pipe body. The other part of the suspension rod needs to be wound around the lower guide cover for simultaneous suspension.

[0014] A further improvement to the invention is that the side support block engages within the clamping groove, the surface of the side support block contacts the fixing rod and is bolted together, the cover plate covers the top of the pipe body, and the rod-mounted lifting clamp is fixed to the center of one of the connecting rods, with the rod-mounted lifting clamp partially supported by the outer wall of the pipe-side clamp. The side support rod on the rod-mounted lifting clamp engages with the pipe-side clamp and, in conjunction with its integrated side protrusion, engages with one side of the cover plate, thus completing the pipe body lifting operation.

[0015] Compared with the prior art, the present invention has the following beneficial effects;

[0016] 1. This invention installs a material guide cover below the material conveying pipe. During conveying, a built-in flow measuring tube detects the flow rate in real time. If the pipe breaks, the return channel inside the cover will catch the leaked material to prevent it from falling out and being wasted. At the same time, the flow measuring tube sends a signal that does not match the actual conveying volume, so as to promptly remind personnel to carry out fixed-point maintenance.

[0017] 2. The present invention uses a pipe-side clamp set on the side wall of the pipe body for the installation of the upper cover assembly. The side clamp support block is connected by the connecting rod and is clamped into one of the clamp slots. Then, the fixing rod completes the support of the cover plate, so that the cover plate covers the pipe body, thereby forming a sunshade and rain protection for the externally suspended pipe body and reducing the erosion of the open-air environment. Attached Figure Description

[0018] Figure 1 This is a schematic diagram of the structure of an intelligent conveying pipe according to the present invention;

[0019] Figure 2 This is a bottom view of the feeding pipe in an intelligent conveying pipe according to the present invention.

[0020] Figure 3 This is a side view of the upper cover assembly in an intelligent conveying tube according to the present invention.

[0021] Figure 4 This is a side view of the cover plate in an intelligent conveying pipe according to the present invention.

[0022] Figure 5 This is a front view schematic diagram of the flow measuring tube in an intelligent conveying pipe according to the present invention;

[0023] Figure 6 This is a bottom view of the lower guide cover in an intelligent conveying pipe according to the present invention.

[0024] Figure 7 This is a schematic diagram of the internal cross-sectional structure of the cover in an intelligent conveying pipe according to the present invention;

[0025] Figure 8 This is an exploded structural diagram of a rotary sealing element in an intelligent conveying pipe according to the present invention.

[0026] In the diagram: Feed pipe-1, pipe body-11, pipe side clamp-12, connecting flange-13, lower guide cover-14, upper cover assembly-15, flow measuring pipe-16, rear connecting block of pipe body-111, top rod-112, rear locking lug-113, external discharge guide channel-114, return guide channel-115, clamp slot-121, cover-141, first guide cylinder-142, second guide cylinder-143, external guide sealing cylinder-144, side clamp support block-151, connecting rod-152, rod lifting clamp-153, cover plate-154, European wing frame -161, Signal transceiver -162, Support frame -163, Photovoltaic panel -164, Energy storage box -165, Fixing base -166, Hollowed-out column -167, Flow guide plate -168, Induction rotating plate -169, Inner return groove -1411, Threaded cylinder -1431, Rotary cylinder seal -1432, Rotary cylinder -1441, Rotary seal -1442, Alignment sleeve -1541, Fixing rod -1542, Rotary rod -14321, Threaded ring on rod -14322, Pipe adapter seal -14323. Detailed Implementation

[0027] To make the objectives, technical solutions, and advantages of this invention clearer, the invention will be further described in detail below with reference to specific embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the invention and are not intended to limit the invention.

[0028] Furthermore, in the description of this invention, it should be understood that the terms "center," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," "outer," "axial," "radial," and "circumferential" indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this invention.

[0029] In this invention, unless otherwise explicitly specified and limited, the terms "installation," "connection," "linking," and "fixing," etc., should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral unit; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal communication of two components or the interaction between two components. However, specifying a direct connection indicates that the two main bodies are not connected through a transitional structure, but rather formed as a whole through a connecting structure. Those skilled in the art can understand the specific meaning of the above terms in this invention according to the specific circumstances.

[0030] In this invention, unless otherwise expressly specified and limited, the first feature "on" or "below" the second feature may be in direct contact with the first and second features, or indirect contact through an intermediate medium. In the description of this specification, references to terms such as "one embodiment," "some embodiments," "example," "specific example," or "some examples," etc., indicate that a specific feature, structure, material, or characteristic described in connection with that embodiment or example is included in at least one embodiment or example of the invention. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples.

[0031] The present invention will be further described below with reference to the accompanying drawings:

[0032] Example 1: As shown in the attached document Figure 1 To be continued Figure 3 Appendix Figure 5 To be continued Figure 8 As shown:

[0033] This embodiment provides a feeding pipe 1, a pipe body 11 inside the feeding pipe 1, pipe side clamps 12 fixed on both sides of the outer wall of the pipe body 11, connecting flanges 13 installed at both ends of the pipe body 11, a lower guide cover 14 installed below the pipe side clamps 12, an upper cover assembly 15 installed above the pipe side clamps 12, and a flow measuring pipe 16 connected to one end of the pipe body 11; a pipe body rear connecting block 111 is bolted to the outer wall of the pipe body 11, a plurality of push rods 112 are installed on the pipe body rear connecting block 111, a rear locking lug 113 is provided above the pipe body rear connecting block 111, an external discharge guide groove 114 is opened inside the pipe body 11, an even number of return guide grooves 115 are opened inside the pipe body 11, and an even number of clamping slots 121 are opened on the pipe side clamps 12.

[0034] Furthermore, the pipe-side clamps 12 are fixed to both sides of the outer wall of the pipe body 11, and are divided into upper and lower clamping slots 121. The two clamping slots 121 are arranged in parallel and are used for the installation of the lower guide cover 14 and the upper cover assembly 15, respectively.

[0035] Furthermore, the external discharge guide groove 114 is provided at the end of the pipe body 11 and is interconnected by the external guide sealing cylinder 144. The external guide sealing cylinder 144 passes directly through the cover 141 and is directly interconnected into the interior of the pipe body 11 after the screw-on sealing cover is opened.

[0036] The lower guide cover 14 is provided with a cover 141. A first guide cylinder 142 is installed at one end of the cover 141, and an outer guide sealing cylinder 144 is installed at the other end of the cover 141. A second guide cylinder 143 is provided next to the outer guide sealing cylinder 144.

[0037] Furthermore, the cover 141 mainly covers the lower part of the outer wall of the tube 11, completing the covering of the lower half of the tube 11 and forming a cover for the easily broken parts of the tube 11.

[0038] Furthermore, the first guide cylinder 142 and the second guide cylinder 143 have the same structure, but are connected in two independent return guide grooves 115 to form a circulation channel.

[0039] Among them, a European-style frame 161 is fixed on the outer surface of the flow measuring tube 16, a signal transceiver 162 is installed between the European-style frames 161, a support platform 163 is fixed above the European-style frame 161, a photovoltaic panel 164 is fixed on the surface of the support platform 163, an energy storage box 165 is installed on the lower surface of the support platform 163, a fixed base 166 is set below the signal transceiver 162, a hollow column 167 is installed on the fixed base 166, an even number of current-amplifying guide plates 168 are fixed on the hollow column 167, and an even number of induction rotating plates 169 are installed between the hollow columns 167.

[0040] Furthermore, the overall "European wing" shape of the wing frame 161 is fixed at the center of the upper surface of the flow measuring tube 16, and the signal transceiver 162 is fixed at the center of the wing frame 161, with the lower fixing seat 166 inserted into the flow measuring tube 16.

[0041] Furthermore, the signal transceiver 162 is mainly used to connect to the local area network within the transmission field, forming an interconnection through the local area network, and feeding the signal back to the terminal.

[0042] Furthermore, the energy storage box 165 mainly absorbs photovoltaic energy through the photovoltaic panel 164, and stores the converted energy in the energy storage box 165 to supply power to the signal transceiver 162.

[0043] Furthermore, the "outer eight" arrangement of the flow-expanding guide plate 168 installed on the hollow column 167 guides the material as it passes through. The material is transferred by actuating the induction rotating plate 169, and the material flow rate is monitored as the induction rotating plate 169 rotates.

[0044] The cover 141 has an internal return groove 1411, the second guide cylinder 143 has a threaded cylinder 1431, the threaded cylinder 1431 is connected to a rotary cylinder seal 1432, the outer guide seal cylinder 144 has a rotary cylinder 1441, and the rotary cylinder 1441 is equipped with a rotary seal 1442.

[0045] Furthermore, the return channel 1411 inside the cover is mainly used to catch the leaked material after the pipe body 11 is broken, to complete the collection of the leaked material, and to avoid the material falling out and causing waste.

[0046] Furthermore, the structure inside the screw-on cap 1442 is the same as that of the screw-on cylinder seal 1432.

[0047] The rotary cylinder seal 1432 is provided with a rotary rod 14321, a threaded ring 14322 is fixed on the rotary rod 14321, and a pipe adapter seal block 14323 is fixed at the end of the rotary rod 14321.

[0048] Furthermore, the pipe adapter sealing block 14323 is mainly connected to the adapter return groove 115 by the screwing of the screw rod 14321, so that the pipe body can normally form material transportation.

[0049] The specific working principle is as follows:

[0050] This invention connects one end of the feeding pipe 1 to the material conveying auger of its feed tower, and then connects the pipe bodies 11 together using the connecting flanges 13 at both ends of the pipe body 11 until it connects to the inside of the chicken house. A flow metering pipe 16 is installed at the connection point between each pipe body 11, and a lower guide cover 14 and an upper cover assembly 15 are installed on the pipe side clamps 12. The cover 141 is engaged with the clamping groove 121, and after engagement, the rear connecting block 111 of the pipe body is bolted to the outer surface of the pipe body 11 for fixation. Then... The over-rod 112 is threaded and fixed in the connecting block 111 of the pipe body, and then connected and fixed to the end face of the cover 141. The other clamping slot 121 is fixed by the rear locking lug 113. The outer discharge guide groove 114 is closed by the outer guide sealing cylinder 144, while the first guide cylinder 142 and the second guide cylinder 143 respectively correspond to the return guide groove 115 to form a seal. The material is conveyed in the pipe body 11. When the material enters the flow measuring tube 16, it is guided by the outwardly expanding flow guide plate 168 and flows between the hollow columns 167. The induction rotating plate 169 moves with the internal... The flowing material causes a rotating motion, which is monitored by the induction rotating plate 169. The feedback is then sent to the signal transceiver 162 and finally transmitted to the terminal for recording. The photovoltaic panel 164 on the support platform 163 above the wing scaffold 161 absorbs photovoltaic energy and stores it in the energy storage box 165 to power the signal transceiver 162. When the pipe body 11 malfunctions, a maintenance signal is sent to the terminal to promptly prompt for maintenance and troubleshooting. During use, if the pipe body 11 breaks, the return channel 1411 inside the lower cover 141 will release the leakage. Leaking materials are collected to avoid waste. The collected materials are then fed into the return guide 115 near the external discharge guide 114 by rotating the connecting rod 14321 downwards. This causes the threaded ring 14322 on the rod to move outwards within the threaded cylinder 1431, disengaging the pipe adapter seal 14323 from the return guide 115. This allows the material in the return channel 1411 inside the cover to flow back into the pipe body 11. The material in the pipe body 11 is then guided outwards by opening the connecting cover. Furthermore, the cover can be opened to clear blockages inside the pipe body 11 in case of blockage.

[0051] Example 2: As shown in the attached document Figure 2 To be continued Figure 4 As shown:

[0052] The pipe body 11 has pipe-side clamps 12 fixed on both sides of its outer wall, connecting flanges 13 installed at both ends of the pipe body 11, a lower guide cover 14 installed below the pipe-side clamps 12, an upper cover assembly 15 installed above the pipe-side clamps 12, and a flow measuring tube 16 connected to one end of the pipe body 11. A pipe body rear connecting block 111 is bolted to the outer wall of the pipe body 11, several push rods 112 are installed on the pipe body rear connecting block 111, a rear locking lug 113 is provided above the pipe body rear connecting block 111, and an even number of clamping slots 121 are opened on the pipe-side clamps 12.

[0053] Furthermore, the rear locking lug 113 is fixed to the side wall of the tube body 11 by means of a side locking bolt, while the rear connecting block 111 of the tube body is also fixed to the lower part of the outer wall of the tube body 11 by means of bolts.

[0054] Furthermore, the rear locking lug 113 mainly secures the side locking block 151 after it is fixed, preventing the side locking block 151 from disengaging from the clamping slot 121 and completing the limiting and fixing.

[0055] The upper cover assembly 15 is provided with a number of side support blocks 151, and a connecting rod 152 is connected between the side support blocks 151. A rod-mounted clamp 153 is fixed on the connecting rod 152. A cover plate 154 is installed above the side support blocks 151. A number of alignment sleeves 1541 are provided on the inner surface of the cover plate 154. A fixing rod 1542 is fixed in the cover plate 154.

[0056] Furthermore, the connecting rod 152 is mainly used to connect the side clamping blocks 151, connecting at least five side clamping blocks 151 to form a straight strip, which is then clamped into the clamping slot 121.

[0057] Furthermore, the side support block 151 is fixed with bolts at the bottom of the fixing rod 1542, which in turn, together with the fixing of the alignment sleeve 1541, completes the support of the cover plate 154, and the cover plate 154 completes the covering of the pipe body 11.

[0058] Furthermore, the pole lifting clamp 153 is mainly fixed in the center of the pole lifting clamp 153 by being nested into the connecting rod 152 and using a nut. The side support rod on the pole lifting clamp 153 is engaged with the pipe side clamp 12 to form a top fixation.

[0059] The specific working principle is as follows:

[0060] This invention assembles the covering assembly 15, connecting the side support block 151 with the connecting rod 152. A rod-mounted clamp 153 is fixed at the center of four connecting rods 152. The covering plate 154 is fixed to the surface of the side support block 151 via a fixing rod 1542. After fixing, the side support block 151 is inserted into the clamping groove 121 above the pipe-side clamp 12 on the side wall of the pipe body 11. The side support rod of the rod-mounted clamp 153 is firmly supported at the center of the pipe-side clamp 12. The covering plate 154 covers the pipe body 11, thus providing shade and rain protection for the externally suspended pipe body and reducing the erosion caused by the open-air environment.

[0061] It should be understood that the embodiments disclosed herein are not limited to the specific processing steps or materials disclosed herein, but should be extended to equivalent substitutions of such features as understood by those skilled in the art. It should also be understood that the terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting.

[0062] The term "embodiment" in this specification means that a specific feature or characteristic described in connection with an embodiment is included in at least one embodiment of the invention. Therefore, phrases or "embodiments" appearing in various places throughout the specification do not necessarily refer to the same embodiment.

[0063] Furthermore, the described features or characteristics can be incorporated into one or more embodiments in any other suitable manner. In the above description, specific details, such as thickness, quantity, etc., are provided to provide a comprehensive understanding of embodiments of the invention. However, those skilled in the art will understand that the invention can be implemented without the aforementioned specific details or may be implemented using other methods, components, materials, etc.

Claims

1. An intelligent conveying pipe, characterized in that, Includes a feeding pipe (1), inside which is a pipe body (11), on both sides of the outer wall of the pipe body (11) are fixed pipe side clamps (12), on both ends of the pipe body (11) are connected flanges (13), a lower guide cover (14) is installed below the pipe side clamps (12), an upper cover assembly (15) is installed above the pipe side clamps (12), and a flow measuring pipe (16) is connected to one end of the pipe body (11). The outer wall of the pipe body (11) is bolted with a pipe body rear connecting block (111), a number of top rods (112) are installed on the pipe body rear connecting block (111), a rear locking lug (113) is provided above the pipe body rear connecting block (111), an external discharge guide groove (114) is opened in the pipe body (11), an even number of return guide grooves (115) are opened in the pipe body (11), and an even number of clamping grooves (121) are opened on the pipe side clamp (12). The lower guide cover (14) is provided with a cover (141), a first guide cylinder (142) is installed at one end of the cover (141), an outer guide sealing cylinder (144) is installed at the other end of the cover (141), a second guide cylinder (143) is provided next to the outer guide sealing cylinder (144), and an inner return groove (1411) is opened in the cover (141). The second guide tube (143) is provided with a threaded cylinder (1431), and a rotary cylinder seal (1432) is connected to the threaded cylinder (1431). The outer guide seal tube (144) is provided with a rotary cylinder (1441), and a rotary seal cap (1442) is installed on the rotary cylinder (1441). The rotary cylinder seal (1432) is provided with a rotary connecting rod (14321), a rod threaded ring (14322) is fixed on the rotary connecting rod (14321), and a pipe adapter sealing block (14323) is fixed at the end of the rotary connecting rod (14321). The pipe adapter sealing block (14323) is adapted to the return guide groove (115), the screw rod (14321) is screwed to the threaded cylinder (1431) through the threaded ring (14322) on the rod, the screw rod cylinder (1441) is connected to the external discharge guide groove (114), and the threaded cylinder (1431) is interconnected with the return guide groove (115) and the inner return groove (1411) respectively; The clamping slot (121) engages with the lower guide cover (14) and the upper cover assembly (15) respectively. The top rod (112) is used to connect to the outer wall of the cover (141). The rear locking lug (113) is fixed to the tube body (11) by means of oblique locking bolts. The rear locking lug (113) is used to prevent the upper cover assembly (15) from falling off. The flow measuring tube (16) is connected to the flange of the connecting flange (13). The outer surface of the flow measuring tube (16) is fixed with a European wing frame (161), a signal transceiver (162) is installed between the European wing frames (161), a support platform (163) is fixed above the European wing frame (161), a photovoltaic panel (164) is fixed on the surface of the support platform (163), an energy storage box (165) is installed on the lower surface of the support platform (163), a fixed base (166) is provided below the signal transceiver (162), a hollow column (167) is installed on the fixed base (166), an even number of current-amplifying guide plates (168) are fixed on the hollow column (167), and an even number of induction rotating plates (169) are installed between the hollow columns (167). The induction rotating plate (169) is electrically coupled to the signal transceiver (162), the fixing base (166) is fixed to the inner surface of the flow measuring tube (16), the photovoltaic panel (164) is used to supply power to the energy storage box (165), the energy storage box (165) is electrically coupled to the signal transceiver (162), and the support platform (163) covers the signal transceiver (162).

2. The intelligent conveying pipe according to claim 1, characterized in that: The upper cover assembly (15) is provided with a plurality of side support blocks (151), and a connecting rod (152) is connected between the plurality of side support blocks (151). A rod-mounted clamp (153) is fixed on the connecting rod (152). A cover plate (154) is installed above the side support blocks (151). A plurality of alignment sleeves (1541) are provided on the inner surface of the cover plate (154). A fixing rod (1542) is fixed in the cover plate (154).

3. The intelligent conveying pipe according to claim 2, characterized in that: The side support block (151) is engaged in the clamp slot (121), the surface of the side support block (151) is in contact with the fixing rod (1542) and is bolted together, the cover plate (154) covers the tube body (11), the rod lifting clamp (153) is fixed in the center of one of the connecting rods (152), and the rod lifting clamp (153) is partially supported on the outer wall of the tube side clamp (12).

Citation Information

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