Asynchronous lifting diamond sticking and shaking drilling machine

By setting asynchronous lifting first and second pressing parts in the rotary drilling machine, the problem of stickers being difficult to peel off after being glued is solved, enabling stickers to be flatly glued on the rotary drilling table and easy to peel off, thus improving processing efficiency.

CN224256348UActive Publication Date: 2026-05-19ZHEJIANG FUZHIYUAN MASCH EQUIP CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
ZHEJIANG FUZHIYUAN MASCH EQUIP CO LTD
Filing Date
2025-07-04
Publication Date
2026-05-19

AI Technical Summary

Technical Problem

In existing technologies, once the stickers are attached to the rhinestones on the rhinestone table, they are not easy to peel off, resulting in low processing efficiency for the rhinestone patterns.

Method used

An asynchronous lifting adhesive drilling machine is designed. By setting an asynchronous first pressing part and a second pressing part at the output end and the input end, respectively connected to the first roller and the second roller, the asynchronous pressing and tearing of the sticker is realized, ensuring that the sticker is flatly pasted on the drilling table and easy to tear off.

Benefits of technology

This makes it easier to peel off stickers on the rhinestone table, improving the efficiency and quality of rhinestone pattern processing and avoiding the problem of stickers being difficult to peel off.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an asynchronous lifting diamond sticking and rocking drilling machine which comprises a working frame with an input end and an output end. The conveying assembly is arranged on the working frame; the paper pasting mechanism is arranged on the working frame; the paper pasting mechanism comprises a first downward pressing part located on one side of the output end and a second downward pressing part located on one side of the input end, the first downward pressing part is connected with a first roller capable of ascending and descending vertically, and the second downward pressing part is connected with a second roller capable of ascending and descending vertically.
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Description

Technical Field

[0001] This utility model relates to the field of rotary drilling machine technology, and in particular to an asynchronous lifting and sticking drill rotary drilling machine. Background Technology

[0002] A rhinestone applicator is a processing device that arranges and securely adheres rhinestones to fabric, adhesive tape, or other materials according to a preset pattern. Subsequent processing of the fabric, adhesive tape, or other materials facilitates the production of garments with various exquisite rhinestone patterns.

[0003] However, once the sticker is attached to the rhinestones on the rhinestone rack, it is not easy to peel it off. Utility Model Content

[0004] The main advantage of this utility model is that it provides an asynchronous lifting and attaching rhinestone shaking machine, which solves the problem in the prior art that the sticker is not easy to peel off after it is attached to the rhinestone on the shaking table, and can achieve the effect of easy peeling off the sticker.

[0005] Accordingly, according to an embodiment of the present invention, an asynchronous lifting and lowering rotary drilling rig having at least one of the aforementioned advantages includes:

[0006] Base;

[0007] A rotary drill frame is mounted on the base.

[0008] The work frame, positioned above the rotary drill frame, has an input end and an output end;

[0009] The work frame is equipped with a conveying assembly and a sticker-feeding mechanism for conveying stickers. The sticker-feeding mechanism includes a first pressing part located on the output end side and a second pressing part located on the input end side. The first pressing part is connected to a first roller that can move up and down, and the second pressing part is connected to a second roller that can move up and down.

[0010] The present invention is further configured such that: the first pressing part further includes a first pressing cylinder fixed on the working frame, the output end of the first pressing cylinder is connected to a roller seat, and the first roller is rotatably connected to the roller seat.

[0011] The present invention is further configured such that: the second pressing part also includes a second pressing cylinder fixed on the working frame, the output end of the second pressing cylinder is connected to a roller seat, and the second roller is rotatably connected to the roller seat.

[0012] The present invention is further configured such that: the working frame includes a main frame and a middle frame distributed vertically, an mounting plate is installed on the main frame, a guide plate is provided at the lower part of the mounting plate, and the cylinder body of the first pressing cylinder is fixed on the mounting plate and the lower guide plate.

[0013] The present invention is further configured such that at least one side of the roller seat in the first pressing part is also connected to a guide rod, the guide rod passing through the lower guide plate and the mounting plate.

[0014] The present invention is further configured such that: an upper guide plate is provided on the main frame on one side of the input end, a lower guide plate is fixed on the middle frame below the upper guide plate, and the cylinder body of the second pressing cylinder is fixed on the upper guide plate and the lower guide plate.

[0015] The present invention is further configured such that: vertically arranged reinforcing plates are fixed on both sides of the main frame, and the two ends of the upper guide plate are fixed to the upper end of the reinforcing plates, and the height of the upper guide plate is higher than that of the mounting plate.

[0016] The present invention is further configured such that: the conveying assembly includes at least two input rollers at the input end and two output rollers at the output end, wherein one of the output rollers is connected to an output power source mounted on the work frame.

[0017] This utility model provides an asynchronous lifting and lowering adhesive drill rocker, comprising:

[0018] The work stand has input and output terminals;

[0019] A conveying assembly is disposed on the work stand;

[0020] The sticker mechanism is set on the work stand; and

[0021] The drilling table, wherein the sticker mechanism includes a first pressing part located on the output end side and a second pressing part located on the input end side, the first pressing part is connected to a first roller that can move up and down, and the second pressing part is connected to a second roller that can move up and down.

[0022] In some embodiments, the rotary drilling machine includes at least two rotary drilling platforms, wherein the rotary drilling machine is divided into at least two workstations according to the arrangement direction of the rotary drilling platforms, the number of workstations is the same as the number of rotary drilling platforms and corresponds one-to-one, wherein the rotary drilling platforms only work in their respective workstations, and the work frame is driven to reciprocate along the arrangement direction of the rotary drilling platforms to realize the switching of the work frame between different workstations.

[0023] The beneficial effects of this utility model are:

[0024] The first and second pressing parts can press down asynchronously and sequentially, and they can also rise asynchronously and sequentially, so that the sticker can be peeled off from one end of the drilling table first, making it easier to peel off.

[0025] The above and other advantages of this utility model will be fully realized in conjunction with the following description and accompanying drawings.

[0026] The above and other advantages and features of this utility model are fully demonstrated by the following detailed description and accompanying drawings.

[0027] The content of this utility model is not considered as an essential technical feature identifying this utility model, nor is it considered as a limitation on the scope of protection of this utility model. Attached Figure Description

[0028] Figure 1 This is a schematic diagram of the structure of the rotary drilling machine of this utility model;

[0029] Figure 2 This is a schematic diagram of the structure of the rotary drilling frame and the central rotating platform in this utility model;

[0030] Figure 3 This is a schematic diagram of the work frame and sticker mechanism in this utility model;

[0031] Figure 4 This is a schematic diagram of the structure of the turntable and the vertical rotation source in this utility model;

[0032] Figure 5 This is a schematic diagram of the base structure in this utility model;

[0033] Figure 6 This is a schematic diagram of the structure of the rotary drilling platform 1 and rotary drilling platform 2 in this utility model;

[0034] Figure 7 This is a schematic diagram of the structure of the horizontal rotating component in this utility model;

[0035] Figure 8 This is a schematic diagram of the upper and lower seats in this utility model;

[0036] Figure 9 This is a structural schematic diagram of the pressure plate and lifting rod of this utility model;

[0037] Figure 10 This is a schematic diagram of the structure of the striking rod and striking block in this utility model;

[0038] Figure 11 and Figure 12 This is a schematic diagram showing the relationship between the asynchronous pressing of the sticker and the tension force in this utility model. Detailed Implementation

[0039] The following description is provided to enable those skilled in the art to implement the present invention. Other obvious substitutions, modifications, and variations will arise in those skilled in the art. Therefore, the scope of protection of the present invention should not be limited to the exemplary embodiments described herein.

[0040] Those skilled in the art will understand that, unless specifically indicated herein, the term "a" should be understood as "at least one" or "one or more," meaning that in one embodiment, the number of an element may be one, while in another embodiment, the number of the element may be multiple.

[0041] Those skilled in the art should understand that, unless specifically indicated herein, the terms "longitudinal," "lateral," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," and "outer," etc., refer to the orientation or position based on the accompanying drawings, and are merely for the convenience of describing the present invention, and do not indicate or imply that the device or element involved must have a specific orientation or position. Therefore, the above terms should not be construed as limiting the present invention.

[0042] Refer to the accompanying drawings in this utility model specification. Figures 1 to 10 The rotary drilling machine according to the embodiments of the present invention will be explained by the following description.

[0043] like Figure 1 As shown, a rocker drill includes a base 1, a rocker drill frame 2 located on the base 1, and a work frame 3 slidably disposed on the base 1. Multiple rocker drill tables are disposed on the rocker drill frame 2. Different rocker drill tables can be shaken to select different target rhinestones on a template 22. The work frame 3 includes a sticker mechanism that can drive a sticker to descend to adhere different rhinestones on different rocker drill tables, thereby adhering different rhinestones on a single sticker.

[0044] It is worth noting that the term "sticker" refers to a paper-like material used to adhere rhinestones. It can be a flexible paper-like material made of film, cloth, or other materials. The term "sticker" should not be regarded as a limitation on the materials it is made of; that is, "sticker" does not specifically refer to paper in the traditional sense.

[0045] like Figure 1 and Figure 2 As shown, the rotary drilling frame 2 includes a horizontal frame 4 and a vertical frame 5. The vertical frame 5 is located at both ends of the horizontal frame 4. The upper end of the vertical frame 5 is fixed to the horizontal frame 4, and the lower end is fixed to the base 1. Therefore, a movable space 53 is formed between the middle of the horizontal frame 4 and the base 1 to accommodate the lower part of the work frame 3. At least two rotating transfer platforms 6 are sequentially arranged on the top of the horizontal frame 4. In this embodiment, there are two transfer platforms 6, which are located at both ends of the rotary drilling frame 2. A rotary drilling platform 1 7 and a rotary drilling platform 2 8 are rotatably arranged on the top of the two transfer platforms 6, respectively. Several disturbances 9 for vibrating or tapping the rotary drilling platform 1 7 and the rotary drilling platform 2 8 are arranged on the transfer platform 6, the rotary drilling platform, or the work frame 3.

[0046] Of course, in other embodiments, the number of the transfer platform 6 and the drilling platform set on it can be multiple as needed, for example, three or five can be set at intervals on the drilling frame 2.

[0047] More specifically, vertical rotating components are fixed on both sides of the top of the rotary drilling frame 2. Each vertical rotating component includes an upper seat 10 and a lower seat 11 that are rotatably connected to each other. The rotation axis of the vertical rotating component is parallel to the base 1. The lower seat 11 is fixed directly or via an intermediate connecting piece to the crossbeam 4, while the upper seat 10 is fixedly connected to the central turntable 6. Furthermore, the two vertical rotating components are respectively located on both sides of the lower surface of the central turntable 6, thereby enabling the central turntable 6 to be rotatably connected to the rotary drilling frame 2. This allows the central turntable 6 to oscillate up and down along the length of the rotary drilling frame 2 during rotation.

[0048] like Figure 4 As shown, both ends of the base 1 are fixed with vertical rotation sources 12 for driving the two turntables 6 to swing. In this embodiment, the vertical rotation source 12 is a motor. The lower end of the vertical rotation source 12 is rotatably connected to the base 1, and the rotation axis is parallel to the rotation axis of the vertical rotating component. The other end of the vertical rotation source 12 is the output end, and a lead screw 13 is coaxially fixedly connected to the output end. The lead screw 13 is connected to a lead screw sleeve 14. One end of the lead screw sleeve 14 is rotatably connected to the turntable 6, and the other end is fixed with a nut 15. The lead screw 13 is threadedly connected to the nut 15 and passes into the lead screw sleeve 14.

[0049] The vertical rotation source 12 drives the lead screw 13 to rotate. As the lead screw 13 rotates, it adjusts the distance or depth into the lead screw sleeve 14, thereby causing the central turntable 6 to rotate around the axis of the vertical rotating component, that is, to swing in the vertical direction.

[0050] like Figure 7 As shown, each of the four corners of the top of the two turntables 6 has a horizontal rotating component. Each horizontal rotating component includes a swing arm 16 and drive shafts 17 fixedly connected to both ends of the swing arm 16. One drive shaft 17 extends upwards, and the other extends downwards. The upward-extending drive shaft 17 is rotatably connected to a bearing housing 18, which is fixedly connected to the lower surface of the rotary drilling platform. The downward-extending drive shaft 17 passes under the turntable 6 and connects to a horizontal rotation source 19. The horizontal rotation source 19 includes a motor and a gearbox 21 connected to the motor. The downward-extending drive shaft 17 is connected to the output shaft of the gearbox 21 fixed on the turntable 6. By driving the horizontal rotation source 19, the swing arm 16 is driven to rotate, thereby enabling the entire rotary drilling platform to rotate on a horizontal plane.

[0051] like Figure 1 and Figure 6As shown, the rotary drilling table also includes a template 22. Drill holes 23 are distributed on the end of the template 22 away from the rotary drilling table and the vertical rotation source 12. The lower part of the rotary drilling table contains a cavity, and a negative pressure port 24 connected to the cavity is provided at the lower part of the rotary drilling table. The negative pressure port 24 is connected to a negative pressure source 25. The negative pressure source 25 can be a vacuum pump, a blower, etc. When the negative pressure source 25 is activated, a negative pressure sufficient to attract decorative drill bits is generated within the drill holes 23.

[0052] like Figure 2 As shown, the function of the disturbance 9 is to cause the decorative drill in the drill hole 23 to jump up and detach from the template 22 by means of vibration, tapping and other methods, so as to adhere to the adhesive paper located above the template 22.

[0053] like Figure 2 and Figure 6 As shown, in one embodiment, the disturbance 9 is a cylinder, and the disturbance 9 is connected to the transfer platform 6 below the rotary drilling rig via a fixed base 26. Multiple disturbances 9 can be adaptively set according to the area of ​​the template 22. A corresponding pad 27 is also provided below the rotary drilling rig. When the disturbance 9 needs to strike the rotary drilling rig 1 7 and rotary drilling rig 2 8, the output end of the disturbance 9 will push upwards against the pad 27 at the bottom of the rotary drilling rig 1 7 and rotary drilling rig 2 8. The pad 27 is provided to prevent the disturbance 9 from impacting the rotary drilling rig 1 7 and rotary drilling rig 2 8, thus avoiding damage to them and extending the service life of the rotary drilling machine.

[0054] In another embodiment (not shown in the figure), when the disturbance 9 is a vibrator, it is set on the drilling platform. Specifically, it can be a vibrating mechanical component such as a vibrating motor, a vibrating electric motor, or a pneumatic motor. It is installed below the drilling platform. By making the drilling platform vibrate, the decorative diamonds on the surface of the template 22 above the drilling platform jump, thereby making all the decorative diamonds stick to the sticker.

[0055] like Figure 9 As shown, in another embodiment, the disturbance 9 can also be mounted on the work frame 3. Specifically, it can include a drive assembly and a lifting rod 28. The end of the lifting rod 28 is connected to a pressure plate 29. The drive assembly drives the lifting rod 28 to descend, which in turn causes the pressure plate 29 to descend and squeeze the sticker, thereby making the sticker adhere more tightly to the rhinestones. The drive assembly can be a cylinder, an electric cylinder, or a motor-driven linkage mechanism that drives the lifting rod 28 to rise and fall.

[0056] like Figure 10As shown, in some embodiments, the disturbance 9 includes a downward driving source 32 fixed to one side of the sticker mechanism. A tapping rod 30 is rotatably connected to the lower part of the downward driving source 32. One end of the tapping rod 30 is fixed with a tapping block 31, and the other end is a driving end 20. The rotation point of the tapping rod 30 is closer to the driving end. Specifically, when the output shaft of the downward driving source 32 extends, the driving end 20 moves downward, causing the tapping block 31 to move upward. When the output shaft of the downward driving source 32 retracts, one end of the tapping block 31 descends under its own weight to tap the sticker, thereby making the sticker adhere more tightly to the rhinestones.

[0057] like Figure 3 As shown, the work frame 3 includes two side frames 33 and a main frame 34 positioned between the two side frames 33 at the upper end. One end of the work frame 3 is the sticker input end, and the other end is the sticker output end. A sticker pressing mechanism is provided on the work frame 3 to press the sticker onto the template 22. A conveying assembly is also provided on the work frame 3, which allows the sticker to be input from the input end, adhered with rhinestones, and then output from the output end. In other words, the sticker is conveyed in a direction from the input end to the output end.

[0058] It should be noted that the conveying assembly includes at least two input rollers 35 at the input end and two output rollers 36 at the output end, one of which is connected to an output power source 37 mounted on the work frame 3. The sticker passes sequentially between the two input rollers 35 and the two output rollers 36 and is clamped. The output rollers 36 rotate at a higher speed than the input rollers 35, causing the sticker to be pulled from the input end to the output end under stress, i.e., the sticker is in a taut state.

[0059] A lower frame 38 is also provided at the lower part between the two side frames 33, with both ends of the lower frame 38 fixed to the lower ends of the two side frames 33 respectively. The main frame 34 is located above the rotary drill frame 2, and the lower frame 38 is located within the moving space 53 below the rotary drill frame 2. Rollers 39 are provided at the lower ends of the side frames 33, and two parallel slide rails 40 are provided on the base 1. The work frame 3 is slidably connected to the base 1 through the cooperation of the rollers 39 and the slide rails 40.

[0060] like Figure 5 As shown, a sliding power source 41 for driving the work frame 3 to slide is fixed on the base 1. The sliding power source 41 is connected to the work frame 3 via a connector. Specifically, the sliding power source 41 is one of an electric cylinder, a pneumatic cylinder, or a hydraulic cylinder. The connector connects the lower frame 38 to the output shaft of the sliding power source 41, and the orientation of the output shaft is consistent with the sliding direction of the work frame 3. By activating the sliding power source 41, the entire sliding frame can be pushed to slide back and forth on the base 1.

[0061] like Figure 3 and Figure 5As shown, the connecting component connecting the sliding power source 41 and the work frame 3 includes a connecting block 42 fixed to the bottom of the work frame 3, and a connecting block 43 fixed to the output end of the sliding power source 41 for the connecting block 42 to be inserted. Both the connecting block 42 and the connecting block 43 are provided with fixing holes 44. Fixing bolts 45 or other studs that can connect the connecting block 42 and the connecting block 43 can be detachably connected in the fixing holes 44.

[0062] When it is necessary to connect the work frame 3 to the sliding power source 41, simply insert the connecting block 42 into the connecting block 43, and then fix the connecting block 42 and the connecting block 43 by setting the fixing bolt 45 or stud in the fixing hole 44, thereby connecting the work frame 3 to the sliding power source 41.

[0063] like Figure 1 and Figure 3 As shown, the sticker-applying mechanism includes a first pressing part and a second pressing part. A middle frame 46 is fixed between the two side frames 33 at the lower part of the main frame 34, and the two ends of the middle frame 46 are fixedly connected to the two side frames 33. The first pressing part is located on the output end side and includes a first pressing cylinder 47 and a first roller 48. A mounting plate 49 is provided on the main frame 34 on the output end side, and a lower guide plate 50 is installed below the mounting plate 49. The cylinder body of the first pressing cylinder 47 is fixed on the mounting plate 49 and the lower guide plate 50, and the output end faces downward and is connected to a roller seat 51. The first roller 48 is rotatably connected to the roller seat 51. Guide rods 52 are also connected to both sides of the roller seat 51. The guide rods 52 pass through the lower guide plate 50 and the mounting plate 49 to realize the stable up and down sliding of the first roller 48.

[0064] The second pressing section is located at the input end and includes a second pressing cylinder 54 and a second roller 55. An upper guide plate 56 is provided on the main frame 34 on one side of the input end, and the height of the upper guide plate 56 is higher than that of the mounting plate 49. Specifically, the two ends of the upper guide plate 56 are fixed to the upper ends of the reinforcing plates 57 by fixing vertically arranged reinforcing plates 57 on both sides of the main frame 34. Similarly, a lower guide plate 50 is fixed on the middle frame 46 below the upper guide plate 56. The cylinder body of the second pressing cylinder 54 is fixed on the upper guide plate 56 and the lower guide plate 50, and the output end is downward connected to the roller seat 51. The second roller 55 is rotatably connected to the roller seat 51. Guide rods 52 are also connected to both sides of the roller seat 51. The guide rods 52 pass through the corresponding upper guide plate 56 and lower guide plate 50 to realize the stable up and down sliding of the second roller 55. The sticker passes under the second roller 55 and the first roller 48 at the input and output ends respectively. That is, when the first roller 48 and the second roller 55 press down, they will push the sticker down onto the template 22.

[0065] It is worth mentioning that, Figure 1 and Figure 3The installation methods of the first pressing cylinder 47 and the second pressing cylinder 54, as well as the guiding structure of the guide rod 52, shown are for illustrative purposes only and should not be considered as structural limitations on the first pressing part and the second pressing part. The first pressing part and the second pressing part can adopt the same pressing cylinder installation method and guide rod guiding structure. Figure 1 and Figure 3 The vertically arranged reinforcing plate 57 shown can adapt to different lower cylinder heights. Whether to set the reinforcing plate 57 and the height of the reinforcing plate 57 can be set according to actual needs.

[0066] Furthermore, the striking rod 30 is mounted on the roller seat 51, and the downward pressure drive source 32 is also mounted on the roller seat 51 via a connector.

[0067] When creating multi-colored rhinestone patterns using a rhinestone maker, first place two different colored rhinestones on the surfaces of rhinestone maker 7 and rhinestone maker 8, respectively. By activating the conveyor assembly, the sticker moves from the input end to the output end along with the movement of the conveyor assembly. Then, activate the switches of the horizontal rotation source 19 and the vertical rotation source 12. The horizontal rotation source 19 causes rhinestone maker 7 and rhinestone maker 8 to rotate horizontally, while the vertical rotation source 12 causes them to rock vertically. First, they tilt towards the adjacent end, rocking some of the rhinestones into the drill hole 23 to form the preset pattern. Subsequently, rhinestone maker 7 and rhinestone maker 8 tilt towards the opposite end, moving any excess rhinestones to the end away from the drill hole 23.

[0068] Next, the sliding power source 41 is activated, causing the work frame 3 to slide above the drilling table 7. The second roller 55 and the first roller 48 are driven to move downwards sequentially, thereby causing the sticker to adhere to the surface of the drilling table 7, making the entire sticker adhere to the surface of the rhinestones. Subsequently, the switch to turn on the disturbance 9 is activated, tapping or vibrating the drilling table 7 to drive any rhinestones on the surface of the drilling table 7 that are not adhered to the sticker onto the sticker. It is worth mentioning that the second roller 55 and the first roller 48 are driven to move downwards sequentially, meaning that the second roller 55 and the first roller 48 do not simultaneously press the sticker onto the drilling table; that is, the sticker is pressed onto the drilling table asynchronously, and the first roller 48 and the second roller 55 move downwards asynchronously. For example, the second roller 55 first presses the end of the sticker closest to the input end onto the drilling table, and then the first roller 48 presses the end of the sticker closest to the output end onto the drilling table; or, the first roller 48 first presses the end of the sticker closest to the output end onto the drilling table, and then the second roller 55 presses the end of the sticker closest to the input end onto the drilling table. It can be understood that the choice between these two asynchronous pressing methods is directly related to the direction of the tension force acting on the sticker during the pressing process. If the sticker is subjected to tension in the conveying direction during pressing, and the second roller 55 first presses the end of the sticker closest to the input end onto the drilling table, and then the first roller 48 presses the end of the sticker closest to the output end onto the drilling table, the sticker remains continuously tensioned during pressing, thus ensuring that the sticker adheres smoothly to the drilling table. Conversely, if the first roller 48 first presses the end of the sticker closest to the output end onto the drilling table, such as... Figure 11 As shown, the pressing action of the first roller 48 on the sticker prevents the effective transmission of tension in the conveying direction. This means the sticker cannot be continuously tensioned during the pressing process, making it difficult to ensure the sticker adheres smoothly to the drilling table. If the sticker is subjected to tension in the retraction direction (opposite to the conveying direction, from the output end to the input end) during the pressing process, the first roller 48 first presses the end of the sticker closer to the output end onto the drilling table, and then the second roller 55 presses the end of the sticker closer to the input end onto the drilling table. This ensures the sticker is continuously tensioned during the pressing process, guaranteeing a smooth adhesion to the drilling table. Conversely, if the second roller 55 first presses the end of the sticker closer to the input end onto the drilling table, as... Figure 12 As shown, the pressing action of the second roller 55 on the sticker prevents the tension force in the retraction direction from being effectively transmitted. This means the sticker cannot be continuously tensioned during the pressing process, making it difficult to ensure the sticker adheres smoothly to the drilling table. Therefore, asynchronously pressing the sticker onto the drilling table helps ensure continuous tension, guaranteeing a smooth adhesion.

[0069] Then, the first roller 48 and the second roller 55 are driven to rise backward. At this time, the sticker is tensioned by the conveying assembly, and the end closer to the output end is torn off first, followed by the end closer to the input end, thus tearing off the entire sticker. Of course, the sticker can also be torn off first by the end closer to the input end under tension, followed by the end closer to the output end. This asynchronous tearing method not only makes it easier to tear off the sticker, but also helps to ensure that the sticker is continuously tensioned. Specifically, if the sticker is subjected to tension in the conveying direction during tearing, the end closer to the output end is torn off first, followed by the end closer to the input end; if the sticker is subjected to tension in the retraction direction during tearing, the end closer to the input end is torn off first, followed by the end closer to the output end. More specifically, asynchronous tearing of the sticker can be achieved by controlling the first roller 48 and the second roller 55 to rise sequentially, rather than simultaneously. In other words, the first roller 48 and the second roller 55 rise asynchronously. During the process of applying the rhinestones to the stickers, the conveyor component stops moving.

[0070] Finally, driven by the sliding power source 41, the moving work frame 3 is moved so that the sticker continues to be pasted onto the rhinestones on the drilling table 2 8. The pasting process is the same as the pasting process described above, and the rhinestones with multiple colors and patterns can be made. Then, the conveying component is used to transport the sticker with the complete pattern to the next work area.

[0071] It is worth mentioning that the tension in the conveying direction can be provided by the output roller 36 of the conveying assembly, and the tension in the retraction direction can be provided by the input roller 35 of the conveying assembly. In some embodiments of this invention, the tension in the conveying direction can be provided by a tensioning device disposed on the output side, and the tension in the retraction direction can be provided by a tensioning device disposed on the input end. Of course, in some embodiments of this invention, the tension in the conveying direction can be provided jointly by the output roller 36 of the conveying assembly and the tensioning device disposed on the output side, and the tension in the retraction direction can be provided jointly by the input roller 35 of the conveying assembly and the tensioning device disposed on the input end.

[0072] This invention, by setting a first roller 48 and a second roller 55 in an asynchronous driving manner, enables the first roller 48 and the second roller 55 to move asynchronously, that is, to move asynchronously downward and / or rise asynchronously, which makes it easier to realize the asynchronous pressing and asynchronous peeling of the sticker.

[0073] However, asynchronous pressing and peeling of stickers can also be achieved through sticker mechanisms with other structures. For example, the sticker mechanism no longer includes two pressing parts, the first pressing part and the second pressing part, but only one pressing part. By tilting, when pressing down, one side presses down the sticker first, and then the other side presses down. When rising, one side lifts up first, and then the other side lifts up.

[0074] Therefore, this utility model provides an asynchronous working method for a rotary drilling machine, comprising the following steps:

[0075] Shake the diamonds on the drilling table to arrange them into a preset pattern;

[0076] Convey the stickers, moving them along the conveying direction;

[0077] Press the sticker down onto the rhinestone table to apply the rhinestones, where the sticker is asynchronously pressed down onto the rhinestone table;

[0078] Peel off the sticker, which is peeled off asynchronously.

[0079] In some embodiments of this invention, the end of the sticker closer to the output end is first pressed against the drilling table, and the end of the sticker closer to the input end is then pressed against the drilling table. Furthermore, during the pressing of the sticker, a tension force in the retraction direction is applied, wherein the retraction direction is opposite to the conveying direction.

[0080] In some embodiments of this invention, the end of the sticker closer to the input end is torn off first, and the end closer to the output end is torn off later. Furthermore, during the process of tearing off the sticker, a tension force in the retraction direction is applied, wherein the retraction direction is opposite to the conveying direction.

[0081] In some embodiments of this utility model, the end of the sticker near the input end is first pressed onto the drilling table, and the end of the sticker near the output end is then pressed onto the drilling table. During the process of pressing the sticker down, a tension force in the conveying direction is applied.

[0082] In some embodiments of this utility model, the end of the sticker closer to the output end is torn off first, and the end of the sticker closer to the input end is torn off later. During the process of tearing off the sticker, a tension force in the conveying direction is applied.

[0083] According to another aspect of the utility model, the present utility model provides a rotary drilling machine, comprising:

[0084] Work rack;

[0085] A conveying assembly is disposed on the work stand;

[0086] The sticker mechanism is set on the work stand; and

[0087] A drilling platform, wherein the sticker mechanism asynchronously presses the sticker down onto the drilling platform, and when the sticker mechanism rises, the sticker is asynchronously peeled off.

[0088] In some embodiments of this utility model, the sticker mechanism includes a first pressing part and a second pressing part. The first pressing part is disposed at the output end of the work frame, and the second pressing part is disposed at the input end of the work frame. The first pressing part includes a first roller, and the second pressing part includes a second roller. The first roller and the second roller operate asynchronously.

[0089] In some embodiments of this utility model, the end of the sticker near the output end is first pressed onto the drilling table, and the end of the sticker near the input end is then pressed onto the drilling table. The end of the sticker near the input end is first torn off, and the end of the sticker near the output end is then torn off. During the pressing and tearing processes, the sticker is subjected to a tension force in a retraction direction, where the retraction direction is from the output end to the input end.

[0090] In some embodiments of this utility model, the rotary drilling machine includes at least two rotary drilling platforms, wherein the rotary drilling machine is divided into at least two workstations according to the arrangement direction of the rotary drilling platforms, the number of workstations is the same as the number of rotary drilling platforms and corresponds one-to-one, wherein the rotary drilling platform only works in the corresponding workstation, and the work frame is driven to move back and forth along the arrangement direction of the rotary drilling platforms to realize the switching of the work frame between different workstations.

[0091] With dual-station or multi-station rotary drilling tables, when patterns containing two or more different rhinestones need to be produced, the equipment can process them simultaneously without having to start and stop the equipment multiple times to change different colors of rhinestones. This reduces the time required to process a single pattern and improves production efficiency.

[0092] As shown in the attached image. Figures 1 to 3 As shown, the rotary drilling machine according to an embodiment of the present invention preferably has multiple rotary drilling platforms arranged sequentially, wherein the work frame 3 is configured to move relative to the multiple rotary drilling platforms along the arrangement direction of the multiple rotary drilling platforms. In other words, each rotary drilling platform of the present invention rotates only in a fixed position, and when the work frame 3 moves relative to the rotary drilling platform, the positions of the multiple rotary drilling platforms do not move relative to the ground.

[0093] In other words, the rotary drilling machine is divided into at least two workstations according to the arrangement direction of the rotary drilling tables. The number of workstations is the same as the number of rotary drilling tables and they correspond one-to-one. The rotary drilling tables only work in their respective workstations. The work frame 3 is driven to move back and forth along the arrangement direction of the rotary drilling tables to realize the switching of the work frame between different workstations.

[0094] Existing rhinestone-adhesive drilling machines with multiple rhinestone tables change the relative position between the work frame and the rhinestone-adhesive tables by moving the tables. The advantage of this setup is that, during operation, the work frame is fixed, thus fixing the supply position of the sticker and the discharge position of the sticker after rhinestone adhesion, providing the operator with a fixed working position. Furthermore, the fixed discharge position of the sticker after rhinestone adhesion facilitates connection with downstream garment processing equipment, allowing for direct transport of the sticker to downstream processing equipment.

[0095] Those skilled in the art have already taken the method of moving the drilling rig as a basic design principle when designing the drilling rig, and would not think of setting the drilling rig to work in a fixed position (workstation), but instead let the work frame 3 move. The existing method of moving the drilling rig has become a technical bias in the field.

[0096] However, existing rotary drilling machines with multiple rotary drilling platforms, which change the relative position between the work frame and the rotary drilling platform by moving the rotary drilling platform, also have many drawbacks: First, a large work area is required to accommodate the movement of the rotary drilling platform; second, the moving speed of the rotary drilling platform is slow, limiting its efficiency. Excessive moving speed may cause changes in the position of the decorative drills already arranged in a preset pattern on the rotary drilling platform, or may cause excess decorative drills concentrated on one side of the rotary drilling platform to return to the pattern area, thus destroying the preset pattern formed by the decorative drills. Finally, when there are multiple rotary drilling platforms in the direction of movement, all of them need to move together, which not only consumes a lot of energy but also significantly increases the complexity of the motion control of the rotary drilling platform, leading to a decrease in the overall reliability of the rotary drilling machine.

[0097] This invention, by moving the work frame 3, avoids disrupting the preset pattern formed by the decorative drills. Furthermore, since the moving speed of the work frame 3 does not affect the arrangement of the decorative drills, its moving speed is unrestricted when switching between different drilling platforms (or workstations), thereby improving the working efficiency of the drilling machine. In other words, this invention overcomes the technical bias of requiring the movement of the drilling platform and produces unexpected technical effects.

[0098] As shown in the attached image. Figures 1 to 3 As shown, preferably, the sticker feeding position, the sticker input end, and the sticker output end of the rotary drill according to the present invention are all formed on the work frame 3. The sticker conveying component is set on the work frame 3, so that the raw material paper (including at least stickers, generally formed in a roll shape, such as sticker tube 67) located at the sticker feeding position and the sticker conveying component move synchronously with the movement of the work frame 3, which facilitates the conveying of stickers.

[0099] The sticker mechanism is designed so that when peeling off the sticker with rhinestones from the surface of the rhinestone table, the two ends of the sticker are peeled off asynchronously, which makes it easier to peel the sticker off the surface of the rhinestone table than to peel both ends at the same time.

[0100] The disturbance 9 is designed so that after the sticker on the drilling machine has been used to attach the rhinestones, it can tap or vibrate the drilling table or the sticker to make the rhinestones stick to the sticker more efficiently.

[0101] The input end of the work frame 3 is provided with a sticker tube 67 placement part for fixing the sticker tube 67. The sticker tube 67 placement part includes two fixing plates 58. One end of each fixing plate 58 is fixed to the work frame 3, and the other end is provided with a raw material shaft 59 for fixing the sticker tube 67. The sticker tube 67 is sleeved on the raw material shaft 59.

[0102] like Figure 3 and Figure 5 As shown, it should be noted that the slide rail 40 is shaped with a smaller top and a larger bottom. Several adjusting posts 60 are provided on the base 1, and threaded parts 61 are screwed onto the adjusting posts 60. The tips of the threaded parts 61 abut against the slide rail 40. Adjusting posts 60 are provided on both sides of each slide rail 40. Tightening the threaded parts 61 fixes the slide rail 40, and loosening the threaded parts 61 adjusts the position of the slide rail 40. The corresponding rollers 39 have guide grooves 62 on their surfaces that fit the upper part of the slide rail 40. This design prevents dust accumulation on the slide rail 40, thus avoiding obstruction of the work frame 3's sliding motion.

[0103] like Figure 5 As shown, both ends of the base 1 are fixed with limiting structures. The limiting structures include a limiting rod 63 that is adjustable and set inside the base 1. The bottom of the work frame 3 is fixed with an abutting block 64 for abutting against the limiting rod 63. The inner side of the base 1 is fixed with a limiting plate 65. The upper end of the limiting plate 65 is provided with a threaded hole 66. One end of the limiting rod 63 is threaded into the threaded hole 66.

[0104] When it is necessary to move the work frame 3 above the drilling platform 7, the sliding power source 41 is activated, causing the work frame 3 to slide on the top of the base 1 toward the drilling platform 7. During the sliding of the work frame 3, the abutment block 64 moves toward the limiting rod 63 located on one side of the drilling platform 7. When the sticker moves above the drilling platform 7, the abutment block 64 abuts against the limiting rod 63. Under the abutment action of the limiting rod 63, the work frame 3 stops moving.

[0105] When it is necessary to move the sticker to the top of the second drilling platform 8, the sliding power source 41 is activated, causing the work frame 3 to slide on the top of the base 1 toward the second drilling platform 8. During the sliding of the work frame 3, the abutment block 64 moves toward the limiting rod 63 located on one side of the first drilling platform 7. When the sticker moves to the top of the second drilling platform 8, the abutment block 64 abuts against the limiting rod 63. Under the abutment action of the limiting rod 63, the work frame 3 stops moving.

[0106] The limiting rod 63 is threaded into the threaded hole 66. When the limiting distance of the limiting rod 63 needs to be increased, simply rotate and move the limiting rod 63 towards the limiting plate 65, shortening the length of the limiting rod 63 extending beyond the limiting plate 65, thereby increasing the distance between the limiting rod 63 and the abutment block 64, and thus increasing the limiting distance of the limiting rod 63. Conversely, when the limiting distance of the limiting rod 63 needs to be decreased, simply rotate and move the limiting rod 63 away from the limiting plate 65, lengthening the length of the limiting rod 63 extending beyond the limiting plate 65, thereby decreasing the distance between the limiting rod 63 and the abutment block 64, and thus decreasing the limiting distance of the limiting rod 63.

[0107] It will be understood by those skilled in the art that the above embodiments are merely examples, and features of different embodiments can be combined with each other to obtain implementation methods that are readily conceived of according to the content disclosed in this utility model but are not explicitly shown in the accompanying drawings.

[0108] Those skilled in the art should understand that the embodiments described above and illustrated in the figures are merely illustrative of the present invention and are not intended to limit the scope of the invention. All equivalent implementations, modifications, and improvements within the spirit of the present invention should be included within the protection scope of the present invention.

Claims

1. An asynchronous lifting and tilting rotary drilling rig, characterized in that: include Base (1); A rotary drill holder (2) is mounted on the base (1); The work frame (3) is located above the rocker drill frame (2) and has an input end and an output end; The work frame (3) is provided with a conveying component and a sticker mechanism for conveying stickers. The sticker mechanism includes a first pressing part located on the output end side and a second pressing part located on the input end side. The first pressing part is connected to a first roller (48) that can move up and down, and the second pressing part is connected to a second roller (55) that can move up and down.

2. The asynchronous lifting and sticking drill rocker according to claim 1, characterized in that: The first pressing part also includes a first pressing cylinder (47) fixed on the work frame (3), the output end of the first pressing cylinder (47) is connected to a roller seat (51), and the first roller (48) is rotatably connected to the roller seat (51).

3. The asynchronous lifting and tilting drilling machine according to claim 1, characterized in that: The second pressing part also includes a second pressing cylinder (54) fixed on the work frame (3). The output end of the second pressing cylinder (54) is connected to a roller seat (51), and the second roller (55) is rotatably connected to the roller seat (51).

4. An asynchronous lifting and sticking drill rocker according to claim 2, characterized in that: The work frame (3) includes a main frame (34) and a middle frame (46) distributed vertically. A mounting plate (49) is installed on the main frame (34). A lower guide plate (50) is provided at the lower part of the mounting plate (49). The cylinder body of the first pressing cylinder (47) is fixed on the mounting plate (49) and the lower guide plate (50).

5. An asynchronous lifting and tilting drilling machine according to claim 4, characterized in that: At least one side of the roller seat (51) in the first pressing part is also connected to a guide rod (52), which passes through the lower guide plate (50) and the mounting plate (49).

6. The asynchronous lifting and tilting drilling machine according to claim 4, characterized in that: An upper guide plate (56) is provided on the main frame (34) on one side of the input end, and a lower guide plate (50) is fixed on the middle frame (46) below the upper guide plate (56). The cylinder body of the second pressing cylinder (54) is fixed on the upper guide plate (56) and the lower guide plate (50).

7. An asynchronous lifting and tilting rotary drilling machine according to claim 6, characterized in that: The main frame (34) is fixed with vertically arranged reinforcing plates (57) on both sides, and the two ends of the upper guide plate (56) are fixed to the upper end of the reinforcing plate (57). The height of the upper guide plate (56) is higher than that of the mounting plate (49).

8. An asynchronous lifting and tilting drilling machine according to claim 6, characterized in that: The conveying assembly includes at least two input rollers (35) at the input end and two output rollers (36) at the output end, one of which is connected to an output power source (37) mounted on the work frame (3).

9. An asynchronous lifting and tilting rotary drilling rig, characterized in that: include The work stand has input and output terminals; A conveying assembly is disposed on the work stand; A sticker-applying mechanism is provided on the work stand; and The drilling table, wherein the sticker mechanism includes a first pressing part located on the output end side and a second pressing part located on the input end side, the first pressing part is connected to a first roller that can move up and down, and the second pressing part is connected to a second roller that can move up and down.

10. An asynchronous lifting and tilting drilling machine according to claim 9, characterized in that, It includes at least two rotary drilling rigs, wherein the rotary drilling machine is divided into at least two workstations according to the arrangement direction of the rotary drilling rigs, the number of workstations is the same as the number of rotary drilling rigs and corresponds one-to-one, wherein the rotary drilling rigs only work in their respective workstations, and the work frame is driven to move back and forth along the arrangement direction of the rotary drilling rigs to realize the switching of the work frame between different workstations.