Degreased powder subpackaging equipment
By designing a degreasing powder dispensing equipment with a rotating rod and sealing strip, the problems of time-consuming, labor-intensive, and difficult quantitative dispensing of degreasing powder in the existing technology have been solved, realizing quantitative dispensing and efficient dispensing, and improving dispensing efficiency and environmental cleanliness.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-26
- Publication Date
- 2026-03-10
AI Technical Summary
Existing technologies for dispensing defatting powder are time-consuming and labor-intensive, and it is difficult to achieve quantitative dispensing, resulting in low efficiency.
A defatting powder dispensing device was designed, which includes a feeding mechanism and a packaging component. The device uses a sealing strip and a sealing curved strip on a rotating rod to form a separation channel to ensure quantitative discharge of defatting powder, and achieves quantitative dispensing through motor drive.
It enables convenient quantitative dispensing of defatting powder, improves dispensing efficiency, ensures the accuracy and consistency of dispensing, and prevents dust leakage and flying, thus maintaining a clean working environment.
Smart Images

Figure CN223982701U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of defatted powder subpackaging, in particular to a defatted powder subpackaging equipment. BACKGROUND
[0002] The defatted powder is mostly powdery, and needs to be subpackaged after production. In the prior art, the manufacturer usually manually delivers a large amount of powder to the discharge opening of a subpackaging machine, and then subpackages the powder. However, this packaging method is time-consuming and laborious, and the subpackaging efficiency is low. In addition, manual subpackaging is not convenient for quantitative subpackaging. SUMMARY
[0003] In view of the above technical problems, the utility model provides a defatted powder subpackaging equipment which can conveniently subpackage the defatted powder and improve the subpackaging efficiency of the defatted agent.
[0004] To achieve the above purpose, the utility model provides the following technical scheme: a defatted powder subpackaging equipment, which comprises a feeding mechanism arranged on a support assembly and capable of discharging an equal amount of defatted powder, and a packaging assembly arranged at the discharge opening of the feeding mechanism. The feeding mechanism comprises a storage assembly arranged on the support assembly and capable of storing the defatted powder; a guide block arranged on the discharge opening of the storage assembly through a guide channel and arranged in a vertical direction; two sealing curved strips arranged in a vertical direction and symmetrically arranged about left and right, and the adjacent concave surfaces of the two sealing curved strips and the inner wall of the guide channel form a separation channel; and a rotating rod rotatably arranged between the two sealing curved strips, and four sealing strips are arranged in a circumferential array on the rod body of the rotating rod. The edges of the four sealing strips are in sealing sliding contact with the concave surfaces of the sealing curved strips and the inner wall of the guide channel, and the opening distance between the distal ends of the adjacent two sealing strips is less than the length of the sealing curved strip.
[0005] Preferably, a fixing block can be arranged between every two adjacent sealing strips, and a clamping block is arranged on the fixing block. The clamping block can be detachably arranged in a clamping groove formed in the rod body of the rotating rod between the adjacent sealing strips.
[0006] Preferably, the storage assembly comprises a storage bin arranged on the guide block and having an internal passage through the internal portion of the guide channel.
[0007] Preferably, the packaging assembly comprises: two limiting rotating rods, which are arranged in parallel and symmetrically on both sides of the guide block, and the ends of which are rotatably connected to the support assembly; two plastic rolls, which are arranged in parallel and symmetrically on both sides of the guide block, and plastic bag films are wound on the plastic rolls, and the two plastic bag films on the two plastic rolls pass through between the limiting rotating rods and the guide block, respectively; two edge sealing members, which are arranged on the left and right sides of the guide block and longitudinally seal the adjacent edge portions of the two plastic bag films; a sealing member, which is arranged on the support assembly and below the guide block, and transversely seals the two plastic bag films in double rows; and a cutting member, which is arranged on the sealing member and cuts the position between the double rows of the two plastic bag films.
[0008] Preferably, the edge sealing member comprises: two first conveying belts, which are arranged in the vertical direction and have one side conveying surfaces arranged in close contact with each other on one side of the guide block, and which clamp and convey the edge portions of the two plastic bag films; two second conveying belts, which are arranged in the vertical direction below the two first conveying belts and have one side conveying surfaces arranged in close contact with each other on one side of the guide block, and which clamp and convey the edge portions of the two plastic bag films; and two edge sealing wheels, which are respectively arranged between the first conveying belts and the second conveying belts arranged above and below, and have heat sealing structures arranged on the wheel surfaces for heat sealing the edge portions of the plastic bag films; and the first conveying belts, the second conveying belts and the edge sealing wheels are arranged on the support assembly.
[0009] Preferably, the sealing member comprises: a partition block, which is arranged on the support assembly, has a partition opening formed in the end surface, and is sleeved on the two plastic bag films after edge sealing, and the partition opening is located below the guide block; two groups of heat sealing strips, each group of heat sealing strips has two heat sealing strips arranged in parallel below the two limiting rotating rods and arranged in the partition opening, and the two groups of heat sealing strips are arranged in parallel above and below in the partition opening; and a control structure, which is arranged on the partition block and controls the two heat sealing strips in each group to move close to each other, so as to transversely heat seal the two plastic bag films.
[0010] Preferably, the control structure comprises: two groups of sealing blocks, each group of sealing blocks has two sealing blocks, and the two sealing blocks in each group are arranged on the sides away from each other of the two heat sealing strips in each group; two linkage racks, which are arranged in parallel between the two groups of sealing blocks and have one ends away from each other connected to the side surfaces of the different sealing blocks in each group; a linkage gear, which is arranged between the two linkage racks and meshes with the linkage racks; and a sealing cylinder, which is arranged vertically on the side surface of the partition block and has an output end penetrating into the partition opening, and controls the two sealing blocks arranged above and below in the two groups of sealing blocks to move.
[0011] Preferably, the cutting member comprises: a cutting knife and an auxiliary block, which are arranged between the two sealing blocks arranged above and below in the two groups of sealing blocks, the cutting knife is fixedly connected to the sealing block, and the auxiliary block is connected to the output end of the cutting cylinder arranged on the side surface of the partition block.
[0012] The utility model discloses an advantageous effect: defatted powder is placed in the feeding mechanism, and defatted powder enters into the guide channel, and rotates through motor drive rotating rod, drives the sealing strip on the rotating rod to rotate in two sealing curves, when the position between two sealing strips moves below the feeding mechanism, defatted powder enters between two sealing strips, guarantees the quantitative defatted powder between two sealing strips, under the condition that motor drives rotating rod to rotate, when two sealing strips rotate to the position below two sealing curves, quantitative defatted powder between sealing strips enters the encapsulation component position through the guide channel and carries out quantitative subpackaging to quantitative defatted powder, can conveniently carry out quantitative subpackaging to defatted powder, improves the subpackaging efficiency of defatted agent. BRIEF DESCRIPTION OF DRAWINGS
[0013] The accompanying drawings are included to provide a further understanding of the utility model, and constitute a part of the specification, explain the utility model together with embodiments of the utility model, and do not constitute the limitation to the utility model, in the drawings:
[0014] Figure 1 It is simple structure schematic diagram of defatted powder subpackaging equipment that the utility model proposes.
[0015] Figure 2 It is feeding assembly structure schematic diagram of the utility model.
[0016] Figure 3 It is sealing piece structure schematic diagram of the utility model.
[0017] Figure 4 It is the inside structure schematic diagram of the utility model's sealing block.
[0018] Figure 5 It is the structure schematic diagram of the utility model's edge sealing piece.
[0019] Figure 6 It is the structure schematic diagram of the utility model's fixed block.
[0020] In the drawing: 1, base, 2, vertical board, 3, sealing block, 4, sealing mouth, 5, guide block, 6, storage bin, 7, limit rotating lever, 8, first conveying belt, 9, edge sealing wheel, 10, second conveying belt, 11, sealing block, 12, sealing hole, 13, sealing plate, 14, guide channel, 15, sealing curve, 16, rotating rod, 17, sealing strip, 18, fixed block, 19, linkage rack, 20, linkage gear, 21, heat sealing strip, 22, cutting knife, 23, auxiliary block, 24, clamping block, 25, clamping groove. PREFERRED EMBODIMENT
[0021] To make the technical means, creative features, and achieved objectives and effects of this utility model easier to understand, the present utility model is further described below with reference to specific embodiments and accompanying drawings. However, the following embodiments are only preferred embodiments of this utility model and not all of them. Other embodiments obtained by those skilled in the art based on the embodiments described in the embodiments without creative effort are all within the protection scope of this utility model.
[0022] Please see Figures 1-6 A degreasing powder dispensing device includes a feeding mechanism disposed on a support assembly for discharging degreasing powder in equal quantities, and a packaging assembly disposed at the discharge port of the feeding mechanism. The feeding mechanism includes: a storage assembly disposed on the support assembly for storing degreasing powder; a guide block 5 disposed on the discharge port of the storage assembly through a guide channel 14 and disposed vertically; two sealing curved strips 15 disposed vertically and symmetrically about left and right, with adjacent concave surfaces of the two sealing curved strips 15 forming a partition channel with the inner wall of the guide channel 14; and a rotating rod 16 rotatably disposed between the two sealing curved strips 15, with four sealing strips 17 arranged in a circumferential array on the rotating rod 16; the edges of the four sealing strips 17 slide and seal against the concave surfaces of the sealing curved strips 15 and the inner wall of the guide channel 14, and the opening distance between the ends of two adjacent sealing strips 17 away from the rotating rod 16 is less than the length of the sealing curved strip 15.
[0023] In this embodiment, the defatting powder is discharged in equal quantities through a feeding mechanism. This ensures that the amount of defatting powder dispensed each time is consistent, improving the accuracy and consistency of dispensing and helping to meet the precise metering requirements in the production process. The guide block 5 is connected to the discharge port of the storage component and forms a partition channel through two sealing curved strips. This design not only guides the defatting powder to fall smoothly, but also effectively prevents leakage or scattering of the defatting powder during the dispensing process through the cooperation of the sealing curved strips 15 and the sealing strips 17, maintaining a clean working environment. The four sealing strips 17 arranged in a circumferential array on the rotating rod slide in a sealing manner with the concave surface of the sealing curved strips 15 and the inner wall of the guide channel 14, further enhancing the sealing effect. This multi-seal design ensures the integrity and purity of the defatting powder during the dispensing process.
[0024] like Figures 1-2As shown, when the degreasing powder enters the guide channel 14 through the storage bin 6, it enters the position between the two sealing strips 17 located below the top of the two sealing curved strips 15. The space between the sealing strips 17 and the guide channel 14 is fixed, ensuring that the degreasing powder entering between the two adjacent sealing strips 17 is quantitatively dispensed. When the motor drives the rotating rod 16 to rotate, and the two adjacent sealing strips 17 with degreasing powder rotate between the sealing curved strips 15, the ends of the two sealing strips 17 away from the rotating rod 16 move to the bottom of the two sealing curved strips 15. At this time, the degreasing powder located between the two sealing strips 17 moves downward under the action of gravity, ensuring that the degreasing powder is quantitatively dispensed.
[0025] like Figures 1-2 and Figure 6 As shown, a fixing block 18 can be installed between two adjacent sealing strips 17, and a locking block 24 is provided on the fixing block 18. The locking block 24 can be detachably installed in the locking groove 25 opened on the rod body of the rotating rod 16 between the adjacent sealing strips 17. By changing the fixing block 18 of different sizes and installing it between the adjacent sealing strips 17, it is easy to adjust the space between the adjacent sealing strips 17 and the inner wall of the guide channel 14, so as to control the two sealing strips 17 to deliver different amounts of degreasing powder.
[0026] The storage assembly includes a storage bin 6 that is mounted on the guide block 5 and communicates with the interior of the guide channel 14.
[0027] The packaging assembly includes: two limiting rotating rods 7, which are parallel to each other and symmetrical about both sides of the guide block 5, and whose ends are rotatably connected to the support assembly; two plastic rolls, which are parallel to each other and symmetrically arranged on both sides of the guide block 5, with plastic bag film rolled on the plastic rolls, and the two plastic bag films on the two plastic rolls respectively passing between the limiting rotating rods 7 and the guide block 5; two edge sealing pieces, which are located on the left and right sides of the guide block 5 and longitudinally seal the adjacent edges of the two plastic bag films; a sealing piece, which is located on the support assembly and below the guide block 5, and provides a transverse double seal for the two plastic bag films; and a cutting piece, which is located on the sealing piece and cuts between the double seals of the two plastic bag films.
[0028] like Figures 1-5 As shown, the process of dispensing defatting powder using plastic bags is as follows: First, two sealing pieces are used to heat-seal adjacent sides of two plastic bags to ensure the integrity of the plastic bags. Then, a sealing piece is used to create a double horizontal seal between the two plastic bags. Finally, a cutting piece is used to cut between the double seals. The upper seal is used to seal the bottom of the two plastic bags containing the defatting powder, while the lower seal is used to seal the top of the two plastic bags below, thus dispensing a fixed amount of defatting powder.
[0029] The edge sealing component includes: two first conveyor belts 8, arranged vertically with one side of their conveying surfaces touching each other on one side of the guide block 5, for clamping and conveying the edges of two plastic bags; two second conveyor belts 10, arranged vertically below the two first conveyor belts 8 with one side of their conveying surfaces touching each other on one side of the guide block 5, for clamping and conveying the edges of two plastic bags; and two edge sealing wheels 9, respectively located between the upper and lower first conveyor belts 8 and the second conveyor belts 10, with heat-sealing structures for heat-sealing the edges of the plastic bags on their surfaces; the first conveyor belts 8, the second conveyor belts 10, and the edge sealing wheels 9 are mounted on a support assembly.
[0030] like Figures 1-2 and Figure 5 As shown, when sealing the adjacent sides of two plastic bags, when the two plastic bags are symmetrically positioned on both sides of the guide block 5 by the two limiting rotating rods 7, the adjacent edges of the two plastic bags are clamped and conveyed by the two first conveyor belts 8, and then sealed by the two sealing wheels 9. After sealing, the edges are clamped and conveyed by the two second conveyor belts 10 to ensure that the sealed plastic bags enter the sealing opening 4.
[0031] The sealing component includes: a sealing block 3, which is set on the support assembly and has a sealing opening 4 on its end face, and is fitted onto the plastic bag film after the two edges are sealed, with the sealing opening 4 located below the guide block 5; two sets of heat sealing strips 21, each set consisting of two heat sealing strips 21, which are arranged parallel to each other below the two limiting rotating rods 7 and inside the sealing opening 4, with the two sets of heat sealing strips 21 arranged vertically parallel inside the sealing opening 4; and a control structure, which is set on the sealing block 3 and controls the two sets of heat sealing strips 21 to move closer to each other, thereby heat sealing the two plastic bag films laterally.
[0032] The control structure includes: two sets of sealing blocks 11, with two sealing blocks 11 in each set, and the two sealing blocks 11 in each set are respectively located on the opposite side of the two heat sealing strips 21 in each set; two linkage racks 19, which are arranged parallel to each other between the two sealing blocks 11 in each set and whose opposite ends are respectively connected to the sides of different sealing blocks 11 in each set; a linkage gear 20, which is located between the two linkage racks 19 and meshes with the linkage racks 19; and a sealing cylinder, which is vertically located on one side of the sealing block 3 and whose output end passes through the sealing opening 4, and controls the movement of two sealing blocks 11 arranged vertically in the two sets of sealing blocks 11.
[0033] like Figures 1-3As shown, when sealing two plastic bags, the output end of the control cylinder drives two sealing blocks 11, which are set up vertically, to move. At this time, one of the linkage racks 19 connected to the sealing block 11 moves. Under the action of the meshing linkage gear 20, the two linkage racks 19 will move closer to each other, which will drive the two upper sealing blocks 11 to move closer to each other and the two lower sealing blocks 11 to move closer to each other. The heat sealing strip 21 set on the sealing block 11 can then seal the two plastic bags horizontally.
[0034] The cutting component includes a cutting blade 22 and an auxiliary block 23, which are positioned between two sealing blocks 11 at different heights. The cutting blade 22 is fixedly connected to the sealing block 11, and the auxiliary block 23 is connected to the output end of the cutting cylinder located on the side of the sealing block 3. The auxiliary block 23 is moved towards the cutting blade 22 by the output end of the cutting cylinder, so that the cutting blade 22 can cut the sealed edge and the sealed plastic bag film.
[0035] The support assembly includes a base 1, a vertical plate 2 vertically mounted on the base 1, a sealing block 3 connected to the side of the vertical plate 2, two limit rods 7 rotatably connected to the ends of the vertical plate 2, and a first conveyor belt 8, a second conveyor belt 10 and a sealing wheel 9 mounted on the sealing block 3 by a fixing rod.
[0036] The end face of the guide block 5 is provided with a sealing hole 12 that communicates with the interior of the guide channel 14, and a sealing plate 13 is detachably installed in the sealing hole 12, so that the fixing block 18 can be replaced through the sealing hole 12.
[0037] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. Those skilled in the art should understand that this utility model is not limited to the above embodiments. The embodiments and descriptions in the specification are merely preferred examples and are not intended to limit the utility model. Various changes and modifications can be made to this utility model without departing from its spirit and scope, and all such changes and modifications fall within the scope of the claimed utility model. The scope of protection of this utility model is defined by the appended claims and their equivalents.
Claims
1. A defatted powder dispensing device, comprising a feeding mechanism arranged on a supporting assembly for discharging equal amounts of defatted powder, and a packaging assembly arranged at the discharge port of the feeding mechanism, characterized in that, The feeding mechanism comprises: The storage assembly is arranged on the supporting assembly and stores the defatted powder; The guide block (5) is arranged on the discharge port of the storage assembly through the guide channel (14) and is arranged in the vertical direction; Two sealing curved strips (15) are arranged in the vertical direction and are symmetrically arranged about the left and right sides, and the adjacent concave surfaces of the two sealing curved strips (15) and the inner wall of the guide channel (14) form a separation channel; The rotating rod (16) is rotatably arranged between the two sealing curved strips (15), and four sealing strips (17) are circumferentially arranged on the rod body of the rotating rod (16); The edges of the four sealing strips (17) are in sealing sliding contact with the concave surfaces of the sealing curved strips (15) and the inner wall of the guide channel (14), and the opening distance between the ends of the two adjacent sealing strips (17) away from the rotating rod (16) is less than the length of the sealing curved strip (15).
2. The defatted meal portioning apparatus of claim 1, wherein: Fixed blocks (18) can be arranged between every two adjacent sealing strips (17), and clamping blocks (24) are arranged on the fixed blocks (18), which are detachably arranged in clamping grooves (25) formed in the rod body of the rotating rod (16) between the adjacent sealing strips (17).
3. A defatted meal portioning apparatus according to claim 1 or 2, wherein: The storage assembly comprises a storage bin (6) arranged on the guide block (5) and internally connected with the inside of the guide channel (14).
4. The defatted soybean flour packaging apparatus according to claim 3, wherein: The packaging assembly comprises: Two limiting rotating rods (7) are arranged in parallel and symmetrically about the two sides of the guide block (5) and are rotatably connected to the supporting assembly at the ends; Two plastic rolls are arranged in parallel and symmetrically on the two sides of the guide block (5) and have plastic bag films wound thereon, and the two plastic bag films on the two plastic rolls pass through between the limiting rotating rods (7) and the guide block (5) respectively; Two edge sealing members are arranged on the left and right sides of the guide block (5) and longitudinally seal the adjacent edge portions of the two plastic bag films; A sealing member is arranged on the supporting assembly below the guide block (5) and transversely seals the two plastic bag films in two ways; A cutting member is arranged on the sealing member between the two sealing ways of the two plastic bag films.
5. The defatted meal portioning apparatus of claim 4, wherein: The edge sealing member comprises: Two first conveying belts (8) are arranged in the vertical direction and have their conveying surfaces abutting each other on one side to be arranged on one side of the guide block (5) to clamp and convey the edge portions of the two plastic bag films; Two second conveying belts (10) are arranged in the vertical direction below the two first conveying belts (8) and have their conveying surfaces abutting each other on one side to be arranged on one side of the guide block (5) to clamp and convey the edge portions of the two plastic bag films; Two edge sealing wheels (9) are arranged between the first conveying belt (8) and the second conveying belt (10) arranged above and below respectively, and the wheel surfaces are provided with heat sealing structures for heat sealing the edges of the plastic bag films; The first conveying belt (8), the second conveying belt (10) and the edge sealing wheel (9) are arranged on the supporting assembly.
6. The defatted meal portioning apparatus of claim 5, wherein: The sealing member comprises: A partition block (3) is arranged on the supporting assembly, a partition opening (4) is formed in the end surface of the partition block (3), and the partition block (3) is sleeved on the two edge-sealed plastic bag films, and the partition opening (4) is located below the guide block (5); Two groups of heat sealing strips (21) are arranged below the two limiting rotating rods (7) and in the partition opening (4), and each group of heat sealing strips (21) comprises two heat sealing strips arranged in parallel; The control structure is arranged on the partition block (3) and controls the mutual approaching of each group of two heat sealing strips (21) to transversely heat seal two plastic bag films.
7. A defatted meal portioning apparatus according to claim 6, wherein: The control structure comprises: Two groups of sealing blocks (11), each group of sealing blocks (11) has two sealing blocks (11), and each group of two sealing blocks (11) is arranged on the side away from each group of two heat sealing strips (21); Two linkage racks (19) are arranged between each group of two sealing blocks (11) and are connected to the side surfaces of different sealing blocks (11) at the ends away from each other; A linkage gear (20) is arranged between the two linkage racks (19) and is engaged with the linkage racks (19); A sealing cylinder is vertically arranged on the side surface of the partition block (3) and has an output end penetrating into the sealing port (4), and controls the two sealing blocks (11) arranged above and below in each group of sealing blocks (11) to move.
8. The defatted soy flour dispensing apparatus of claim 7, wherein: The cutting member comprises: A cutting knife (22) and an auxiliary block (23) are arranged between the two groups of sealing blocks (11) arranged above and below, the cutting knife (22) is fixedly connected to the sealing block (11), and the auxiliary block (23) is connected to the output end of the cutting cylinder arranged on the side surface of the partition block (3).