Continuous flow powder accumulation scale
By introducing sensors and weighing control instruments into the cumulative weigher, combined with the elevator, the flow rate monitoring and automatic replenishment of powder materials are realized, solving the problem that the existing cumulative weigher cannot monitor the flow rate and improving the efficiency of use.
Patent Information
- Application Number
- CN202520440331.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-13
- Publication Date
- 2026-01-02
- Estimated Expiration
- 2035-03-13
AI Technical Summary
The existing cumulative scale cannot monitor the flow rate during use, which makes it impossible to determine the amount of material to be fed and affects the efficiency of use.
A continuous flow powder cumulative scale was designed. The scale uses sensors and weighing control instruments to detect the weight in the weighing hopper in real time. It is equipped with a hoist to achieve automatic material replenishment and ensure that the feed flow rate is maintained within the set range.
It enables real-time monitoring of the feeding amount and automatic replenishment, improving efficiency.
Smart Images

Figure CN223756139U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the technical field of cumulative scale, specifically relates to continuous flow powder cumulative scale. BACKGROUND
[0002] Cumulative scale is also called flow scale, and is a special equipment designed for the storage statistics, discharge measurement and intermediate measurement of various processes of gap type particles or powder materials.
[0003] Cumulative scale is generally used in the material conveying process, and the weight of the material is accumulated during the conveying process through the uniform speed of the conveying belt.
[0004] However, the existing cumulative scale cannot monitor the flow when being used, so that the material quantity cannot be grasped, and the use efficiency is affected. UTILITY MODEL CONTENT
[0005] In view of the problems in the above background technology, the utility model aims at providing a continuous flow powder cumulative scale.
[0006] In order to achieve the above technical purpose, the utility model adopts the following technical scheme:
[0007] The continuous flow powder cumulative scale comprises a mounting frame, a base is installed at the top of the mounting frame, a sensor is installed at the top of the base, a weighing barrel is installed at the top of the sensor, a discharge channel is arranged at one side of the bottom of the weighing barrel, a conveying auger is installed in the discharge channel, a stirring frame is rotatably installed at the inside upper side of the weighing barrel, a conveying motor and a stirring motor are installed at the outside of the weighing barrel, the power output end of the conveying motor is connected with the conveying auger, and the power output end of the stirring motor is connected with the stirring frame.
[0008] Further limited, the top of the weighing barrel is provided with a barrel cover, and the top of the barrel cover is provided with a discharging port. Such a structure design facilitates the discharging of the powder.
[0009] Further limited, one side of the mounting frame is provided with a powder supplementing box, a powder tank in a horn structure is arranged in the powder supplementing box, a hoist is installed at the bottom output end of the powder tank, and the output end of the hoist is arranged at the top of the weighing barrel. Such a structure design facilitates the material supplementing work.
[0010] Further limited, the output end of the discharge channel is connected with a powder feeder, and the powder feeder is arranged at the lower side of the discharge channel. Such a structure design facilitates the output of the powder.
[0011] Further limited, the sensor is further connected with an instrument, and the instrument is installed on the mounting frame. Such a structure design facilitates the real-time monitoring of the running flow, so that the workers can grasp the material quantity in real time.
[0012] The utility model discloses beneficial effect is: the utility model discloses through sensor and weighing control instrument real -time detection the weight in the weighing barrel, determines its weight, after conveying, it is convenient to real -time monitoring operation flow, and the matching elevator realizes automatic material supplement, guarantees the flow when the feeder feeding can maintain at the nearby of setting flow, and then improves use efficiency. BRIEF DESCRIPTION OF DRAWINGS
[0013] The utility model discloses can further illustrate through the non - limiting example of drawing;
[0014] Figure 1 It is the structure schematic diagram of continuous flow powder cumulative scale of the utility model embodiment;
[0015] The main element symbol explanation is as follows:
[0016] Mounting frame 1, base 2, sensor 3, weighing barrel 4, discharge channel 5, conveying auger 6, stirring frame 7, conveying motor 8, stirring motor 9, barrel cover 10, discharge port 11, powder supplement tank 12, powder tank 13, elevator 14, powder feeder 15, instrument 16. DETAILED DESCRIPTION
[0017] In order to make the person skilled in the art can better understand the utility model, the utility model technical scheme is further explained below with the drawings and examples.
[0018] As Figure 1 The utility model discloses continuous flow powder cumulative scale, the top of mounting frame 1 is installed with base 2, the top of base 2 is installed with sensor 3, the top of sensor 3 is installed with weighing barrel 4, and the bottom one side of weighing barrel 4 is equipped with discharge channel 5, and conveying auger 6 is installed in discharge channel 5, and stirring frame 7 is rotatably installed on the inside upper side of weighing barrel 4, and conveying motor 8 and stirring motor 9 are installed on the outside of weighing barrel 4, the power output end of conveying motor 8 is connected with conveying auger 6, and the power output end of stirring motor 9 is connected with stirring frame 7.
[0019] Preferably, the top of weighing barrel 4 is provided with barrel cover 10, and the top of barrel cover 10 is provided with discharge port 11. Such a structure design facilitates the discharge of powder. In fact, other structural shapes of barrel cover 10 can also be considered according to specific conditions.
[0020] Preferably, one side of mounting frame 1 is provided with powder supplement tank 12, the powder supplement tank 12 is provided with powder tank 13 in a horn structure, the powder supplement tank 12 is provided with elevator 14 at the bottom output end of powder tank 13, and the output end of elevator 14 is arranged at the top of weighing barrel 4. Such a structure design facilitates the material supplement work. In fact, other structural shapes of powder supplement tank 12 can also be considered according to specific conditions.
[0021] Preferably, the output end of the discharging channel 5 is connected with a powder feeder 15, which is arranged at the lower side of the discharging channel 5. Such a structure design facilitates the output of the powder. In fact, other structure shapes of the powder feeder 15 can also be considered according to specific conditions.
[0022] Preferably, the sensor 3 is further connected with an instrument 16, which is installed on the mounting frame 1. Such a structure design facilitates the real-time monitoring of the running flow, so that the workers can master the feeding amount in real time. In fact, other structure shapes of the instrument 16 can also be considered according to specific conditions.
[0023] In use, in the embodiment, the sensor 3 detects the powder in the weighing bucket 4 to determine its weight, and then the conveying motor 8 and the stirring motor 9 are started, so that the stirring motor 9 drives the stirring frame 7 to stir the powder in the weighing bucket 4, and the conveying motor 8 drives the conveying auger 6 to convey the powder in the weighing bucket 4. When conveying, the weight in the weighing bucket 4 is detected in real time by the sensor 3 and displayed on the instrument 16, so as to facilitate the real-time monitoring of the running flow and the subsequent control of the feeding amount. When feeding is needed, the hoist 14 is started to convey the powder in the powder tank 13 into the weighing bucket 4, so as to achieve the effect of automatic feeding, and the feeding flow can be maintained near the set flow in combination with the value monitored by the sensor 3. After the powder in the conveying auger 6 is output and falls into the powder feeder 15, the powder feeder 15 performs the conveying work.
[0024] The above embodiment only exemplarily illustrates the principle and effect of the present application, and is not used to limit the present application. Any person skilled in the art can modify or change the above embodiment without departing from the spirit and scope of the present application. Therefore, all equivalent modifications or changes completed by those skilled in the art without departing from the spirit and technical thought of the present application should be covered by the claims of the present application.
Claims
1. A continuous flow powder accumulation scale, characterized by: Including the mounting frame (1), the top of the mounting frame (1) is installed with the base (2), the top of the base (2) is installed with the sensor (3), the top of the sensor (3) is installed with the weighing bucket (4), the bottom side of the weighing bucket (4) is provided with the discharge channel (5), the discharge channel (5) is installed with the conveying auger (6), the inside upper side of the weighing bucket (4) is rotatably installed with the stirring frame (7), the outside of the weighing bucket (4) is installed with the conveying motor (8) and the stirring motor (9), the power output end of the conveying motor (8) is connected with the conveying auger (6), the power output end of the stirring motor (9) is connected with the stirring frame (7).
2. The continuous flow powder accumulation scale of claim 1, wherein: The top of the weighing bucket (4) is installed with the bucket cover (10), the top of the bucket cover (10) is provided with the discharging port (11).
3. The continuous flow powder accumulation scale of claim 2, wherein: One side of the mounting frame (1) is provided with the powder supplementing box (12), the powder supplementing box (12) is internally provided with the powder tank (13) arranged in a horn structure, the powder supplementing box (12) is installed with the elevator (14) at the bottom output end of the powder tank (13), the output end of the elevator (14) is arranged at the top of the weighing bucket (4).
4. The continuous flow powder accumulation scale of claim 3, wherein: The output end of the discharge channel (5) is connected with the powder feeder (15), the powder feeder (15) is arranged at the lower side of the discharge channel (5).
5. The continuous flow powder accumulation scale of claim 4, wherein: The sensor (3) is further connected with the instrument (16), and the instrument (16) is installed on the mounting frame (1). The top of the weighing bucket (4) is installed with the bucket cover (10), the top of the bucket cover (10) is provided with the discharging port (11).