A material capsule with a dynamic combination tube
By setting up a combined distribution tube and auxiliary moving device inside the material capsule, and utilizing the elasticity of rubber and the restoring force of springs, the material tube can move towards the center on its own, solving the residue problem during unloading of traditional material bags and improving the efficiency and cleanliness of material unloading.
Patent Information
- Application Number
- CN202110622986.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2021-06-03
- Publication Date
- 2025-10-24
- Estimated Expiration
- 2041-06-03
AI Technical Summary
Traditional material transport bags have problems with powder residue and low collection efficiency during unloading. In particular, powder is difficult to completely convey when discharged by air, resulting in time-consuming and labor-intensive collection and residue that cannot be cleaned up.
Design a material capsule with a dynamic combined feed tube. The capsule body is made of high-polymer wear-resistant rubber material and contains a combined distribution feed tube and an auxiliary moving device. The feed tube moves towards the center by self-moving through the elasticity of rubber and the spring force. Combined with a spiral spring and pull ring structure, the feed tube is positioned and guided to avoid material residue.
It improves the efficiency and cleanliness of material unloading, avoids material residue on the inner corners of the capsule, and achieves rapid and comprehensive material extraction, thus enhancing the practicality and efficiency of the material capsule.
Smart Images

Figure CN113387048B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application belongs to the technical field of granular material conveying equipment, and particularly relates to a material capsule with a dynamic combined material pipe. BACKGROUND
[0002] Traditional material conveying bags cannot effectively recover themselves when extracting materials. Most industrial powder materials are small in size, strong in fluidity, easy to flow and pollute, and are often transported by containers and train cars. When unloading, the powder materials in the containers or train cars are difficult to be sent out, and the unloading efficiency is low. The traditional material bags cannot shrink and change the cavity at will, causing some residual materials in the material bags during the suction operation. Manual cleaning is time-consuming and laborious. With the continuous progress of technology, some suction devices have added additional auxiliary support structures to assist in material collection. However, this structure is relatively complicated, and the residual materials in the corners cannot be completely sucked. The dynamic material pipe cannot move, recover and shrink, which seriously affects the work efficiency of the material conveying and suction link. Therefore, we need a material capsule with a dynamic combined material pipe. SUMMARY
[0003] The application aims to provide a material capsule with a dynamic combined material pipe, which solves the problem of low residual powder material collection efficiency in the related art. The integrated structure design of the application avoids the residual material in the corners of the capsule by cooperating the combined distribution material pipe and the auxiliary moving device arranged in the capsule body. The rubber elastic recovery realizes the effect of moving the suction material to the middle part, improves the work efficiency of the suction link, and further improves the practicality and efficiency of the material capsule.
[0004] The technical scheme adopted by the application is as follows:
[0005] A material capsule with dynamic combination material pipe, comprising a capsule body, a material inlet and outlet is arranged at the center of the top end of the capsule body, and a fixing frame is connected and arranged at the material inlet and outlet, a mounting hole is arranged at the center of the fixing frame, a main material pipe is connected and arranged at the mounting hole, at least two connecting holes are arranged in the fixing frame and communicated with the mounting hole, a sleeve pipe is fixedly arranged in the connecting hole, the sleeve pipe is similar in structure to the main material pipe, the sleeve pipe comprises an inner lining pipe and an external pipe connected with the inner lining pipe through a support, the sleeve pipe is communicated with the main material pipe, the sleeve pipe is connected and arranged with a material pipe through a rubber hose to realize the movement of the material pipe, the material pipe is uniformly distributed and M in number, M is greater than or equal to 2, the material pipe comprises an inner pipe and an outer pipe, the top of the inner pipe is higher than the top of the outer pipe and the bottom of the inner pipe is higher than the bottom of the outer pipe, the inner pipe is connected with the inner lining pipe and the outer pipe is connected with the external pipe, the inner pipe and the outer pipe are connected and fixed through a support rod, the support rod is uniformly distributed and N in number, N is greater than or equal to 3, and an auxiliary moving device for the dynamic self-movement and quick unloading of the combination material pipe is arranged on the material pipe.
[0006] Preferably, the capsule body is made of high polymer wear-resistant rubber material.
[0007] Preferably, the auxiliary moving device comprises a buckle arranged at the bottom of the fixing frame and a net cover connected with the buckle, and the material pipe is arranged in the net cover.
[0008] Further preferably, the material pipe is four in number and symmetrically arranged on the left and right sides.
[0009] Further preferably, the sleeve pipes connected with the material pipe are also four in number and symmetrically arranged on the left and right sides.
[0010] Preferably, the auxiliary moving device comprises a volute spring arranged on the material pipe, a pull ring arranged on the volute spring, and a pull wire connected and arranged between the two pull rings.
[0011] Further preferably, the material pipe is four in number and symmetrically arranged on the left and right sides, and the volute springs arranged on the material pipe are connected through the pull wire and the pull ring to realize the movement of the material pipe to the middle part.
[0012] Further preferably, the sleeve pipes connected with the material pipe are eight in number and symmetrically arranged on the left and right sides.
[0013] Further preferably, the material pipes symmetrically arranged on the same side are further provided with a tension spring for contraction and movement.
[0014] Further preferably, a spring is further connected to the left and right bottom of the capsule body.
[0015] In summary, due to the adoption of the above technical solutions, the present application has the following advantages:
[0016] 1、The material capsule integrated structure in the application, through the cooperation of the combined distribution pipe and the auxiliary moving device arranged in the capsule body, avoids the material residue at the inside corners of the capsule, realizes the effect of the self-moving of the material pipe to the middle part through the rubber elastic recovery and spring elastic recovery, greatly improves the working efficiency of the material suction link, and also improves the cleanliness of the material capsule unloading, further improves the practicability and high efficiency of the material capsule;
[0017] 2、In the application, by arranging the special structure pipe in the capsule body, the material suction speed is greatly improved, an air flow channel is formed between the inner pipe and the outer pipe, part of air is sucked into the air flow channel while the material pipe is sucking material, avoids the blockage problem of the material in the suction link, further, air blowing operation can also be carried out in the air flow channel, realizes the accelerated suction of the material from the inner pipe, further improves the use value of the material capsule, by arranging the fixing frame, support and fixing effect are provided, a plurality of sleeves and pipes are connected and installed at the bottom of the fixing frame, and a rubber hose is arranged between the sleeve and the pipe to facilitate the movement and deviation of the pipe, the distribution of the pipe in the capsule body is claw-shaped and distributed at the four corners of the capsule body, further ensures the high efficiency of the material suction;
[0018] 3、In the application, by arranging the auxiliary moving device on the pipe, the positioning and guiding movement of the pipe are realized under the auxiliary support of the net cover and the buckle, in the initial state, the pipe is fully loaded and the bottom end of the pipe is completely inclined and distributed at the lower four corners of the capsule body, as the material suction operation continues, the material on the left and right sides gradually decreases, due to the fact that the capsule body is made of high-strength, high-molecular and wear-resistant elastic rubber material, the capsule body has strong elastic recovery capacity, under the self-recovery of the rubber, the capsule body corners are collected and moved to the middle part and drive the pipe to move to the middle part, the combined pipe dynamically moves and sucks material, realizes the rapid and complete suction of the material, further improves the high efficiency and cleanliness of the material unloading;
[0019] 4、The application has the functions of self-recovery of the material capsule, spring elastic recovery of the side corners, prevention of residual material in the capsule, concentration of the material pipes to the middle part to realize continuous and uninterrupted material suction at high speed, and the capsule body is made of high-strength, high-molecular and wear-resistant elastic rubber material and has strong elastic recovery capacity, the side corners of the capsule body are gradually lifted by the self-recovery of the rubber and the elastic recovery of the spring, the residual material in the side corners of the capsule is avoided, the vortex spring is arranged on the material pipe to provide another self-recovery force, the two material pipes are further moved to the middle part under the action of the self-recovery and elastic recovery of the capsule, the material pipes are arranged on the left and right sides of the capsule body, the vortex springs on the left and right sides of the material pipe are connected by the wire and the pull ring to realize the movement of the material pipe to the middle part, the pull springs are further arranged between the two material pipes on the same side to realize the dynamic self-moving and material suction of the material pipe in the capsule body, the convenient material suction function of the material pipe is greatly improved, and the use value and the material suction cleanliness of the material capsule are further improved. BRIEF DESCRIPTION OF DRAWINGS
[0020] Figure 1 It is the internal schematic view of the full load structure of the embodiment 1 of the application.
[0021] Figure 2 It is the internal schematic view of the full load structure of the embodiment 2 of the application. Figure 1 It is the enlarged view of the structure of the middle A part.
[0022] Figure 3 It is the schematic view of the unloading state of the embodiment 1 of the application.
[0023] Figure 4 It is the internal schematic view of the full load structure of the embodiment 2 of the application.
[0024] Figure 5 It is the enlarged view of the structure of the middle B part. Figure 4
[0025] Figure 6 It is the schematic view of the unloading state of the embodiment 2 of the application.
[0026] Figure 7 It is the schematic view of the unloading state of the embodiment 2 of the application.
[0027] Figure 8 It is the connection structure view of the fixing frame of the application.
[0028] Figure 9 It is the structure view of the fixing frame of the application.
[0029] Figure 10 Structure diagram of the material pipe of the present application.
[0030] Marked in the figure: 1-capsule body, 2-material port, 3-fixing frame, 4-mounting hole, 41-main material pipe, 5-connection hole, 6-sleeve, 61-inner liner pipe, 62-outer connecting pipe, 63-bracket, 7-rubber hose, 8-material pipe, 81-inner pipe, 82-outer pipe, 83-branch rod, 9-assistant moving device, 10-buckle, 11-net cover, 12-volute spring, 13-pull ring, 14-pull wire, 15-tension spring, 16-spring. DETAILED DESCRIPTION
[0031] In the description of the present application, it is understood that the terms "upper", "lower", "front", "back", "left", "right", "top", "bottom", "inner", "outer" and the like indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and do not indicate or imply 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 a limitation on the present application.
[0032] Example 1:
[0033] Reference Figures 1-3 , Figures 8-10 A material capsule with a dynamic combination material pipe, comprising a capsule body 1 made of high molecular wear-resistant rubber material, having good wear resistance and elastic recovery capacity, a material port 2 is provided at the top center of the capsule body 1 for feeding and discharging, the material capsule is designed in an integrated structure, through the cooperation of the combination distribution material pipe and the assistant moving device provided in the capsule body, the material residue at the inside corners of the capsule is avoided, through the rubber elastic recovery and spring elastic recovery, the effect of the material pipe self-moving to the middle part is realized, the working efficiency of the material suction link is greatly improved, at the same time, the cleanliness of the material capsule discharging is also improved, and the practicability and efficiency of the material capsule are further improved.
[0034] And the material port 2 is also connected to install the fixed frame 3, the fixed frame 3 center is provided with mounting hole 4, the mounting hole 4 is also connected to install the main material pipe 41, the main material pipe is through the material port installed in the mounting hole, and the fixed frame 3 is also provided with at least two connecting holes 5, the connecting hole 5 is communicated with the mounting hole 4, the connecting hole 5 is also fixedly installed with the sleeve pipe 6, the sleeve pipe 6 is similar to the main material pipe 41 structure, the sleeve pipe 6 includes inner liner pipe 61 and outer pipe 62 connected with inner liner pipe 61 through support 63, and the sleeve pipe 6 is communicated with the main material pipe 41, that is, the inner liner pipe of the sleeve pipe is connected and fixed with the inner liner pipe of the main material pipe, the outer pipe of the sleeve pipe is connected and fixed with the outer pipe of the main material pipe, the sleeve pipe 6 is connected to install the material pipe 8 through the rubber hose 7 to realize the movement of the material pipe 8, the material pipe 8 is evenly distributed M, M≥2, the material pipe 8 includes inner tube 81 and outer tube 82, and the top of the inner tube 81 is higher than the top of the outer tube 82, and the bottom is higher than the bottom of the outer tube 82, the inner tube 81 is connected with the inner liner pipe 61, and the outer tube 82 is connected with the outer pipe 62, the inner tube 81 and the outer tube 82 are connected and fixed by the support 83, and the support 83 is evenly distributed N, N≥3.
[0035] By setting the special structure of the material pipe in the capsule body, the speed of material suction is greatly improved, an air flow channel is formed between the inner tube and the outer tube, and part of air is sucked into the air flow channel while the material pipe is sucking material, so as to avoid the blockage problem of the material in the suction link, further, air blowing operation can also be carried out on the air flow channel, the accelerated suction of the material from the inner tube is realized, and the use value of the material capsule is further improved, the fixed frame is provided to provide support and fixing effect, a plurality of sleeve pipes and material pipes are connected and installed at the bottom of the fixed frame, and the rubber hose is arranged between the material pipe and the sleeve pipe to facilitate the movement and deviation of the material pipe, the distribution of the material pipe on the capsule body is claw-shaped and distributed at the four corners of the capsule body, and the efficiency of material suction is further ensured.
[0036] The auxiliary moving device 9 is arranged on the tube 8, and the auxiliary moving device 9 comprises a buckle 10 arranged at the bottom of the fixed frame 3 and a net cover 11 connected with the buckle 10, and the tube 8 is arranged in the net cover 11. The tube 8 is matched and arranged symmetrically on the left and right sides, and four tubes 8 are arranged. The sleeve 6 connected with the tube 8 is also arranged symmetrically on the left and right sides, and four sleeves 6 are arranged on the same horizontal plane. The auxiliary moving device is arranged on the tube 8, and the tube 8 is guided and moved under the auxiliary support of the net cover and the buckle. In the initial state, the tube 8 is fully inclined and arranged at the lower four corners of the capsule body. With the continuous operation of the tube 8, the material on the left and right sides is gradually reduced. Since the capsule body is made of high-strength and high-molecular elastic rubber material, the capsule body has strong elastic recovery capacity. Under the self-recovery of the rubber, the capsule body is moved to the middle part, and the tube 8 is moved to the middle part, the dynamic self-moving tube 8 is used for material suction, the material is quickly and completely sucked out, and the efficiency and cleanliness of the material unloading are further improved.
[0037] Embodiment 2
[0038] With reference to Figures 4-10 The material capsule with a dynamic combined tube comprises a capsule body 1 made of high-molecular elastic rubber material, and a material port 2 arranged at the top center of the capsule body 1. The material capsule is designed in an integrated structure. The combined distribution tube arranged in the capsule body and the auxiliary moving device are matched to avoid the material residue on the left and right sides of the capsule. The elastic recovery of the rubber and the spring elastic recovery are used to realize the effect that the tube 8 is moved to the middle part. The working efficiency of the material suction is greatly improved, the cleanliness of the material unloading is improved, and the practicability and efficiency of the material capsule are further improved.
[0039] And the material port 2 is also connected to install a fixed frame 3, the fixed frame 3 is provided with a mounting hole 4 in the center, and the mounting hole 4 is also connected to install a main material pipe 41, the main material pipe is installed in the mounting hole through the material port, and at least two connecting holes 5 are arranged in the fixed frame 3, the connecting hole 5 is communicated with the mounting hole 4, and the sleeve pipe 6 is fixedly installed in the connecting hole 5, the sleeve pipe 6 is similar to the main material pipe 41, the sleeve pipe 6 includes an inner liner pipe 61 and an external pipe 62 connected to the inner liner pipe 61 through a support 63, and the sleeve pipe 6 is communicated with the main material pipe 41, that is, the inner liner pipe of the sleeve pipe is connected and fixed with the inner liner pipe of the main material pipe, and the external pipe of the sleeve pipe is connected and fixed with the external pipe of the main material pipe, the sleeve pipe 6 is connected and installed with a material pipe 8 through a rubber hose 7 to realize the movement of the material pipe 8, the material pipe 8 is evenly distributed M, M is greater than or equal to 2, the material pipe 8 includes an inner pipe 81 and an outer pipe 82, and the top of the inner pipe 81 is higher than the top of the outer pipe 82, and the bottom of the inner pipe 81 is higher than the bottom of the outer pipe 82, the inner pipe 81 is connected with the inner liner pipe 61, and the outer pipe 82 is connected with the external pipe 62, and the inner pipe 81 and the outer pipe 82 are connected and fixed through a support rod 83, and the support rod 83 is evenly distributed N, N is greater than or equal to 3.
[0040] By setting the special structure of the material pipe in the capsule body, the speed of material suction is greatly improved, an air flow channel is formed between the inner pipe and the outer pipe, and part of the air is sucked into the air flow channel while the material pipe is sucking material, thereby avoiding the blockage problem of the material in the sucking link, and further, air blowing operation can be performed on the air flow channel, the accelerated sucking of the material from the inner pipe is realized, and the use value of the material capsule is further improved, the fixed frame is provided to provide support and fixing effect, a plurality of sleeve pipes and material pipes are connected and installed at the bottom of the fixed frame, and the rubber hose is arranged between the material pipe and the sleeve pipe to facilitate the movement and deviation of the material pipe, and the distribution of the material pipe on the capsule body is claw-shaped and distributed at the four corners of the capsule body, thereby further ensuring the efficiency of material sucking.
[0041] The auxiliary moving device 9 for the combined material pipe 8 dynamic self-moving quick unloading is also arranged on the material pipe 8, the auxiliary moving device 9 includes a spiral spring 12 arranged on the material pipe 8, a pull ring 13 arranged on the spiral spring 12, and a pull wire 14 connected and installed between the two pull rings 13, the material pipe 8 is arranged on the left and right symmetrically distributed four capsules, and the spiral springs 12 on the left and right symmetrically distributed material pipes 8 are connected to realize the movement of the material pipe 8 to the middle part through the pull wire 14 and the pull ring 13, the sleeve pipes 6 connected with the material pipes 8 are matched and installed and distributed eight, and the sleeve pipes 6 are all in the same horizontal plane, and the pull spring 15 for contraction movement is also arranged between the two material pipes 8 distributed on the same side, and the spring 16 is also connected and installed at the left and right bottom of the capsule body 1.
[0042] By setting up an auxiliary moving device, the self-recovery of the material capsule and the function of the spring elastic force restoring the side corners are realized, thereby preventing the capsule material from remaining and making the material tube concentrate toward the middle to realize continuous and uninterrupted high-speed operation of sucking the material. The capsule body is made of high-strength, high-molecular wear-resistant elastic rubber material with strong elastic recovery ability. Under the self-recovery of the rubber and the elastic force recovery of the spring, the corners of the capsule body are gradually lifted, thereby avoiding the material residue at the inner corners of the capsule. By setting up a volute spring on the material tube, another force of self-recovery is provided. Furthermore, by setting a pull ring on the volute spring and connecting the pull ring installed on the two The wire drawing between the pull rings facilitates the symmetrically distributed material tubes to further quickly move toward the middle in addition to the effects of capsule self-recovery and spring recovery. There are four material tubes symmetrically distributed on the left and right sides of the capsule body, and the spiral springs symmetrically distributed on the left and right material tubes are connected by wire drawing and pull rings to realize the movement of the material tubes toward the middle. Furthermore, tension springs for contraction and movement are provided between the material tubes distributed on the same side, which facilitates the dynamic self-movement and material suction operation of the material tubes in the capsule body, greatly improving the convenient material suction function of the material tube, and also further improving the use value and material suction cleanliness of the material capsule.
[0043] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions and improvements made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.
Claims
1. A material capsule with a dynamic combination tube, characterized by: The utility model relates to a capsule body (1) top center place is equipped with the material hole (2) for feeding and discharging, and the material hole (2) place is also connected and installs the fixing frame (3), the fixing frame (3) center place is equipped with the mounting hole (4), the mounting hole (4) place is also connected and installs the main material pipe (41), and the fixing frame (3) is also provided with at least two connecting holes (5), the connecting hole (5) is communicated with the mounting hole (4), the connecting hole (5) is also fixedly installed with the sleeve pipe (6), the sleeve pipe (6) is similar with the main material pipe (41) structure, the sleeve pipe (6) includes inner lining pipe (61) and the outer connection pipe (62) of the inner lining pipe (61) through support (63) link, and the sleeve pipe (6) is communicated with the main material pipe (41), the sleeve pipe (6) is connected and installed with the material pipe (8) through rubber hose (7) to realize the movement of material pipe, the material pipe (8) is evenly distributed M, M is equal to or greater than 2, the material pipe (8) includes inner tube (81) and outer tube (82), and the top of inner tube (81) is higher than the top of outer tube (82), the bottom is higher than the bottom of outer tube (82), the inner tube (81) is connected with the inner lining pipe (61), the outer tube (82) is connected with the outer connection pipe (62), the inner tube (81) is connected and fixed with the outer tube (82) through support rod (83), the support rod (83) is evenly distributed N, N is equal to or greater than 3, the auxiliary moving device (9) for combined material pipe (8) dynamic self -moving quick unloading is also provided on the material pipe (8), the capsule body (1) adopts high polymer wear -resistant rubber material and is made, the auxiliary moving device (9) includes the buckle (10) of setting in the fixing frame (3) bottom and the net cover (11) connected with the buckle (10), the material pipe (8) is installed in the net cover (11).
2. A material capsule with a dynamic combination tube according to claim 1, characterized in that: The material pipe (8) is four matching installations and left-right symmetrical distribution.
3. A material capsule with a dynamic combination tube according to claim 2, characterized in that: The sleeve pipe (6) connected with the material pipe (8) is also evenly distributed four, and four sleeve pipes (6) are in the same horizontal plane.
4. A material capsule with a dynamic combination tube, characterized in that: The utility model relates to a capsule body (1) is provided with the material hole (2) for feeding and discharging in the top center of capsule body (1), and the material hole (2) is also connected with the fixed frame (3) of installation, the fixed frame (3) is provided with the mounting hole (4) in the center, and the mounting hole (4) is also connected with the main material pipe (41) of installation, and the fixed frame (3) is also provided with at least two connecting holes (5), the connecting hole (5) is communicated with the mounting hole (4), and the sleeve pipe (6) is fixedly installed in the connecting hole (5), the sleeve pipe (6) is similar with the main material pipe (41), the sleeve pipe (6) includes the inner lining pipe (61) and the outer connecting pipe (62) connected with the inner lining pipe (61) through the support (63), and the sleeve pipe (6) is communicated with the main material pipe (41), the sleeve pipe (6) is connected with the material pipe (8) through the rubber hose (7) to realize the movement of material pipe, the material pipe (8) is evenly distributed M, M is greater than or equal to 2, the material pipe (8) includes the inner tube (81) and the outer tube (82), and the top of the inner tube (81) is higher than the top of the outer tube (82), and the bottom of the inner tube (81) is higher than the bottom of the outer tube (82), the inner tube (81) is connected with the inner lining pipe (61), and the outer tube (82) is connected with the outer connecting pipe (62), the inner tube (81) is connected and fixed with the outer tube (82) through the support rod (83), the support rod (83) is evenly distributed N, and N is greater than or equal to 3, the auxiliary moving device (9) for combined material pipe (8) dynamic self-moving quick discharging is also provided on the material pipe (8), the capsule body (1) is made of high polymer wear-resistant rubber material, the auxiliary moving device (9) includes the spiral spring (12) arranged on the material pipe (8), the pull ring (13) arranged on the spiral spring (12) and the pull wire (14) connected and installed between two pull rings (13).
5. A material capsule with a dynamic combination tube according to claim 4, characterized in that: The material pipe (8) is arranged on the left and right symmetrically distributed four in the capsule body (1), and the spiral spring (12) symmetrically distributed on the left and right of the material pipe (8) is connected to realize the movement of the material pipe (8) to the middle part through the pull wire (14) and the pull ring (13).
6. A material capsule with a dynamic combination tube according to claim 5, characterized in that: The sleeve pipe (6) connected with the material pipe (8) is matched and installed and distributed eight, and the sleeve pipe (6) is in the same horizontal plane.
7. A material capsule with a dynamic combination tube according to claim 6, characterized in that: The material pipe (8) distributed on the same side is also provided with the tension spring (15) for shrinkage movement between two.
8. A material capsule with a dynamic combination tube according to claim 5, characterized in that: The spring (16) is also connected and installed on the left and right bottom of the capsule body (1) respectively.
Citation Information
Patent Citations
Material capsule with dynamic combined material pipe
CN217457020U