Ink-jet stripping clamp
By designing inkjet deduplication fixtures, using the coordination of the guide shaft and the positioning shaft, the problem of the inkjet clamp is difficult to control during the deduplication process, and a stable and safe deduplication operation is achieved, improving the deduplication efficiency and product quality.
Patent Information
- Application Number
- CN202422755601.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-12
- Publication Date
- 2025-09-02
- Estimated Expiration
- 2034-11-12
AI Technical Summary
The existing inkjet jigs have difficulty controlling the strength during the deduplication process, which can easily lead to product pollution and low deduplication efficiency. Especially under the size limitations of inkjet machines and baking furnaces, the edges of inkjet jigs cannot be expanded, and workers lack focus points, resulting in inconvenience in deduplication.
An inkjet deduplication fixture is designed, including a top material base plate, a movable plate, a material plate and a press plate. Through the coordination of the guide shaft and the positioning shaft, the translational movement of the material plate is realized, and the design of elastic parts and press plates ensures the stability and direction control of the deduplication process.
Improve material removal efficiency, avoid product pollution, ensure product quality, simplify operation procedures, and improve operation convenience and safety.
Smart Images

Figure CN223290536U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of clamps, in particular to an inkjet stripping clamp. Background Art
[0002] Inkjet curing generally refers to the process of using UV-curable inks, which are rapidly dried and cured by ultraviolet (UV) radiation during printing in an inkjet printer or inkjet printer. UV-curable inks undergo rapid drying and curing when exposed to UV radiation, causing monomers to polymerize into a solid film. UV-curable inks are widely used in packaging printing, label printing, electronic product identification, and other fields.
[0003] During the inkjet process, a robot is usually used to load the product into the inkjet fixture, and inkjet one side of the product, i.e., the upper surface, is sprayed. After the inkjet product is dried and solidified, it needs to be removed from the inkjet fixture. The existing removal process is to manually place the inkjet fixture on the corresponding top block, and then press down by hand to remove the product from the inkjet fixture, thus completing this process. In the existing technology, due to the size limitations of the inkjet machine and the baking oven, as well as the factors of production capacity, the edges of the inkjet fixture cannot be made larger, and workers lack a fulcrum when removing the material, making it inconvenient to grasp and apply force; the force of the removal during pressing is difficult to control, and excessive force may cause the product to fall, causing pollution; the inkjet fixture will shake in the horizontal direction, and the removal direction cannot be controlled. The hand is likely to touch the product, causing pollution, affecting product quality; and the removal efficiency is low. Utility Model Content
[0004] Based on this, it is necessary to address the above problems and the present invention provides an inkjet stripping fixture.
[0005] In order to achieve the above purpose, the utility model adopts the following technical solutions:
[0006] An inkjet stripping fixture, comprising:
[0007] The top material bottom plate has a plurality of guide shafts and a top block vertically arranged on the upper surface, and the guide shaft is higher than the top block; the movable plate is located above the top block and is provided with a guide hole corresponding to the guide shaft, which can be passed through the guide hole to perform translational movement on the guide shaft, and a plurality of positioning shafts and a placement slot are vertically provided on the upper surface of the movable plate, and the positioning shaft is distributed outside the placement slot, and an elastic member is also provided between the top material bottom plate and the movable plate for rebounding the movable plate in the direction away from the top material bottom plate; the material plate can be detachably placed in the placement slot, and a plurality of material slots are provided on the material plate, and a material hole is provided in the middle of the material slot, and the top block can pass through the material hole; the pressing plate includes a positioning hole, and the pressing plate can pass through the positioning shaft or detach from the positioning shaft through the positioning hole, and the pressing plate can press the material plate and the movable plate downward toward the top material bottom plate so that the top block passes through the material hole.
[0008] In some embodiments, a spring shaft is vertically arranged on the top material bottom plate, the movable plate is provided with a spring hole, the spring shaft is passed through the spring hole, the elastic member is a spring, the spring is sleeved on the spring shaft, and both ends of the spring are in elastic contact with the lower surface of the top material bottom plate and the upper surface of the movable plate.
[0009] In some embodiments, a fixed blocking piece is provided on the spring shaft, and the fixed blocking piece is clamped at the upper end of the spring hole.
[0010] In some embodiments, a height limiting block is provided on the top material bottom plate, and the movable plate stops descending after descending until it contacts the height limiting block.
[0011] In some embodiments, an elastic pad for vibration reduction is provided on the height limiting block.
[0012] In some embodiments, four guide shafts are provided and distributed at the four corners of the top material bottom plate, and four guide holes are correspondingly provided and distributed at the four corners of the movable plate.
[0013] In some embodiments, the pressure plate further includes a handle and a frame, the frame encloses an opening, and the handles are symmetrically arranged on both sides of the frame.
[0014] In some embodiments, a pressing block is provided at the bottom of the pressing plate, and the pressing blocks are distributed at the four corners of the pressing plate, and the pressing blocks are used to press the material plate and the movable plate.
[0015] In some embodiments, the movable plate further includes a fixture baffle, and the fixture baffle is arranged outside the edge of the placement groove.
[0016] In some embodiments, the end of the positioning shaft is an inclined surface.
[0017] The utility model proposes an inkjet stripping fixture, designs a pressure plate and a positioning shaft, and the pressure plate is inserted into the positioning shaft and pressed downward, which is simple and quick to operate; a guide shaft is designed to make the up and down translation smooth, the active surface is evenly stressed, and the stripping direction can be controlled. The inkjet fixture does not move in the horizontal direction and will not tilt to cause the product to fall, which can avoid product contamination, improve the stripping efficiency, and enhance the product quality. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Figure 1 This is an exploded view of an inkjet stripping fixture described in the utility model;
[0019] Figure 2 This is a partial exploded view of an inkjet stripping fixture described in the utility model;
[0020] Figure 3 This is a first-view stereoscopic structural diagram of an inkjet stripping fixture described in the utility model;
[0021] Figure 4 This is a second-angle stereoscopic structural diagram of an inkjet stripping fixture described in the utility model.
[0022] The symbols in the accompanying drawings are described as follows:
[0023] 1. Ejector bottom plate; 11. Guide shaft; 111. Bushing; 12. Ejector block; 13. Spring shaft; 131. Fixed baffle; 14. Spring; 15. Height limit block; 151. Elastic pad; 2. Movable plate; 21. Guide hole; 22. Positioning shaft; 23. Placement slot; 231. Support plate; 232. Through hole; 24. Spring hole; 25. Fixture baffle; 3. Material plate; 31. Material slot; 311. Material hole; 4. Pressing plate; 41. Positioning hole; 42. Handle; 43. Frame; 44. Pressing block. DETAILED DESCRIPTION
[0024] In order to facilitate the understanding of the present invention, the present invention will be described in more detail below with reference to the accompanying drawings and specific embodiments. It should be noted that when an element is described as "connected" to another element, it can be directly on the other element, or there can be one or more centered elements in between. The terms "upper", "lower", "left", "right", "upper end", "lower end", "top" and "bottom" used in this specification indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, and are only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation on the present invention. In addition, the terms "first", "second", etc. are used for descriptive purposes only and cannot be understood as indicating or implying relative importance.
[0025] Unless otherwise defined, all technical and scientific terms used in this specification have the same meaning as those commonly understood by those skilled in the art in the field of the present invention. The terms used in the specification of the present invention are only for the purpose of describing specific embodiments and are not intended to limit the present invention.
[0026] In order to solve the problems in the prior art, the following Figures 1 to 4 An inkjet stripping fixture provided by an embodiment of the utility model is described in detail.
[0027] like Figure 1 and Figure 2 As shown, Figure 1 This is an exploded view of an inkjet stripping fixture described in the utility model. Figure 2 This is a partial exploded view of an inkjet stripping fixture described in the utility model.
[0028] An inkjet stripping fixture includes: a top plate 1, a plurality of guide shafts 11 and a top block 12 are vertically arranged on the upper surface, and the guide shaft 11 is higher than the top block 12; a movable plate 2 is located above the top block 12, and a guide hole 21 is provided corresponding to the guide shaft 11, and can be penetrated through the guide hole 21 to perform translational movement on the guide shaft 11, and a plurality of positioning shafts 22 and a placement groove 23 are vertically provided on the upper surface of the movable plate 2, and the positioning shafts 22 are distributed outside the placement groove 23. An elastic member is also provided between the top plate 1 and the movable plate 2. , used to bounce the movable plate 2 in the direction away from the top material bottom plate 1; the material plate 3 can be detachably placed in the placement groove 23, and a plurality of material grooves 31 are provided on the material plate 3, and a material hole 311 is provided in the middle of the material groove 31, and the top block 12 can pass through the material hole 311; the pressing plate 4 includes a positioning hole 41, and the pressing plate 4 can be passed through the positioning shaft 22 or detached from the positioning shaft 22 through the positioning hole 41. The pressing plate 4 can press the material plate 3 and the movable plate 2 downward toward the top material bottom plate 1 so that the top block 12 passes through the material hole 311.
[0029] Specifically, the guide shaft 11 provided on the top material bottom plate 1 functions similarly to a slide rail, fixing the moving trajectory of the movable plate 2 in the vertical direction to prevent the movable plate 2 from moving in the horizontal direction. A shaft sleeve 111 is also provided outside the guide shaft 11. The shaft sleeve 111 is fixedly installed in the guide hole 21. The shaft sleeve 111 is used to reduce friction so that the movable plate 2 can slide up and down smoothly, preventing the movable plate 2 from moving in the horizontal direction or tilting, and preventing materials from falling off.
[0030] The number of guide shafts 11 is at least three and they are not distributed on the same straight line, preferably four, distributed on the four corners of the top material base plate 1. The movable plate 2 is provided with a guide hole 21 corresponding to the guide shaft 11. The guide shaft 11 is inserted into the shaft sleeve 111 and can slide relative to the shaft sleeve 111. An elastic member is provided between the top material base plate 1 and the movable plate 2. An upward elastic force is applied to the movable plate 2 through the elastic member. When the movable plate 2 is pressed downward, the elastic member bounces the movable plate 2 upward.
[0031] The material plate 3 is an inkjet fixture used to hold the material. This placement is typically automated. Once the material is full, inkjet is applied to the upward-facing side of the material. This material plate 3 features a 4×5 arrangement of material troughs 31. Twenty materials can be placed into the troughs 31 at a time. The movable plate 2 is provided with a placement trough 23. Once the material plate 3 is filled with material, the material plate 3 is placed in the placement trough 23. The pressing plate 4 is provided with a positioning hole 41. The positioning shaft 22 on the upper surface of the movable plate 2 is inserted into the positioning hole 41, allowing relative movement between the pressing plate 4 and the movable plate 2. Once the material plate 3 is placed in the placement trough 23, the operator holds the pressing plate 4, aligns the positioning hole 41 with the pressing plate 4, and presses downward. The pressing plate 4 presses the movable plate 2 downward, causing the movable plate 2 to move downward. The material plate 3 moves downward with the movable plate 2, and the material contacts the top block 12 through the material trough 31, achieving press-release.
[0032] The placement slot 23 is a lower groove, and the bottom of the placement slot 23 includes a support plate 231. The two sides of the support plate 231 correspond to the top blocks 12, and each is provided with a row of 4×1 through holes 232, and the number of through holes 232 in each row is four. The middle of the support plate 231 is an empty area, and the empty area corresponds to the three rows of 4×3 top blocks 12 in the middle of the top material bottom plate 1. The function of the support plate 231 is to place the material plate 3. When the material plate 3 is placed in the placement slot 23, the material slots 31 on both sides of the material plate 3 correspond to the through holes 232 on both sides of the placement slot 23, and the three rows of material slots 31 in the middle of the material plate 3 correspond to the empty area of the placement slot 23.
[0033] The two sides of the movable plate 2 are recessed inwards, and the width of the material plate 3 is larger than the width of the two sides of the movable plate 2. This makes it easier for manual operation to take and place the material plate 3. When taking and placing, the two sides of the material plate 3 are grasped. The two sides of the movable plate 2 are recessed inwards, and the two sides of the material plate 3 are exposed, making it easier to grasp and improving the efficiency of material removal.
[0034] The operation process of this embodiment includes:
[0035] The manipulator fills the material plate 3 with materials, and the operator quickly places the material plate 3 into the placement slot 23, aligns the positioning hole 41 of the pressure plate 4 with the positioning shaft 22, and presses down to insert the positioning shaft 22 into the positioning hole 41. At this time, the movement trajectory of the pressure plate 4 follows the direction of the positioning shaft 22, avoiding horizontal movement. During the pressing process, the pressure block 44 and the edge parts of the four corners of the material plate 3 conflict with each other, and the material plate 3 is pressed down. The material plate 3 presses the movable plate 2 down in the placement slot 23 until the top block 12 is inserted into the material hole 311, and the material is pushed out of the material hole 311. The operator can observe the status of the material through the opening surrounded by the frame to determine whether the material is pushed out of the material slot 31. The operator slides the pressure plate 4 upward to disengage from the positioning shaft 22, and the four springs 14 simultaneously bounce the movable plate 2 upward to restore the movable plate 2 to its original position. The operator sucks up the material plates 3 with a vacuum pen, puts them all on the material tray, removes the empty material plates 3, puts them on the assembly line conveyor belt, and takes out the material plates 3 filled with materials, and the operation is cyclical.
[0036] The beneficial effects of this embodiment are as follows: the pressure plate 4 and the positioning shaft 22 are designed, and the user only needs to insert the positioning shaft 22 and press it down, which is easy and fast to operate and the product will not touch the operator; the guide shaft 11 is designed to achieve smooth up and down movement, and the movable plate 2 is evenly stressed, and will not tilt, thereby causing the product to fall; the problem of the material plate 3 being small and lacking a fulcrum is overcome, and the product is prevented from being pushed down by excessive force, thereby avoiding contamination of the product; the inkjet fixture does not move in the horizontal direction, and the stripping direction can be controlled to avoid touching the product with hands and avoiding contamination, thereby improving the stripping efficiency and enhancing the product quality.
[0037] In one embodiment, a spring shaft 13 is vertically arranged on the top material bottom plate 1, and a spring hole 24 is provided on the movable plate 2. The spring shaft 13 is passed through the spring hole 24. The elastic member is a spring 14. The spring 14 is sleeved on the spring shaft 13. The two ends of the spring 14 are in elastic contact with the lower surface of the top material bottom plate 1 and the upper surface of the movable plate 2.
[0038] Specifically, a spring 14 is designed to allow the material plate 3 to bounce back to its initial position after each stripping, so that the position of the material plate 313 is the same each time the material is taken in and put in, making it convenient to take the product and the inkjet base in and out.
[0039] When the operator holds the pressing plate 4 and presses it down, the movable plate 2 moves downward, and the lower surface of the movable plate 2 contacts the spring 14. The four springs 14 are compressed downward at the same time. When the inkjet is completed, the operator lifts the pressing plate 4 up, and the four springs 14 bounce the pressing plate 4 upward at the same time, so that the pressing plate 4 returns to its original position. The specifications of the four springs 14 need to be consistent so that the pressing plate 4 is evenly stressed and rises horizontally. At the same time, the stripping direction can be controlled to avoid falling, thereby improving the stripping efficiency and improving product quality.
[0040] In one embodiment, a fixed stopper 131 is provided on the spring shaft 13 , and the fixed stopper 131 is clamped at the upper end of the spring hole 24 .
[0041] Specifically, when the movable plate 2 is pressed down to the top of the top block 12, the top block 12 passes through the material hole 311 and contacts the material. When the movable plate 2 continues to descend, the top block 12 pushes the material out of the material trough 31. At this time, the lower surface of the movable plate 2 contacts the height limit block 15, which limits its further descent. Then, the pressing plate 4 is slid upward and lifted, disengaging from the positioning shaft 22. At the same time, the four springs 14 bounce the movable plate 2 upward, and the fixed stopper 131 clamps the movable plate 2, preventing the springs 14 from further bouncing the movable plate 2 upward, allowing the movable plate 2 to return to its original position. When the springs 14 bounce the movable plate 2 upward, the fixed stopper 131 can prevent the movable plate 2 from being ejected from the top of the guide shaft 11, facilitating the rapid return of the movable plate 2 and improving the material removal efficiency.
[0042] In one embodiment, a height limit block 15 is provided on the top material bottom plate 1 , and the movable plate 2 stops descending after descending to contact with the height limit block 15 .
[0043] Specifically, the function of the height limit block 15 is to prevent the movable plate 2 from descending too much and causing damage to the product. At least two height limit blocks 15 can be set, stacked and distributed on both sides of the upper surface of the movable plate 2, or multiple blocks can be set, for example, four blocks are set, and are set on the four sides of the upper surface of the movable plate 2. Preferably, two blocks are set, and are symmetrically distributed on both sides of the upper surface of the movable plate 2. The height of the height limit block 15 ensures that the position of each pressing during the pressing process is the same, and it will not be pressed excessively, causing the material to be ejected too far and fall.
[0044] When the operator holds the pressure plate 4 and presses the movable plate 2 downward, the material plate 3 placed on the movable plate 2 descends together with the movable plate 2. When it reaches the preset position, the position of the top block 12 corresponds to the position of the height limiter 15. If it continues to press down, the top block 12 and the product will easily be pushed out a long distance and fall, which will cause damage to the product. At this time, the height limiter 15 touches the lower surface of the movable plate 2 and the movable plate 2 is blocked.
[0045] In one embodiment, an elastic pad 151 for vibration reduction is provided on the height limit block 15 .
[0046] Specifically, the elastic pad 151 acts as a vibration dampener and provides cushioning. Rubber, oil-resistant, or acid- and alkali-resistant elastic cushioning layers can be used. Without the elastic pad 151, the material could be shaken off when the support plate 231 of the movable plate 2 and the top block 12 contact during the downward pressure process. The elastic pad 151 prevents this from happening and contamination.
[0047] In one embodiment, four guide shafts 11 are provided and distributed at the four corners of the ejection bottom plate 1 , and four guide holes 21 are correspondingly provided and distributed at the four corners of the movable plate 2 .
[0048] Specifically, the function of the guide shaft 11 is to prevent the movable plate 2 from moving or tilting in the horizontal direction, thereby causing the product to fall. When manually operated, there is a possibility of contact and contamination of the product. At the same time, horizontal shaking occurs, and there is a risk of product falling. After the guide shaft 11 is set, the manual hand-held pressure plate 4 is pressed on the movable plate 2, and the movable plate 2 slides downward, and the inner walls of the four guide holes 21 of the movable plate 2 and the guide shaft 11 rub against each other. The advantage of setting four guide shafts 11 is that one can be set at each corner of the top material bottom plate 1, and its stability is higher than that of setting three guide shafts 11.
[0049] like Figure 3 As shown, Figure 3 This is a first-perspective stereoscopic structural diagram of an inkjet stripping fixture described in the present invention. In one embodiment, the pressing plate 4 also includes a handle 42 and a frame 43. The frame 43 forms an opening, and the handles 42 are symmetrically arranged on both sides of the frame 43.
[0050] Specifically, the opening formed by the frame allows for monitoring the material loading and weight reduction. The handles 42 on both sides provide a convenient two-handed grip. The operator grasps the handles 42 with both hands, aligns the positioning hole 41 of the pressing plate 4 with the positioning shaft 22, and presses downward to insert the positioning shaft 22 into the positioning hole 41. The pressing plate 4 then moves in the direction of the positioning shaft 22, preventing horizontal movement. During the downward movement, the operator can observe the material through the opening formed by the frame and determine whether it has been ejected from the material chute 31. When the movable plate 2 descends to the top of the ejector block 12, the ejector block 12 contacts the material through the material hole 311. As the movable plate 2 continues to descend, the ejector block 12 ejects the material from the material chute 31. The operator then vacuums the material sheets 3 and places them on the tray. The empty sheet 3 is then removed, completing the material removal process. The handles 42 and frame 43 provide a point of force for easy downward pressure and control the direction of material removal, preventing the material from falling, contacting the product, and contaminating it.
[0051] In one embodiment, a pressing block 44 is provided at the bottom of the pressing plate 4 . The pressing blocks 44 are distributed at the four corners of the pressing plate 4 . The pressing blocks 44 are used to press the material plate 3 and the movable plate 2 .
[0052] Specifically, the pressing blocks 44 are arranged at the four corners of the pressing plate 4 to connect and reinforce the frame 43. Another function of the pressing blocks 44 is to create a gap between the pressing plate 4 and the material plate 3 to avoid contact between the pressing plate 4 and the material and contamination of the material.
[0053] The operator grasps the handles 42 on both sides with both hands, aligns the positioning hole 41 of the pressure plate 4 with the positioning shaft 22, and presses down so that the positioning shaft 22 is inserted into the positioning hole 41. At this time, the movement trajectory of the pressure plate 4 is along the direction of the positioning shaft 22, avoiding horizontal movement. During the downward pressing process, the edge portions of the four corners of the pressure block 44 and the material plate 3 come into contact, pressing the material plate 3 downward. The material plate 3 presses the movable plate 2 downward in the placement slot 23 until the top block 12 is inserted into the material hole 311, pushing the material out of the material hole 311. The operator can observe the state of the material through the opening surrounded by the frame 43 to determine whether the material has been pushed out of the material slot 31. When the movable plate 2 descends to the top of the top block 12, the top block 12 passes through the material hole 311 and contacts the material. As the movable plate 2 continues to descend, the top block 12 pushes the material out of the material slot 31, completing the material removal.
[0054] In one embodiment, the movable plate 2 further includes a clamp baffle 25 , which is disposed outside the edge of the placement slot 23 .
[0055] Specifically, when the material plate 3 is placed in the placement slot 23, the operator holds the material plate 3 so that the front end of the material plate 3 rests against the clamp baffle 25. At this time, the front end of the material plate 3 is located above the edge of the placement slot 23, and the front end of the material plate 3 slides into the placement slot 23 along the clamp baffle 25. The advantage of setting the clamp baffle 25 is that it facilitates the rapid placement of the material plate 3 into the placement slot 23, thereby improving the material removal efficiency.
[0056] See also Figure 4 , Figure 4 This is a second-angle stereoscopic structural diagram of an inkjet stripping fixture described in the present invention. In one embodiment, the end of the positioning shaft 22 is an inclined surface.
[0057] Specifically, the top of the positioning shaft 22 is pointed, and the inclined surface can be an arc surface or a pyramidal surface, which facilitates the insertion of the positioning shaft 22 into the positioning hole 41, facilitates the pressing plate 4 to press the movable plate 2, reduces horizontal vibration, and improves stripping efficiency.
[0058] The operation process of this embodiment is as follows:
[0059] The manipulator fills the material plate 3 with materials, and the operator picks up the material plate 3, places the front end of the material plate 3 against the fixture baffle 25, and quickly places the material plate 3 into the placement slot 23. Holding the handles 42 on both sides of the pressing plate 4, align the positioning hole 41 of the pressing plate 4 with the positioning shaft 22, and press down to insert the positioning shaft 22 into the positioning hole 41. At this time, the movement trajectory of the pressing plate 4 follows the direction of the positioning shaft 22, avoiding horizontal movement. During the pressing process, the pressing block 44 and the edge parts of the four corners of the material plate 3 conflict, pressing the material plate 3 down, and the material plate 3 presses the movable plate 2 down in the placement slot 23 until the top block 12 is inserted into the material hole 311, and the material is pushed out of the material hole 311. At this time, the height limit block 15 prevents the movable plate 2 from being pressed further down. The operator can observe the state of the material through the opening surrounded by the frame to determine whether the material is pushed out of the material slot 31. When movable plate 2 descends to the top of top block 12, top block 12 passes through material hole 311 and contacts the material. As movable plate 2 continues to descend, top block 12 pushes the material out of material chute 31, completing the material removal process. After material removal is complete, pressure plate 4 slides upward, disengaging from positioning shaft 22. Four springs 14 simultaneously push movable plate 2 upward, and fixed stopper 131 locks movable plate 2, preventing the springs 14 from pushing it further upward, allowing movable plate 2 to return to its original position. The operator then uses a vacuum cleaner to pick up the material plates 3 and place them uniformly on the material tray. The operator then removes the empty material plates 3 and places them on the assembly line conveyor belt. The operator then retrieves a fully loaded material plate 3, repeating the process.
[0060] The beneficial effects of this embodiment are as follows: the pressing plate 4 and the positioning shaft 22 are designed, and you only need to put the positioning shaft 22 into and press down, so that the position of each press can be the same, the operation is simple and fast, and the product will not touch the operator; the guide shaft 11 is designed to achieve smooth up and down movement, and the movable plate 2 is evenly stressed, and there will be no tilting phenomenon, which will cause the product to fall; the problem of the small material plate 3 lacking a fulcrum is overcome, and it is easy to grasp and apply force; it is relatively simple to control the force when pressing, so as to avoid the product being pushed down by excessive force and contaminating the product; the inkjet fixture no longer shakes in the horizontal direction, and the stripping direction can be controlled, so as to avoid the hand touching the product and avoid contamination, thereby improving the stripping efficiency and the product quality.
[0061] The above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit it. Under the idea of the present invention, the technical features in the above embodiments or different embodiments can also be combined, the steps can be implemented in any order, and there are many other changes in different aspects of the present invention as described above. For the sake of simplicity, they are not provided in detail. Although the present invention is described in detail with reference to the above embodiments, ordinary technicians in this field should understand that they can still modify the technical solutions recorded in the above embodiments, or make equivalent replacements for some of the technical features therein. These modifications or replacements do not deviate the essence of the corresponding technical solutions from the scope of the technical solutions of the embodiments of the present invention.
Claims
1. An inkjet stripping fixture, characterized in that: include: A top material bottom plate, the upper surface of which is vertically provided with a plurality of guide shafts and top blocks, wherein the guide shafts are higher than the top blocks; The movable plate is located above the top block and is provided with a guide hole corresponding to the guide shaft. The movable plate can be inserted through the guide hole to perform translational movement on the guide shaft. A plurality of positioning shafts and a placement slot are vertically provided on the upper surface of the movable plate. The positioning shafts are distributed outside the placement slot. An elastic member is further provided between the top material bottom plate and the movable plate for elastically moving the movable plate away from the top material bottom plate. A material plate, which can be detachably placed in the placement slot, wherein the material plate is provided with a plurality of material slots, wherein a material hole is provided in the middle of the material slots, and the top block can pass through the material hole; The pressing plate includes a positioning hole, through which the pressing plate can be passed through the positioning shaft or detached from the positioning shaft. The pressing plate can press the material plate and the movable plate downward toward the top material bottom plate so that the top block passes through the material hole.
2. The inkjet stripping fixture according to claim 1, characterized in that: A spring shaft is vertically arranged on the top material bottom plate, and a spring hole is provided on the movable plate. The spring shaft is passed through the spring hole. The elastic member is a spring, and the spring is sleeved on the spring shaft. Both ends of the spring are in elastic contact with the lower surface of the top material bottom plate and the upper surface of the movable plate.
3. The inkjet stripping fixture according to claim 2, characterized in that: A fixed blocking piece is provided on the spring shaft, and the fixed blocking piece is clamped at the upper end of the spring hole.
4. The inkjet stripping fixture according to claim 1, characterized in that: A height limiting block is provided on the top material bottom plate, and the movable plate stops descending after descending until it contacts the height limiting block.
5. The inkjet stripping fixture according to claim 4, characterized in that: The height limiting block is provided with an elastic pad for vibration reduction.
6. The inkjet stripping fixture according to claim 1, characterized in that: There are four guide shafts distributed at the four corners of the top material bottom plate, and there are four corresponding guide holes distributed at the four corners of the movable plate.
7. The inkjet stripping fixture according to claim 1, characterized in that: The pressing plate further includes a handle and a frame, the frame encloses an opening, and the handles are symmetrically arranged on both sides of the frame.
8. The inkjet stripping fixture according to claim 7, characterized in that: The bottom of the pressing plate is provided with pressing blocks, which are distributed at the four corners of the pressing plate. The pressing blocks are used to press the material plate and the movable plate.
9. The inkjet stripping fixture according to claim 1, characterized in that: The movable plate further comprises a fixture baffle, which is arranged outside the edge of the placement groove.
10. The inkjet stripping fixture according to claim 1, characterized in that: The end of the positioning shaft is an inclined surface.