Water-absorbing condensed bead screening equipment with feeding adjusting structure
By introducing a feeding adjustment structure into the water-absorbing condensate bead screening equipment, using an adjusting baffle and adjusting bolts to control the condensate bead delivery amount, and combining the screening drum and motor, the problem of inaccurate delivery amount of the existing equipment is solved, the production efficiency and adaptability are improved, and the versatility and flexibility of the equipment are achieved.
Patent Information
- Application Number
- CN202422305665.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-20
- Publication Date
- 2025-09-23
- Estimated Expiration
- 2034-09-20
AI Technical Summary
The existing drum screening equipment lacks an effective feeding adjustment structure during the screening process of water-absorbing condensed beads, resulting in inaccurate feeding volume, making it difficult to adapt to different production needs, and affecting production efficiency and flexibility.
A water-absorbing condensate bead screening equipment is designed, which includes a condensate bead feeding component, a feeding connection component, a feeding adjustment component, a support bearing component, a condensate bead screening component and a condensate bead storage component. The feeding connectivity state is adjusted by adjusting the baffle and the adjusting bolt, and the condensate bead delivery amount is precisely controlled by combining the screening drum and the screening motor.
It achieves precise control of the delivery volume of water-absorbing condensed beads, improves production efficiency and adaptability of the equipment, can adapt to different production needs, and can be transformed into screening treatment for other similar particles or condensed beads, with strong versatility and applicability.
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Figure CN223367441U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to water absorption and condensation bead screening equipment with a feeding adjustment structure. Background Art
[0002] Patent document CN221387355U discloses a drum screening device, which includes a screening box, a column is provided at the bottom of the screening box, a fixed side plate is provided on the side of the screening box, a motor is provided above the fixed side plate, a first discharge port and a second discharge port are provided on the lower inner wall of the screening box, a second screen is provided inside the screening box, and a first screen is provided inside the second screen, a main shaft is provided at one end of the motor, and a support rod is provided on the outside of the main shaft, preliminary screening is performed through the provided filter, and the screened material is transported to the inside of the second screen through the provided fourth discharge port, the first screen and the second screen are driven to rotate by the provided motor for secondary screening, and the screened material is discharged through the provided first discharge port and the second discharge port. Utility Model Content
[0003] The utility model aims to provide a water-absorbing condensation bead screening device with a feeding regulating structure.
[0004] The technical solution adopted by the present invention to solve its technical problems is:
[0005] A water-absorbing condensation bead screening device with a feed regulating structure, comprising:
[0006] A condensed bead feeding component, which has a condensed bead storage space inside and can supply water-absorbing condensed beads to the outside;
[0007] A feed connection assembly is installed on the condensed bead feeding assembly, is communicated with the interior of the condensed bead feeding assembly, and is connected to the exterior. The condensed beads in the condensed bead feeding assembly can be transported outward through the feed connection assembly.
[0008] A feed regulating assembly is installed in the condensed bead feeding assembly and cooperates with the feed connection assembly. The feed regulating assembly switches the connection state between the feed connection assembly and the condensed bead feeding assembly to adjust the delivery amount of the condensed beads;
[0009] A support and carrying assembly, which corresponds to the position of the condensed bead feeding assembly and has an assembly space inside;
[0010] The condensed bead screening component is installed on the support bearing component and is connected to the feeding connection component. The condensed bead feeding component can transport the water-absorbing condensed beads to the condensed bead screening component through the feeding connection component, and the condensed bead screening component screens the condensed beads;
[0011] The condensed bead storage component is installed on the support bearing component and cooperates with the condensed bead screening component. It has a condensed bead storage space inside. The condensed bead screening component transports the screened water-absorbing condensed beads to the condensed bead storage component.
[0012] Specifically, the condensed bead feeding assembly includes:
[0013] A feeding stand, which is arranged vertically and formed by connecting rods and plates;
[0014] The feeding cone hopper is formed by enclosing plates and is installed on the top of the feeding stand. It has a condensed bead storage space inside and a feeding port at the bottom. The feeding cone hopper can supply water-absorbing condensed beads to the outside through the feeding port.
[0015] The feed connection components include:
[0016] The connecting guide groove is installed on the feeding stand and is adapted to the shape of the feeding port. Its inner end is located below the feeding port, and its outer end extends obliquely downward to the outside of the feeding stand. The water-absorbing condensed beads in the feeding cone hopper can enter the connecting guide groove;
[0017] The connecting end pipe is installed at the bottom of the outer end of the connecting guide groove. It is connected to the connecting guide groove and the condensed bead screening component. The water-absorbing condensed beads in the connecting guide groove can be transported to the condensed bead screening component through the connecting end pipe.
[0018] The feed conditioning assembly includes:
[0019] The adjusting baffle is arranged vertically, with its upper section fitting against the outer wall of the feeding cone hopper and its lower section extending into the connecting guide groove, and can switch the connection state between the connecting guide groove and the feeding port;
[0020] There are at least one pair of adjusting bolts, and a pair of vertically extending adjusting slots are opened in the adjusting baffle. The adjusting bolts pass through the adjusting slots and are selected into the feeding cone hopper, so that the adjusting baffle can be adjusted in height along the adjusting slots and locked in position by the adjusting bolts.
[0021] The support bearing components include:
[0022] The supporting frame is formed by connecting rods, is located outside the feeding stand and is arranged in the transverse direction;
[0023] An inner support, which is mounted on the inner end of the supporting frame and protrudes above the supporting frame;
[0024] The outer support is installed at the outer end of the load-bearing frame and protrudes above the load-bearing frame. The height of the outer support is less than that of the inner support.
[0025] The bead screening assembly includes:
[0026] The screening shell is installed on the inner and outer supports so that its inner end is located below the connecting end tube and its outer end extends obliquely downward. A feed port is provided on the top of the screening shell. The condensed water beads in the connecting end tube can enter the interior of the screening shell through the feed port. A screening drum is installed in the screening shell to screen the condensed water beads.
[0027] Screening motor, which is installed on the side wall of the screening shell and connected to the screening shell through the transmission structure, and the screening drum is driven by the screening motor;
[0028] A group of condensed bead discharge pipes are provided. Each condensed bead discharge pipe is installed at the bottom of the screening shell and cooperates with the screening drum. The water-absorbed condensed beads after screening can be discharged outward through the condensed bead discharge pipes.
[0029] The pod storage kit includes:
[0030] The storage barrel body is provided with a group, each storage barrel body is placed in a supporting frame and is connected with a condensed bead discharge pipe, and the storage barrel body stores the water-absorbing condensed beads discharged from the condensed bead discharge pipe.
[0031] The advantages of the present invention are:
[0032] The bead screening component of the water-absorbing condensed bead screening equipment adopts a combination of a screening drum and a screening motor. The water-absorbing condensed beads are screened by the rotating motion of the screening drum, which can effectively separate the condensed beads that do not meet the standards and ensure product quality. Through the design of the feeding adjustment component, especially the adjusting baffle and the adjusting bolt, the connection state between the condensed bead feeding component and the feeding connection component can be flexibly adjusted to achieve precise control of the water-absorbing condensed bead delivery amount, so that the equipment can adapt to different production needs and improve production efficiency and flexibility. It is not only suitable for the screening of water-absorbing condensed beads, but can also be modified and adjusted according to needs to meet the screening needs of other similar particles or condensed beads. It has strong versatility and applicability. BRIEF DESCRIPTION OF THE DRAWINGS
[0033] Figure 1 This is a front structural diagram of the water absorption and condensation bead screening device with a feed adjustment structure proposed by the present invention;
[0034] Figure 2 It is a schematic diagram of the back structure of the water-absorbing condensation bead screening equipment. DETAILED DESCRIPTION
[0035] In order to make the purpose, technical solutions and advantages of the embodiments of the present invention clearer, the technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are part of the embodiments of the present invention, not all of the embodiments. The components of the embodiments of the present invention generally described and shown in the drawings here can be arranged and designed in various different configurations. Therefore, the following detailed description of the embodiments of the present invention provided in the drawings is not intended to limit the scope of the utility model for protection, but merely represents selected embodiments of the present invention. Based on the embodiments in the utility model, all other embodiments obtained by ordinary technicians in this field without making creative work are within the scope of protection of the present invention.
[0036] like Figure 1 、 Figure 2 As shown, the water-absorbing condensed bead screening equipment with a feeding adjustment structure proposed by the present invention includes a condensed bead feeding component, a feeding connection component, a feeding adjustment component, a supporting component, a condensed bead screening component and a condensed bead storage component. The condensed bead feeding component has a condensed bead storage space inside, which can supply water-absorbing condensed beads to the outside. The feeding connection component is installed on the condensed bead feeding component, which is connected with the inside of the condensed bead feeding component and connected with the outside. The condensed beads in the condensed bead feeding component can be transported outward through the feeding connection component. The feeding adjustment component is installed in the condensed bead feeding component and cooperates with the feeding connection component. The feeding connection component is adjusted by the feeding adjustment component. The connection state between the condensed bead feeding component and the condensed bead feeding component is switched to adjust the delivery amount of the condensed beads. The support bearing component corresponds to the position of the condensed bead feeding component and has an assembly space inside. The condensed bead screening component is installed on the support bearing component and is connected with the feeding connection component. The condensed bead feeding component can convey the water-absorbing condensed beads to the condensed bead screening component through the feeding connection component, and the condensed bead screening component screens them. The condensed bead storage component is installed on the support bearing component and cooperates with the condensed bead screening component. It has a condensed bead storage space inside, and the condensed bead screening component conveys the screened water-absorbing condensed beads to the condensed bead storage component.
[0037] In this embodiment, the condensed bead feeding assembly includes a feeding stand 110 and a feeding cone hopper 120. The feeding stand is arranged vertically and is formed by connecting rods and plates. The feeding cone hopper is formed by enclosing plates and is installed on the top of the feeding stand. It has a condensed bead storage space inside and a feeding port is opened at the bottom. The feeding cone hopper can supply water-absorbing condensed beads to the outside through the feeding port.
[0038] The feeding connection assembly includes a connection guide groove 210 and a connection end pipe 220. The connection guide groove is installed on the feeding stand and is adapted to the shape of the feeding port. Its inner end is located below the feeding port, and its outer end extends obliquely downward to the outside of the feeding stand. The water-absorbing condensed beads in the feeding cone hopper can enter the connection guide groove. The connection end pipe is installed at the bottom of the outer end of the connection guide groove. It is connected with the connection guide groove and the condensed bead screening assembly. The water-absorbing condensed beads in the connection guide groove can be transported to the condensed bead screening assembly through the connection end pipe.
[0039] The feeding adjustment assembly includes an adjusting baffle 310 and an adjusting bolt 320. The adjusting baffle is arranged vertically, with its upper section fitted against the outer wall of the feeding cone hopper and its lower section extending into the connecting guide groove, which can switch the connection state between the connecting guide groove and the feeding port. There is at least one pair of adjusting bolts, and a pair of adjusting slots extending vertically are provided in the adjusting baffle. The adjusting bolts pass through the adjusting slots and are then selected into the feeding cone hopper, so that the adjusting baffle can be adjusted in height along the adjusting slots and locked in position by the adjusting bolts.
[0040] The supporting and bearing assembly includes a bearing frame 410, an inner support 420 and an outer support 430. The bearing frame is formed by connecting rods. It is located on the outside of the feeding stand and arranged horizontally. The inner support is installed at the inner end of the bearing frame and protrudes above the bearing frame. The outer support is installed at the outer end of the bearing frame and protrudes above the bearing frame. Its height is less than that of the inner support.
[0041] The condensed bead screening component includes a screening shell 510, a screening motor 520 and a condensed bead discharge pipe 530. The screening shell is installed on the inner support and the outer support so that its inner end is located below the connecting end pipe and its outer end extends obliquely downward. A feed port is provided on the top of the screening shell, and the water-absorbed condensed beads in the connecting end pipe can enter the interior of the screening shell through the feed port. A screening drum is installed in the screening shell, and the water-absorbed condensed beads are screened by the screening drum. The screening motor is installed on the side wall of the screening shell and connected to the screening shell through a transmission structure. The screening motor drives the screening drum to operate. A group of condensed bead discharge pipes are provided, and each condensed bead discharge pipe is installed at the bottom of the screening shell and cooperates with the screening drum. The water-absorbed condensed beads after screening can be discharged outward through the condensed bead discharge pipe. In this embodiment, a screen frame is provided in the screening drum, and multiple layers of screens are installed inside the screen frame. The material rolls inside the drum as the screen frame rotates, and screening and grading are achieved through the screens. Each bead discharge pipe discharges water-absorbing beads of different grades respectively. These structures adopt existing technologies and are therefore not described in detail.
[0042] The condensate bead storage assembly includes a storage barrel body 600, which is provided in a group. Each storage barrel body is placed in a supporting frame and is connected to a condensate bead discharge pipe. The storage barrel body stores the water-absorbing condensate beads discharged from the condensate bead discharge pipe.
[0043] In the description of the present utility model, it should be noted that when terms such as "upper", "lower", "inner", "outer", "left", and "right" indicate an orientation or positional relationship, they should be understood as being based on the orientation or positional relationship shown in the accompanying drawings, or the orientation or positional relationship in which the utility model product is usually placed when in use, or the orientation or positional relationship commonly understood by those skilled in the art. They are only for the convenience of describing the utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as limiting the present utility model. In addition, when terms such as "first" and "second" appear, they are only used to distinguish the description and cannot be understood as indicating or implying relative importance. In the description of the present utility model, it should also be noted that, unless otherwise clearly specified and limited, terms such as "installation", "setting", and "connection" should be understood in a broad sense. For example, "connection" can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection, an indirect connection through an intermediate medium, or it can be a communication between the internal parts of two elements. For those skilled in the art, the specific meanings of the above terms in this utility model can be understood according to specific circumstances.
Claims
1. A water-absorbing condensation bead screening device with a feed adjustment structure, characterized in that: include: A condensed bead feeding component, which has a condensed bead storage space inside and can supply water-absorbing condensed beads to the outside; A feed connection assembly is installed on the condensed bead feeding assembly, is communicated with the interior of the condensed bead feeding assembly, and is connected to the exterior. The condensed beads in the condensed bead feeding assembly can be transported outward through the feed connection assembly. A feed regulating assembly is installed in the condensed bead feeding assembly and cooperates with the feed connection assembly. The feed regulating assembly switches the connection state between the feed connection assembly and the condensed bead feeding assembly to adjust the delivery amount of the condensed beads; A support and carrying assembly, which corresponds to the position of the condensed bead feeding assembly and has an assembly space inside; The condensed bead screening component is installed on the support bearing component and is connected to the feeding connection component. The condensed bead feeding component can transport the water-absorbing condensed beads to the condensed bead screening component through the feeding connection component, and the condensed bead screening component screens the condensed beads; The condensed bead storage component is installed on the support bearing component and cooperates with the condensed bead screening component. It has a condensed bead storage space inside. The condensed bead screening component transports the screened water-absorbing condensed beads to the condensed bead storage component.
2. The water-absorbing condensation bead screening device with a feed adjustment structure according to claim 1, characterized in that: The bead feed assembly includes: A feeding stand, which is arranged vertically and formed by connecting rods and plates; The feeding cone hopper is formed by enclosing plates and is installed on the top of the feeding stand. It has a condensed bead storage space inside and a feeding port at the bottom. The feeding cone hopper can supply water-absorbing condensed beads to the outside through the feeding port.
3. The water-absorbing condensation bead screening device with a feed adjustment structure according to claim 2, characterized in that: The feed connection components include: A connecting guide groove is installed on the feed stand and is adapted to the shape of the feed opening, with its inner end located below the feed opening and its outer end extending obliquely downward to the outside of the feed stand; The connecting end pipe is installed at the bottom of the outer end of the connecting guide groove, is connected with the connecting guide groove, and is connected with the condensed bead screening component.
4. The water-absorbing condensation bead screening device with a feed adjustment structure according to claim 3, characterized in that: The feed conditioning assembly includes: An adjusting baffle is arranged vertically, with its upper section being in contact with the outer wall of the feeding cone hopper and its lower section extending into the connecting guide groove; The adjusting bolts are provided with at least one pair, and a pair of adjusting through slots extending vertically are opened in the adjusting baffle. The adjusting bolts penetrate the adjusting through slots and are selected into the feeding cone hopper.
5. The water-absorbing condensation bead screening device with a feed adjustment structure according to claim 3, characterized in that: The support bearing components include: The supporting frame is formed by connecting rods, is located outside the feeding stand and is arranged in the transverse direction; An inner support, which is mounted on the inner end of the supporting frame and protrudes above the supporting frame; The outer support is installed at the outer end of the load-bearing frame and protrudes above the load-bearing frame. The height of the outer support is less than that of the inner support.
6. The water-absorbing condensation bead screening device with a feed adjustment structure according to claim 5, characterized in that: The bead screening assembly includes: The screening shell is installed on the inner and outer supports so that its inner end is located below the connecting end tube and its outer end extends obliquely downward. A feed port is provided on the top of the screening shell. The water-absorbed condensed beads in the connecting end tube can enter the interior of the screening shell through the feed port. A screening drum is installed in the screening shell. The screening motor is installed on the side wall of the screening housing and connected to the screening housing through a transmission structure; The condensed bead discharge pipe is provided with a group, and each condensed bead discharge pipe is respectively installed at the bottom of the screening shell cover and cooperates with the screening drum.
7. The water-absorbing condensation bead screening device with a feed regulating structure according to claim 6, characterized in that: The pod storage kit includes: The storage barrel body is provided with a group, each storage barrel body is placed in the supporting frame and is connected with the condensed bead discharge pipe.
Citation Information
Patent Citations
Multi-stage screening drum screening machine
CN221387355U