Special test rack for intelligent impurity removal device of potato seed cutting machine
The test frame for the intelligent impurity removal device of the potato seed cutter, constructed with aluminum profiles, solves the problem of difficult adjustment of traditional frames, enabling rapid adjustment and multiple uses, reducing costs and improving testing efficiency.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-23
- Publication Date
- 2026-04-14
AI Technical Summary
The welded frame of traditional potato seed cutters is difficult to adjust quickly and reuse multiple times, resulting in high testing costs and low efficiency. It is also difficult to integrate intelligent impurity removal equipment with seed cutters.
The test frame, constructed with aluminum profiles, allows for quick adjustment of component positions and angles via adjusting bolts and T-slot nuts. Combined with angle adjustment plates and threaded connections, it facilitates easy installation and disassembly and supports multiple reuses.
It enables the rapid acquisition of optimal operating parameters, reduces testing costs, improves testing efficiency, and protects optical equipment while allowing for material reuse.
Smart Images

Figure CN224114599U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of potato sorting and impurity removal equipment, and in particular to a special test frame for an intelligent impurity removal device for potato seed cutters. Background Technology
[0002] During the potato planting stage, seed potatoes used for cutting may contain debris such as stones and clods of soil. These debris can easily damage the cutting blades or other equipment after entering the seed cutter via the conveying device. Therefore, a debris removal device is needed to remove these impurities. Compared to traditional mechanical potato debris removal equipment, intelligent potato optical sorting and debris removal equipment is highly efficient and accurate in its identification, significantly accelerating the processing of harvested potato tubers. To determine the optimal operating parameters for the intelligent debris removal equipment in conjunction with the seed cutter, repeated testing and experimentation are often required to determine the installation positions and coordination relationships of various detection and debris removal mechanisms. Traditional welded steel frames are heavy, difficult to move, and the welded structure makes it difficult to quickly adjust structural parameters and reuse the equipment, leading to waste.
[0003] Therefore, a special test frame for an intelligent impurity removal device for potato seed cutters was designed to solve the above problems. Summary of the Invention
[0004] The purpose of this invention is to address the above-mentioned problems by researching and designing a special test frame for an intelligent impurity removal device for potato seed cutters. This frame allows for quick adjustment of the installation position and angle of each component, with a wide adjustment range and a simple and quick adjustment method. It can also be quickly installed and disassembled, and the metal profiles used can be reused, saving metal resources and reducing testing costs.
[0005] To achieve the above objectives, this utility model adopts the following technical solution: The dedicated test frame for the intelligent impurity removal device of a potato seed cutter mainly consists of a main frame, an infeed belt support, a backlight source support, a rejection belt support, an impurity removal mechanism support, an optical equipment box, an optical equipment box support, an outlet belt support, and feet. This frame is primarily constructed using aluminum profiles. After installing the intelligent impurity removal mechanism on each support, it can be used for joint testing with the potato seed cutter.
[0006] As a preferred embodiment of this utility model, the feed belt bracket, backlight source bracket, rejection belt bracket, and impurity removal mechanism bracket are installed on the main frame using heavy-duty 90° angle brackets, bolts, and slotted T-nuts. The installation height can be freely adjusted before tightening. The optical equipment box and discharge belt bracket are installed on the main frame using angle adjusting plates, bolts, and slotted T-nuts. The installation angle can be adjusted using the angle adjusting plates, and the installation position can also be freely adjusted before tightening. The feet are connected to the main frame by threads and nuts, and the main frame is leveled by the relative position of the threads and nuts.
[0007] By adopting the above technical solution, the special test frame for the intelligent impurity removal device of the potato seed cutter provided by this utility model has the following advantages compared with the prior art:
[0008] The aforementioned intelligent impurity removal device for potato seed cutters is a dedicated test frame that allows for quick adjustment of the installation position and angle of each component, rapid testing and experimentation of various operating parameters, and efficient determination of optimal operating parameters. The optical equipment operates within a sealed optical equipment box, facilitating adjustment while protecting the optical equipment from damage. All materials used to build the frame can be quickly disassembled and assembled, and the profiles and fasteners used can be recycled and reused, reducing costs. Attached Figure Description
[0009] Figure 1 This is an orthographic projection of the structural schematic diagram of the frame.
[0010] Figure 2 This is a side view of the structural schematic diagram of the frame.
[0011] The numbers in the diagram are explained as follows: 1. Main frame; 2. Feed belt bracket; 3. Backlight source bracket; 4. Rejection belt bracket; 5. Impurity removal mechanism bracket; 6. Optical equipment box; 7. Optical equipment box bracket; 8. Discharge belt bracket; 9. Foot. Detailed Implementation
[0012] The present invention will now be described in further detail with reference to the accompanying drawings and specific embodiments:
[0013] like Figure 1 Figure 2 The diagram shows a structural schematic of a test frame for an intelligent impurity removal device for a potato seed cutter according to this invention. This invention generally consists of a main frame 1; a feeding belt support 2; a backlight source support 3; a rejection belt support 4; an impurity removal mechanism support 5; an optical equipment box 6; an optical equipment box support 7; a discharge belt support 8; and feet 9.
[0014] like Figure 1 Figure 2 As shown, the main frame is connected by T-shaped connecting plates, L-shaped connecting plates, cross-shaped connecting plates, 90° heavy-duty corner brackets, bolts, elastic washers, and T-slot nuts. The feed belt bracket, rejection belt bracket, backlight source bracket, and impurity removal mechanism bracket are installed on the main frame by 90° heavy-duty corner brackets, bolts, elastic washers, and T-slot nuts. The optical equipment box bracket and rejection belt bracket are installed on the main frame by adjusting plates, bolts, elastic washers, and T-slot nuts. Changing the position of the fixing bolts on the adjusting plate can change the installation position of the optical equipment box and rejection belt bracket. Changing the installation height of the adjusting plate on the main frame can adjust the installation position of the optical equipment box and rejection belt.
[0015] The working principle of this utility model is explained below. After the main frame 1 of the machine is assembled, the position of the nuts on the feet 9 is first adjusted to level the main frame 1. Then, the front and rear positions and installation heights of the feed belt bracket 2, backlight source bracket 3, rejection belt bracket 4, and impurity removal mechanism bracket 5 are adjusted. The installation positions and installation angles of the optical equipment box bracket 7 and the discharge belt bracket 8 are adjusted using bolts and T-slot nuts on the angle adjustment plate. After adjustment, the above components are locked onto the main frame 1 using bolts and T-slot nuts. The feed belt, rejection belt, discharge belt, and impurity removal mechanism are installed on their respective brackets. To protect the precision equipment, optical equipment such as industrial cameras and industrial control computers are installed in the optical equipment box 6 and locked with bolts. After confirmation, the functional tests of each mechanism are started. During the test, the machine can be stopped at any time to adjust the position, angle, and other parameters of each bracket. After one round of testing is completed, the position and angle of the mechanism can be changed to conduct multiple rounds of testing.
Claims
1. A dedicated test frame for an intelligent impurity removal device for a potato seed cutter, comprising: The main frame (1), feed belt bracket (2), backlight source bracket (3), rejection belt bracket (4), impurity removal mechanism bracket (5), optical equipment box (6), optical equipment box bracket (7), discharge belt bracket (8), and foot (9) are characterized in that the main frame (1) is constructed from aluminum profiles, T-shaped connecting plates, cross-shaped connecting plates, L-shaped connecting plates, heavy-duty 90° angle brackets, bolts, elastic washers, and T-slot nuts; the feed belt bracket (2), backlight source bracket (3), and rejection belt bracket (4) are also described. The impurity removal mechanism bracket (5) is connected to the main frame (1) by a steering angle bracket, a heavy-duty 90° angle bracket, a T-shaped connecting plate, an L-shaped connecting plate, bolts, elastic washers, and T-slots with nuts. Its front and rear positions and installation height are adjustable. The optical equipment box bracket (7) and the discharge belt bracket (8) are connected to the main frame (1) by an adjustment plate, bolts, elastic washers, and T-slots with nuts. Their installation angle and position can be freely adjusted by the adjustment plate. The foot (9) is connected to the main frame (1) by its threads and nuts.