可角度调节的粉料输送器

By using the detachable structure of clamp A and clamp B and the hinged relationship of the adjustable support, the problem of the difficulty in quickly disassembling the existing powder conveyor is solved, realizing convenient maintenance and angle adjustment of the conveying cylinder, and ensuring the stability and continuity of milk powder conveying.

CN224512346UActive Publication Date: 2026-07-17SICHUAN PROVINCE YAAN QIANGJIANG FOOD CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SICHUAN PROVINCE YAAN QIANGJIANG FOOD CO LTD
Filing Date
2025-07-28
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

The existing powder conveyor uses welding to fix the body, shaft, and rotating shaft, which cannot be quickly disassembled. This results in the need for complete disassembly during maintenance, which is time-consuming and labor-intensive.

Method used

The material conveying cylinder is clamped by bolts using a detachable structure with clamps A and B. The angle of the material conveying cylinder can be adjusted by adjusting the hinge relationship between supports A and B. The lifting mechanism and conveying mechanism ensure the stability and accuracy of the conveying process.

Benefits of technology

It enables quick disassembly and maintenance of the feeding cylinder, facilitating component replacement, and allows for flexible adjustment of the conveying angle to ensure the stability and continuity of milk powder delivery.

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Abstract

本实用新型涉及输送器技术领域,尤其为可角度调节的粉料输送器,包括输料筒,所述输料筒的首尾两端夹持有两个夹持机构,首端处的所述夹持机构的两侧分别铰接于调节支座A的相对侧上端;尾端处的所述夹持机构的两侧分别铰接于调节支座B的相对侧,所述调节支座B顶部的左右两侧垂直贯穿有升降机构;所述输料筒的左右两侧内壁转动连接有输送机构。本装置通过夹持机构采用夹环A与夹环B螺栓螺接结构,能够快速将调节支座A、调节支座B和升降机构从输料筒两端拆卸下来,调节支座A通过插槽A和插板A,以及调节支座B通过插槽B和插板B,均能随夹持机构的拆卸而快速拆解,从而便于更换或维护部件结构,使得整体结构设计的拆卸维护更便捷和高效。
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Claims

1. An angle adjustable powder feeder comprising a feed cylinder (1), characterized in that: The feed cylinder (1) has two clamping mechanisms (2) at its two ends. The two sides of the clamping mechanism (2) at the first end are respectively hinged to the upper side of the adjusting support A (3). The clamping mechanism (2) at the tail end is hinged to the opposite sides of the adjusting support B (4) on both sides. The lifting mechanism (5) is vertically inserted through the top left and right sides of the adjusting support B (4). The conveying cylinder (1) is rotatably connected to the inner walls on both sides by a conveying mechanism (6); The bottom sides of the adjusting support A (3) are screwed to the top side of the supporting slide plate (7).

2. The angularly adjustable duster of claim 1, wherein: The two clamping mechanisms (2) include two clamping rings A (201), and clamping rings B (202) are screwed to the opposite sides of the two clamping rings A (201). The two sets of clamping rings A (201) and clamping rings B (202) are respectively clamped at the beginning and end of the feed cylinder (1). Ball rods (203) are provided on the left and right sides of the two sets of clamping rings A (201) and clamping rings B (202).

3. The angularly adjustable duster of claim 2, wherein: The adjusting support A (3) includes an L-shaped bracket A (301). The horizontal end of the L-shaped bracket A (301) is provided with a slot A (302). The slot A (302) is fitted with a plug plate A (303). The plug plate A (303) is located at the horizontal end of the L-shaped bracket B (304). The upper ends of the L-shaped bracket A (301) and L-shaped bracket B (304) on opposite sides are provided with ball grooves A (305). The ball grooves A (305) on both sides are respectively hinged to two ball rods (203) at the head position. The bottom ends of both sides of the L-shaped bracket A (301) and L-shaped bracket B (304) are provided with mounting screws (306). The two mounting screws (306) are screwed to the top side of the support slide plate (7).

4. The angularly adjustable duster of claim 2, wherein: The adjusting support B (4) includes a frame-type bracket A (401), with a slot B (402) at the horizontal end of the frame-type bracket A (401). A insert plate B (403) is engaged inside the slot B (402). The insert plate B (403) is located at the horizontal end of the frame-type bracket B (404). Ball grooves B (405) are provided on the upper opposite sides of the frame-type bracket A (401) and the frame-type bracket B (404). Two ball rods (203) at the tail positions are respectively hinged to the ball grooves B (405) on both sides. The ball grooves B (405) on both sides are provided with a slide bar (406) on the side near the frame bracket A (401) and frame bracket B (404). The opposite sides of the frame bracket A (401) and frame bracket B (404) are provided with a sliding groove (407). The slide bar (406) and the sliding groove (407) form a sliding connection. The bottom of the frame bracket A (401) and frame bracket B (404) is provided with a slider (408). The two sliders (408) are slidably connected to the top left and right sides of the support slide plate (7).

5. The angularly adjustable duster of claim 1, wherein: The conveying mechanism (6) includes a spiral conveying rod (601), the left and right ends of which are rotatably connected to the inner walls of the left and right sides of the conveying cylinder (1), and a drive motor (602) is inserted into one end of the spiral conveying rod (601).

6. The angularly adjustable duster of claim 4 wherein: The lifting mechanism (5) includes two lifting screws (501). The upper and lower ends of the two lifting screws (501) are rotatably connected to the upper and lower inner walls of the frame bracket A (401) and the frame bracket B (404), respectively. The outer walls of the two lifting screws (501) are respectively screwed with two ball grooves B (405). The top outer wall of one of the lifting screws (501) is sleeved with a main drive sprocket (502), and the top outer wall of the other lifting screw (501) is sleeved with a driven drive sprocket (503). The outer walls of the main drive sprocket (502) and the driven drive sprocket (503) are meshed with a drive chain (504). The top of the lifting screw (501) with the main drive sprocket (502) is inserted with a servo motor (505).