Adjustable thin plate positioning assembly
By designing an adjustable thin plate positioning assembly, the combination of movable mounting seat and cylinder push plate is used to adjust the thin plate positioning range, solving the problem of fixed positioning range in the prior art, and improving positioning accuracy and safety.
Patent Information
- Application Number
- CN202422276935.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-18
- Publication Date
- 2025-07-04
- Estimated Expiration
- 2034-09-18
AI Technical Summary
The positioning range of the existing thin plate positioning device is fixed and cannot be adjusted according to the material and specification changes of the thin plate, resulting in damage to the thin plate during processing.
An adjustable thin plate positioning assembly is designed to slide and fix in the slide groove through a movable mount. Combined with the movement of the Y-axis and X-axis cylinder push plates, adjustable positioning of the thin plate is achieved, and is equipped with glue strips and fiber optic sensors to prevent clamping and detect position.
The size range of thin plate positioning is improved, prevents pinch injuries, reduces the situation of not being positioned normally, and enhances positioning accuracy and safety.
Smart Images

Figure CN223057543U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of thin plate positioning devices, and particularly relates to an adjustable thin plate positioning assembly. Background Technique
[0002] With the continuous progress of production technology, the production process of thin plate materials has become more and more mature. From the selection of raw materials, processing and forming to high-temperature firing, among which, during the production and processing of thin plates, it is necessary to position them.
[0003] When positioning a thin plate in the prior art device, the positioning range of the positioning device is usually fixed. However, due to the material and specification limitations of the thin plate, it is necessary to adjust the positioning assembly according to different models of thin plates. If the positioning clamping force of the positioning assembly cannot be adjusted with the change of the material and specification of the thin plate, it is inevitable that the thin plate will be damaged during the processing. Content of the Utility Model
[0004] The purpose of the utility model is to provide an adjustable thin plate positioning assembly to solve the problems raised in the above background technique.
[0005] To achieve the above purpose, the utility model provides the following technical solution: including a clamping bottom plate, a chute is opened on the clamping bottom plate, an active mounting seat one, an active mounting seat two and an active mounting seat three are respectively and sequentially slidably connected in the chute, a Y-axis cylinder is installed at one end of the active mounting seat one, an X-axis cylinder one and an X-axis cylinder two are respectively installed on the active mounting seat two and the active mounting seat three, a Y-axis push plate is installed at the telescopic end of the Y-axis cylinder, X-axis push plates are installed at the telescopic ends of the X-axis cylinder one and the X-axis cylinder two, a clamping side fixing plate is arranged on one side of the X-axis push plate, and a gap for accommodating a thin plate is provided between the clamping side fixing plate and the X-axis push plate.
[0006] As a preferred scheme, the active mounting seat one, the active mounting seat two and the active mounting seat three are respectively fixed to the chute through fasteners.
[0007] As a preferred scheme, the Y-axis cylinder is vertically distributed with the X-axis cylinder one and the X-axis cylinder two.
[0008] As a preferred scheme, rubber strips for buffering are attached to the front ends of the Y-axis push plate and the X-axis push plate.
[0009] As a preferred scheme, air blowing holes are opened at the lower ends of the X-axis push plates.
[0010] As a preferred solution, a Y-axis adjustment limit seat for slidably and adaptively connecting with the Y-axis push plate and restricting the movement position of the Y-axis push plate is arranged on the first movable mounting seat, and X-axis adjustment limit seats for slidably and adaptively connecting with the X-axis push plate and restricting the movement position of the X-axis push plate are arranged at one ends of the second movable mounting seat and the third movable mounting seat respectively.
[0011] As a preferred solution, multiple groups of fiber optic sensors for detecting the position of the thin plate are arranged on the clamping side fixing plate.
[0012] Compared with the prior art, the beneficial effects of the utility model are as follows:
[0013] When the device is in use, first, according to the size of the thin plate to be positioned, the first movable mounting seat, the second movable mounting seat and the third movable mounting seat slide inside the chute to adjust the positions of the first movable mounting seat, the second movable mounting seat and the third movable mounting seat, and then fix the positions through fasteners. Then, place the thin plate in the gap between the clamping side fixing plate and the X-axis push plate. Then, start the Y-axis cylinder to drive the Y-axis push plate to move and push the thin plate in the direction of the Y-axis push plate. When the thin plate is pushed to the position where the X-axis push plate is located, start the first X-axis cylinder and the second X-axis cylinder to clamp the thin plate in the direction of the X-axis push plate, thus completing the positioning process and increasing the range of sizes of thin plates that can be positioned by the device.
[0014] In addition, during the above process, the device prevents the thin plate from being clamped or scratched by the rubber strips arranged at the front ends of the Y-axis push plate and the X-axis push plate, and reduces the situation that the thin plate does not fall into the predetermined range normally through the arranged fiber optic sensors. Description of the Drawings
[0015] Figure 1 It is a front view schematic diagram of the overall structure of the utility model;
[0016] Figure 2 It is a top view schematic diagram of the overall structure of the utility model.
[0017] In the figure: 1, clamping bottom plate; 2, clamping side fixing plate; 3, chute; 4, first movable mounting seat; 5, second movable mounting seat; 6, third movable mounting seat; 7, Y-axis cylinder; 8, first X-axis cylinder; 9, second X-axis cylinder; 10, Y-axis push plate; 11, X-axis push plate; 12, X-axis adjustment limit seat; 13, Y-axis adjustment limit seat; 14, fiber optic sensor. Detailed Embodiments
[0018] Next, the technical solutions in the embodiments of the utility model will be clearly and completely described in conjunction with the drawings in the embodiments of the utility model.
[0019] Please refer to Figures 1 to 2, the present utility model provides an adjustable thin plate positioning assembly, including a clamping bottom plate 1. A chute 3 is opened on the clamping bottom plate 1. An activity mounting base one 4, an activity mounting base two 5 and an activity mounting base three 6 are respectively and sequentially slidably connected in the chute 3. The activity mounting base one 4, the activity mounting base two 5 and the activity mounting base three 6 are respectively fixed to the chute 3 through fasteners. During use, the positions of the activity mounting base one 4, the activity mounting base two 5 and the activity mounting base three 6 can be adjusted by sliding them inside the chute 3, and then fixed in position through fasteners. One end of the activity mounting base one 4 is equipped with a Y-axis cylinder 7. An X-axis cylinder one 8 and an X-axis cylinder two 9 are respectively installed on the activity mounting base two 5 and the activity mounting base three 6. A Y-axis push plate 10 is installed at the telescopic end of the Y-axis cylinder 7. X-axis push plates 11 are installed at the telescopic ends of the X-axis cylinder one 8 and the X-axis cylinder two 9. Since the positions of the activity mounting base one 4, the activity mounting base two 5 and the activity mounting base three 6 can be changed by moving inside the chute 3, they can be adjusted according to the usage requirements of different models, sizes or applicable scenarios, thus facilitating the subsequent positioning process;
[0020] A clamping side fixing plate 2 is arranged on one side of the X-axis push plate 11. There is a gap between the clamping side fixing plate 2 and the X-axis push plate 11 that can accommodate the thin plate. The Y-axis cylinder 7 is vertically distributed with the X-axis cylinder one 8 and the X-axis cylinder two 9. The clamping side fixing plate 2 is installed on the edge of the clamping bottom plate 1 close to the X-axis push plate 11. During use, first place the thin plate to be positioned into the gap between the clamping side fixing plate 2 and the X-axis push plate 11, and then start the Y-axis cylinder 7 to drive the Y-axis push plate 10 to move, pushing the thin plate in the direction of the Y-axis push plate 10. When the thin plate is pushed to the position where the X-axis push plate 11 is located, start the X-axis cylinder one 8 and the X-axis cylinder two 9 to clamp the thin plate in the direction of the X-axis push plate 11, thus completing the fixing process. It should be noted that the magnitudes of the driving forces of the Y-axis cylinder 7, the X-axis cylinder one 8 and the X-axis cylinder two 9 of this device can be switched between large and small pressures through externally provided solenoid valves and pressure regulating valves. The control methods of the solenoid valves and the pressure regulating valves both belong to the prior art and will not be elaborated here.
[0021] Please refer to Figures 1 to 2 , rubber strips for buffering are attached to the front ends of the Y-axis push plate 10 and the X-axis push plate 11. By attaching the buffering rubber strips to the front ends of the Y-axis push plate 10 and the X-axis push plate 11, it can prevent the Y-axis push plate 10 and the X-axis push plate 11 from pinching or scratching the thin plate.
[0022] Please refer to Figures 1 to 2, a blow hole is provided at the lower end of the X-axis push plate 11. By providing a blow hole at the lower end of the X-axis push plate 11, at an appropriate time, air can be blown to the contact part between the thin plate and the X-axis push plate 11 through devices such as an external air valve and an air pipe, so as to keep the module clean. The connection and use methods of devices such as the air valve and the air pipe all belong to the prior art and will not be elaborated here.
[0023] Please refer to Figures 1 to 2 , a Y-axis adjustment limit seat 13 for slidably and adaptively connecting with the Y-axis push plate 10 and used to limit the movement position of the Y-axis push plate 10 is provided on the movable mounting seat one 4. The Y-axis adjustment limit seat 13 is arranged at one end of the movable mounting seat one 4. By slidably and adaptively connecting with the Y-axis push plate 10, the movement path of the Y-axis push plate 10 is restricted, so as to avoid deviation in the movement of the Y-axis push plate 10. X-axis adjustment limit seats 12 for slidably and adaptively connecting with the X-axis push plate 11 and used to limit the movement position of the X-axis push plate 11 are arranged at one end of both the movable mounting seat two 5 and the movable mounting seat three 6. The X-axis adjustment limit seats 12 are arranged at one end of the movable mounting seat two 5 and the movable mounting seat three 6. By slidably and adaptively connecting with the X-axis push plate 11, the movement path of the X-axis push plate 11 is restricted, so as to avoid deviation in the movement of the X-axis push plate 11. Through the settings of the X-axis adjustment limit seat 12 and the Y-axis adjustment limit seat 13, the accuracy of the device is improved.
[0024] Please refer to Figures 1 to 2 , a plurality of optical fiber sensors 14 for detecting the position of the thin plate are provided on the clamping side fixing plate 2. Specifically, two groups of optical fiber sensors 14 are installed on the clamping side fixing plate 2 to detect whether the thin plate normally falls into the predetermined range and avoid the situation where the thin plate is not in the predetermined range. The control method and the function implementation method of the optical fiber sensor 14 both adopt the content recorded in the prior art and will not be elaborated here.
[0025] The working principle of this device is as follows: First, according to the size of the thin plate to be positioned, the movable mounting seat one 4, the movable mounting seat two 5 and the movable mounting seat three 6 slide inside the chute 3 to adjust the positions of the movable mounting seat one 4, the movable mounting seat two 5 and the movable mounting seat three 6, and then fix the positions with fasteners. Then, place the thin plate in the gap between the clamping side fixing plate 2 and the X-axis push plate 11. Then, start the Y-axis cylinder 7 to drive the Y-axis push plate 10 to move and push the thin plate in the direction of the Y-axis push plate 10. When the thin plate is pushed to the position where the X-axis push plate 11 is located, start the X-axis cylinder one 8 and the X-axis cylinder two 9 to clamp the thin plate in the direction of the X-axis push plate 11, thus completing the positioning process;
[0026] In addition, during the above process, this device prevents the thin plate from being pinched or scratched by the rubber strips provided at the front ends of the Y-axis push plate 10 and the X-axis push plate 11, and reduces the situation where the thin plate does not normally fall into the predetermined range through the provided optical fiber sensors 14.
[0027] Although the present utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or perform equivalent replacements for some of the technical features. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present utility model shall be included within the protection scope of the present utility model.
Claims
1. An adjustable thin plate positioning assembly, comprising a clamping bottom plate (1), characterized in that: A chute (3) is formed in the clamping base plate (1). An active mounting seat one (4), an active mounting seat two (5) and an active mounting seat three (6) are respectively and sequentially slidably connected in the chute (3). One end of the active mounting seat one (4) is provided with a Y-axis cylinder (7). An X-axis cylinder one (8) and an X-axis cylinder two (9) are respectively arranged on the active mounting seat two (5) and the active mounting seat three (6). A Y-axis push plate (10) is arranged at the telescopic end of the Y-axis cylinder (7). Telescopic ends of the X-axis cylinder one (8) and the X-axis cylinder two (9) are both provided with an X-axis push plate (11). A clamping side fixing plate (2) is arranged on one side of the X-axis push plate (11). A gap for accommodating a thin plate is formed between the clamping side fixing plate (2) and the X-axis push plate (11).
2. The adjustable thin plate positioning assembly according to claim 1, wherein: The active mounting seat one (4), the active mounting seat two (5) and the active mounting seat three (6) are respectively fixed to the chute (3) through fasteners.
3. An adjustable thin plate positioning assembly according to claim 1, characterized in that: The Y-axis cylinder (7) is vertically distributed with the X-axis cylinder one (8) and the X-axis cylinder two (9).
4. The adjustable thin plate positioning assembly according to claim 1, wherein: Rubber strips for buffering are attached to the front ends of the Y-axis push plate (10) and the X-axis push plate (11).
5. The adjustable thin plate positioning assembly according to claim 1, characterized in that: An air blowing hole is formed in the lower end of the X-axis push plate (11).
6. The adjustable thin plate positioning assembly according to claim 1, wherein: A Y-axis adjustment limit seat (13) which is slidably and adaptively connected with the Y-axis push plate (10) and used for limiting the movement position of the Y-axis push plate (10) is arranged on the active mounting seat one (4). X-axis adjustment limit seats (12) which are slidably and adaptively connected with the X-axis push plate (11) and used for limiting the movement position of the X-axis push plate (11) are arranged at one ends of the active mounting seat two (5) and the active mounting seat three (6).
7. The adjustable thin plate positioning assembly according to claim 1, characterized in that: Multiple groups of optical fiber sensors (14) for detecting the position of the thin plate are arranged on the clamping side fixing plate (2).