Imprinting mechanism for ink testing

The ink testing stamping mechanism is automated by a transmission assembly driven by a rotary motor, solving the problem of inconsistent force caused by manual stamping and improving the accuracy of ink formula adjustment and operator work efficiency.

CN223420367UActive Publication Date: 2025-10-10ZHUHAI PINSHENG TECH CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202422654559.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-31
Publication Date
2025-10-10
Estimated Expiration
2034-10-31

AI Technical Summary

Technical Problem

During the debugging process of existing ink formulas, manual pressing of the substrate results in inconsistent force, affecting the ink color performance and formula adjustment, and the labor intensity of the operator is high.

Method used

The seal is linked to a transmission assembly driven by a rotary motor to achieve automatic imprinting of the substrate, control the seal force, reduce experimental errors and reduce operator labor intensity.

Benefits of technology

By automatically controlling the stamp pressing force, the experimental error of ink color performance is reduced, and the accuracy of ink formula adjustment and the operator's work efficiency are improved.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223420367U_ABST
    Figure CN223420367U_ABST
Patent Text Reader

Abstract

The utility model discloses an imprinting mechanism for ink testing, which comprises an operation table, a fixing frame is arranged on the operation table, a transmission rod is rotationally arranged on the fixing frame, a first transmission assembly is arranged at one end of the transmission rod, and a second transmission assembly is arranged at the other end of the transmission rod. The second transmission assembly is provided with an installation position used for being connected with a fixed seal, the first transmission assembly is connected with a rotating motor, the operation table is provided with a testing area used for placing a base material, and the first transmission assembly is in linkage with the second transmission assembly to swing under the action of the rotating motor. And the seal on the second transmission assembly is impressed on the base material. The first transmission assembly and the second transmission assembly are in linkage through the rotating motor to swing, so that the seal is impressed on the base material, in the whole process, the acting force of the seal on the base material can be controlled, and the experiment error is reduced; in addition, an operator only needs to place the base material in a test area, so that the labor intensity is reduced.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The utility model particularly relates to an imprinting mechanism for ink testing. Background Art

[0002] During the ink formulation design process, the same ink will show different ink colors when printed on different substrates. Therefore, after the ink formulation is debugged, substrate printing tests are often performed to observe the ink colors on different substrates so that the formulation can be adjusted later. Existing substrate printing tests mainly rely on manual testing, such as injecting ink into a stamp and manually pressing the stamp to print the ink on different substrates. However, this operation method has the following disadvantages:

[0003] The stamp needs to be pressed manually. After many tests, the operator's hands tend to become weak. In addition, the force of each press is judged by the operator based on experience. Therefore, the force exerted by the stamp on the substrate during the test may vary. This difference will directly affect the performance of the ink color. The debugging of the ink formula depends on the ink color difference observed by the operator, which means that it will directly affect the direction of the formula adjustment. Utility Model Content

[0004] The utility model aims to solve at least one of the technical problems existing in the prior art. To this end, the utility model provides an ink testing stamping mechanism.

[0005] In order to solve the above-mentioned technical problems, the present invention adopts the following technical solutions:

[0006] A stamping mechanism for ink testing includes an operating table, a fixed frame is provided on the operating table, a transmission rod is rotatably provided on the fixed frame, a first transmission assembly is provided at one end of the transmission rod, a second transmission assembly is provided at the other end of the transmission rod, a mounting position for connecting and fixing a seal is provided on the second transmission assembly, a rotating motor is connected to the first transmission assembly, a test area for placing a substrate is provided on the operating table, and the first transmission assembly is linked to the second transmission assembly to swing under the action of the rotating motor so that the seal on the second transmission assembly is imprinted on the substrate.

[0007] Preferably, the first transmission assembly includes a first swing arm arranged on a transmission rod, a first linkage rod is rotatably arranged on the first swing arm, a swivel is connected to the first linkage rod, a turntable is rotatably fitted inside the swivel, and the rotating motor drives the turntable to rotate eccentrically to link the first linkage rod and the first swing arm to swing.

[0008] Preferably, the fixing frame is provided with a movable groove for the swivel to move.

[0009] Preferably, the second transmission assembly includes a second swing arm symmetrically arranged on a fixed frame, the two second swing arms are connected to a mounting frame for rotation together, one of the second swing arms is connected to a transmission rod, and the seal is detachably mounted on the mounting frame. The transmission rod drives the second swing arm and the mounting frame to swing under the action of external force, so that the linked seal swings.

[0010] Preferably, a fixing block is provided at the lower end of the mounting frame, the mounting position is opened on the fixing block, and the seal is detachable from the fixing block.

[0011] Preferably, a bolt is provided on the fixing block, and one end of the bolt passes through the fixing block and is connected to the seal.

[0012] Preferably, a protective pad is bonded to the operating table.

[0013] The beneficial effects of the utility model are:

[0014] The present application uses a rotating motor to link the first transmission assembly and the second transmission assembly to swing, so that the seal is imprinted on the substrate. During the entire process, the force exerted by the seal on the substrate can be controlled, reducing experimental errors. In addition, the operator only needs to place the substrate in the test area, reducing labor intensity. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] The above and / or additional aspects and advantages of the present invention will become apparent and readily understood from the description of the embodiments in conjunction with the following drawings, in which:

[0016] Figure 1 This is a schematic diagram of the structure of an ink testing stamping mechanism for this application Figure 1 ;

[0017] Figure 2 This is a schematic diagram of the structure of an ink testing stamping mechanism for this application Figure 2 ;

[0018] Figure 3 This is a schematic diagram of the structure of an ink testing stamping mechanism for this application Figure 3 . DETAILED DESCRIPTION

[0019] The embodiments of the present invention are described in detail below. Examples of the embodiments are shown in the accompanying drawings, wherein the same or similar numbers throughout represent the same or similar elements or elements with the same or similar functions.

[0020] The orientation shown in the drawings cannot be understood as limiting the specific protection scope of the present invention. It is only for reference and understanding of the preferred embodiments. The product components shown in the drawings can be changed in position, increased in number, or simplified in structure.

[0021] The “connection” described in the specification and the mutual “connection” relationship of the components shown in the drawings may be understood as a fixed connection, a detachable connection, or an integral connection; it may be a direct connection or a connection through an intermediate medium. Those skilled in the art may understand the connection relationship according to the specific circumstances and may derive different implementation methods in an appropriate manner by means of screwing, riveting, welding, snapping, or splicing.

[0022] For the directional words such as up, down, left, right, top, and bottom described in the specification and the directions shown in the drawings, the components may be in direct contact or in contact through other features between them; for example, "above" can mean directly above or obliquely above, or it simply means higher than other objects; other directions can also be understood by analogy.

[0023] The materials used to make the parts with solid shapes shown in the specification and the drawings may be metal materials, non-metal materials, or other synthetic materials; the mechanical processing techniques used for the parts with solid shapes may be stamping, forging, casting, wire cutting, laser cutting, injection molding, CNC milling, 3D printing, machining, etc.; ordinary technicians in this field can adaptively select or combine them according to different processing conditions, costs, and precision, but are not limited to the above-mentioned materials and manufacturing processes.

[0024] An ink testing stamping mechanism, referring to Figure 1-Figure 3 , including an operating table 1, a fixed frame 2 is provided on the operating table 1, a transmission rod 3 is rotatably provided on the fixed frame 2, a first transmission component is provided at one end of the transmission rod 3, and a second transmission component is provided at the other end of the transmission rod 3, a mounting position for connecting and fixing a seal 4 is provided on the second transmission component, a rotating motor 5 is connected to the first transmission component, and a test area for placing a substrate 6 is provided on the operating table 1. The first transmission component is linked to the second transmission component to swing under the action of the rotating motor 5, so that the seal 4 on the second transmission component is imprinted on the substrate 6.

[0025] Furthermore, the first transmission assembly includes a first swing arm 71 arranged on the transmission rod 3, a first linkage rod 72 is rotatably arranged on the first swing arm 71, a swivel 73 is connected to the first linkage rod 72, a turntable 74 is rotatably fitted inside the swivel 73, and the rotating motor 5 drives the turntable 74 to rotate eccentrically to link the first linkage rod 72 and the first swing arm 71 to swing.

[0026] Furthermore, the fixing frame 2 is provided with a movable groove 731 for the swivel 73 to move.

[0027] Furthermore, the second transmission assembly includes a second swing arm 81 symmetrically arranged on the fixed frame 2, and the two second swing arms 81 are connected to the mounting frame 82 for rotation together, one of the second swing arms 81 is connected to the transmission rod 3, and the seal 4 is detachably mounted on the mounting frame 82. Under the action of external force, the transmission rod 3 drives the second swing arm 81 and the mounting frame 82 to swing, so that the linked seal 4 swings.

[0028] Furthermore, a fixing block 9 is provided at the lower end of the mounting frame 82 , the mounting position is opened on the fixing block 9 , and the seal 4 can be detached from the fixing block 9 .

[0029] Furthermore, a bolt 10 is provided on the fixing block 9 , and one end of the bolt 10 passes through the fixing block 9 and is connected to the seal 4 .

[0030] Furthermore, a protection pad 11 is bonded to the operating table 1 .

[0031] The working principle of this utility model is:

[0032] As Example 1, Figure 1 As shown, the stamping mechanism is in a non-working state at this time. When it is needed to work, the substrate 6 to be stamped is placed in the test area on the operating table 1, and then the rotary motor 5 is started. Since the rotary motor 5 is connected to the first transmission component, and the first transmission component is connected to the second transmission component through the transmission rod 3, when the rotary motor 5 drives the first transmission component to swing, it will also link the second transmission component to swing. The seal 4 is installed on the second transmission component, so the seal 4 will be stamped on the substrate 6 during the swinging process of the second transmission component. When testing, the operator places the substrates 6 one by one in the test area of ​​the operating table 1, and can replace the substrates 6 one by one, thereby performing stamping tests on different substrates 6. The swing interval time of the first transmission component and the second transmission component can be achieved by controlling the rotation frequency of the rotary motor 5.

[0033] As Example 1, the first transmission component can be implemented by selecting the first swing arm 71, the first linkage rod 72 and the turntable 74 structure. The specific implementation method is: the rotating motor 5 is installed on the fixed frame 2, and a movable groove 731 is opened on the fixed frame 2. The rotating motor 5 drives the turntable 74 to rotate eccentrically. Since the turntable 74 moves in the rotating ring 73, it will drive the rotating ring 73 to swing in the movable groove 731, and the rotating ring 73 is connected to the first swing arm 71 through the first linkage rod 72. Therefore, the rotating ring 73 will link the first linkage rod 72 and the first swing arm 71 during the swinging process. Therefore, the first swing arm 71 links the transmission rod 3, and the transmission rod 3 thereby links the second transmission component to drive the seal 4 to swing.

[0034] As an embodiment 1, the second transmission assembly can be selected to be realized by the structure cooperation of the second swing arm 81 and the mounting frame 82, and the specific design principle is that two second swing arms 81 are symmetrically arranged on the fixed frame 2, one of the second swing arms 81 is connected to the transmission rod 3, and the mounting frame 82 is commonly connected between the two second swing arms 81, when the transmission rod 3 rotates, the second swing arm 81 connected to the transmission rod 3 swings, and the second swing arm 81 connected to the transmission rod 3 swings through the mounting frame 82 to drive the other second swing arm 81 to swing, in this way, the two second swing arms 81 drive the mounting frame 82 to swing back and forth in the process of swinging, and the stamp 4 is installed on the mounting frame 82, so the stamp 4 can be linked to press on the base material 6.

[0035] Regarding the mounting manner of the stamp 4 on the mounting frame 82, a mounting position can be formed on the mounting frame 82, the mounting position can be a fixed block 9 arranged inwardly recessed, the upper end of the stamp 4 is fixed on the mounting position, and then the stamp 4 can be locked by a bolt 10 or the like locking member.

[0036] On the basis of the above technical solution, when the stamp 4 is not needed to be pressed, the stamp 4 is in a non-working state, and a protective pad 11 is attached to the operation table 1, the protective pad 11 provides support for the stamp 4 on the one hand, and plays a buffering role on the other hand, preventing the stamp 4 from being placed on the operation table 1 for a long time to cause indentation on the surface of the operation table 1.

[0037] The test mentioned above injects ink into the stamp 4, and determines the improvement direction of the formula according to the color performance of the ink pressed on different base materials 6 by the stamp 4, where the ink is also called ink in the technical field, and the improvement of the formula generally focuses on wetting agent, toning material and the like.

[0038] The first transmission assembly and the second transmission assembly are linked by the rotary motor 5 to swing, so that the stamp 4 is pressed on the base material 6, in the whole process, the force of the stamp 4 acting on the base material 6 can be controlled, and the experimental error is reduced; in addition, the operator only needs to place the base material 6 in the test area, and the labor intensity is reduced.

[0039] Although the utility model is described in detail with reference to the above embodiment, it is obvious to those skilled in the art through the disclosure that various changes or modifications can be made to the utility model without departing from the principle and spirit of the utility model defined in the claims, therefore, the detailed description of the embodiment of the disclosure is only used for explanation, not for limiting the utility model, and the protection range is defined by the content of the claims.

Claims

1. An ink testing stamping mechanism, characterized in that: The invention comprises an operating table (1), a fixing frame (2) is provided on the operating table (1), a transmission rod (3) is rotatably provided on the fixing frame (2), a first transmission assembly is provided at one end of the transmission rod (3), a second transmission assembly is provided at the other end of the transmission rod (3), a mounting position for connecting and fixing a seal (4) is provided on the second transmission assembly, a rotating motor (5) is connected to the first transmission assembly, a test area for placing a substrate (6) is provided on the operating table (1), and the first transmission assembly is linked to the second transmission assembly to swing under the action of the rotating motor (5), so that the seal (4) on the second transmission assembly is imprinted on the substrate (6).

2. The ink testing stamping mechanism according to claim 1, characterized in that: The first transmission assembly comprises a first swing arm (71) arranged on a transmission rod (3); a first linkage rod (72) is rotatably arranged on the first swing arm (71); a rotating ring (73) is connected to the first linkage rod (72); a rotating disk (74) is rotatably fitted in the rotating ring (73); the rotating motor (5) drives the rotating disk (74) to rotate eccentrically, thereby linking the first linkage rod (72) and the first swing arm (71) to swing.

3. The ink testing stamping mechanism according to claim 2, characterized in that: The fixing frame (2) is provided with a movable groove (731) for the rotating ring (73) to move.

4. The ink testing stamping mechanism according to claim 2, characterized in that: The second transmission assembly comprises second swing arms (81) symmetrically arranged on a fixing frame (2), the two second swing arms (81) being connected to a mounting frame (82) in a rotating manner, one of the second swing arms (81) being connected to a transmission rod (3), the seal (4) being detachably mounted on the mounting frame (82), and the transmission rod (3) driving the second swing arms (81) and the mounting frame (82) to swing under the action of an external force, so as to cause the linked seal (4) to swing.

5. The ink testing stamping mechanism according to claim 4, characterized in that: A fixing block (9) is provided at the lower end of the mounting frame (82), the mounting position is opened on the fixing block (9), and the seal (4) can be detached from the fixing block (9).

6. The ink testing stamping mechanism according to claim 2, characterized in that: A bolt (10) is provided on the fixing block (9), and one end of the bolt (10) passes through the fixing block (9) and is connected to the seal (4).

7. The ink testing stamping mechanism according to claim 2, characterized in that: A protective pad (11) is bonded to the operating table (1).