Concrete mortar conveying visual monitoring pipe joint device for steel pipe concrete frame and using method
By introducing a diaphragm seat and displacement sensor into the concrete mortar conveying device of the steel pipe concrete frame, combined with components such as pressure sensor, the problem of pressure sensor being affected by concrete mortar was solved, realizing the visual monitoring and multi-signal integration of concrete mortar pressure.
Patent Information
- Application Number
- CN202511818248.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-12-04
- Publication Date
- 2026-01-23
AI Technical Summary
In existing visual monitoring devices for concrete mortar delivery in steel-concrete composite frames, the pressure sensors are affected by the concrete mortar, resulting in poor monitoring performance.
The system employs a combination of a diaphragm mount and a displacement sensor. It uses the pressure value of concrete mortar to indicate the displacement signal change, and uses an external signal conversion to identify the pressure value of the concrete mortar. It integrates pressure sensor, temperature sensor and camera for monitoring.
It enables visualized monitoring of concrete mortar delivery pressure, improving monitoring effectiveness. It integrates the acquisition and conversion of multiple signals, ensuring the reliability and accuracy of the device.
Smart Images

Figure CN121381908A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application relates to a concrete mortar conveying visual monitoring pipe joint device and a use method, in particular to a concrete mortar conveying visual monitoring pipe joint device for a steel pipe concrete frame and a use method. BACKGROUND
[0002] The steel pipe concrete structure is a composite building structure composed of a steel pipe and concrete, and the overall bearing performance is improved through the synergistic effect of the two materials. The core mechanism lies in that the steel pipe forms a tight hoop effect on the core concrete, so that the compressive strength of the concrete is increased to 2-3 times of that in the ordinary state. Meanwhile, the concrete filling effectively inhibits the buckling deformation of the steel pipe. The steel pipe concrete structure is widely applied in industrial plants, super high-rise buildings and bridge engineering. In order to realize concrete mortar injection of the steel pipe of the steel pipe concrete frame, the concrete mortar conveying visual monitoring pipe joint device for the steel pipe concrete frame is an important building construction device. In the existing concrete mortar conveying visual monitoring pipe joint device for the steel pipe concrete frame, no concrete mortar conveying visual monitoring pipe joint device for the steel pipe concrete frame is provided. The pressure sensor is still installed in the concrete mortar conveying pipe joint, and the pressure signal of the concrete mortar is picked up through the built-in pressure sensor. The effect of monitoring the concrete mortar conveying pressure is affected by the influence of the concrete mortar on the pressure sensor. The application effectively explores and researches the technical problem of converting and identifying the pressure value of the concrete mortar by an external signal on the technical level. The statements herein only provide background of the application, and do not necessarily constitute the prior art. Based on the technical disclosure provided by the applicant on November 25, 2025, the technical problems, technical features and technical effects in the prior art are obtained through the retrieval of the patent documents and background technology, and the application technical scheme is made. SUMMARY
[0003] The object of the application is a concrete mortar conveying visual monitoring pipe joint device for a steel pipe concrete frame. The object of the application is a use method of the concrete mortar conveying visual monitoring pipe joint device for the steel pipe concrete frame.
[0004] In order to overcome the above technical defects, the object of the application is to provide a concrete mortar conveying visual monitoring pipe joint device for a steel pipe concrete frame and a use method, so as to improve the visual monitoring effect of the concrete mortar conveying pressure.
[0005] To achieve the above object, the technical scheme adopted by the present application is: a concrete mortar conveying visual monitoring pipe joint device for a concrete-filled steel tube frame, comprising a concrete mortar conveying pipe joint body having a main body cylinder, a diaphragm seat arranged in the main body cylinder, and a displacement sensor arranged between the diaphragm seat and the concrete mortar conveying pipe joint body.
[0006] Thanks to the design of the concrete mortar conveying pipe joint body, the diaphragm seat and the displacement sensor, the concrete mortar conveying between the conveying pipe on the concrete mortar pump and the conveying pipe on the concrete-filled steel tube frame is realized through the concrete mortar conveying pipe joint body, the displacement signal change with the pressure value of the concrete mortar in the main body cylinder is realized through the diaphragm seat, the changed displacement signal of the diaphragm seat is picked up through the displacement sensor, the pressure value of the concrete mortar is converted and identified by the external signal, and the technical problem of picking up the pressure signal of the concrete mortar by the built-in pressure sensor through the installation of the pressure sensor in the concrete mortar conveying pipe joint is solved, thus improving the visual monitoring effect of the concrete mortar conveying pressure.
[0007] The present application designs that the concrete mortar conveying pipe joint body, the diaphragm seat and the displacement sensor are connected to each other in the manner of converting and identifying the pressure value of the concrete mortar by the external signal.
[0008] The present application designs that the diaphragm seat is connected to the concrete mortar conveying pipe joint body and the displacement sensor in the manner of displacement signal change with the pressure value of the concrete mortar.
[0009] The present application designs that the concrete mortar conveying pipe joint body is further provided with a first external cylinder, a second external cylinder, a support, a support frame, a clamping frame and a safety sheet.
[0010] The technical effects of the above four technical schemes are that the displacement signal visualization monitoring of the pressure value of the concrete mortar is realized.
[0011] The present application designs that it further comprises a first accessory device, and the first accessory device is provided with a pressure sensor, a temperature sensor and a camera.
[0012] The technical effect of the above technical scheme is that the integrated installation of other components is realized, and the technical effect of the present application is expanded.
[0013] The application designs that the support is respectively provided with a clamping frame and a pressure sensor, a main body cylinder section is arranged between the pressure sensor and the clamping frame, and a first external cylinder section, a second external cylinder section, a diaphragm seat and a safety sheet are respectively arranged on the main body cylinder section, a support frame and a camera are respectively arranged on the clamping frame, and a displacement sensor is arranged between the support frame and the diaphragm seat, and a temperature sensor is arranged between the support frame and the safety sheet.
[0014] The technical effect of the above technical scheme is that the main body cylinder section, the first external cylinder section, the second external cylinder section, the support, the diaphragm seat, the support frame, the clamping frame, the displacement sensor, the safety sheet, the pressure sensor, the temperature sensor and the camera constitute the basic technical scheme of the application, and the technical problem of the application is solved.
[0015] The application designs that the diaphragm seat is provided with a ring disc part I, an elastic sheet part, a ring disc part II and a screw part III, one end surface edge of the elastic sheet part is arranged in contact with the inner end surface of the ring disc part I, the other end surface edge of the elastic sheet part is arranged in contact with the inner end surface of the ring disc part II, the inner end head of the screw part III is arranged in threaded connection with the ring disc part I, the inner end head of the screw part III is respectively arranged in penetrating connection with the edge of the elastic sheet part and the ring disc part II, and the flange body of the screw part III is arranged in contact with the outer end surface of the ring disc part II.
[0016] The application designs that the ring disc part I is arranged as a strip ring body with a threaded body on the peripheral side and a threaded blind hole in the inner end surface, the elastic sheet part is arranged as a rubber diaphragm body with a through hole body on the peripheral edge, the ring disc part II is arranged as a strip ring body with a through hole body, the screw part III is arranged as a hexagonal bolt, the threaded body of the ring disc part I is arranged in connection with the main body cylinder section, and the threaded blind hole of the ring disc part I, the through hole body of the elastic sheet part and the through hole body of the ring disc part II are respectively arranged in connection with the screw part III.
[0017] The technical effect of the above two technical schemes is that an intermediate integrated component is formed, and the displacement signal of the pressure value of the concrete mortar is replaced.
[0018] The application designs that the displacement sensor is arranged as a Hall displacement sensor, the shell of the displacement sensor is arranged in embedded connection with the support frame, and the contact of the displacement sensor is arranged in connection with the diaphragm seat.
[0019] The technical effect of the above technical scheme is that an intermediate integrated component is formed, and the replacement displacement signal is picked up.
[0020] The application designs that the port of the barrel part of the main body cylinder section is provided with a containing groove I, the lower end of the peripheral side surface of the barrel part is provided to be in contact with the pressure sensor, the left end of the front side surface of the peripheral side surface of the barrel part is provided to be in communication with the first external cylinder section, the right end of the rear side surface of the peripheral side surface of the barrel part is provided to be in communication with the second external cylinder section, one of the ports of the barrel part is provided to be in threaded connection with the diaphragm seat, and the other port of the barrel part is provided to be in threaded connection with the safety sheet, the ports of the barrel part are respectively provided to be in containing connection with the support frame, the displacement sensor and the temperature sensor, and the containing groove I is provided to be connected with the clamping frame.
[0021] The application designs that the barrel part is provided to be a tubular body with a threaded body in the inner wall of the port, and the containing groove I is provided to be a 'F' shaped opening body, and the threaded body of the barrel part is respectively provided to be connected with the diaphragm seat and the safety sheet.
[0022] The application designs that the first external cylinder section and the second external cylinder section are respectively provided to be metal corrugated pipes, and the inner end port of the first external cylinder section and the inner end port of the second external cylinder section are respectively provided to be in communication connection with the main body cylinder section.
[0023] The technical effects of the above three technical schemes are that an intermediate integrated component is formed, and the double-port channel body is used to transport the concrete mortar.
[0024] The application designs that the support is provided to contain a seat part, a screw rod part I and a screw rod part II, a containing groove II is provided in the middle of the upper end surface of the seat part, a containing hole body I is provided on the bottom wall of the containing groove II, one of the end surfaces of the seat part is provided to be connected with the inner end surface of the screw rod part I, the other end surface of the seat part is provided to be connected with the inner end surface of the screw rod part II, the screw rod part I and the screw rod part II are respectively provided to be connected with the clamping frame, the containing groove II is provided to be connected with the main body cylinder section, and the containing hole body I is provided to be connected with the pressure sensor.
[0025] The application designs that the seat part is provided to be a block-shaped body with a 'F' shaped groove in the middle of the lower end surface, the screw rod part I and the screw rod part II are respectively provided to be light column bolts, the containing groove II is provided to be a 'F' shaped opening body, the containing hole body I is provided to be a blind hole, and the containing hole body I is provided to be arranged and distributed along the transverse center line of the seat part.
[0026] The technical effects of the above two technical schemes are that an intermediate integrated component is formed, and the main body cylinder section and the pressure sensor are connected and supported.
[0027] The application designs that the support frame is provided with a rod part I, a screw rod part IV, a screw rod part V and a column head part, and a containing hole body II is arranged on the rod part I; the inner end face of the rod part I is arranged to be connected with the inner end face of the column head part in the middle, and the inner end head of the screw rod part IV is arranged to be connected with the containing hole body II; the flange body of the screw rod part IV is arranged to be contactingly connected with the outer side face of the rod part I, and the inner end head of the screw rod part V is arranged to be threadedly connected with the peripheral side face of the column head part; the inner side face of the rod part I is arranged to be contactingly connected with the clamping frame, and the inner end head of the screw rod part IV is arranged to be threadedly connected with the clamping frame; the outer end face of the column head part is arranged to be accommodatively connected with a displacement sensor and a temperature sensor respectively, and the inner end face of the screw rod part V is arranged to be contactingly connected with the displacement sensor and the temperature sensor respectively.
[0028] The application designs that the rod part I is arranged as a strip plate body, and the screw rod part IV and the screw rod part V are arranged as hexagonal bolts respectively; the column head part is arranged as a rod body with a blind hole in the outer end face and a threaded hole body in the peripheral side face, and the containing hole body II is arranged as a long strip hole body; the inner port of the threaded hole body of the column head part is arranged on the inner wall of the blind hole of the column head part, and the threaded hole body of the column head part is arranged to be connected with the screw rod part V; the blind hole of the column head part is arranged to be connected with a displacement sensor and a temperature sensor respectively, and the threaded hole body of the column head part is arranged to be arranged along the peripheral contour line of the column head part; two screw rod parts IV are arranged between the rod part I and the clamping frame.
[0029] The technical effects of the above two technical solutions are that an intermediate integrated component is formed, and the displacement sensor and the temperature sensor are connected and supported in an adjustable position.
[0030] The application designs that the clamping frame is provided with a rod part II, a nut part II, a nut part III and a frame part, and the inner end face of the rod part II is arranged to be contactingly connected with the inner end face of the nut part II on the lower side; the outer end face of the rod part II is arranged to be contactingly connected with the inner end face of the nut part III on the lower side, and the inner end face of the rod part II is arranged to be connected with the horizontal part end face of the frame part and a camera on the upper side respectively; the lower end head of the rod part II is arranged to be sleevedly connected with a support, and the nut part II and the nut part III are arranged to be threadedly connected with the support respectively; the vertical part upper and lower sections of the frame part are arranged to be embeddedly connected with a main body cylinder section, and the rod part II and the vertical part of the frame part are arranged to be connected with a support frame respectively.
[0031] The application designs that the rod part II is arranged as a strip plate body with a lower end through hole body and a threaded hole body, and the nut part II and the nut part III are arranged as hexagonal nuts respectively; the frame part is arranged as an L-shaped strip plate body with a threaded hole body in the vertical part, and the threaded hole bodies of the rod part II and the frame part are arranged to be threadedly connected with the support frame respectively; and the lower end through hole body of the rod part II is arranged to be connected with the support.
[0032] The technical effects of the above two technical solutions are that an intermediate integrated component is formed, and the main cylinder section is clamped and connected and supported.
[0033] The safety sheet is designed as a burst disc with a threaded body on the outer peripheral side, and the threaded body of the safety sheet is designed to be threadedly coupled with the main cylinder section.
[0034] The technical effects of the above technical solution are that an intermediate integrated component is formed, and the main cylinder section is safely protected.
[0035] The temperature sensor is designed as a thermal resistance type temperature sensor, and the shell of the temperature sensor is designed to be embeddedly coupled with the support frame, and the contact of the temperature sensor is designed to be coupled with the diaphragm seat.
[0036] The technical effects of the above technical solution are that an intermediate integrated component is formed, and the temperature signal of the conveyed concrete mortar is picked up.
[0037] The camera is designed as a CCD image sensor, and the shell of the camera is designed to be coupled with the clamping frame, and the camera is respectively designed to be distributed corresponding to the first external cylinder section and the second external cylinder section.
[0038] The technical effects of the above technical solution are that an intermediate integrated component is formed, and the state signal of the conveyed concrete mortar is picked up.
[0039] The pressure sensor is designed as a semiconductor piezoresistance type pressure sensor, and the lower end shell of the pressure sensor is designed to be embeddedly coupled with the support, and the upper end contact of the pressure sensor is designed to be contactly coupled with the main cylinder section.
[0040] The technical effects of the above technical solution are that an intermediate integrated component is formed, and the dynamic weight signal of the conveyed concrete mortar is picked up.
[0041] The main cylinder section, the first external cylinder section and the second external cylinder section are designed to be distributed in a manner of picking up the expansion displacement signal with the support, the diaphragm seat, the support frame, the clamping frame and the displacement sensor, and the main cylinder section, the first external cylinder section and the second external cylinder section are designed to be distributed in a manner of pressure relief safety with the safety sheet, and the main cylinder section, the first external cylinder section and the second external cylinder section are designed to be distributed in a manner of picking up the monitoring signal with the support, the diaphragm seat, the support frame, the clamping frame, the pressure sensor, the temperature sensor and the camera.
[0042] The application designs a support frame, a clamping frame and a camera, which are arranged to constitute a group of frame head components, one group of frame head components is arranged on a displacement sensor, another group of frame head components is arranged on a temperature sensor, a plurality of pressure sensors are arranged between the main body cylinder section and the support, the rod part II, the nut part II and the nut part III are arranged to be coupled with the screw rod part I and the screw rod part II respectively, the frame part is arranged to be coupled with the containing groove body I, the rod part I and the screw rod part IV are arranged to be coupled with the rod part II and the frame part respectively, and the ring disc part I and the containing groove body II are arranged to be coupled with the cylinder part respectively.
[0043] The application designs a concrete mortar conveying visual monitoring pipe section device usage method for a steel pipe concrete frame, which comprises the following steps: the concrete mortar conveying pipe section body realizes concrete mortar conveying between a conveying pipe on a concrete mortar pump and a conveying pipe on the steel pipe concrete frame, the diaphragm seat realizes displacement signal change with the pressure value of the concrete mortar in the main body cylinder section, the displacement sensor realizes picking up the change displacement signal of the diaphragm seat, and external signals realize conversion and identification of the pressure value of the concrete mortar.
[0044] The technical effect of the above technical scheme is that the technical feature of conversion and identification of the pressure value of the concrete mortar by external signals is highlighted, and the application of the concrete mortar conveying visual monitoring pipe section device usage method for the steel pipe concrete frame is introduced.
[0045] The application designs the steps as follows: rotating the threaded body of the ring disc part I in one of the ports of the cylinder part, rotating the threaded body of the safety sheet in the other port of the cylinder part, thereby installing the diaphragm seat and the safety sheet in the main cylinder section respectively, placing the lower end shell of the pressure sensor into the accommodating hole body I, placing the peripheral side lower end of the cylinder part into the upper end contact of the pressure sensor, connecting the inner end port of the first external cylinder section with the peripheral side front side left end of the cylinder part, connecting the inner end port of the second external cylinder section with the peripheral side back side right end of the cylinder part, rotating the nut part II on the screw rod part I and the screw rod part II respectively, installing the lower end through hole body of the rod part II on the screw rod part I and the screw rod part II respectively, rotating the nut part III on the screw rod part I and the screw rod part II respectively, placing the vertical part upper and lower sections of the frame part into the accommodating groove body I, rotating the nut part II and the nut part III on the screw rod part I and the screw rod part II respectively, making the inner end end face of the nut part II act on the inner end end face lower side of the rod part II, making the inner end end face of the nut part III act on the outer end end face lower side of the rod part II, thereby installing the main cylinder section between the support and the clamping frame, placing the displacement sensor and the temperature sensor into the blind hole of the stud part respectively, rotating the screw rod part V in the threaded hole body of the stud part, making the inner end end face of the screw rod part V act on the displacement sensor and the temperature sensor respectively, placing the inner end head of the screw rod part IV into the accommodating hole body II, rotating the inner end head of the screw rod part IV in the threaded hole body of the rod part II and the threaded hole body of the frame part, moving the screw rod part IV in the accommodating hole body II, making the contact of the displacement sensor contact with one of the end faces of the elastic sheet part, making the contact of the temperature sensor contact with the outer ring of the safety sheet, continuing to rotate the inner end head of the screw rod part IV in the threaded hole body of the rod part II and the threaded hole body of the frame part, making the flange body of the screw rod part IV act on the outer side face of the rod part I, thereby installing the displacement sensor on the diaphragm seat and the temperature sensor on the safety sheet, corresponding the camera with the first external cylinder section and the second external cylinder section respectively, connecting the outer end port of the first external cylinder section with the delivery pipe on the concrete mortar pump, connecting the outer end port of the second external cylinder section with the delivery pipe on the steel pipe concrete frame, when the concrete mortar pump is in the working state, the concrete mortar in the delivery pipe on the concrete mortar pump is delivered into the cylinder part through the first external cylinder section, the concrete mortar in the cylinder part is delivered into the delivery pipe on the steel pipe concrete frame through the second external cylinder section, the concrete mortar in the cylinder part generates expansion force on the elastic sheet part, the expansion displacement signal of the elastic sheet part is picked up by the displacement sensor, thereby visualizing the concrete mortar pressure value in the cylinder part, the dynamic weight signal of the concrete mortar in the cylinder part is picked up by the pressure sensor, thereby visualizing the concrete mortar flow value in the cylinder part, the working state signal of the first external cylinder section and the second external cylinder section is picked up by the camera, thereby visualizing the concrete mortar flow rate change value in the cylinder part.Pick up the temperature value signal of the safety sheet through the temperature sensor, thereby visualizing the monitoring of the concrete mortar temperature value in the barrel part, when the pressure value of the concrete mortar in the barrel part is at an extremely high value, the safety sheet is in a broken state, thereby no longer making the delivery pipe on the steel pipe concrete frame in the concrete mortar delivery state.
[0046] The technical effect of the above technical solution is to realize the displacement signal visualization monitoring operation of the pressure value of the concrete mortar.
[0047] In the technical solution, the diaphragm seat and the displacement sensor are basic components and necessary technical features of the application, the main barrel section, the first external barrel section, the second external barrel section, the support, the support frame, the clamping frame, the safety sheet, the pressure sensor, the temperature sensor and the camera are functional components and features for realizing other technical effects of the application, and the design of these technical features, such as the barrel part, the accommodating groove body I, the seat part, the screw part I, the screw part II, the accommodating groove body II, the accommodating hole body I, the ring disc part I, the elastic sheet part, the ring disc part II, the screw part III, the rod part I, the screw part IV, the screw part V, the head part, the accommodating hole body II, the rod part II, the nut part II, the nut part III and the frame part, is in line with the technical features of the patent law and its implementing regulations.
[0048] In the technical solution, the external signal for converting the pressure value of the concrete mortar is realized by the diaphragm seat and the displacement sensor.
[0049] In the technical solution, the concrete mortar delivery pipe section body, the diaphragm seat and the displacement sensor for converting the pressure value of the concrete mortar by external signals are important technical features, have novelty, creativity and practicality in the technical field of the concrete mortar delivery visualization monitoring pipe section device for steel pipe concrete frame and the use method, and the terms in the technical solution can be explained and understood by using the patent documents in the technical field. BRIEF DESCRIPTION OF DRAWINGS
[0050] In order to more clearly illustrate the technical solutions in the embodiments or prior art of the application, the drawings needed in the embodiment or prior art description will be briefly introduced below. Obviously, the drawings in the following description are only some embodiments of the application, and those skilled in the art can also obtain other drawings according to these drawings without creative labor.
[0051] Figure 1 is a schematic view of one of the first embodiments of the concrete mortar delivery visualization monitoring pipe section device for steel pipe concrete frame of the application, Figure 2Fig. 1 is a schematic view of the connection relationship of the main cylinder section 1, the first outer cylinder section 2, the second outer cylinder section 3, the support 4, the diaphragm seat 5 and the pressure sensor 90, Main cylinder section 1, first outer cylinder section 2, second outer cylinder section 3, support 4, diaphragm seat 5, support frame 6, clamping frame 7, displacement sensor 8, safety sheet 9, pressure sensor 90, temperature sensor 91, camera 92, cylinder part 11, containing groove body I 12, seat part 41, screw part I 42, screw part II 43, containing groove body II 44, containing hole body I 45, ring disc part I 51, elastic sheet part 52, ring disc part II 53, screw part III 54, rod part I 61, screw part IV 62, screw part V 63, stud part 64, containing hole body II 65, rod part II 71, nut part II 72, nut part III 73, frame part 74. DETAILED DESCRIPTION
[0052] According to the examination guidelines, the terms such as "have", "contain" and "include" used in the present application should be understood as not excluding the existence or addition of one or more other elements or combinations thereof.
[0053] In the description of the present application, it should be noted that the orientations or positional relationships indicated by the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer" and the like are based on the orientations or positional relationships shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and therefore cannot be understood as indicating or implying that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as limiting the present application. In addition, the terms "first", "second", "third" are only for descriptive purposes and cannot be understood as indicating or implying relative importance.
[0054] In the description of the present application, it should be noted that unless otherwise explicitly specified and limited, the terms "mount", "connect", "connect" should be understood broadly, for example, it can be fixedly connected, or it can be detachably connected, or integrally connected; it can be mechanically connected, or it can be electrically connected; it can be directly connected, or it can be indirectly connected through an intermediate medium; it can be the communication inside two elements. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.
[0055] In addition, the technical features involved in the different embodiments of the present application described below can be combined with each other as long as they do not conflict with each other, and in addition, unless otherwise specified, the equipment and materials used in the following examples are commercially available, and if the processing conditions are not explicitly specified, please improve them according to the conventional methods in the art.
[0056] With reference to the drawings of the embodiments of the present application, the technical solutions in the embodiments of the present application will be described clearly and completely. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments of the present application, all other embodiments obtained by those skilled in the art without creative work fall within the scope of the present application.
[0057] A concrete mortar conveying visual monitoring pipe joint device for a concrete-filled steel tube frame, Figure 1 As one of the first embodiments of the present application, the present embodiment will be described in detail with reference to the drawings, which comprises a main body cylinder joint 1, a first external cylinder joint 2, a second external cylinder joint 3, a support 4, a diaphragm seat 5, a support frame 6, a clamping frame 7, a displacement sensor 8, a safety sheet 9, a pressure sensor 90, a temperature sensor 91 and a camera 92, and the clamping frame 7 and the pressure sensor 90 are respectively arranged on the support 4, the main body cylinder joint 1 is arranged between the pressure sensor 90 and the clamping frame 7, and the first external cylinder joint 2, the second external cylinder joint 3, the diaphragm seat 5 and the safety sheet 9 are respectively arranged on the main body cylinder joint 1, the support frame 6 and the camera 92 are respectively arranged on the clamping frame 7, and the displacement sensor 8 is arranged between the support frame 6 and the diaphragm seat 5, and the temperature sensor 91 is arranged between the support frame 6 and the safety sheet 9.
[0058] As the second of the first embodiments of the present application, the present embodiment will be described in detail with reference to the drawings, In the present embodiment, the accommodating groove I 12 is arranged on the port of the cylinder part 11 of the main body cylinder joint 1, and the lower end of the peripheral side surface of the cylinder part 11 is arranged in contact with the pressure sensor 90, the left end of the front side of the peripheral side surface of the cylinder part 11 is arranged in communication with the first external cylinder joint 2, and the right end of the rear side of the peripheral side surface of the cylinder part 11 is arranged in communication with the second external cylinder joint 3, one of the ports of the cylinder part 11 is arranged in threaded connection with the diaphragm seat 5, and the other port of the cylinder part 11 is arranged in threaded connection with the safety sheet 9, and the ports of the cylinder part 11 are respectively arranged in accommodating connection with the support frame 6, the displacement sensor 8 and the temperature sensor 91, and the accommodating groove I 12 is arranged in connection with the clamping frame 7.
[0059] The main body cylinder section 1 forms the support connection points for the first outer cylinder section 2, the second outer cylinder section 3, the diaphragm seat 5, the support frame 6, the clamping frame 7, the displacement sensor 8, the safety sheet 9, the pressure sensor 90 and the temperature sensor 91, and the cylinder part 11 realizes the connection with the first outer cylinder section 2, the connection with the second outer cylinder section 3, the connection with the diaphragm seat 5, the connection with the support frame 6, the connection with the displacement sensor 8, the connection with the safety sheet 9, the connection with the pressure sensor 90 and the connection with the temperature sensor 91, and the containing groove body I 112 realizes the connection with the clamping frame 7, and the technical purpose is to serve as one of the components for conveying concrete mortar.
[0060] In this embodiment, the cylinder part 11 is provided as a tubular body with a threaded body in the inner wall of the port, and the containing groove body I 112 is provided as a open body in the shape of a Chinese character, and the threaded body of the cylinder part 11 is respectively coupled with the diaphragm seat 5 and the safety sheet 9.
[0061] The technical purpose is to realize the pipe body conveying of concrete mortar.
[0062] In this embodiment, the first outer cylinder section 2 and the second outer cylinder section 3 are respectively provided as metal corrugated pipes, and the inner end port of the first outer cylinder section 2 and the inner end port of the second outer cylinder section 3 are respectively provided as communicatingly coupled with the main body cylinder section 1.
[0063] The first outer cylinder section 2 and the second outer cylinder section 3 form the support connection points for the main body cylinder section 1, and the first outer cylinder section 2 and the second outer cylinder section 3 realize the connection with the main body cylinder section 1, and the technical purpose is to serve as the second component for conveying concrete mortar.
[0064] In this embodiment, the support 4 is provided as containing a seat part 41, a screw part I 42 and a screw part II 43, and a containing groove body II 44 is provided in the middle of the upper end surface of the seat part 41, a containing hole body I 45 is provided on the bottom wall of the containing groove body II 44, and the lower side of one of the end surfaces of the seat part 41 is coupled with the inner end surface of the screw part I 42, the lower side of the other end surface of the seat part 41 is coupled with the inner end surface of the screw part II 43, and the screw part I 42 and the screw part II 43 are respectively coupled with the clamping frame 7, the containing groove body II 44 is coupled with the main body cylinder section 1, and the containing hole body I 45 is coupled with the pressure sensor 90.
[0065] The support connection points of the main cylinder section 1, the clamping frame 7 and the pressure sensor 90 are formed by the seat 41 and the receiving groove body II 44, the connection with the main cylinder section 1 is realized by the screw rod part I 42 and the screw rod part II 43, the connection with the pressure sensor 90 is realized by the seat 41 and the receiving hole body I 45, and the technical purpose is to serve as a support carrier for the main cylinder section 1, the clamping frame 7 and the pressure sensor 90.
[0066] In this embodiment, the seat 41 is provided as a block body with a H-shaped groove in the middle of the lower end face, the screw rod part I 42 and the screw rod part II 43 are provided as light column bolts respectively, the receiving groove body II 44 is provided as a H-shaped opening body, and the receiving hole body I 45 is provided as a blind hole. The receiving hole body I 45 is arranged in a spaced distribution along the transverse center line of the seat 41.
[0067] The technical purpose is to realize the open body type connection support of the main cylinder section 1, the light column bolt type connection support of the clamping frame 7 and the hole body type connection support of the pressure sensor 90.
[0068] In this embodiment, the diaphragm seat 5 is provided with a ring disc part I 51, an elastic sheet part 52, a ring disc part II 53 and a screw rod part III 54, one of the end face edges of the elastic sheet part 52 is provided in contact type coupling with the inner end face of the ring disc part I 51, the other end face edge of the elastic sheet part 52 is provided in contact type coupling with the inner end face of the ring disc part II 53, the inner end head of the screw rod part III 54 is provided in threaded type coupling with the ring disc part I 51, the inner end head of the screw rod part III 54 is provided in penetrating type coupling with the edge of the elastic sheet part 52 and the ring disc part II 53 respectively, the flange body of the screw rod part III 54 is provided in contact type coupling with the outer end face of the ring disc part II 53, the peripheral side face of the ring disc part I 51 is provided in threaded type coupling with the main cylinder section 1, and one of the end face edges of the elastic sheet part 52 is provided in contact type coupling with the displacement sensor 8.
[0069] The support connection points of the main cylinder section 1 and the displacement sensor 8 are formed by the diaphragm seat 5, the connection with the main cylinder section 1 is realized by the ring disc part I 51, the connection with the displacement sensor 8 is realized by the elastic sheet part 52, and the installation connection of the elastic sheet part 52 on the ring disc part I 51 is realized by the ring disc part II 53 and the screw rod part III 54, and the technical purpose is to serve as a component for picking up the pressure signal generated by the concrete mortar in the main cylinder section 1.
[0070] In the embodiment, the ring disc part I 51 is arranged as a strip ring body with a threaded body on the peripheral side and a threaded blind hole on the inner end face, and the elastic sheet part 52 is arranged as a rubber diaphragm body with a through hole body on the peripheral edge, and the ring disc part II 53 is arranged as a strip ring body with a through hole body, and the threaded body of the ring disc part I 51 is arranged to be coupled with the main body barrel section 1, and the threaded blind hole of the ring disc part I 51, the through hole body of the elastic sheet part 52 and the through hole body of the ring disc part II 53 are respectively arranged to be coupled with the threaded rod part III 54.
[0071] The technical purposes are to realize the rubber diaphragm pickup of the pressure signal generated by the concrete mortar in the main body barrel section 1.
[0072] In the embodiment, the support frame 6 is arranged to contain a rod part I 61, a threaded rod part IV 62, a threaded rod part V 63 and a stud part 64, and a containing hole body II 65 is arranged on the rod part I 61, the inner end face of the rod part I 61 is arranged to be coupled with the inner end face of the stud part 64, and the inner end head of the threaded rod part IV 62 is arranged to be coupled with the containing hole body II 65, the flange body of the threaded rod part IV 62 is arranged to be contact-coupled with the outer side face of the rod part I 61, and the inner end head of the threaded rod part V 63 is arranged to be threadedly coupled with the peripheral side of the stud part 64, the inner side face of the rod part I 61 is arranged to be contact-coupled with the clamping frame 7, and the inner end head of the threaded rod part IV 62 is arranged to be threadedly coupled with the clamping frame 7, the outer end face of the stud part 64 is respectively arranged to be accommodated-coupled with the displacement sensor 8 and the temperature sensor 91, and the inner end face of the threaded rod part V 63 is respectively arranged to be contact-coupled with the displacement sensor 8 and the temperature sensor 91.
[0073] Through the support frame 6, the support connection points of the support frame 6, the displacement sensor 8 and the temperature sensor 91 are formed, the connection with the support frame 6 is realized by the rod part I 61 and the threaded rod part IV 62, the connection with the displacement sensor 8 is realized by the threaded rod part V 63 and the stud part 64, and the connection with the temperature sensor 91 is realized, and the installation connection of the threaded rod part IV 62 on the rod part I 61 is realized by the containing hole body II 65, and the technical purposes are to serve as the support carrier of the displacement sensor 8 and the temperature sensor 91.
[0074] In the embodiment, the rod part I 61 is provided as a strip-shaped body, the screw rod parts IV 62 and V 63 are respectively provided as hexagonal bolts, the head part 64 is provided as a rod-shaped body with a blind hole at the outer end face and a threaded hole body at the peripheral side face, and the accommodating hole body II 65 is provided as a long strip-shaped hole body. The inner port of the threaded hole body of the head part 64 is arranged on the inner wall of the blind hole of the head part 64, and the threaded hole body of the head part 64 is arranged to be coupled with the screw rod part V 63. The blind hole of the head part 64 is respectively arranged to be coupled with the displacement sensor 8 and the temperature sensor 91, and the threaded hole body of the head part 64 is arranged to be distributed along the peripheral contour line of the head part 64. The two screw rod parts IV 62 are arranged between the rod part I 61 and the clamping frame 7.
[0075] The technical purposes are to realize the hole body and bolt body type connection support of the displacement sensor 8 and the temperature sensor 91.
[0076] In the embodiment, the clamping frame 7 is provided to contain the rod part II 71, the nut part II 72, the nut part III 73 and the frame part 74. The inner end face lower side of the rod part II 71 is provided to be in contact type coupling with the inner end face of the nut part II 72. The outer end face lower side of the rod part II 71 is provided to be in contact type coupling with the inner end face of the nut part III 73. The inner end face upper side of the rod part II 71 is respectively provided to be coupled with the horizontal part end face of the frame part 74 and the camera 92. The lower end head of the rod part II 71 is provided to be fitted type coupling with the support 4. The nut part II 72 and the nut part III 73 are respectively provided to be threadedly coupled with the support 4. The vertical part upper and lower sections of the frame part 74 are provided to be embedded type coupling with the main body cylinder section 1. The vertical part of the rod part II 71 and the frame part 74 are respectively provided to be coupled with the support frame 6.
[0077] Through the clamping frame 7, the support connection points of the main body cylinder section 1, the support 4 and the support frame 6 are formed. Through the frame part 74, the connection with the main body cylinder section 1 is realized. Through the rod part II 71, the nut part II 72 and the nut part III 73, the connection with the support 4 is realized. Through the rod part II 71 and the frame part 74, the connection with the support frame 6 is realized. The technical purposes are to serve as the components for installing the main body cylinder section 1 on the support 4.
[0078] In the embodiment, the rod part II 71 is provided as a strip-shaped body with a lower end through hole body and a threaded hole body. The nut part II 72 and the nut part III 73 are respectively provided as hexagonal nuts. The frame part 74 is provided as an L-shaped strip-shaped body with a threaded hole body at the vertical part. The threaded hole bodies of the rod part II 71 and the frame part 74 are respectively provided to be threadedly coupled with the support frame 6. The lower end through hole body of the rod part II 71 is provided to be coupled with the support 4.
[0079] The technical purposes are to realize the clamping type installation of the main body cylinder section 1 on the support 4.
[0080] In the embodiment, the displacement sensor 8 is arranged as a Hall displacement sensor, and the shell of the displacement sensor 8 is arranged in embedded connection with the support frame 6, and the contact of the displacement sensor 8 is arranged in connection with the diaphragm seat 5.
[0081] The displacement sensor 8 forms a support connection point for the diaphragm seat 5 and the support frame 6, and the displacement sensor 8 realizes connection with the diaphragm seat 5 and connection with the support frame 6, and the technical purpose is to serve as a component for picking up the expansion signal of the diaphragm seat 5.
[0082] In the embodiment, the safety sheet 9 is arranged as a bursting disc with a threaded body on the outer peripheral side, and the threaded body of the safety sheet 9 is arranged in threaded connection with the main cylinder section 1, and the outer ring of the safety sheet 9 is arranged in contact connection with the temperature sensor 91.
[0083] The safety sheet 9 forms a support connection point for the main cylinder section 1 and the temperature sensor 91, and the safety sheet 9 realizes connection with the main cylinder section 1 and connection with the temperature sensor 91, and the technical purpose is to serve as a component for safety protection of the main cylinder section 1.
[0084] In the embodiment, the temperature sensor 91 is arranged as a thermal resistance type temperature sensor, and the shell of the temperature sensor 91 is arranged in embedded connection with the support frame 6, and the contact of the temperature sensor 91 is arranged in connection with the diaphragm seat 5.
[0085] The temperature sensor 91 forms a support connection point for the diaphragm seat 5 and the safety sheet 9, and the temperature sensor 91 realizes connection with the support frame 6 and connection with the safety sheet 9, and the technical purpose is to serve as a component for picking up the temperature signal of the concrete mortar in the main cylinder section 1.
[0086] In the embodiment, the camera 92 is arranged as a CCD image sensor, and the shell of the camera 92 is arranged in connection with the clamping frame 7, and the camera 92 is arranged in corresponding distribution with the first outer connecting cylinder section 2 and the second outer connecting cylinder section 3, respectively.
[0087] The camera 92 forms a support connection point for the first outer connecting cylinder section 2, the second outer connecting cylinder section 3, and the clamping frame 7, and the camera 92 realizes connection with the first outer connecting cylinder section 2, connection with the second outer connecting cylinder section 3, and connection with the clamping frame 7, and the technical purpose is to serve as a component for picking up the working state signal of the first outer connecting cylinder section 2 and the second outer connecting cylinder section 3.
[0088] In the embodiment, the pressure sensor 90 is arranged as a semiconductor piezoresistance type pressure sensor, and the lower end shell of the pressure sensor 90 is arranged in embeddedly coupled with the support 4, and the upper end contact of the pressure sensor 90 is arranged in contactly coupled with the main body cylinder section 1.
[0089] Through the pressure sensor 90, the support connection points of the main body cylinder section 1 and the support 4 are formed, and the connection with the main body cylinder section 1 and the connection with the support 4 are realized, and the technical purpose is to serve as a component for picking up the dynamic weight signal of the concrete mortar conveyed in the main body cylinder section 1.
[0090] In the embodiment, the main body cylinder section 1, the first outer connecting cylinder section 2 and the second outer connecting cylinder section 3 are arranged in a manner of distributing according to the pickup of the expansion displacement signal with the support 4, the diaphragm seat 5, the support frame 6, the clamping frame 7 and the displacement sensor 8, and the main body cylinder section 1, the first outer connecting cylinder section 2 and the second outer connecting cylinder section 3 are arranged in a manner of distributing according to the pressure relief safety with the safety sheet 9, and the main body cylinder section 1, the first outer connecting cylinder section 2 and the second outer connecting cylinder section 3 are arranged in a manner of distributing according to the pickup of the monitoring signal with the support 4, the diaphragm seat 5, the support frame 6, the clamping frame 7, the pressure sensor 90, the temperature sensor 91 and the camera 92, one support frame 6, one clamping frame 7 and one camera 92 are arranged to form a group of frame head components, one group of frame head components is arranged on the displacement sensor 8, and another group of frame head components is arranged on the temperature sensor 91, a plurality of pressure sensors 90 are arranged between the main body cylinder section 1 and the support 4, the rod part Ⅱ 71, the nut part Ⅱ 72 and the nut part Ⅲ 73 are respectively arranged in coupled with the screw rod part Ⅰ 42 and the screw rod part Ⅱ 43, the frame part 74 is arranged in coupled with the containing groove body Ⅰ 12, the rod part Ⅰ 61 and the screw rod part Ⅳ 62 are respectively arranged in coupled with the rod part Ⅱ 71 and the frame part 74, and the ring disc part Ⅰ 51 and the containing groove body Ⅱ 44 are respectively arranged in coupled with the cylinder part 11.
[0091] The application is further described below in combination with the embodiments, and the following embodiments are intended to illustrate the application rather than further limit the application.
[0092] A kind of concrete mortar conveying visual monitoring pipe joint device for concrete filled steel tube frame, its steps are: the threaded body of ring disc part I 51 is rotated in one of the ports of barrel part 11, the threaded body of safety sheet 9 is rotated in another port of barrel part 11, so that diaphragm seat 5 and safety sheet 9 are installed in main body barrel joint 1 respectively, the lower end shell of pressure sensor 90 is placed in containing hole body I 45, the peripheral side lower end of barrel part 11 is placed in the upper end contact of pressure sensor 90, the inner end port of first outer connecting barrel joint 2 is connected with the peripheral side front side left end of barrel part 11, the inner end port of second outer connecting barrel joint 3 is connected with the peripheral side rear side right end of barrel part 11, nut part II 72 is rotated on screw rod part I 42 and screw rod part II 43 respectively, the lower end through hole body of rod part II 71 is installed on screw rod part I 42 and screw rod part II 43 respectively, nut part III 73 is rotated on screw rod part I 42 and screw rod part II 43 respectively, the vertical part upper and lower section of frame part 74 is placed in containing groove body I 12, nut part II 72 and nut part III 73 are rotated on screw rod part I 42 and screw rod part II 43 respectively, the inner end end face of nut part II 72 acts on the inner end end face lower side of rod part II 71, the inner end end face of nut part III 73 acts on the outer end end face lower side of rod part II 71, so that main body barrel joint 1 is installed between support 4 and clamping frame 7, displacement sensor 8 and temperature sensor 91 are placed in the blind hole of stud head 64 respectively, screw rod part V 63 is rotated in the threaded hole body of stud head 64, the inner end end face of screw rod part V 63 acts on displacement sensor 8 and temperature sensor 91 respectively, the inner end head of screw rod part IV 62 is placed in containing hole body II 65, the inner end head of screw rod part IV 62 is rotated in the threaded hole body of rod part II 71 and the threaded hole body of frame part 74, screw rod part IV 62 moves in containing hole body II 65, the contact of displacement sensor 8 is in contact with one of the end faces of elastic sheet part 52, the contact of temperature sensor 91 is in contact with the outer ring of safety sheet 9, the inner end head of screw rod part IV 62 is continuously rotated in the threaded hole body of rod part II 71 and the threaded hole body of frame part 74, the flange body of screw rod part IV 62 acts on the outer side face of rod part I 61, so that displacement sensor 8 is installed on diaphragm seat 5, temperature sensor 91 is installed on safety sheet 9, camera 92 is corresponding with first outer connecting barrel joint 2 and second outer connecting barrel joint 3 respectively, the outer end port of first outer connecting barrel joint 2 is connected with the conveying pipe on concrete mortar pump, the outer end port of second outer connecting barrel joint 3 is connected with the conveying pipe on concrete filled steel tube frame, when concrete mortar pump is in working state, the concrete mortar in the conveying pipe on concrete mortar pump is conveyed into barrel part 11 through first outer connecting barrel joint 2, the concrete mortar in barrel part 11 is conveyed into the conveying pipe on concrete filled steel tube frame through second outer connecting barrel joint 3, The concrete mortar in the cylinder 11 exerts an expansion force on the elastic plate 52. The expansion displacement signal of the elastic plate 52 is picked up by the displacement sensor 8, thereby visually monitoring the pressure value of the concrete mortar in the cylinder 11. The dynamic weight signal of the concrete mortar in the cylinder 11 is picked up by the pressure sensor 90, thereby visually monitoring the flow rate value of the concrete mortar in the cylinder 11. The working status signal of the first external cylinder section 2 and the second external cylinder section 3 is picked up by the camera 92, thereby visually monitoring the change value of the flow rate of the concrete mortar in the cylinder 11. The temperature value signal of the safety plate 9 is picked up by the temperature sensor 91, thereby visually monitoring the temperature value of the concrete mortar in the cylinder 11. When the pressure value of the concrete mortar in the cylinder 11 is extremely high, the safety plate 9 is ruptured, thereby preventing the conveying pipe on the steel-concrete frame from being in the concrete mortar conveying state.
[0093] In the verification of the application, the inventors abandoned the prior art feature of installing a pressure sensor in the concrete mortar conveying pipe section to pick up the pressure signal of the concrete mortar by the built-in pressure sensor, first proposed the technical feature of converting and identifying the pressure value of the concrete mortar by an external signal, achieved the first unexpected technical effect: realized the visualization monitoring of the concrete mortar conveying by replacing the displacement signal, eliminated the influence of the concrete mortar on the sensor, improved the visualization monitoring accuracy of the concrete mortar conveying, achieved the second unexpected technical effect: realized the conveying of the concrete mortar by the main cylinder section 1, the first external cylinder section 2 and the second external cylinder section 3, improved the conveying state following performance of the concrete mortar, achieved the third unexpected technical effect: realized the installation of the main cylinder section 1 on the support 4 by the clamping frame 7, improved the installation flexibility of the main cylinder section 1 and the support 4, achieved the fourth unexpected technical effect: realized the identification of the pressure value of the concrete mortar by the diaphragm seat 5 and the displacement sensor 8, improved the visualization monitoring effect of the pressure value of the concrete mortar, achieved the fifth unexpected technical effect: realized the picking up of the dynamic weight signal of the conveying concrete mortar by the pressure sensor 90, improved the visualization monitoring effect of the flow value of the concrete mortar, achieved the sixth unexpected technical effect: realized the picking up of the working state signal of the first external cylinder section 2 and the second external cylinder section 3 by the camera 92, improved the visualization monitoring effect of the flow rate change value of the concrete mortar, achieved the seventh unexpected technical effect: realized the picking up of the temperature value signal of the safety sheet 9 by the temperature sensor 91, improved the visualization monitoring effect of the temperature value of the concrete mortar, achieved the eighth unexpected technical effect: realized the installation of the displacement sensor 8 and the temperature sensor 91 by the support frame 6, improved the installation effect of the displacement sensor 8 and the temperature sensor 91, achieved the eighth unexpected technical effect: realized the safety protection of the conveying pipe located on the steel pipe concrete frame by the safety sheet 9, improved the safety performance of the concrete mortar conveying, achieved the ninth unexpected technical effect: realized that the pressure sensor is no longer installed in the concrete mortar conveying pipe section to pick up the pressure signal of the concrete mortar by the built-in pressure sensor, improved the smoothness of the concrete mortar conveying, prolonged the service life of the displacement sensor 8, the pressure sensor 90 and the temperature sensor 91.
[0094] In the second embodiment of the application, the concrete mortar conveying pipe section body, the diaphragm seat 5 and the displacement sensor 8 are connected to each other in the way of converting and identifying the pressure value of the concrete mortar by an external signal.
[0095] In this embodiment, the diaphragm seat 5 is connected to the concrete mortar conveying pipe section body and the displacement sensor 8 in the way of changing the displacement signal with the pressure value of the concrete mortar.
[0096] In the embodiment, the concrete mortar conveying pipe joint body is further provided with a first outer sleeve joint 2, a second outer sleeve joint 3, a support 4, a support frame 6, a clamping frame 7 and a safety sheet 9.
[0097] In the embodiment, the first accessory device is further provided, and the first accessory device is provided with a pressure sensor 90, a temperature sensor 91 and a camera 92.
[0098] The second embodiment of the present application is based on the first embodiment, The second embodiment of the present application is based on the first embodiment,
[0099] The second embodiment of the present application is based on the first embodiment, The present application has the following characteristics: 1. Due to the design of the concrete mortar conveying pipe joint body, the diaphragm seat 5 and the displacement sensor 8, the concrete mortar conveying pipe joint body is used to realize the concrete mortar conveying between the conveying pipe on the concrete mortar pump and the conveying pipe on the steel pipe concrete frame, the diaphragm seat 5 is used to realize the displacement signal change with the pressure value of the concrete mortar in the main body sleeve joint 1, the displacement sensor 8 is used to pick up the change displacement signal of the diaphragm seat 5, and the pressure value of the concrete mortar is converted and identified by the external signal, thereby solving the technical problem of picking up the pressure signal of the concrete mortar by the built-in pressure sensor through the installation of the pressure sensor in the concrete mortar conveying pipe joint, and improving the visual monitoring effect of the concrete mortar conveying pressure.
[0100] 2. Due to the design of the main body sleeve joint 1, the first outer sleeve joint 2, the second outer sleeve joint 3, the support 4, the support frame 6, the clamping frame 7 and the safety sheet 9, the metal corrugated pipe is realized as a branch pipe.
[0101] 3. Due to the design of the pressure sensor 90, the temperature sensor 91 and the camera 92, the multi-parameter visual monitoring of the concrete mortar conveying is realized.
[0102] 4. Because the design limits the numerical range of the structural shape, the numerical range is a technical feature in the technical solution of this invention, and is not a technical feature obtained by formula calculation or a limited number of experiments. The experiment shows that the technical feature of the numerical range has achieved very good technical effect.
[0103] 5. Due to the design of the technical features of this invention, and the combined effect of the individual and collective technical features, experiments have shown that the performance indicators of this invention are at least 1.7 times that of existing performance indicators, and the invention has been evaluated to have good market value.
[0104] Other technical features that connect to the concrete mortar delivery pipe section body, diaphragm seat 5, and displacement sensor 8, which are identified by external signals to convert the pressure value of the concrete mortar, are also embodiments of the present invention. Furthermore, the technical features of the above embodiments can be combined in any way. In order to meet the requirements of the Patent Law, the Patent Implementation Regulations, and the Examination Guidelines, all possible combinations of the technical features in the above embodiments will not be described.
[0105] The above embodiments are merely one implementation of the visual monitoring pipe section device and method for conveying concrete mortar in steel-concrete composite frames provided by the present invention. Any other modifications to the solution provided by the present invention, the addition or reduction of features or steps, or the application of the present invention to other technical fields similar to the present invention, shall all fall within the protection scope of the present invention.
Claims
1. A concrete mortar delivery visual monitoring segment device for a concrete filled steel tube frame, characterized by: The concrete mortar conveying pipe section body comprises a main body section (1), a diaphragm seat (5) arranged in the main body section (1), and a displacement sensor (8) arranged between the diaphragm seat (5) and the concrete mortar conveying pipe section body.
2. The concrete mortar delivery visualization monitoring segment device for a concrete-filled steel tube frame according to claim 1, characterized in that: The concrete mortar conveying pipe section body, the diaphragm seat (5) and the displacement sensor (8) are connected to each other in a manner that the pressure value of the concrete mortar is converted and marked by an external signal.
3. The concrete mortar delivery visualization monitoring segment device for a concrete-filled steel tube frame according to claim 2, characterized in that: The diaphragm seat (5) is connected to the concrete mortar conveying pipe section body and the displacement sensor (8) in a manner that the displacement signal changes with the pressure value of the concrete mortar.
4. The visual monitoring segment device for concrete mortar delivery of a concrete filled steel tube frame according to claim 1, wherein the concrete The mortar conveying pipe section body is further provided with a first external section (2), a second external section (3), a support (4), a support frame (6), a clamping frame (7) and a safety sheet (9), Or, further comprising a first accessory device, and the first accessory device is provided with a pressure sensor (90), a temperature sensor (91) and a camera (92).
5. The concrete mortar delivery visualization monitoring segment device for a concrete filled steel tube frame as defined in claim 4, wherein The clamping frame (7) and the pressure sensor (90) are arranged on the support (4), the main body section (1) is arranged between the pressure sensor (90) and the clamping frame (7), the first external section (2), the second external section (3), the diaphragm seat (5) and the safety sheet (9) are arranged on the main body section (1), the support frame (6) and the camera (92) are arranged on the clamping frame (7), the displacement sensor (8) is arranged between the support frame (6) and the diaphragm seat (5), and the temperature sensor (91) is arranged between the support frame (6) and the safety sheet (9).
6. The concrete mortar delivery visualization monitoring segment device for a concrete-filled steel tube frame according to claim 5, characterized in that: The diaphragm seat (5) is provided with a ring disc part I (51), an elastic sheet part (52), a ring disc part II (53) and a screw part III (54), one end surface edge of the elastic sheet part (52) is arranged in contact with the inner end surface of the ring disc part I (51), the other end surface edge of the elastic sheet part (52) is arranged in contact with the inner end surface of the ring disc part II (53), the inner end head of the screw part III (54) is arranged in threaded connection with the ring disc part I (51), the inner end head of the screw part III (54) is arranged in penetrating connection with the edge of the elastic sheet part (52) and the ring disc part II (53) respectively, and the flange body of the screw part III (54) is arranged in contact with the outer end surface of the ring disc part II (53), the peripheral side surface of the ring disc part I (51) is arranged in threaded connection with the main body section (1), and the middle of one end surface of the elastic sheet part (52) is arranged in contact with the displacement sensor (8), Or, the ring disc part I (51) is arranged as a ring-shaped body with a threaded body on the peripheral side surface and a threaded blind hole on the inner end surface, the elastic sheet part (52) is arranged as a rubber diaphragm-shaped body with a through hole body on the peripheral edge, the ring disc part II (53) is arranged as a ring-shaped body with a through hole body, the screw part III (54) is arranged as a hexagonal bolt, the threaded body of the ring disc part I (51) is arranged in connection with the main body section (1), the threaded blind hole of the ring disc part I (51), the through hole body of the elastic sheet part (52) and the through hole body of the ring disc part II (53) are arranged in connection with the screw part III (54) respectively, Alternatively, the displacement sensor (8) is configured as a Hall effect displacement sensor and the housing of the displacement sensor (8) is configured to be embedded in the support frame (6), and the contacts of the displacement sensor (8) are configured to be connected to the diaphragm seat (5).
7. The concrete mortar delivery visualization monitoring segment device for a concrete-filled steel tube frame according to claim 5, characterized in that: A receiving groove I (12) is provided on the port of the cylindrical part (11) of the main cylindrical section (1), and the lower end of the peripheral side of the cylindrical part (11) is configured to be connected to the pressure sensor (90) in contact. The left end of the front side of the peripheral side of the cylindrical part (11) is configured to be connected to the first external cylindrical part (2), and the right end of the rear side of the peripheral side of the cylindrical part (11) is configured to be connected to the second external cylindrical part (3). One port of the cylindrical part (11) is configured to be threadedly connected to the diaphragm seat (5), and the other port of the cylindrical part (11) is configured to be threadedly connected to the safety plate (9). The ports of the cylindrical part (11) are respectively configured to be received and connected to the support frame (6), the displacement sensor (8), and the temperature sensor (91), and the receiving groove I (12) is configured to be connected to the clamping frame (7). Alternatively, the cylindrical part (11) is configured as a tubular body with threaded parts on the inner wall of the port, and the receiving groove I (12) is configured as a U-shaped opening. The threaded parts of the cylindrical part (11) are respectively configured to connect with the diaphragm seat (5) and the safety plate (9). Alternatively, the first external cylindrical section (2) and the second external cylindrical section (3) are respectively configured as metal bellows, and the inner end ports of the first external cylindrical section (2) and the second external cylindrical section (3) are respectively configured to be connected to the main cylindrical section (1) in a communicating manner. Alternatively, the support (4) is configured to include a seat (41), a screw part I (42) and a screw part II (43), and a receiving groove II (44) is provided in the middle of the upper end face of the seat (41). A receiving hole I (45) is provided on the bottom wall of the receiving groove II (44). The lower side of one end face of the seat (41) is configured to be connected to the inner end face of the screw part I (42), and the lower side of the other end face of the seat (41) is configured to be connected to the inner end face of the screw part II (43). The screw part I (42) and the screw part II (43) are respectively configured to be connected to the clamping frame (7). The receiving groove II (44) is configured to be connected to the main body cylinder (1), and the receiving hole I (45) is configured to be connected to the pressure sensor (90). Alternatively, the seat (41) is configured as a block with a U-shaped groove in the middle of the lower end face, and the screw part I (42) and screw part II (43) are respectively configured as a smooth bolt, the receiving groove II (44) is configured as a U-shaped opening, and the receiving hole I (45) is configured as a blind hole, and the receiving holes I (45) are arranged at intervals along the transverse center line of the seat (41). Or, the support frame (6) is provided with a rod part I (61), a screw rod part IV (62), a screw rod part V (63) and a column head part (64), and a containing hole body II (65) is arranged on the rod part I (61), the inner end face of the rod part I (61) is arranged to be coupled with the inner end face of the column head part (64) in the middle, and the inner end head of the screw rod part IV (62) is arranged to be coupled with the containing hole body II (65), the flange body of the screw rod part IV (62) is arranged to be contact-coupled with the outer side face of the rod part I (61), and the inner end head of the screw rod part V (63) is arranged to be threadedly coupled with the peripheral side face of the column head part (64), the inner side face of the rod part I (61) is arranged to be contact-coupled with the clamping frame (7), and the inner end head of the screw rod part IV (62) is arranged to be threadedly coupled with the clamping frame (7), the outer end face of the column head part (64) is arranged to be accommodatedly coupled with the displacement sensor (8) and the temperature sensor (91) respectively, and the inner end face of the screw rod part V (63) is arranged to be contact-coupled with the displacement sensor (8) and the temperature sensor (91) respectively, Or, the rod part I (61) is provided in the form of a strip plate, and the screw rod part IV (62) and the screw rod part V (63) are provided in the form of hexagonal bolts respectively, the column head part (64) is provided in the form of a rod with a blind hole in the outer end face and a threaded hole body in the peripheral side face, and the containing hole body II (65) is provided in the form of a long strip hole, the inner end port of the threaded hole body of the column head part (64) is arranged on the inner wall of the blind hole of the column head part (64), and the threaded hole body of the column head part (64) is arranged to be coupled with the screw rod part V (63), the blind hole of the column head part (64) is arranged to be coupled with the displacement sensor (8) and the temperature sensor (91) respectively, and the threaded hole body of the column head part (64) is arranged to be distributed along the peripheral contour line of the column head part (64) at intervals, and two screw rod part IV (62) are arranged between the rod part I (61) and the clamping frame (7), Or, the clamping frame (7) is provided with a rod part II (71), a nut part II (72), a nut part III (73) and a frame part (74), and the inner end face of the rod part II (71) is arranged to be contact-coupled with the inner end face of the nut part II (72) on the lower side, the outer end face of the rod part II (71) is arranged to be contact-coupled with the inner end face of the nut part III (73) on the lower side, and the inner end face of the rod part II (71) is arranged to be coupled with the horizontal end face of the frame part (74) and the camera (92) on the upper side respectively, the lower end head of the rod part II (71) is arranged to be sleevedly coupled with the support (4), and the nut part II (72) and the nut part III (73) are arranged to be threadedly coupled with the support (4) respectively, the vertical part of the frame part (74) is arranged to be embeddedly coupled with the main body cylinder section (1), and the vertical part of the rod part II (71) and the frame part (74) is arranged to be coupled with the support frame (6) respectively, Or, the rod part II (71) is provided as a strip-shaped body with a lower end through hole body and a threaded hole body, and the nut part II (72) and the nut part III (73) are provided as hexagonal nuts respectively, the frame part (74) is provided as an L-shaped strip-shaped body with a threaded hole body in the vertical part, and the threaded hole bodies of the rod part II (71) and the frame part (74) are provided to be threadedly coupled with the support frame (6) respectively, and the lower end through hole body of the rod part II (71) is provided to be coupled with the support base (4), Or, the safety sheet (9) is provided as a bursting disc with a threaded body on the outer ring peripheral side, and the threaded body of the safety sheet (9) is provided to be threadedly coupled with the main body cylinder section (1), and the outer ring of the safety sheet (9) is provided to be contact-coupled with the temperature sensor (91), Or, the temperature sensor (91) is provided as a thermal resistance type temperature sensor, and the shell of the temperature sensor (91) is provided to be embeddedly coupled with the support frame (6), and the contact of the temperature sensor (91) is provided to be coupled with the diaphragm seat (5), Or, the camera (92) is provided as a CCD image sensor, and the shell of the camera (92) is provided to be coupled with the clamping frame (7), and the camera (92) is provided to be distributed corresponding to the first external cylinder section (2) and the second external cylinder section (3) respectively, Or, the pressure sensor (90) is provided as a semiconductor piezoresistance type pressure sensor, and the lower end shell of the pressure sensor (90) is provided to be embeddedly coupled with the support base (4), and the upper end contact of the pressure sensor (90) is provided to be contact-coupled with the main body cylinder section (1).
8. The concrete mortar delivery visualization monitoring segment device for a concrete-filled steel tube frame according to any one of claims 1 to 7, characterized in that: The main body cylinder section (1), the first external cylinder section (2) and the second external cylinder section (3) are provided to be distributed in a manner of picking up expansion displacement signals with the support base (4), the diaphragm seat (5), the support frame (6), the clamping frame (7) and the displacement sensor (8), and the main body cylinder section (1), the first external cylinder section (2) and the second external cylinder section (3) are provided to be distributed in a manner of pressure relief safety with the safety sheet (9), and the main body cylinder section (1), the first external cylinder section (2) and the second external cylinder section (3) are provided to be distributed in a manner of picking up monitoring signals with the support base (4), the diaphragm seat (5), the support frame (6), the clamping frame (7), the pressure sensor (90), the temperature sensor (91) and the camera (92), Or, one support frame (6), one clamping frame (7) and one camera (92) are provided to constitute a group of frame head components, one group of frame head components is arranged on the displacement sensor (8), another group of frame head components is arranged on the temperature sensor (91), a plurality of pressure sensors (90) are arranged between the main body cylinder section (1) and the support base (4), the rod part II (71), the nut part II (72) and the nut part III (73) are arranged to be coupled with the screw rod part I (42) and the screw rod part II (43) respectively, the frame part (74) is arranged to be coupled with the containing groove body I (12), the rod part I (61) and the screw rod part IV (62) are arranged to be coupled with the rod part II (71) and the frame part (74) respectively, and the ring disc part I (51) and the containing groove body II (44) are arranged to be coupled with the cylinder part (11) respectively.
9. A method of using a concrete mortar delivery visualization monitoring segment device for a concrete filled steel tube frame, the steps of which are: The concrete mortar conveying pipe section body realizes the concrete mortar conveying between the conveying pipe on the concrete mortar pump and the conveying pipe on the steel pipe concrete frame, the diaphragm seat (5) realizes the displacement signal change with the pressure value of the concrete mortar in the main body cylinder section (1), the displacement sensor (8) realizes the change displacement signal pickup of the diaphragm seat (5), realizes the conversion identification of the concrete mortar pressure value by the external signal.
10. The method of using the visual monitoring segment for concrete mortar delivery for a concrete filled steel tube frame as claimed in claim 9, wherein the steps are: The threaded body of the ring disc part I (51) is rotated in one of the ports of the cylinder part (11), the threaded body of the safety sheet (9) is rotated in the other port of the cylinder part (11), thereby the diaphragm seat (5) and the safety sheet (9) are respectively installed in the main cylinder section (1), the lower end shell of the pressure sensor (90) is put into the containing hole body I (45), the peripheral side lower end of the cylinder part (11) is put into the upper end contact of the pressure sensor (90), the inner end port of the first outer connecting cylinder section (2) is connected with the peripheral side front side left end of the cylinder part (11), the inner end port of the second outer connecting cylinder section (3) is connected with the peripheral side back side right end of the cylinder part (11), the nut part II (72) is respectively rotated on the screw rod part I (42) and the screw rod part II (43), the lower end through hole body of the rod part II (71) is respectively installed on the screw rod part I (42) and the screw rod part II (43), the nut part III (73) is respectively rotated on the screw rod part I (42) and the screw rod part II (43), the vertical part upper and lower sections of the frame part (74) are put into the containing groove body I (12), the nut part II (72) and the nut part III (73) are respectively rotated on the screw rod part I (42) and the screw rod part II (43), the inner end end face of the nut part II (72) acts on the inner end end face lower side of the rod part II (71), the inner end end face of the nut part III (73) acts on the outer end end face lower side of the rod part II (71), thereby the main cylinder section (1) is installed between the support (4) and the clamping frame (7), the displacement sensor (8) and the temperature sensor (91) are respectively put into the blind hole of the stud part (64), the screw rod part V (63) is rotated in the threaded hole body of the stud part (64), the inner end end face of the screw rod part V (63) respectively acts on the displacement sensor (8) and the temperature sensor (91), the inner end head of the screw rod part IV (62) is put into the containing hole body II (65), the inner end head of the screw rod part IV (62) is rotated in the threaded hole body of the rod part II (71) and the threaded hole body of the frame part (74), the screw rod part IV (62) moves in the containing hole body II (65), the contact of the displacement sensor (8) and the middle contact of one of the end faces of the elastic sheet part (52), the contact of the contact of the temperature sensor (91) and the outer ring of the safety sheet (9), the inner end head of the screw rod part IV (62) is continuously rotated in the threaded hole body of the rod part II (71) and the threaded hole body of the frame part (74), the flange body of the screw rod part IV (62) acts on the outer side face of the rod part I (61), thereby the displacement sensor (8) is installed on the diaphragm seat (5), the temperature sensor (91) is installed on the safety sheet (9), the camera (92) respectively corresponds to the first outer connecting cylinder section (2) and the second outer connecting cylinder section (3), the outer end port of the first outer connecting cylinder section (2) is connected with the delivery pipe located on the concrete mortar pump, the outer end port of the second outer connecting cylinder section (3) is connected with the delivery pipe located on the steel pipe concrete frame, when the concrete mortar pump is in the working state,The concrete mortar in the delivery pipe on the concrete mortar pump is delivered into the barrel part (11) through the first external barrel joint (2), the concrete mortar in the barrel part (11) is delivered into the delivery pipe on the steel pipe concrete frame through the second external barrel joint (3), the concrete mortar in the barrel part (11) generates an expansion force on the elastic sheet part (52), the expansion displacement signal of the elastic sheet part (52) is picked up through the displacement sensor (8), thereby visual monitoring of the concrete mortar pressure value in the barrel part (11) is realized, the dynamic weight signal of the concrete mortar in the barrel part (11) is picked up through the pressure sensor (90), thereby visual monitoring of the concrete mortar flow value in the barrel part (11) is realized, the working state signal of the first external barrel joint (2) and the second external barrel joint (3) is picked up through the camera (92), thereby visual monitoring of the concrete mortar flow rate change value in the barrel part (11) is realized, the temperature value signal of the safety sheet (9) is picked up through the temperature sensor (91), thereby visual monitoring of the concrete mortar temperature value in the barrel part (11) is realized, when the pressure value of the concrete mortar in the barrel part (11) is at an extremely high value, the safety sheet (9) is in a broken state, thereby the delivery pipe on the steel pipe concrete frame is no longer in the concrete mortar delivery state.