Adjustable discharging device capable of adapting to strip-shaped products of different specifications
By designing an adjustable feeding device, the high cost problem of fixed feeding devices when the specifications of strip profiles change is solved, and flexible adaptation and efficient feeding and transportation of strip products of different specifications are realized.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-30
- Publication Date
- 2026-03-17
AI Technical Summary
The existing feeding device is fixed, which means that the feeding device needs to be replaced when the specifications of the strip profile products change, increasing costs.
An adjustable feeding device was designed. By adjusting the relative position of the upper and lower plates through the lateral adjustment component, and combined with the pushing mechanism, material shaking component and material feeding component, the storage length in the material box and the width of the feeding port can be flexibly adjusted to adapt to different specifications of strip products.
It enables flexible adaptation to different specifications of strip products, improves the efficiency and flexibility of material unloading and transportation, and reduces the cost of replacing equipment.
Smart Images

Figure CN224000528U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of strip profile feeding devices, and in particular to an adjustable feeding device that can adapt to strip products of different specifications. Background Technology
[0002] Strip profiles refer to long, strip-shaped metal materials with specific cross-sectional shapes, widely used in mechanical engineering, construction, transportation, and other fields. They are mainly used for processing and assembly.
[0003] Due to the wide demand for strip profiles, they are produced and transported in industry. During the material handling process, the following points need to be considered: Because different industries require different strip profiles, the specifications and dimensions of the produced strip profiles are often updated to adapt to changing industry needs, such as changing their length and width. If the material handling equipment is fixed, a matching equipment must be installed whenever the produced strip profiles are changed, which can lead to higher costs. Utility Model Content
[0004] In order to overcome the shortcomings of the above-mentioned situation, this utility model aims to provide a technical solution that can solve the above problems.
[0005] An adjustable feeding device adaptable to strip products of different specifications includes an upper plate and a lower plate stacked together. A lateral adjustment component is provided between the upper and lower plates to adjust their relative lateral position. An elongated hole is provided between the upper and lower plates, connecting their upper and lower sides for the strip profile to fall into. A material shaking component installation area is located at the upper end of the upper plate, and a material feeding component assembly area is located at the lower end of the lower plate. A material box is provided in the material shaking component installation area, and the material box is open at both the upper and lower ends. The interior is hollow, and the inside of the material box is used to hold strip profiles. The material shaking component installation area is also equipped with a pushing mechanism connected to the material box, which is used to guide and push the material box. The material feeding component assembly area is equipped with a fixing block, and a vertical strip extending into the elongated hole is connected to the fixing block. An adjustment component is provided between the fixing block and the vertical strip to adjust the displacement of the vertical strip. The material feeding component assembly area is also equipped with a partition that can seal the elongated hole, and a drive mechanism connected to the partition. The drive mechanism can drive the partition to seal or open the elongated hole.
[0006] Furthermore, there are two fixing blocks, which are arranged opposite each other on the left and right sides below the elongated hole.
[0007] Furthermore, the lateral adjustment assembly includes lateral slots in the upper and lower plates, with locking screws inside the slots to lock the assembly of the upper and lower plates.
[0008] Furthermore, the pushing mechanism includes slides located at the left and right ends of the material box, with guide sliders provided on the slides, and connecting plates provided on the sliders, the connecting plates being fixed to the material box; the pushing mechanism also includes a pushing motor assembled on the upper end of the upper plate, the end of the driving shaft of the pushing motor being fixed to the material box.
[0009] Furthermore, the inner sidewalls of the material box are provided with multiple insertion holes, into which insert plates can be inserted to adjust the length of the internal space of the material box.
[0010] Furthermore, the adjusting component is a plate integrally formed with the vertical strip, and there is a striped hole along the X-axis between the plate and the fixing block, with an adjusting screw inside the striped hole.
[0011] Furthermore, there are two material shaking component installation areas at the upper end of the upper plate and two material feeding component assembly areas at the lower end of the lower plate.
[0012] The beneficial effects of this utility model are:
[0013] (1) This system is used for feeding and transporting strip products. It is designed to be easy to adjust so as to change the storage length in the material box and the width of the feeding port, thereby adapting to strip products of different specifications and achieving flexible allocation.
[0014] (2) Two sets of designs are adopted on the upper and lower plates to improve the efficiency of material unloading and transportation.
[0015] Additional aspects and advantages of this invention will be set forth in part in the description which follows, and in part will be obvious from the description, or may be learned by practice of the invention. Attached Figure Description
[0016] Figure 1 This is a schematic diagram of the assembly structure of the upper end face of this utility model.
[0017] Figure 2 This is a schematic diagram of the assembly structure of the lower end face of this utility model.
[0018] Figure 3 For based on Figure 1 Schematic diagram of the exploded structure of the upper and middle end faces.
[0019] Figure 4 For based on Figure 2 Schematic diagram of the exploded structure of the lower middle end face.
[0020] Figure 5 For based on Figure 4 Schematic diagram of the partial structure of the lower middle end face.
[0021] The labels in the attached figures are as follows:
[0022] Detailed Implementation
[0023] The technical solutions in the embodiments of this utility model will be clearly and completely described below. Obviously, the described embodiments are only some embodiments of this utility model, and not all embodiments. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of this utility model.
[0024] Please see Figures 1-5 This utility model includes an upper plate 1 and a lower plate 2 that are stacked and assembled. A lateral adjustment component 3 is provided between the upper plate 1 and the lower plate 2, which can adjust the relative lateral position between the upper plate 1 and the lower plate 2. An elongated hole 6 is provided between the upper plate 1 and the lower plate 2, which connects the upper and lower parts and is used for the strip profile to fall into. The upper end of the upper plate 1 is provided with a material shaking component installation area 4, and the lower end of the lower plate 2 is provided with a material feeding component assembly area 5. A material box 401 is provided in the material shaking component installation area 4. The material box 401 is open at the top and bottom and hollow inside. The inside of the material box 401 is used to place the strip profile. The material shaking component installation area 4 is also equipped with a pushing mechanism 402 connected to the material box 401. The pushing mechanism 402 is used to guide and push the material box 401. The material feeding component assembly area 5 is equipped with a fixing block 501. The fixing block 501 is externally connected to a vertical strip 502 extending into the elongated hole 6. An adjustment component is provided between the fixing block 501 and the vertical strip 502 to adjust the displacement of the vertical strip 502. The material feeding component assembly area 5 is also equipped with a partition 503 that can seal the elongated hole 6, and a driving mechanism 504 connected to the partition 503. The driving mechanism 504 can drive the partition 503 to seal or open the elongated hole 6.
[0025] The technical solution mainly involves assembling the upper plate 1 and the lower plate 2 to form a load-bearing component. The upper plate 1 and the lower plate 2 are assembled in a stacked and adjustable manner (specifically, a lateral adjustment component 3 is provided between the upper plate 1 and the lower plate 2 to adjust the relative lateral position between the upper plate 1 and the lower plate 2).
[0026] The upper plate 1 has a material shaking component installation area 4, which is used to assemble accessories for product storage and unloading. The lower plate 2 has a material unloading component assembly area 5, which is used to assemble and block the unloading and transportation of the product to the next process. There are two material shaking component installation areas 4 at the upper plate 1 and two material unloading component assembly areas 5 at the lower plate 2. That is, there are two installation areas on one carrier, and corresponding accessories are assembled to realize the unloading and transportation of the product, thereby speeding up the unloading and transportation efficiency of the strip products.
[0027] The components assembled on the upper plate 1 and the lower plate 2 are as follows:
[0028] The material shaking component installation area 4 includes a material box 401, which is open at the top and bottom and hollow inside. The inside of the material box 401 is used to hold strip profiles. The material shaking component installation area 4 also includes a pushing mechanism 402 connected to the material box 401. The pushing mechanism 402 guides and pushes the material box 401. The pushing mechanism 402 includes slide rails 403 at the left and right ends of the material box 401, with guide sliders 404 on the slide rails 403. A connecting plate 405 is provided on the slider 404, and the connecting plate 405 is fixed to the material box 401. The pushing mechanism 402 also includes a pushing motor 406 assembled on the upper plate 1, with the drive shaft end of the pushing motor 406 fixed to the material box 401. Its working principle is as follows: the strip profiles to be unloaded and transported are stored in the material box 401, and the strip profiles fall through the elongated holes 6 on the upper plate 1 and lower plate 2. The dropping method adopted is a shaking type, specifically driven by the motor 406 to push the material box 401 back and forth, and the shaking state is achieved by frequency adjustment. The slide rail 403, slider 404 and connecting plate 405 are used to ensure the stable linear guiding movement of the material box 401, thereby realizing the smooth feeding of the strip profile.
[0029] The material feeding assembly area 5 is provided with a fixing block 501. A vertical strip 502 extends into the elongated hole 6 and is connected to the fixing block 501. An adjustment component is provided between the fixing block 501 and the vertical strip 502 to adjust the displacement of the vertical strip 502. At the same time, there are two fixing blocks 501, which are arranged opposite each other on the left and right sides below the elongated hole 6. The adjustment component is a plate 507 integrally formed with the vertical strip 502. A striped hole 508 along the X-axis is provided between the plate 507 and the fixing block 501. An adjustment screw 509 is provided in the striped hole 508.
[0030] The function of the adjusting component is to move the plates 507 on the left and right fixed blocks 501 to bring the vertical strips 502 extending into the elongated holes 6 closer or further away. Since the width spacing of the elongated holes 6 is fixed, the width spacing is adjusted by the adjustable vertical strips 502, thereby adapting to strip products of different widths for stable drop during transportation. Specifically, the plate 507 is assembled by cooperating with the striped holes 508 and adjusting screws 509. The spacing of the elongated holes 6 can be adjusted by the displacement of the plate 507 within the striped holes 508, thus accommodating strip profiles of different widths for stable drop.
[0031] The material feeding assembly area 5 is also provided with a partition 503 that can seal the elongated hole 6, and a drive mechanism 504 connected to the partition 503. The drive mechanism 504 can drive the partition 503 to seal or open the elongated hole 6. As shown in the figure, the partition 503 connected to the drive mechanism 504 is located below the two fixed blocks 501 on the left and right sides. Under the drive of the drive mechanism 504, the partition 503 can block the gap between the two fixed blocks 501 below the elongated hole 6 or open it.
[0032] Meanwhile, to accommodate long profiles of different lengths, the storage length within the material box 401 can be adjusted (mainly to accommodate the compactness of the internal long profiles, making it easier for the internal long profiles to vibrate compactly when pushed by the pushing mechanism 402, thereby accommodating the stable drop of long profiles of different lengths into the long slot 6). The specific structural components are as follows: the material box 401 also has multiple insertion holes 505 on opposite side walls, into which insertion plates 506 can be inserted. The insertion plates 506 are used to adjust the length of the internal space of the material box 401.
[0033] The length of the elongated hole 6 itself can also be adjusted. Since the plate 507 and the lower plate 2 are stacked and assembled, the relative lateral position of the two is changed by the lateral adjustment component 3 between the upper plate 1 and the lower plate 2, thereby shortening or expanding the length of the elongated hole 6. Specifically, the lateral adjustment component 3 includes a lateral slot 301 located between the upper plate 1 and the lower plate 2. A locking screw 302 is provided in the lateral slot 301, and the assembly of the upper plate 1 and the lower plate 2 is locked by the locking screw 302.
[0034] The above description is merely a preferred embodiment of the present utility model and is not intended to limit the present utility model in any way. Although the present utility model has been disclosed above with reference to a preferred embodiment, it is not intended to limit the present utility model. Any person skilled in the art can make some changes or modifications to the above-disclosed technical content to create equivalent embodiments without departing from the scope of the present utility model. Any simple modifications, equivalent changes, and modifications made to the above embodiments based on the present utility model without departing from the scope of the present utility model shall fall within the scope of the present utility model.
Claims
1. An adjustable discharging device for strip products of different specifications, comprising an upper plate (1) and a lower plate (2) assembled in a stack, a transverse adjustment assembly (3) being arranged between the upper plate (1) and the lower plate (2) to adjust the relative transverse position between the upper plate (1) and the lower plate (2), a long hole (6) being arranged between the upper plate (1) and the lower plate (2) to allow the strip product to fall into the long hole (6); an upper end of the upper plate (1) is provided with a material shaking assembly mounting area (4), and a lower end of the lower plate (2) is provided with a material discharging assembly assembling area (5); the material shaking assembly mounting area (4) is provided with a material box (401), the material box (401) is hollow and open at the upper end and the lower end, and the material box (401) is used for placing the strip product; the material shaking assembly mounting area (4) is further provided with a pushing mechanism (402) connected with the material box (401), and the pushing mechanism (402) is used for guiding and pushing the material box (401); the material discharging assembly assembling area (5) is provided with a fixed block (501), the fixed block (501) is provided with a vertical strip (502) extending into the long hole (6), and an adjusting piece is arranged between the fixed block (501) and the vertical strip (502) to adjust the displacement of the vertical strip (502); the material discharging assembly assembling area (5) is further provided with a partition plate (503) capable of sealing the long hole (6) and a driving mechanism (504) connected with the partition plate (503), and the driving mechanism (504) can drive the partition plate (503) to seal or open the long hole (6). The fixed block (501) corresponds to two blocks and is arranged on the left and right sides below the long hole (6). The transverse adjustment assembly (3) comprises a transverse slot (301) arranged on the upper plate (1) and the lower plate (2), and a locking screw (302) arranged in the transverse slot (301) to lock the assembly of the upper plate (1) and the lower plate (2).
4. The adjustable discharging device for strip products of different specifications according to claim 1, wherein the pushing mechanism (402) comprises a slide (403) arranged on the left and right ends of the material box (401), the slide (403) is provided with a sliding block (404) for guiding sliding, the sliding block (404) is provided with a connecting plate (405), and the connecting plate (405) is fixed with the material box (401); the pushing mechanism (402) further comprises a pushing motor (406) assembled on the upper end of the upper plate (1), and an end of a driving shaft of the pushing motor (406) is fixed with the material box (401). The opposite side walls of the material box (401) are further provided with a plurality of insertion holes (505), and an insertion plate (506) is inserted into the insertion holes (505), and the insertion plate (506) is used for adjusting the length of the internal space of the material box (401). The adjusting piece is a plate (507) integrally formed with the vertical strip (502), a stripe hole (508) along the X axis is arranged between the plate (507) and the fixed block (501), and an adjusting screw (509) is arranged in the stripe hole (508). 2. The adjustable product unloading device of claim 1, wherein: 3. The adjustable downer according to claim 1, wherein: 5. The adjustable product unloading device of claim 1, wherein: 6. The adjustable downer according to claim 1, wherein: 7. An adjustable feeding device adaptable to strip products of different specifications, characterized in that: The material shaking assembly mounting area (4) at the upper end of the upper plate (1) is two, and the material discharging assembly mounting area (5) at the lower end of the lower plate (2) is two.