Guar gum pulping equipment
By using a blower-feeding and multi-point feeding mechanism, the problems of clogging and clumping of guar gum powder were solved, improving the flowability and mixing uniformity of guar gum powder and increasing the working efficiency of the pulping equipment.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- JIANGSU GUANGMING BIOTECHNOLOGY R&D CENT CO LTD
- Filing Date
- 2025-04-11
- Publication Date
- 2026-04-10
AI Technical Summary
In existing guar gum powder pulping equipment, concentrated feeding of the hopper leads to blockage, powder agglomeration affects mixing efficiency, and excessive feeding at one time can easily cause accumulation and agglomeration.
The system employs a blower-driven feeding mechanism and a multi-point flushing feeding mechanism. Guar gum powder is blown in by a blower and fed evenly at multiple points using an inclined guide shell, thus avoiding blockage and clumping.
It prevents clogging and clumping, improves the flowability and mixing uniformity of guar gum powder, and increases pulping efficiency.
Smart Images

Figure CN224100482U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to guar gum production technical field, especially relate to guar gum pulping equipment. BACKGROUND
[0002] Guar gum is a natural gum made from the endosperm of guar beans. Before use, the guar gum raw material needs to be pulped. The guar gum pulping equipment is a device specially used for guar gum production. Its core function is to convert raw materials into guar gum pulp through a series of mechanical and automated processes.
[0003] Currently, the guar gum powder is generally added to the pulping cylinder with a stirring mechanism through a hopper. However, a single hopper for feeding can cause concentrated feeding, and the accumulated powder or clumped powder after being soaked can easily block the discharge port of the hopper during discharging. In addition, excessive one-time feeding can cause guar gum powder to accumulate above the pulp surface, which can easily clump after absorbing water, affecting uniform mixing efficiency. Therefore, a guar gum pulping equipment that can continuously feed a small amount of material without blocking is needed to solve the problems in the prior art. SUMMARY
[0004] The purpose of the utility model is to provide a guar gum pulping equipment to solve the problems raised in the background.
[0005] To achieve the above purpose, the utility model provides the following technical scheme: a guar gum pulping equipment, comprising a pulping stirring cylinder, a stirring mechanism with a motor is arranged inside the pulping stirring cylinder, a blast feeding mechanism is arranged on one side of the pulping stirring cylinder, the blast feeding mechanism comprises a blast feeding box, a blast pipe and a blower, the blast feeding box is arranged on one side of the pulping stirring cylinder, the blast pipe is fixed on one side surface of the blast feeding box, the blower is arranged at the upper end of the blast pipe, a flushing multi-point feeding mechanism is arranged between the blast feeding box and the pulping stirring cylinder, the flushing multi-point feeding mechanism comprises a first material guide shell and a second material guide shell, the first material guide shell is fixed on one side surface of the blast feeding box, and the second material guide shell is also fixed on one side surface of the blast feeding box.
[0006] It is worth mentioning that a blast port is arranged between the blast pipe and the blast feeding box, and a storage chamber is arranged below the first material guide shell in the inner region of the blast feeding box.
[0007] Further, a flow gap is arranged between one end of the first material guide shell and the inner side wall of the blast feeding box, and the first material guide shell and the second material guide shell are inclinedly arranged in the blast feeding box.
[0008] Further need to explain is, the first material guide shell and the second material guide shell are internally provided with material guide channels, and the lower ends of the first material guide shell and the second material guide shell are provided with material guide outlets.
[0009] As a preferred embodiment, the side surface of the paddle manufacturing stirring barrel is provided with a first feeding port, and the side surface of the paddle manufacturing stirring barrel is provided with a second feeding port above the first feeding port.
[0010] As a preferred embodiment, the first material guide shell is communicated with the first feeding port, and the second material guide shell is communicated with the second feeding port.
[0011] Compared with the prior art, the guar gum pulping equipment has at least the following beneficial effects:
[0012] The air blowing and feeding mechanism is used to feed the powder into the paddle manufacturing stirring barrel in the blowing powder mode, so that the effect of small amount and continuous anti-blocking feeding can be realized, and the guar gum powder that can be blown up can ensure that there is no caked material into the paddle manufacturing stirring barrel.
[0013] The flushing multi-point feeding mechanism is used to uniformly feed the powder at multiple positions of the first material guide shell and the second material guide shell, so that the trouble of increasing uniform mixing difficulty due to caking of the powder after water absorption can be reduced, and the pulp liquid centrifugally rolled up by the stirring mechanism can flow into the first material guide shell and the second material guide shell to realize the effect of flushing and rolling up the material, so that the flowability and flow range of the pulp can be improved during the feeding process. BRIEF DESCRIPTION OF DRAWINGS
[0014] Figure 1 It is a perspective view of the overall structure of the utility model;
[0015] Figure 2 It is a perspective view of the air blowing and feeding box of the utility model;
[0016] Figure 3 It is a perspective view of the material storage chamber structure of the utility model;
[0017] Figure 4 It is a perspective view of the first feeding port structure of the utility model.
[0018] In the drawing: 1, paddle manufacturing stirring barrel; 2, air blowing and feeding box; 3, blowing pipeline; 4, air blower; 5, material storage chamber; 6, flow-through gap; 7, blowing port; 8, first material guide shell; 9, second material guide shell; 10, material guide channel; 11, material guide outlet; 12, first feeding port; 13, second feeding port; 14, stirring mechanism. DETAILED DESCRIPTION
[0019] In order to make the purpose, technical scheme and advantages of the embodiments of the utility model clearer, the technical scheme in the embodiments of the utility model will be described clearly and completely in combination with the drawings in the embodiments of the utility model below. Obviously, the described embodiments are part of the embodiments of the utility model, rather than all the embodiments. The components of the embodiments of the utility model described and shown in the drawings herein can be arranged and designed in various different configurations.
[0020] Please refer to Figures 1-4 The utility model provides guar gum pulping equipment, including making paddle stirring drum 1, the inside of making paddle stirring drum 1 is provided with the agitating mechanism 14 of motor, one side of making paddle stirring drum 1 is provided with air blowing feeding mechanism, and air blowing feeding mechanism includes air blowing feeding box 2, air blowing pipeline 3 and air blower 4, air blowing feeding box 2 sets up one side of making paddle stirring drum 1, air blowing pipeline 3 is fixed in the one side surface of air blowing feeding box 2, and air blower 4 sets up in the upper end of air blowing pipeline 3, and air blowing feeding box 2 is provided with flushing multi-point feeding mechanism between making paddle stirring drum 1, and flushing multi-point feeding mechanism includes first material guide shell 8 and second material guide shell 9, and first material guide shell 8 is fixed in the one side surface of air blowing feeding box 2, and second material guide shell 9 is also fixed in the one side surface of air blowing feeding box 2.
[0021] Further as Figure 1 , Figure 2 and Figure 3 It is worth noting that the air blowing pipeline 3 and the air blowing feeding box 2 are provided with an air blowing port 7, and the inner region of the air blowing feeding box 2 is provided with a material storage chamber 5 below the first material guide shell 8.
[0022] Further as Figure 3 It is worth noting that the air blowing pipeline 3 and the air blowing feeding box 2 are provided with an air blowing port 7, and the inner region of the air blowing feeding box 2 is provided with a material storage chamber 5 below the first material guide shell 8.
[0023] The scheme has the following working process: before use, the guar gum powder is loaded into the material storage chamber 5 of the air blowing feeding box 2, then the air blower 4 is started, and the air flow generated by the operation of the air blower 4 is introduced into the air blowing feeding box 2 through the air blowing pipeline 3, at this time, the guar gum powder is blown and diffused in the inner cavity of the air blowing feeding box 2, and the blown guar gum powder is added into the making paddle stirring drum 1 through the flow gap 6, the first material guide shell 8 and the second material guide shell 9, the air blowing powder feeding method can realize the effect of small amount and continuous anti-blocking feeding, and the blown guar gum powder can ensure that there is no caking material added into the making paddle stirring drum 1.
[0024] According to the above working process, using the blowing powder method to add material to the paddle stirring cylinder 1 can achieve the effect of preventing blockage of the small amount of continuous feeding, and the blown guar gum powder can ensure that there is no trouble of adding caked material to the paddle stirring cylinder 1.
[0025] Further as shown in Figure 1 , Figure 2 and Figure 4 , it is worth noting that the first material guide shell 8 and the second material guide shell 9 are both provided with material guide channels 10, and the lower ends of the first material guide shell 8 and the second material guide shell 9 are both provided with material guide outlets 11. During the feeding process of the first material guide shell 8 and the second material guide shell 9, the first material guide shell 8 is arranged below the pulp liquid surface, and the second material guide shell 9 is arranged above the pulp liquid surface. Thus, using the first material guide shell 8 and the second material guide shell 9 to uniformly feed at multiple locations can reduce the difficulty of uniformly mixing caused by the accumulation and caking of the powder after water absorption, and when the pulp liquid is centrifugally rolled up by the stirring mechanism 14, the pulp liquid flowing into the first material guide shell 8 and the second material guide shell 9 can achieve the effect of flushing the rolled material, thus improving the flowability and flow range of the pulp during the feeding process.
[0026] Further as shown in Figure 4 , it is worth noting that the first material guide shell 8 and the second material guide shell 9 are both provided with material guide channels 10, and the lower ends of the first material guide shell 8 and the second material guide shell 9 are both provided with material guide outlets 11. During the feeding process of the first material guide shell 8 and the second material guide shell 9, the first material guide shell 8 is arranged below the pulp liquid surface, and the second material guide shell 9 is arranged above the pulp liquid surface. Thus, using the first material guide shell 8 and the second material guide shell 9 to uniformly feed at multiple locations can reduce the difficulty of uniformly mixing caused by the accumulation and caking of the powder after water absorption, and when the pulp liquid is centrifugally rolled up by the stirring mechanism 14, the pulp liquid flowing into the first material guide shell 8 and the second material guide shell 9 can achieve the effect of flushing the rolled material, thus improving the flowability and flow range of the pulp during the feeding process.
[0027] Further as shown in Figure 1 , it is worth noting that the first material guide shell 8 and the second material guide shell 9 are both provided with material guide channels 10, and the lower ends of the first material guide shell 8 and the second material guide shell 9 are both provided with material guide outlets 11. During the feeding process of the first material guide shell 8 and the second material guide shell 9, the first material guide shell 8 is arranged below the pulp liquid surface, and the second material guide shell 9 is arranged above the pulp liquid surface. Thus, using the first material guide shell 8 and the second material guide shell 9 to uniformly feed at multiple locations can reduce the difficulty of uniformly mixing caused by the accumulation and caking of the powder after water absorption, and when the pulp liquid is centrifugally rolled up by the stirring mechanism 14, the pulp liquid flowing into the first material guide shell 8 and the second material guide shell 9 can achieve the effect of flushing the rolled material, thus improving the flowability and flow range of the pulp during the feeding process.
[0028] In summary, using the blowing powder method to add material to the paddle stirring cylinder 1 can achieve the effect of preventing blockage of the small amount of continuous feeding, and the blown guar gum powder can ensure that there is no trouble of adding caked material to the paddle stirring cylinder 1; using the first material guide shell 8 and the second material guide shell 9 to uniformly feed at multiple locations can reduce the difficulty of uniformly mixing caused by the accumulation and caking of the powder after water absorption, and the pulp liquid flowing into the first material guide shell 8 and the second material guide shell 9 can achieve the effect of flushing the rolled material, thus improving the flowability and flow range of the pulp during the feeding process.
[0029] The basic principle and main features of the present application and the advantages of the present application are shown and described above. Although the embodiments of the present application have been shown and described, the patent scope of the present application is not limited thereby, and any equivalent structure or equivalent process conversion using the content of the present application specification and drawings, or direct or indirect application in other related technical fields, are also included in the patent protection scope of the present application. As for the embodiment content of the present application, it can be understood by those skilled in the art that the embodiments can be changed, modified, replaced and modified in various ways without departing from the principle and spirit of the present application, and the scope of the present application is defined by the appended claims and their equivalents.
Claims
1. A guar gum pulping apparatus comprising a pulping bowl (1), characterised in that: The inside of the paddle making stirring barrel (1) is provided with a stirring mechanism (14) with a motor, one side of the paddle making stirring barrel (1) is provided with a blast feeding mechanism, the blast feeding mechanism comprises a blast feeding box (2), a blast pipeline (3) and a blower (4), the blast feeding box (2) is arranged on one side of the paddle making stirring barrel (1), the blast pipeline (3) is fixed on one side surface of the blast feeding box (2), the blower (4) is arranged on the upper end of the blast pipeline (3), a flushing multi-point feeding mechanism is arranged between the blast feeding box (2) and the paddle making stirring barrel (1), the flushing multi-point feeding mechanism comprises a first material guide shell (8) and a second material guide shell (9), the first material guide shell (8) is fixed on one side surface of the blast feeding box (2), and the second material guide shell (9) is also fixed on one side surface of the blast feeding box (2).
2. The guar gum slurrying apparatus of claim 1, wherein: A blast port (7) is arranged between the blast pipeline (3) and the blast feeding box (2), and a storage chamber (5) is arranged below the first material guide shell (8) in the inner region of the blast feeding box (2).
3. The guar gum slurrying apparatus of claim 2, wherein: A flow gap (6) is arranged between one end of the first material guide shell (8) and the inner side wall of the blast feeding box (2), and the first material guide shell (8) and the second material guide shell (9) are arranged obliquely in the blast feeding box (2).
4. The guar gum slurrying apparatus of claim 3, wherein: Material guide channels (10) are formed in the interiors of the first material guide shell (8) and the second material guide shell (9), and material guide outlets (11) are formed in the lower ends of the first material guide shell (8) and the second material guide shell (9).
5. The guar gum slurrying apparatus of claim 4, wherein: A first feeding port (12) is formed in the side surface of the paddle making stirring barrel (1), and a second feeding port (13) is arranged above the first feeding port (12) in the side surface of the paddle making stirring barrel (1).
6. The guar gum slurrying apparatus of claim 5, wherein: The first material guide shell (8) is connected with the first feeding port (12), and the second material guide shell (9) is connected with the second feeding port (13).