Conveying equipment and conveying system
By incorporating an adjustable connection structure into the conveying equipment, the problem of deformation or breakage at the connection point caused by the oscillation between the transmission section and the discharge section was solved, thereby improving the stability and reliability of the equipment.
Patent Information
- Application Number
- CN202423110580.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-16
- Publication Date
- 2025-10-28
- Estimated Expiration
- 2034-12-16
AI Technical Summary
The transmission part and the discharge part are prone to large swings in the conveying equipment, which may cause the connection between the transmission part and the feed part to be easily deformed or broken.
By setting an adjustable connection structure in the conveying equipment, the connection structure can be adjusted to the first fixed seat and the second fixed seat. A pulling force is applied to reduce the degree of freedom of the discharge section, and the connection position is adjusted to control the magnitude and direction of the pulling force, thereby improving the stability of the conveying section and the discharge section.
It effectively reduces deformation or breakage at the connection between the transmission section and the feeding section, and improves the stability and reliability of the conveying equipment.
Smart Images

Figure CN223480069U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of material conveying technology, and in particular to a conveying device and conveying system. Background Art
[0002] Conveying equipment is used to transport and transfer materials from one piece of equipment to another. The feeding section of the conveyor is connected to the hopper, the transmission section is connected to the feeding section, and the discharging section is connected to the end of the transmission section furthest from the feeding section. In traditional conveying equipment, the transmission and discharging sections are suspended in mid-air. During operation, the transmission and discharging sections are prone to significant swaying, which can easily cause deformation or breakage at the connection between the transmission and feeding sections. Utility Model Content
[0003] This application provides a conveying device and a conveying system to solve the problem that the large swinging between the transmission section and the discharge section can easily cause deformation or breakage at the connection between the transmission section and the feeding section.
[0004] In a first aspect, this application provides a conveying device, comprising a device body, a first fixed base, a second fixed base, and at least one connecting structure. The device body includes a feeding section, a conveying section, and a discharging section, with the conveying section connected between the feeding section and the discharging section. The first fixed base is installed on the feeding section. The second fixed base is installed on the discharging section. The connecting structure connects the first fixed base and the second fixed base. The connection position between the connecting structure and the first fixed base is adjustable, and / or, the connection position between the connecting structure and the second fixed base is adjustable.
[0005] In conjunction with the first aspect, in some implementations of the first aspect, the first fixing seat is provided with a plurality of first fixing holes, and the connecting structure is selectively connected to one of the first fixing holes; or, the first fixing seat is provided with a first fixing groove, and the connecting structure is detachably connected to a predetermined position in the first fixing groove; and / or, the second fixing seat is provided with a plurality of second fixing holes, and the connecting structure is selectively connected to one of the second fixing holes; or, the second fixing seat is provided with a second fixing groove, and the connecting structure is detachably connected to a preset position in the second fixing groove.
[0006] In conjunction with the first aspect, in some implementations of the first aspect, the connection structure is configured as multiple, and the multiple connection structures are spaced apart.
[0007] In conjunction with the first aspect, in some implementations of the first aspect, each of the connecting structures includes a connector and an adjusting member, the connector being connected to the adjusting member, one end of the connector remote from the adjusting member being connected to one of the first fixed seat and the second fixed seat, and the other end of the adjusting member remote from the connector being connected to the other of the first fixed seat and the second fixed seat, the adjusting member being used to adjust the tension of the connecting structure on the first fixed seat and the second fixed seat.
[0008] In conjunction with the first aspect, in some implementations of the first aspect, each of the connecting structures further includes a fixing member, the end of the connecting member away from the adjusting member being connected to the fixing member, the fixing member being fixedly connected to one of the first fixing seat and the second fixing seat, and / or, the end of the adjusting member away from the connecting member being connected to the fixing member, the fixing member being fixedly connected to the other of the first fixing seat and the second fixing seat.
[0009] In conjunction with the first aspect, in some implementations of the first aspect, each of the connection structures further includes a snap-fit element for detachably securing the connector to the adjustment element.
[0010] In conjunction with the first aspect, in some implementations of the first aspect, the first fixing seat includes a first seat body and a first fixing member, the first fixing member detachably fixing the first seat body to the feeding part and is used to adjust the connection position between the first seat body and the feeding part, and / or, the second fixing seat includes a second seat body and a second fixing member, the second fixing member detachably fixing the second seat body to the discharging part and is used to adjust the connection position between the second seat body and the discharging part.
[0011] In conjunction with the first aspect, in some implementations of the first aspect, the adjustment direction of the first seat relative to the feed section is different from the adjustment direction of the second seat relative to the discharge section.
[0012] In conjunction with the first aspect, in some implementations of the first aspect, the first base body is provided with a first connecting hole, the feeding part is provided with a plurality of spaced-apart first adjusting holes, and the first fixing member is detachably locked in the first connecting hole and a preset portion of the first adjusting holes; or, the feeding part is provided with a first mounting groove, the position of the first fixing member in the first mounting groove is adjustable, the first fixing member passes through the first connecting hole and detachably locks the first base body in a preset position of the first mounting groove, and / or; the second base body is provided with a second connecting hole, the discharging part is provided with a plurality of spaced-apart second adjusting holes, the second fixing member is detachably locked in the second connecting hole and a preset portion of the second adjusting holes; or, the discharging part is provided with a second mounting groove, the position of the second fixing member in the second mounting groove is adjustable, the second fixing member passes through the second connecting hole and detachably locks the second base body in a preset position of the second mounting groove.
[0013] In conjunction with the first aspect, in some implementations of the first aspect, both the first fixing member and the second fixing member have a locked state and an unlocked state, respectively. When the first fixing member is in the locked state, the first seat is fixedly disposed relative to the feeding part; when the first fixing member is in the unlocked state, the first seat is rotatably disposed relative to the feeding part; when the second fixing member is in the locked state, the second seat is fixedly disposed relative to the discharging part; when the second fixing member is in the unlocked state, the second seat is rotatably disposed relative to the discharging part.
[0014] In conjunction with the first aspect, in some implementations of the first aspect, the feeding section includes a feeding pipe and a feeding mounting body. The feeding mounting body is arranged around the central axis of the feeding pipe and connected to the end of the feeding pipe near the transmission section. The feeding mounting body is fixedly connected to the transmission section. The first fixing seat includes a first fixing part and a second fixing part connected to the first fixing part. The first fixing member detachably fixes the first fixing part to the feeding mounting body. The second fixing part extends relative to the first fixing part in a direction away from the transmission section and is connected to the connecting structure.
[0015] In conjunction with the first aspect, in some implementations of the first aspect, the first fixing part is provided with a guide structure for guiding and cooperating with the feed pipe or the feed mounting body.
[0016] In conjunction with the first aspect, in some implementations of the first aspect, the discharge section includes a discharge pipe, an installation structure, and a discharge mounting body. The discharge pipe is connected to the end of the transmission section away from the feed section. The installation structure is disposed on the side of the discharge pipe away from the transmission section and is coaxially disposed with the transmission section. The discharge mounting body is disposed around the central axis of the installation structure. The second fixing member detachably fixes the second fixing seat to the discharge mounting body.
[0017] Secondly, this application provides a conveying system, which includes a metering device and the conveying device as described in any of the above claims, wherein the metering device is connected to the feeding section.
[0018] In conjunction with the second aspect, in some implementations of the second aspect, the metering device includes a hopper and a weighing module, the hopper being connected to the conveying equipment, the weighing module being connected to the hopper, and the weighing module being used to measure the weight of the material in the hopper.
[0019] The conveying equipment and system provided in this application are based on a first fixed seat installed at the feeding section and a second fixed seat installed at the discharging section. A connecting structure connects the first and second fixed seats. The connection position between the connecting structure and the first fixed seat is adjustable, and / or the connection position between the connecting structure and the second fixed seat is adjustable. On the one hand, by connecting the first and second fixed seats together through the connecting structure, the connecting structure applies a tensile force to the discharging section, which can reduce the degree of freedom of the discharging section, thereby reducing the swing amplitude of the transmission section and the discharging section, improving the stability of the transmission section and the discharging section, and avoiding deformation or cracking at the connection between the transmission section and the feeding section. On the other hand, by adjusting the connection position between the connecting structure and the first fixed seat, and / or the connection position between the connecting structure and the second fixed seat, the magnitude and direction of the tensile force exerted by the connecting structure on the first and second fixed seats can be adjusted. This is beneficial for adjusting the tensile force exerted by the connecting structure on the discharging section according to the installation conditions of the transmission section and the discharging section, thereby effectively avoiding deformation or cracking at the connection between the transmission section and the feeding section. Attached Figure Description
[0020] To more clearly illustrate the technical solutions in the embodiments of this application, the drawings used in the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0021] Figure 1 This is a schematic diagram of the conveying system provided in the embodiments of this application.
[0022] Figure 2 This is a schematic diagram of the conveying equipment provided in the embodiments of this application.
[0023] Figure 3 This is a cross-sectional schematic diagram of the main body of the device provided in the embodiment of this application.
[0024] Figure 4 This is an exploded view of the connection structure provided in the embodiments of this application.
[0025] Key reference numerals: Conveying system 1000; Conveying equipment 100; Equipment body 10; Feeding section 11; Feeding pipe 111; Feeding mounting body 112; First adjusting hole 1121; Transmission section 12; Feeding pipe 121; Feeding component 122; Discharge section 13; Discharge pipe 131; Mounting structure 132; Discharge mounting body 133; Second adjusting hole 1331; Mounting base 141; Support plate 142; First fixed base 21; First connecting hole 210; First fixing hole 2102; First... Seat 211; First fixing part 2111; Second fixing part 2112; Guide structure 2113; Reinforcing rib 2114; First fixing member 212; Second fixing seat 22; Second connecting hole 220; Second fixing hole 2202; Second seat 221; Second fixing member 222; Connecting structure 30; Connector 31; Adjusting member 32; Fixing member 33; Snap-fit member 34; Collar 35; Measuring device 400; Hopper 410; Weighing module 420; First direction D1; Second direction D2.
[0026] The following detailed description, in conjunction with the accompanying drawings, will further illustrate this application. DETAILED DESCRIPTION
[0027] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only a part of the embodiments of this application, and not all of the embodiments. Based on the embodiments of this application, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of this application.
[0028] In this document, references to "embodiment" or "implementation" mean that a particular feature, structure, or characteristic described in connection with an embodiment or implementation may be included in at least one embodiment of this application. The appearance of this phrase in various places throughout the specification does not necessarily refer to the same embodiment, nor is it a separate or alternative embodiment mutually exclusive with other embodiments. It will be explicitly and implicitly understood by those skilled in the art that the embodiments described herein can be combined with other embodiments.
[0029] It should be noted that the terminology in the specification, claims, and accompanying drawings of this application is for describing specific embodiments only and is not intended to limit this application. The terms "first," "second," etc., in the specification, claims, and accompanying drawings of this application are used to distinguish different objects, not to describe a specific order. The term "and / or" as used in this application refers to any combination and all possible combinations of one or more of the associated listed items, and includes such combinations.
[0030] Please refer to the following: Figure 1 and Figure 2 , Figure 1 This is a schematic diagram of the structure of the conveying system 1000 provided in the embodiments of this application. Figure 2 This is a schematic diagram of the conveying device 100 provided in this application. The conveying device 100 is used to transfer and transport materials, so that the materials are transported from upstream equipment to downstream equipment. In this embodiment of the application, the conveying device 100 is described as being applied to the field of battery manufacturing. The conveying device 100 is used to transport materials related to the positive and negative electrodes of a battery.
[0031] The conveying equipment 100 includes a main body 10, a first fixed base 21, a second fixed base 22, and at least one connecting structure 30. The main body 10 includes a feeding section 11, a conveying section 12, and a discharging section 13. The feeding section 11 receives material output from upstream equipment. The conveying section 12 connects the feeding section 11 and the discharging section 13. The conveying section 12 pushes the material, moving it from the feeding section 11 through the conveying section 12 to the discharging section 13. The discharging section 13 delivers the material to downstream equipment. The first fixed base 21 is installed on the feeding section 11. The second fixed base 22 is connected to the discharging section 13. The connecting structure 30 connects the first fixed base 21 and the second fixed base 22. Thus, by connecting the first fixed seat 21 and the second fixed seat 22 together through the connecting structure 30, the connecting structure 30 applies a tensile force to the discharge section 13, which can reduce the degree of freedom of the discharge section 13, thereby reducing the swing amplitude of the transmission section 12 and the discharge section 13 during the operation of the conveying equipment 100, improving the stability of the transmission section 12 and the discharge section 13, and avoiding the problem of deformation or cracking at the connection between the transmission section 12 and the feeding section 11.
[0032] The connection position between the connecting structure 30 and the first fixed base 21 is adjustable, and / or the connection position between the connecting structure 30 and the second fixed base 22 is adjustable. Thus, by adjusting the connection position of the connecting structure 30 with the first fixed base 21 and / or the second fixed base 22, the magnitude and direction of the tension exerted by the connecting structure 30 on the first fixed base 21 and the second fixed base 22 can be adjusted. This facilitates adjusting the magnitude and direction of the tension exerted by the connecting structure 30 on the discharge section 13 according to the installation configuration of the transmission section 12 and the discharge section 13, thereby effectively preventing deformation or cracking at the connection between the transmission section 12 and the feeding section 11.
[0033] In some embodiments, the connection position between the connecting structure 30 and the first fixing base 21 is adjustable. In some embodiments, the first fixing base 21 is provided with a plurality of first fixing holes 2102. The plurality of first fixing holes 2102 are arranged at intervals. The connecting structure 30 can be selectively connected to some of the first fixing holes 2102. Thus, by adjusting the connection of the connecting structure 30 with different first fixing holes 2102, the connection position between the connecting structure 30 and the first fixing base 21 can be adjusted. Each connecting structure 30 can be connected to one first fixing hole 2102, or each connecting structure 30 can be connected to two or more first fixing holes 2102 to improve the connection strength between the connecting structure 30 and the first fixing base 21.
[0034] In some embodiments, a first fixing groove is provided on the first fixing base 21, and the connecting structure 30 is detachably connected to a predetermined position in the first fixing groove. The first fixing groove can be constructed as an elongated oval groove formed on the first fixing base 21. The extension length of the first fixing groove can be specifically set according to actual needs, and is not specifically limited in this application. The predetermined position in the first fixing groove can be specifically set according to the force requirements of the conveying device 100. The connection position between the connecting structure 30 and the first fixing base 21 can be adjusted by connecting the connecting structure 30 to different positions in the first fixing groove.
[0035] In some embodiments, the connection position between the connecting structure 30 and the second fixing base 22 is adjustable. In some embodiments, the second fixing base 22 is provided with a plurality of second fixing holes 2202. The plurality of second fixing holes 2202 are arranged at intervals. The connecting structure 30 can be selectively connected to some of the second fixing holes 2202. Thus, by adjusting the connection of the connecting structure 30 with different second fixing holes 2202, the connection position between the connecting structure 30 and the second fixing base 22 can be adjusted. In some embodiments, each connecting structure 30 is connected to one second fixing hole 2202. In some embodiments, each connecting structure 30 can also be connected to two or more second fixing holes 2202 to improve the connection strength between the connecting structure 30 and the second fixing base 22.
[0036] In some embodiments, a second fixing groove is provided on the second fixing base 22, and the connecting structure 30 is detachably connected to a predetermined position in the second fixing groove. The second fixing groove can be constructed as an elongated oval groove formed on the second fixing base 22. The extension length of the second fixing groove can be specifically set according to actual needs, and is not specifically limited in this application. The predetermined position in the second fixing groove can be specifically set according to the force requirements of the conveying device 100. The connection position between the connecting structure 30 and the second fixing base 22 can be adjusted by connecting the connecting structure 30 to different positions in the second fixing groove.
[0037] In some embodiments, the connection position between the connecting structure 30 and the first fixing base 21 is adjustable, and the connection position between the connecting structure 30 and the second fixing base 22 is also adjustable. In some embodiments, the first fixing base 21 is provided with a plurality of first fixing holes 2102, and the connecting structure 30 can be selectively connected to some of the first fixing holes 2102. The second fixing base 22 is provided with a plurality of second fixing holes 2202, and the connecting structure 30 can be selectively connected to some of the second fixing holes 2202. The number and arrangement of the first fixing holes 2102 on the first fixing base 21 may be the same as or different from the number and arrangement of the second fixing holes 2202 on the second fixing base 22. In some embodiments, the first fixing base 21 is provided with a plurality of first fixing holes 2102, and the connecting structure 30 can be selectively connected to some of the first fixing holes 2102. The second fixing base 22 is provided with a second fixing groove, and the connecting structure 30 is detachably connected to a predetermined position in the second fixing groove. In some embodiments, the first fixing base 21 is provided with a first fixing groove, and the connecting structure 30 is detachably connected to a predetermined position in the first fixing groove. The second fixing base 22 is provided with a plurality of second fixing holes 2202, and the connecting structure 30 can be selectively connected to a portion of the second fixing holes 2202. In some embodiments, the first fixing base 21 is provided with a first fixing groove, and the connecting structure 30 is detachably connected to a predetermined position in the first fixing groove. The second fixing base 22 is provided with a second fixing groove, and the connecting structure 30 is detachably connected to a predetermined position in the second fixing groove.
[0038] Multiple connecting structures 30 can be configured, with the multiple connecting structures 30 spaced apart. In this way, on the one hand, by setting multiple connecting structures 30, the tension on the discharge section 13 can be increased, thereby effectively reducing the bending of the transmission section 12 and preventing deformation or cracking at the connection between the transmission section 12 and the feeding section 11. On the other hand, by individually adjusting the multiple connecting structures 30, the direction of force applied by the connecting structures 30 to the discharge section 13 can be adjusted, thereby more precisely improving the stress condition of the discharge section 13.
[0039] Please refer to the following: Figure 2 and Figure 3 , Figure 3 This is a cross-sectional schematic diagram of the main body 10 of the device provided in this application embodiment. The feeding section 11 includes a feeding pipe 111 and a feeding mounting body 112. The feeding mounting body 112 is arranged around the central axis of the feeding pipe 111 and connected to the end of the feeding pipe 111 near the transmission section 12. The feeding mounting body 112 is fixedly connected to the transmission section 12. The feeding mounting body 112 can be configured as a flange structure. The first fixing seat 21 is detachably fixedly connected to the feeding mounting body 112. The feeding pipe 111 can extend along a first direction D1, and the extension direction of the central axis of the feeding pipe 111 is parallel to the first direction D1. The first direction D1 can be parallel to the height direction of the conveying device 100, that is, parallel to the gravity direction. In some embodiments, the first direction D1 can be set at an angle to the height direction, that is, at an angle to the gravity direction.
[0040] The conveying unit 12 includes a feeding pipe 121 and a feeding element 122. The feeding element 122 is rotatably housed within the feeding pipe 121. The sidewall of one end of the feeding pipe 121 communicates with the feed pipe 111. The conveying unit 12 may also include a flange structure disposed on the feeding pipe 121 and used for mating with the feed mounting body 112. The conveying device 100 may be configured as a screw conveyor. The feeding element 122 may be configured as a screw rod with helical blades. The feeding element 122 is spaced apart from the inner wall of the feeding pipe 121 to avoid collisions and friction between them, thereby preventing the generation of debris and contamination of the material. The feeding pipe 121 may extend along a second direction D2, with the extension direction of the central axis of the feeding pipe 121 parallel to the second direction D2. The first direction D1 and the second direction D2 are arranged at an angle. The angle between the first direction D1 and the second direction D2 can be a right angle. In some embodiments, the angle between the first direction D1 and the second direction D2 can also be an acute angle.
[0041] The connecting structure 30 is used to adjust the distance between the inner wall of the feeding component 122 and the inner wall of the feeding tube 121, so that the feeding component 122 and the inner wall of the feeding tube 121 are kept apart. The end of the feeding tube 121 away from the feed section 11 is prone to bending towards the ground under the influence of gravity, resulting in a smaller distance between the inner wall of the feeding component 122 and the inner wall of the feeding tube 121. In this embodiment, the tension applied to the feeding tube 121 by the connecting structure 30 can make the end of the feeding tube 121 away from the feed section 11 resist the influence of gravity, thereby reducing or avoiding bending of the feeding tube 121, and thus preventing the feeding component 122 from contacting the inner wall of the feeding tube 121. This effectively prevents the feeding component 122 and the feeding tube 121 from generating debris due to collision and friction, and avoids debris contaminating the material.
[0042] In some embodiments, the conveying device 100 further includes a mounting base 141 and a support plate 142. The conveying section 12 is disposed on the mounting base 141. The feeding pipe 121 is fixedly connected to the mounting base 141. The support plate 142 is disposed on the side of the mounting base 141 near the feeding pipe 121. The support plate 142 supports the feeding pipe 121 to improve the connection stability between the feeding pipe 121 and the mounting base 141, and to support the feeding pipe 121 in the event of equipment failure, preventing the feeding pipe 121 from breaking or falling.
[0043] The discharge section 13 includes a discharge pipe 131, a mounting structure 132, and a discharge mounting body 133. The discharge pipe 131 is connected to the end of the transmission section 12 away from the feeding section 11. The end of the feeding pipe 121 away from the feeding pipe 111 is connected to the side wall of the discharge pipe 131. Exemplarily, the discharge pipe 131 can extend along a first direction D1, and the extension direction of the central axis of the discharge pipe 131 is parallel to the first direction D1. In some embodiments, the extension direction of the discharge pipe 131 can also be set at an angle to the first direction D1. In some embodiments, the extension direction of the discharge pipe 131 can be set at a right angle or an acute angle to the extension direction of the feeding pipe 121.
[0044] The mounting structure 132 is disposed on the side of the discharge pipe 131 away from the transmission section 12 and is coaxially disposed with the transmission section 12. The central axis of the transmission section 12 is the central axis of the feeding pipe 121. The discharge mounting body 133 is disposed around the central axis of the mounting structure 132. The discharge mounting body 133 can be configured as a flange structure. The second fixing seat 22 is detachably fixedly connected to the discharge mounting body 133. In this way, the second fixing seat 22 is located on the side of the discharge pipe 131 away from the transmission section 12, which can increase the distance between the second fixing seat 22 and the first fixing seat 21, thereby increasing the tension applied by the connecting structure 30 to the discharge section 13, so as to better improve the stability of the discharge section 13 and reduce the swing amplitude of the discharge section 13 and the transmission section 12.
[0045] Please refer to the following: Figure 2 , Figure 3 and Figure 4 , Figure 4This is an exploded view of the connection structure 30 provided in the embodiments of this application. Each connection structure 30 includes a connector 31 and an adjusting member 32. The connector 31 is connected to the adjusting member 32. The end of the connector 31 away from the adjusting member 32 is used to connect to one of the first fixed seat 21 and the second fixed seat 22, and the end of the adjusting member 32 away from the connector 31 is used to connect to the other of the first fixed seat 21 and the second fixed seat 22. The adjusting member 32 is used to adjust the tension of the connection structure 30 on the first fixed seat 21 and the second fixed seat 22, thereby adjusting the bending degree of the transmission section 12 and avoiding the problem of contact friction between the feeding member 122 in the transmission section 12 and the inner wall of the feeding pipe 121. Exemplarily, the connector 31 can be configured as a steel wire rope to reduce the deformation of the connector 31 along its length when under force, thereby improving the stability of the tension applied by the connector 31 to the discharge section 13. The adjusting member 32 can be configured as a turnbuckle. By adjusting the extension length of the turnbuckle, the tension of the connecting member 31 can be adjusted, thereby adjusting the magnitude of the tension applied by the connecting member 31 to the discharge section 13. The connecting member 31 is inserted into the connecting ring of the adjusting member 32.
[0046] For example, in this embodiment, the end of the connector 31 away from the adjuster 32 is connected to the second fixed base 22, and the end of the adjuster 32 away from the connector 31 is connected to the first fixed base 21. Thus, the adjuster 32 is located on the side of the connector 31 closer to the first fixed base 21. On the one hand, this helps to reduce the distance between the adjuster 32 and the feeding section 11, making it easier for the user to operate the adjuster 32. Furthermore, when adjusting the adjuster 32, the user can avoid contact with the discharge section 13, thus preventing accidental collisions that could cause bending or breakage of the transmission section 12. On the other hand, when adjusting the adjuster 32, the connector 31 can absorb the shaking caused by the user's movement, thereby reducing the shaking transmitted to the discharge section 13 and preventing significant shaking of the discharge section 13 when the user adjusts the adjuster 32, thus improving the safety of the adjustment. In some embodiments, the end of the connector 31 away from the adjusting member 32 can be connected to the first fixed base 21, and the end of the adjusting member 32 away from the connector 31 can be connected to the second fixed base 22. In some embodiments, there can also be two connectors 31, with the adjusting member 32 located between the two connectors 31, and the two connectors 31 respectively connected to the first fixed base 21 and the second fixed base 22.
[0047] The extending direction of the connector 31 is set at an angle to the extending direction of the transmission section 12. The extending direction of the transmission section 12 is the axial direction of the feed pipe 121. The tension direction of the connector 31 on the discharge section 13 is set at an angle to the extending direction of the transmission section 12, which allows the tension acting on the discharge section 13 to generate a component force along the direction of gravity, thereby stretching the ends of the discharge section 13 and the transmission section 12 near the discharge section 13 in a direction away from the ground. The extending directions of the connectors 31 in the plurality of connecting structures 30 can be parallel or at an angle.
[0048] In some embodiments, each connection structure 30 further includes a fixing member 33. The end of the connecting member 31 away from the adjusting member 32 is connected to the fixing member 33, and the fixing member 33 is fixedly connected to one of the first fixing seat 21 and the second fixing seat 22; and / or, the end of the adjusting member 32 away from the connecting member 31 is connected to the fixing member 33, and the fixing member 33 is fixedly connected to the other of the first fixing seat 21 and the second fixing seat 22. The fixing member 33 may be configured as a lifting eye bolt, with the hook of the adjusting member 32 passing through the lifting eye of the fixing member 33. Exemplarily, two fixing members 33 may be provided, with the connecting member 31 fixedly connected to the first fixing seat 21 via the fixing member 33, and the adjusting member 32 fixedly connected to the second fixing seat 22 via the fixing member 33. In some embodiments, one fixing member 33 may be provided, with the connecting member 31 fixedly connected to the first fixing seat 21 via the fixing member 33, or the adjusting member 32 fixedly connected to the second fixing seat 22 via the fixing member 33.
[0049] In some embodiments, each connection structure 30 further includes a snap-fit member 34. The snap-fit member 34 is used to detachably and securely connect the connector 31 and the adjusting member 32 together. The snap-fit member 34 may be configured as a snap head. The snap-fit member 34 is also used to adjust the length of the connector 31 to cooperate with the adjusting member 32 in adjusting the tension of the connector 31 on the discharge section 13.
[0050] In some embodiments, each connection structure 30 further includes a collar 35 connected between the connector 31 and the adjusting member 32. The collar 35 can reduce wear between the connector 31 and the adjusting member 32, and prevent excessive bending of the connector 31, thereby improving the service life of the connector 31 and the adjusting member 32.
[0051] For example, the two connected to each other among the connector 31, adjusting member 32, fixing member 33, snap-fit member 34 and collar 35 are detachably connected, so that the connector 31, adjusting member 32, fixing member 33, snap-fit member 34 and collar 35 can be replaced individually, which is beneficial to the maintenance of the connection structure 30 and reduces maintenance costs.
[0052] The first fixed base 21 includes a first base body 211 and a first fixing member 212. The first fixing member 212 detachably fixes the first base body 211 to the feeding part 11 and is used to adjust the connection position between the first base body 211 and the feeding part 11. And / or, the second fixed base 22 includes a second base body 221 and a second fixing member 222. The second fixing member 222 detachably fixes the second base body 221 to the discharge part 13 and is used to adjust the connection position between the second base body 221 and the discharge part 13. In this embodiment, the connection position between the first seat 211 and the feeding part 11 is adjusted by the first fixing member 212, and / or the connection position between the second seat 221 and the discharge part 13 is adjusted by the second fixing member 222. This allows for adjustment of the direction of the pulling force exerted by the connecting structure 30 on the first fixing seat 21 and the second fixing seat 22. This facilitates adjustment of the direction of the pulling force exerted by the connecting structure 30 on the discharge part 13 according to the installation of the transmission part 12 and the discharge part 13, thereby effectively avoiding the problem of deformation or cracking at the connection between the transmission part 12 and the feeding part 11.
[0053] For example, in this embodiment, the first fixing member 212 detachably fixes the first seat 211 to the feeding part 11 and is used to adjust the connection position between the first seat 211 and the feeding part 11. The second fixing member 222 detachably fixes the second seat 221 to the discharging part 13 and is used to adjust the connection position between the second seat 221 and the discharging part 13. Thus, the tension direction of the connecting structure 30 can be adjusted by individually adjusting the connection position of the first seat 211 and the second seat 221, improving the flexibility of adjustment and improving the stability of the transmission part 12 and the discharging part 13. In some embodiments, the first fixing member 212 detachably fixes the first seat 211 to the feeding part 11 and is used to adjust the connection position between the first seat 211 and the feeding part 11, and the second fixing member 222 fixes the second seat 221 to the discharging part 13. In some embodiments, the first fixing member 212 fixes the first seat 211 to the feeding part 11, and the second fixing member 222 detachably fixes the second seat 221 to the discharge part 13 and is used to adjust the connection position between the second seat 221 and the discharge part 13.
[0054] The first base 211 is provided with a first connecting hole 210. The second base 221 is provided with a second connecting hole 220. The feeding part 11 is provided with a plurality of spaced first adjusting holes 1121, and the first fixing member 212 is detachably locked in the first connecting hole 210 and a preset portion of the first adjusting holes 1121, or the feeding part 11 is provided with a first mounting groove, and the position of the first fixing member 212 in the first mounting groove is adjustable; and / or, the discharging part 13 is provided with a plurality of spaced second adjusting holes 1331, and the second fixing member 222 is detachably locked in the second connecting hole 220 and a preset portion of the second adjusting holes 1331, or the discharging part 13 is provided with a second mounting groove, and the position of the second fixing member 222 in the second mounting groove is adjustable.
[0055] In some embodiments, the feeding section 11 is provided with a plurality of spaced-apart first adjustment holes 1121. The first adjustment holes 1121 are disposed on the feeding mounting body 112. The first fixing member 212 is detachably locked within the first connecting hole 210 and a preset portion of the first adjustment holes 1121. The first connecting hole 210 may be one or more. The number of preset portions of the first adjustment holes 1121 corresponds to the number of the first connecting holes 210. The preset portions of the first adjustment holes 1121 can be specifically set according to the force requirements of the conveying device 100. The first fixing member 212 can adjust the installation position of the first fixing seat 21 relative to the feeding section 11 by cooperating with the first connecting hole 210 with different first adjustment holes 1121. For example, the first fixing member 212 can be connected to the first adjusting hole 1121 located near the discharge section 13 among the plurality of first adjusting holes 1121, so that the connecting structure 30 applies a pulling force to the discharge section 13 in a plane parallel to the first direction D1 and the second direction D2, reducing the degree of bending of the transmission section 12 toward the ground, reducing the bending moment of the transmission section 12 relative to the feeding section 11 under the action of gravity, and avoiding the problem of deformation or cracking at the connection between the two.
[0056] In some embodiments, the feeding section 11 is provided with a first mounting groove. The first mounting groove is disposed on the feeding mounting body 112. The position of the first fixing member 212 in the first mounting groove is adjustable. The first mounting groove can be constructed as an arc-shaped groove extending along the circumferential direction of the feeding pipe 111. The extension length of the first mounting groove can be specifically set according to actual needs, and is not specifically limited in this application. The first fixing member 212 passes through the first connecting hole 210 and is detachably locked to the first seat 211 at a preset position in the first mounting groove. The preset position in the first mounting groove can be specifically set according to the force requirements of the conveying equipment 100. Wherein, the installation position of the first fixing seat 21 relative to the feeding section 11 can be adjusted by locking the first fixing member 212 at different positions in the first mounting groove.
[0057] In some embodiments, the discharge section 13 is provided with a plurality of spaced-apart second adjustment holes 1331. The second adjustment holes 1331 are disposed on the discharge mounting body 133. The second fixing member 222 is detachably locked within the second connecting hole 220 and a preset portion of the second adjustment holes 1331. The second connecting hole 220 may be one or more. The number of preset portions of the second adjustment holes 1331 corresponds to the number of the second connecting holes 220. The preset portions of the second adjustment holes 1331 can be specifically set according to the force requirements of the conveying equipment 100. The second fixing member 222 can adjust the installation position of the second fixing seat 22 relative to the discharge section 13 by cooperating with the second connecting hole 220 with different second adjustment holes 1331. For example, the second fixing member 222 can be connected to the second adjusting hole 1331 located near the feed section 11 among the plurality of second adjusting holes 1331, so that the connecting structure 30 applies a pulling force to the discharge section 13 in a plane parallel to the first direction D1 and the second direction D2, reducing the degree of bending of the transmission section 12 toward the ground, reducing the bending moment generated by the transmission section 12 relative to the feed section 11 under the action of gravity, and avoiding the problem of deformation or cracking at the connection between the two.
[0058] In some embodiments, the discharge section 13 is provided with a second mounting groove. The second mounting groove is disposed on the discharge mounting body 133. The position of the second fixing member 222 in the second mounting groove is adjustable. The second mounting groove can be constructed as an arc-shaped groove extending along the circumferential direction of the mounting structure 132. The extension length of the second mounting groove can be specifically set according to actual needs, and is not specifically limited in this application. The second fixing member 222 passes through the second connecting hole 220 and is detachably locked to a preset position in the second mounting groove with the second seat 221. The preset position in the second mounting groove can be specifically set according to the force requirements of the conveying equipment 100. In this embodiment, the installation position of the second fixing seat 22 relative to the discharge section 13 can be adjusted by locking the second fixing member 222 to different positions in the second mounting groove.
[0059] In some embodiments, a first base 211 is provided with a first connecting hole 210, and a second base 221 is provided with a second connecting hole 220. In some embodiments, a first mounting groove is provided on the first base 211, and a second mounting groove is provided on the second base 221. In some embodiments, a first connecting hole 210 is provided on the first base 211, and a second mounting groove is provided on the second base 221. In some embodiments, a first mounting groove is provided on the first base 211, and a second connecting hole 220 is provided on the second base 221.
[0060] Both the first fixing member 212 and the second fixing member 222 have a locked state and an unlocked state, respectively. When the first fixing member 212 is in the locked state, the first seat 211 is fixedly disposed relative to the feeding part 11. When the first fixing member 212 is in the unlocked state, the first seat 211 is rotatably disposed relative to the feeding part 11. When the second fixing member 222 is in the locked state, the second seat 221 is fixedly disposed relative to the discharging part 13. When the second fixing member 222 is in the unlocked state, the second seat 221 is rotatably disposed relative to the discharging part 13. The first fixing member 212 and the second fixing member 222 can be respectively configured as bolts. When in the locked state, the bolts are in a locked state, thereby fixing the first seat 211 relative to the feed part 11 and the second seat 221 relative to the discharge part 13. When in the unlocked state, the bolts are in a loose state. At this time, the installation position of the first seat 211 and the second seat 221 can be adjusted by cooperating the bolts with different first adjustment holes 1121 and second adjustment holes 1331.
[0061] The adjustment direction of the first seat 211 relative to the feed section 11 is different from the adjustment direction of the second seat 221 relative to the discharge section 13. For example, the adjustment direction of the first seat 211 relative to the feed section 11 can be along the circumferential direction of the feed pipe 111, and the adjustment direction of the second seat 221 relative to the discharge section 13 can be along the circumferential direction of the mounting structure 132, where the circumferential direction of the feed pipe 111 is different from the circumferential direction of the mounting structure 132. This allows for adjustment of the first seat 211 and the second seat 221 in different directions, improving the flexibility in adjusting the direction of the pulling force applied to the discharge section 13 by the connecting structure 30, and thus improving the stress condition of the discharge section 13.
[0062] The first fixing base 21 includes a first fixing part 2111 and a second fixing part 2112 connected to the first fixing part 2111. The first fixing member 212 detachably fixes the first fixing part 2111 to the feeding mounting body 112. The second fixing part 2112 extends away from the transmission part 12 relative to the first fixing part 2111 and is connected to the connecting structure 30 to increase the distance between the connection position of the connecting structure 30 and the second fixing part 2112 and the transmission part 12, thereby increasing the pulling force of the connecting structure 30 on the discharge part 13. The first fixing part 2111 and the second fixing part 2112 are arranged at an angle, which can be a right angle or an obtuse angle. In some embodiments, the first fixing seat 21 further includes a reinforcing rib 2114, which is fixedly connected to the first fixing part 2111 and the second fixing part 2112 respectively, so as to improve the connection strength between the first fixing part 2111 and the second fixing part 2112 and avoid the first fixing seat 21 from deforming or cracking.
[0063] In some embodiments, the first fixing part 2111 is provided with a guide structure 2113 for guiding and engaging with the feed tube 111. The guide structure 2113 can be configured as a guide groove, which is arc-shaped and adapted to the shape of the feed tube 111. Thus, on the one hand, the guide structure 2113 can guide the first fixing seat 21 when the first fixing part 2111 is adjusted relative to the feed mounting body 112, facilitating the alignment of the first connecting hole 210 with the first adjusting hole 1121, thereby improving the adjustment speed of the first fixing part 2111 and reducing the adjustment difficulty. On the other hand, the guide structure 2113 can also reduce the overall weight of the first seat 211, making the first seat 211 lighter. In some embodiments, the guide structure 2113 can also be configured with other structures.
[0064] In some embodiments, the first fixing part 2111 is provided with a guide structure 2113 for guiding and engaging with the feed mounting body 112. The guide structure 2113 may be configured as a guide protrusion, which extends arcuately along the circumferential direction of the feed tube 111 and is located on the outer periphery of the feed mounting body 112. When the first fixing part 2111 is adjusted relative to the feed mounting body 112, the guide protrusion may slide along the peripheral sidewall of the feed mounting body 112. In some embodiments, the guide protrusion may also be accommodated in a first mounting groove and slide along the groove wall of the first mounting groove for guidance.
[0065] Please see Figure 1 This application also provides a conveying system 1000, which includes a metering device 400 and the conveying device 100 as described in any of the above embodiments. The metering device 400 is connected to the feeding section 11. The metering device 400 includes a hopper 410 and a weighing module 420. The hopper 410 is connected to the feeding pipe 111 of the conveying device 100. The hopper 410 is used to supply material into the feeding pipe 111. The weighing module 420 is connected to the hopper 410. The weighing module 420 is used to weigh the material in the hopper 410, thereby measuring the weight of the material supplied from the hopper 410 to the feeding pipe 111.
[0066] In this embodiment, based on the adjustable connection position of the first fixed seat 21 and the feeding part 11, the adjustable connection position of the second fixed seat 22 and the discharging part 13, and the adjusting effect of the adjusting member 32 on the tension of the connecting member 31, the direction and magnitude of the tension of the connecting structure 30 on the discharging part 13 can be flexibly adjusted. This allows for convenient and precise adjustment of the stress on the discharging part 13, thereby avoiding deformation and cracking at the connection between the transmission part 12 and the feeding part 11, avoiding deformation and bending of the feeding pipe 121, and effectively preventing collision and friction between the feeding member 122 and the feeding pipe 121 in the transmission part 12, thus preventing the generation of debris and contamination of the material.
[0067] The above are merely specific embodiments of this application, but the scope of protection of this application is not limited thereto. Any person skilled in the art can easily conceive of various equivalent modifications or substitutions within the technical scope disclosed in this application, and these modifications or substitutions should all be covered within the scope of protection of this application. Therefore, the scope of protection of this application should be determined by the scope of the claims.
Claims
1. A conveying device (100), characterized in that, include: The main body of the equipment (10) includes a feeding section (11), a conveying section (12) and a discharging section (13), wherein the conveying section (12) is connected between the feeding section (11) and the discharging section (13); The first fixed seat (21) is installed on the feed section (11); The second fixing seat (22) is installed on the discharge section (13); as well as At least one connecting structure (30) is connected between the first fixing seat (21) and the second fixing seat (22), the connection position of the connecting structure (30) and the first fixing seat (21) is adjustable, and / or the connection position of the connecting structure (30) and the second fixing seat (22) is adjustable.
2. The conveying device (100) according to claim 1, characterized in that, The first fixing base (21) is provided with a plurality of first fixing holes (2102), and the connecting structure (30) can be selectively connected to a portion of the first fixing holes (2102), or the first fixing base (21) is provided with a first fixing groove, and the connecting structure (30) is detachably connected to a predetermined position in the first fixing groove, and / or, The second fixing base (22) is provided with a plurality of second fixing holes (2202), and the connecting structure (30) can be selectively connected to a portion of the second fixing holes (2202), or the second fixing base (22) is provided with a second fixing groove, and the connecting structure (30) is detachably connected to a preset position in the second fixing groove.
3. The conveying device (100) according to claim 1, characterized in that, The connection structure (30) is configured as a plurality of such structures, and the plurality of connection structures (30) are spaced apart.
4. The conveying device (100) according to claim 1, characterized in that, Each of the connection structures (30) includes a connector (31) and an adjusting member (32), the connector (31) being connected to the adjusting member (32), one end of the connector (31) away from the adjusting member (32) being used to connect to one of the first fixed seat (21) and the second fixed seat (22), and one end of the adjusting member (32) away from the connector (31) being used to connect to the other of the first fixed seat (21) and the second fixed seat (22), the adjusting member (32) being used to adjust the tension of the connection structure (30) on the first fixed seat (21) and the second fixed seat (22).
5. The conveying device (100) according to claim 4, characterized in that, Each of the connection structures (30) further includes a fastener (33), the end of the connector (31) away from the adjusting member (32) being connected to the fastener (33), the fastener (33) being fixedly connected to one of the first fixing seat (21) and the second fixing seat (22), and / or, The end of the adjusting member (32) away from the connecting member (31) is connected to the fixing member (33), and the fixing member (33) is fixedly connected to the other of the first fixing seat (21) and the second fixing seat (22).
6. The conveying device (100) according to claim 4, characterized in that, Each of the connection structures (30) further includes a snap-fit member (34) for detachably securing the connector (31) to the adjuster (32).
7. The conveying device (100) according to claim 1, characterized in that, The first fixing seat (21) includes a first seat body (211) and a first fixing member (212). The first fixing member (212) detachably fixes the first seat body (211) to the feeding part (11) and is used to adjust the connection position between the first seat body (211) and the feeding part (11). Or, the second fixing seat (22) includes a second seat body (221) and a second fixing member (222). The second fixing member (222) detachably fixes the second seat body (221) to the discharging part (13) and is used to adjust the connection position between the second seat body (221) and the discharging part (13).
8. The conveying device (100) according to claim 7, characterized in that, The adjustment direction of the first seat (211) relative to the feed section (11) is different from the adjustment direction of the second seat (221) relative to the discharge section (13).
9. The conveying device (100) according to claim 7, characterized in that, The first base (211) is provided with a first connecting hole (210), the feeding part (11) is provided with a plurality of spaced first adjusting holes (1121), the first fixing member (212) is detachably locked in the first connecting hole (210) and a preset portion of the first adjusting holes (1121), or the feeding part (11) is provided with a first mounting groove, the position of the first fixing member (212) in the first mounting groove is adjustable, the first fixing member (212) passes through the first connecting hole (210) and detachably locks the first base (211) in the preset position of the first mounting groove, and / or; The second base (221) is provided with a second connecting hole (220), and the discharge part (13) is provided with a plurality of spaced second adjusting holes (1331). The second fixing member (222) is detachably locked in the second connecting hole (220) and a preset portion of the second adjusting holes (1331). Alternatively, the discharge part (13) is provided with a second mounting groove, and the position of the second fixing member (222) in the second mounting groove is adjustable. The second fixing member (222) passes through the second connecting hole (220) and detachably locks the second base (221) in the preset position of the second mounting groove.
10. The conveying device (100) according to claim 7, characterized in that, The first fixing member (212) and the second fixing member (222) each have a locked state and an unlocked state. When the first fixing member (212) is in the locked state, the first seat (211) is fixedly disposed relative to the feeding part (11). When the first fixing member (212) is in the unlocked state, the first seat (211) is rotatably disposed relative to the feeding part (11). When the second fixing member (222) is in the locked state, the second seat (221) is fixedly disposed relative to the discharging part (13). When the second fixing member (222) is in the unlocked state, the second seat (221) is rotatably disposed relative to the discharging part (13).
11. The conveying device (100) according to claim 7, characterized in that, The feeding section (11) includes a feeding pipe (111) and a feeding mounting body (112). The feeding mounting body (112) is arranged around the central axis of the feeding pipe (111) and connected to the end of the feeding pipe (111) near the transmission section (12). The feeding mounting body (112) is fixedly connected to the transmission section (12). The first fixing seat (21) includes a first fixing part (2111) and a second fixing part (2112) connected to the first fixing part (2111). The first fixing part (212) detachably fixes the first fixing part (2111) to the feeding mounting body (112). The second fixing part (2112) extends relative to the first fixing part (2111) in a direction away from the transmission section (12) and is connected to the connecting structure (30).
12. The conveying device (100) according to claim 11, characterized in that, The first fixing part (2111) is provided with a guide structure (2113) for guiding and cooperating with the feed pipe (111) or the feed mounting body (112).
13. The conveying device (100) according to claim 11, characterized in that, The discharge section (13) includes a discharge pipe (131), an installation structure (132), and a discharge mounting body (133). The discharge pipe (131) is connected to the end of the transmission section (12) away from the feed section (11). The installation structure (132) is located on the side of the discharge pipe (131) away from the transmission section (12) and is coaxially arranged with the transmission section (12). The discharge mounting body (133) is arranged around the central axis of the installation structure (132). The second fixing member (222) detachably fixes the second fixing seat (22) to the discharge mounting body (133).
14. A conveying system (1000), characterized in that, The conveying system (1000) includes a metering device (400) and a conveying device (100) as described in any one of claims 1-13, wherein the metering device (400) is connected to the feeding section (11).
15. The conveying system (1000) according to claim 14, characterized in that, The metering device (400) includes a hopper (410) and a weighing module (420). The hopper (410) is connected to the conveying device (100), and the weighing module (420) is connected to the hopper (410). The weighing module (420) is used to measure the weight of the material in the hopper (410).