Dismountable rubber skeleton discharge hopper
By designing a detachable rubber skeleton discharge hopper and using a rubber anti-sticking plate and a vibration motor, the problem of sticky material retention and difficulty in cleaning is solved, and the sticky material is discharged smoothly and the cleaning cost is reduced.
Patent Information
- Application Number
- CN202422851234.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-22
- Publication Date
- 2025-10-17
- Estimated Expiration
- 2034-11-22
AI Technical Summary
Traditional discharge hoppers are prone to problems such as retention, blockage, and difficulty in manual cleaning when handling sticky materials. They are also difficult to replace, affecting continuous production.
A detachable rubber skeleton discharge hopper is designed, which adopts a rubber anti-sticking plate and a vibration motor. The rubber plate has a low friction coefficient and is easy to clean. The vibration motor is used to clean the retained material, and the rubber plate can be removed and replaced to avoid replacing the entire discharge hopper.
It achieves the smooth discharge of sticky materials, reduces adverse effects on production, reduces the difficulty and cost of cleaning, and maintains the mechanical properties of the discharge hopper.
Smart Images

Figure CN223444721U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the field of viscous material discharging equipment, and particularly relates to a detachable rubber framework discharging hopper. BACKGROUND
[0002] With the continuous improvement of mechanization, the mining industry, the construction industry, the chemical industry, the sand yard, the mine, the machinery manufacturing and other industries widely use the discharging hopper in the production process and apply it to the production practice, which includes various materials such as viscous materials. The properties of the production materials determine that the structures and functions of the discharging hoppers are different, so the structural design of the discharging hopper is different due to the different properties of the materials. The viscous material has a small particle size, contains a high moisture content or has a viscous mud itself, is easy to accumulate, stay and stick in the discharging process, causes a large discharging error, and needs to be cleaned regularly to stay at the material discharging plate to avoid affecting continuous production. The traditional hopper design may not effectively handle the viscous material, has problems such as staying, blocking, manual cleaning difficulty, replacement difficulty and the like, and needs to be further improved. SUMMARY
[0003] The utility model aims at overcoming the defects of prior art, and provides a detachable rubber framework discharging hopper.
[0004] The utility model discloses the following technical scheme:
[0005] A detachable rubber framework discharging hopper, including discharging hopper body, the discharging port of the oblique setting in the lower extreme of discharging hopper body and the detachable setting rubber anti -sticking board in the side of discharging hopper body and the lower extreme connection of discharging port, the rubber anti -sticking board includes the installation hopper board of setting in the side of discharging port body and the lower extreme connection, the rubber board of setting on the inboard surface of installation hopper board and the fixed part of fixing rubber board on installation hopper board.
[0006] Further, it further includes a vibration motor arranged on the installation hopper plate, and the installation hopper plate includes a hopper plate body and a mounting seat arranged on the installation hopper plate body for mounting the vibration motor.
[0007] Further, the installation hopper plate further includes four clearance holes arranged around the mounting seat and opposite the rubber plate.
[0008] Further, it further includes a shielding plate arranged on the side of the discharging hopper body and opposite the clearance hole on the outside of the rubber anti-sticking plate, and the shielding plate is provided with a perforation through which the vibration motor passes.
[0009] Further, the installation hopper plate further includes two handles arranged opposite the outside of the hopper plate body.
[0010] Further, the fixing member comprises four fixing blocks fixed on four sides of the rubber plate respectively and bolt assemblies for fixing the four fixing blocks and the rubber plate on the installation hopper plate respectively.
[0011] Further, the discharge hopper body comprises a fixing frame, two first vertical plates oppositely arranged at lower ends of the fixing frame and a second vertical plate arranged at one side of the fixing frame and connected between the two first vertical plates, the lower ends of the first vertical plates are arranged in an inclined manner, the rubber anti-sticking plate is arranged between the two first vertical plates and opposite to the first vertical plates, and the second vertical plate and the lower ends of the two second vertical plates form the discharge port.
[0012] Further, the first vertical plate is provided with an inspection opening and an inspection door for sealing the inspection opening.
[0013] Further, the fixing frame comprises four fixing plates arranged in a rectangular shape and connected with each other in sequence.
[0014] Further, one end of the first vertical plate opposite to the rubber anti-sticking plate is formed with a mounting portion connected with the installation hopper plate.
[0015] From the above description of the present application, compared with the prior art, the present application has the beneficial effects that: by limiting the structure of the discharge hopper, the rubber anti-sticking plate is arranged as one of the discharge hopper frames, the rubber plate has low friction coefficient, is easy to clean and easy to slide, so that the sticky material is not easy to stick and can be discharged more smoothly, the possible adverse effects in continuous production are reduced, and the rubber plate has good mechanical properties and can maintain its structure when bearing pressure and impact; at the same time, the rubber plate can be detachably arranged on the installation hopper plate, when the rubber plate is damaged, the new rubber plate can be replaced without replacing the entire discharge hopper, thereby avoiding increasing the cost. BRIEF DESCRIPTION OF DRAWINGS
[0016] Figure 1 is a structure diagram of the discharge hopper Figure One ;
[0017] Figure 2 is a structure diagram of the discharge hopper Figure Two ;
[0018] Figure 3 is a structure diagram of the discharge hopper Figure Three ;
[0019] Figure 4 is a structure diagram of the rubber anti-sticking plate Figure One ;
[0020] Figure 5 is a structure diagram of the rubber anti-sticking plate Figure Two ;
[0021] In the figure, 1 - discharge hopper body, 2 - discharge port, 3 - rubber anti-sticking plate, 4 - vibration motor, 5 - shielding plate, 11 - fixed frame, 111 - fixed plate, 12 - first vertical plate, 121 - mounting portion, 13 - second vertical plate, 14 - lifting lug, 15 - access opening, 16 - access door, 31 - mounting hopper plate, 311 - hopper plate body, 312 - mounting seat, 313 - clearance hole, 314 - handle, 32 - rubber plate, 33 - fixing member, 331 - fixing block, 332 - bolt assembly. DETAILED DESCRIPTION
[0022] The utility model will be further described below through specific embodiments.
[0023] Referring to Figures 1 to 5 As shown in the figure, a detachable rubber framework discharge hopper comprises a discharge hopper body 1, a discharge port 2 obliquely arranged at the lower end of the discharge hopper body 1, a detachable rubber anti-sticking plate 3 arranged at the side of the discharge hopper body 1 and connected with the lower end of the discharge port 2, a vibration motor 4 arranged on the rubber anti-sticking plate 3, and a shielding plate 5 arranged at the side of the discharge hopper body 1 and located outside the rubber anti-sticking plate 3.
[0024] The discharge hopper body 1 comprises a fixed frame 11, two first vertical plates 12 oppositely arranged at the lower end of the fixed frame 11, a second vertical plate 13 arranged at one side of the fixed frame 11 and connected between the two first vertical plates 12, and two lifting lugs 14 respectively arranged on the two first vertical plates 12. Specifically, the fixed frame 11 comprises four fixed plates 111 arranged in a rectangle by being sequentially and mutually connected. The first vertical plate 12 is provided with an access opening 15 and an access door 16 for sealing the access opening 15. The arrangement of the access door 16 and the access opening 15 facilitates the maintenance of the interior of the discharge hopper. Further, the lower end of the first vertical plate 12 is obliquely arranged.
[0025] The rubber anti-sticking plate 3 is arranged between the two first vertical plates 12 and opposite to the second vertical plate 13, and comprises a mounting hopper plate 31 arranged at the side of the body of the discharge port 2 and connected with the lower end of the discharge port 2, a rubber plate 32 arranged on the inner side surface of the mounting hopper plate 31, and a fixing member 33 for fixing the rubber plate 32 on the mounting hopper plate 31. The two first vertical plates 12, the second vertical plate 13, and the lower end of the mounting hopper plate 31 form the discharge port 2. Specifically, the end of the first vertical plate 12 opposite to the rubber anti-sticking plate 3 is formed with a mounting portion 121 connected with the mounting hopper plate 31, and the mounting portion 121 is vertically arranged with the first vertical plate 12.
[0026] The installation hopper plate 31 comprises a hopper plate body 311, a mounting seat 312 arranged on the hopper plate body 311 for mounting the vibration motor 4, four clearance holes 313 arranged around the mounting seat 312 opposite the rubber plate 32, and two handles 314 arranged opposite the outside of the hopper plate body 311. By arranging the clearance holes 313 opposite the rubber plate 32 on the hopper plate body 311, the operator can knock the rubber plate 32 through the clearance holes 313, more effectively shake off and clean the sticky substances remaining on the hopper, and reduce the danger when cleaning manually.
[0027] The fixing member 33 comprises four fixed pressing blocks 331 fixed on the four side edges of the rubber plate 32 respectively, and a bolt assembly 332 for fixing the four fixed pressing blocks 331 and the rubber plate 32 on the installation hopper plate 31. The rubber plate 32 is further fixed by the fixed pressing blocks 331, which provides support for the rubber plate 32, so that the rubber plate 32 is not easy to deviate, loosen and deform.
[0028] The vibration motor 4 is mounted on the mounting seat 312 and can start working after the hopper is used for a period of time, so that the materials adhered to the rubber anti-sticking plate 3 are shaken off. The vibration motor 4 is provided with a safety rope to prevent the danger caused by loosening and falling during vibration.
[0029] The shielding plate 5 is located outside the installation hopper plate 31 opposite the four clearance holes 313, the upper end thereof is connected with the opposite fixed plate 111, and a through hole is arranged on the shielding plate 5 for the vibration motor 4 to pass through. By arranging the shielding plate 5 outside the installation hopper plate 31, the material splashing out from the clearance holes 313 of the installation hopper plate 31 to injure people can be effectively prevented when the rubber plate 32 is damaged due to material impact.
[0030] In use, the sticky material enters from the upper end of the hopper body 1, part of the sticky material is discharged from the hopper without contact, and part of the sticky material flows smoothly along the rubber plate 32. After long-term work, part of the sticky material remains on the rubber plate 32. At this time, the vibration motor 4 is controlled to work to shake off the sticky material remaining on the rubber plate 32. When stubborn and difficult-to-clean sticky material is encountered, the operator can knock the rubber plate 32 through the clearance holes 313 to remove the sticky material remaining on the hopper body 1.
[0031] The present application defines the structure of the hopper, sets the rubber anti-sticking plate 3 as one of the hopper skeletons, the rubber plate has low friction coefficient, is easy to clean and slide, so that the sticky material is not easy to stick and can be discharged more smoothly, reduces the adverse effects that may occur in continuous production, has good mechanical properties, and can maintain its structure when bearing pressure and impact; at the same time, the rubber plate 32 is detachably arranged on the installation hopper plate 31, so that when it is damaged, the new rubber plate 32 can be replaced without replacing the entire hopper, thereby avoiding increasing the cost.
[0032] The above merely describes preferred embodiments of the present application, and therefore cannot limit the scope of the present application, i.e. equivalent changes and modifications made according to the scope of the present application and the content of the specification shall still belong to the scope covered by the present application.
Claims
1. A detachable rubber skeleton discharge hopper, characterized by: It includes a hopper body, a discharge port obliquely arranged at the lower end of the hopper body, and a rubber anti-sticking plate detachably arranged on the side of the hopper body and connected to the lower end of the discharge port. The rubber anti-sticking plate includes a mounting hopper plate arranged on the side of the discharge port body and connected to the lower end of the discharge port, a rubber plate arranged on the inner side of the mounting hopper plate, and a fixing part for fixing the rubber plate to the mounting hopper plate.
2. The detachable rubber skeleton discharge hopper according to claim 1, characterized in that: It also includes a vibration motor arranged on the installation bucket plate, and the installation bucket plate includes a bucket plate body and a mounting seat arranged on the installation bucket plate body for mounting the vibration motor.
3. The detachable rubber skeleton discharge hopper according to claim 2, characterized in that: The mounting bucket plate further comprises four clearance holes which are arranged around the mounting seat and are opposite to the rubber plate.
4. The detachable rubber skeleton discharge hopper according to claim 3, characterized in that: It also includes a shielding plate arranged on the side of the discharge hopper body, located outside the rubber anti-sticking plate and opposite to the clearance hole, and the shielding plate is provided with a through hole through which the vibration motor passes.
5. The detachable rubber skeleton discharge hopper according to claim 3, characterized in that: The bucket plate installation also includes two handles that are relatively arranged on the outside of the bucket plate body.
6. The detachable rubber skeleton discharge hopper according to claim 1, characterized in that: The fixing member comprises four fixing pressing blocks respectively fixed on the four side edges of the rubber plate and bolt assemblies respectively fixing the four fixing pressing blocks and the rubber plate on the mounting bucket plate.
7. The detachable rubber skeleton discharge hopper according to claim 1, characterized in that: The discharge hopper body includes a fixed frame, two first vertical plates relatively arranged at the lower end of the fixed frame, and a second vertical plate arranged on one side of the fixed frame and connected between the two first vertical plates. The lower end of the first vertical plate is inclined, the rubber anti-sticking plate is arranged between the two first vertical plates and opposite to the second vertical plate, and the discharge port is formed between the second vertical plate and the lower ends of the two second vertical plates.
8. The detachable rubber skeleton discharge hopper according to claim 7, characterized in that: The first vertical plate is provided with an inspection port and an inspection door for sealing the inspection port.
9. The detachable rubber skeleton discharge hopper according to claim 7, characterized in that: The fixing frame comprises four fixing plates which are sequentially connected to each other and arranged in a rectangular shape.
10. The detachable rubber skeleton discharge hopper according to claim 7, characterized in that: An installation portion connected to the installation bucket plate is formed on one end of the first vertical plate opposite to the rubber anti-sticking plate.