Artificial stone distributing device
By driving the pressure beam to move up and down and using a height adjustment mechanism, the problems of existing artificial stone material feeding devices being unable to form circular patterns and uneven powder distribution have been solved, achieving diverse pattern effects and high-quality material feeding.
Patent Information
- Application Number
- CN202520155570.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-22
- Publication Date
- 2026-02-13
- Estimated Expiration
- 2035-01-22
AI Technical Summary
Existing artificial stone fabric installation devices cannot create circular pattern textures, and the compaction or looseness of the powder is difficult to adjust, resulting in poor fabric quality.
The material is spread by moving the pressure beam up and down, combined with a height adjustment mechanism and transmission components. The pressure beam is driven up and down by an eccentric wheel to create a variety of pattern and texture effects. The distance of the material spreading mechanism is adjusted according to the thickness of the artificial stone to ensure the uniformity of the powder.
It achieves linear and circular pattern textures, has a wide range of applications, avoids compaction or loosening of powder, and improves fabric quality.
Smart Images

Figure CN223904613U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to artificial stone cloth field, especially in kind of artificial stone cloth device. BACKGROUND
[0002] The existing artificial stone cloth device is to scatter powder on artificial stone, adopt roller bar to roll and press, press the powder flat on artificial stone, form the texture of different depth and position on artificial stone, make the product have the pattern effect similar to natural stone texture.
[0003] Firstly, this cloth mode is through the roller bar to roll and press on the surface from one end to the other end of artificial stone, and this connection roll and press cloth mode can only form the pattern texture effect of line, and the pattern texture effect similar to the ring cannot be formed, and different cloth requirements cannot be met.
[0004] Secondly, the position of the roller bar installed in the device is fixed, that is, the height of the roller bar is fixed, but the thickness of the artificial stone may be different, so that the powder may be too solid or too loose, and the cloth quality is poor.
[0005] Finally, the space range of the roller bar in the device is limited, and the size of the roller bar cannot be replaced, the both ends of the roller bar are respectively provided with baffle plates, the artificial stone is placed between the two baffle plates, and the roller bar rolls and presses on it. If the width of the artificial stone is less than the distance between the two baffle plates, that is, less than the length of the roller bar, the material overflow phenomenon is easy to appear, and the material will accumulate on one side of the baffle plate after a long time, which needs to be cleaned in time. CONTENT OF THE UTILITY MODEL
[0006] The utility model solves the technical problem to provide a kind of artificial stone cloth device, different cloth requirements can be met, and cloth quality is good.
[0007] In order to solve the above technical problems, the utility model provides a kind of artificial stone cloth device, including frame, height adjusting mechanism, lifting beam and cloth mechanism, the height adjusting mechanism is installed on frame, the height adjusting mechanism and lifting beam are connected to drive lifting beam to lift;The cloth mechanism is installed on lifting beam;
[0008] The cloth mechanism includes driving mechanism, transmission assembly and pressure beam, the driving mechanism is installed on lifting beam, the transmission assembly includes eccentric wheel, the eccentric wheel is respectively connected with driving mechanism and pressure beam, and the driving mechanism drives pressure beam to move up and down through eccentric wheel.
[0009] As the improvement of the above scheme, the transmission assembly includes wheel seat and guide column, the eccentric wheel is arranged in the wheel seat and movably connected with the wheel seat, one end of the guide column is movably connected with the wheel seat, and the other end is connected with the pressure beam.
[0010] As an improvement of the above scheme, the pressing beam is arranged below the lifting beam.
[0011] The lifting beam is provided with a transmission hole, and a guide sleeve is arranged on the transmission hole.
[0012] As an improvement of the above scheme, the guide column is movably connected with the wheel seat through a positioning pin.
[0013] The guide column and the pressing beam are detachably connected.
[0014] As an improvement of the above scheme, the driving mechanism is connected with the eccentric wheel through a driving assembly.
[0015] The driving assembly comprises a driving rotating shaft arranged on the lifting beam, one end of the driving rotating shaft is connected with the driving mechanism, and the other end is connected with the eccentric wheel.
[0016] As an improvement of the above scheme, the wheel seat is provided with a first bearing, and the eccentric wheel is rotatably connected with the wheel seat through the first bearing.
[0017] The lifting beam is provided with a supporting seat, the supporting seat is provided with a second bearing, and the driving rotating shaft is arranged on the second bearing.
[0018] The transmission assembly comprises a connecting plate and a fastener, the connecting plate is fixedly connected with the eccentric wheel through the fastener, and the connecting plate is fixedly connected with the driving rotating shaft through the fastener.
[0019] As an improvement of the above scheme, the height adjusting mechanism is a worm and gear lifting mechanism.
[0020] As an improvement of the above scheme, the height adjusting mechanism comprises a lifting assembly, the lifting assembly comprises a lifting worm, a lifting worm gear and a driving worm, the lifting worm gear is arranged on the lifting worm, and the driving worm and the lifting worm gear are connected to drive the lifting worm to rotate.
[0021] The lifting worm and the lifting beam are screw-connected.
[0022] As an improvement of the above scheme, the number of the lifting assemblies is at least two, and the lifting assemblies are arranged at two ends of the lifting beam respectively.
[0023] The height adjusting mechanism further comprises a linkage assembly, the linkage assembly comprises a connecting shaft, and the connecting shaft is provided with linkage worm gears at two ends respectively, and the linkage worm gears are connected with the driving worm respectively.
[0024] As an improvement of the above scheme, the rack is provided with a guide plate, the lifting beam and the guide plate abut and can move along the guide plate.
[0025] The utility model has the advantages that:
[0026] The artificial stone distributing device drives the pressing beam to move up and down, so that the pressing beam flattens the powder on the artificial stone, that is, the distributing method of patting is used to form the pattern texture on the surface of the artificial stone. The distributing method of patting can not only form the pattern texture effect in the form of lines, but also form the pattern texture effect in the form of circles, so that different distribution requirements can be met, and the application range is wide. Specifically, the driving mechanism drives the pressing beam to move up and down through the eccentric wheel, the eccentric wheel provides reliable patting force for the pressing beam, ensures that the pressing beam generates accurate and reliable force on the artificial stone, and further ensures the distribution quality.
[0027] In addition, the height of the lifting beam can be adjusted through the height adjusting mechanism, that is, the distance between the distribution mechanism and the artificial stone can be adjusted according to the thickness of the artificial stone, so as to ensure the force of the pressing beam acting on the artificial stone, avoid the condition that the powder is too compact or too loose, and the distribution quality is good. BRIEF DESCRIPTION OF DRAWINGS
[0028] Figure 1 is a structural schematic view of the artificial stone distributing device of the utility model;
[0029] Figure 2 is Figure 1 is a structural schematic view of the frame, the height adjusting mechanism and the lifting beam;
[0030] Figure 3 is Figure 1 is a structural schematic view of the driving mechanism, the driving assembly and the lifting beam;
[0031] Figure 4 is Figure 1 is a connection structure sectional view of the driving shaft, the transmission assembly and the pressing beam. DETAILED DESCRIPTION
[0032] In order to make the purpose, technical scheme and advantages of the utility model more clear, the utility model will be described in further detail below in combination with the drawings. Only this statement, the up, down, left, right, front, back, inside, outside and other directions of the utility model appearing or about to appear in the text are based on the drawings of the utility model, and they are not specific limitations on the utility model.
[0033] Referring to Figures 1-4 The utility model discloses a kind of artificial stone distributing devices, including frame 1, height adjusting mechanism, lifting beam 7 and distribution mechanism, the height adjusting mechanism is installed on frame 1, the height adjusting mechanism and lifting beam 7 are connected, to drive lifting beam 7 to lift;The distribution mechanism is installed on lifting beam 7.
[0034] The cloth mechanism comprises a driving mechanism 2, a transmission assembly and a pressing beam 6, the driving mechanism 2 is installed on a lifting beam 7, the transmission assembly comprises an eccentric wheel 4, the eccentric wheel 4 is connected with the driving mechanism 2 and the pressing beam 6 respectively, and the driving mechanism 2 drives the pressing beam 6 to move up and down through the eccentric wheel 4.
[0035] The artificial stone cloth device drives the pressing beam to move up and down, so that the pressing beam flattens the powder on the artificial stone, that is, the cloth device adopts the beating cloth mode to form the pattern texture on the surface of the artificial stone. The beating cloth mode can not only form the pattern texture effect in the form of lines, but also form the pattern texture effect similar to the circle, so that different cloth requirements can be met, and the application range is wide. Specifically, the driving mechanism drives the pressing beam to move up and down through the eccentric wheel, the eccentric wheel provides reliable beating force for the pressing beam, ensures that the pressing beam generates accurate and reliable force on the artificial stone, and further ensures the cloth quality.
[0036] In addition, the height of the lifting beam can be adjusted through the height adjusting mechanism, that is, the distance between the cloth mechanism and the artificial stone can be adjusted according to the thickness of the artificial stone, so that the force of the pressing beam acting on the artificial stone is ensured, and the conditions that the powder is too hard or too loose are avoided, and the cloth quality is good.
[0037] Preferably, the driving mechanism 2 is a speed reducer, but is not limited thereto.
[0038] Specifically, as shown in Figure 4 The transmission assembly comprises a wheel seat 3 and a guide column 5, the eccentric wheel 4 is arranged in the wheel seat 3 and is movably connected with the wheel seat 3, one end of the guide column 5 is movably connected with the wheel seat 3, and the other end of the guide column 5 is connected with the pressing beam 6. The driving mechanism 2 is connected with the eccentric wheel 4 to drive the wheel seat 3 to move up and down, drive the guide column 5 to move up and down, and further drive the pressing beam 6 to move up and down. The center of the eccentric wheel is not on the rotation point, the driving mechanism drives the eccentric wheel to rotate in the wheel seat, so that the wheel seat moves up and down, the wheel seat drives the guide column to move up and down, and the pressing beam moves up and down, so that the pressing beam intermittently contacts the artificial stone, and the beating cloth mode is realized.
[0039] More specifically, as shown in Figure 1 , 4 The pressing beam 6 is arranged below the lifting beam 7; the lifting beam 7 is provided with a transmission hole 71, the transmission hole 71 is provided with a guide sleeve 51, and the guide column 5 is arranged in the guide sleeve 51. The transmission hole plays a limiting and guiding role in the movement of the guide column, and the guide sleeve is arranged to reduce the friction between the guide column and the lifting beam and reduce the movement resistance of the guide column, thereby saving energy consumption. The guide sleeve is fixedly installed on the lifting beam and is inserted in the transmission hole, the guide column passes through the guide sleeve and the transmission hole and is connected with the pressing beam below the lifting beam, so that the pressing beam moves up and down.
[0040] Preferably, asFigure 4 As shown, the guide post 5 is movably connected to the wheel seat 3 via a positioning pin 52. The positioning pin 52 passes through both the wheel seat 3 and the guide post 5, and both the guide post and the wheel seat can rotate around the positioning pin, ensuring that the wheel seat can smoothly drive the guide post.
[0041] Preferably, the guide post 5 and the pressure beam 6 are detachably connected. To reduce material overflow, a pressure beam of similar length to the width of the artificial stone can be used for material application. In other words, pressure beams of different lengths can be selected for material application based on the width of the artificial stone, providing greater flexibility.
[0042] Furthermore, such as Figures 3-4 As shown, the drive mechanism 2 is connected to the eccentric wheel 4 via a drive assembly. The drive assembly includes a drive shaft 21 mounted on the lifting beam 7. One end of the drive shaft 21 is connected to the drive mechanism 2, and the other end is connected to the eccentric wheel 4. Specifically, the other end of the drive shaft 21 passes through the eccentric wheel 4 and is fixedly connected to it. The drive mechanism drives the drive shaft to rotate, which in turn drives the eccentric wheel to rotate. The eccentric wheel rotates within its seat, causing the seat to move up and down alternately. This movement, along with the guide column, drives the pressure beam, creating a striking action on the artificial stone.
[0043] Preferably, such as Figure 4 As shown, the transmission assembly includes a connecting plate 31 and a fastener 32. The connecting plate 31 is fixedly connected to the eccentric wheel 4 via the fastener 32, and the connecting plate 31 is also fixedly connected to the drive shaft 21 via the fastener 32. Therefore, the drive shaft and the eccentric wheel are circumferentially fixed together by the connecting plate and the fastener, ensuring that the drive shaft effectively drives the eccentric wheel to rotate. The fastener 32 is preferably a screw.
[0044] To reduce friction between the wheel seat and the eccentric wheel and save energy, preferably, such as Figure 4 As shown, the wheel seat 3 is provided with a first bearing 33, and the eccentric wheel 4 is rotatably connected to the wheel seat 3 through the first bearing 33.
[0045] Preferably, such as Figures 3-4 As shown, the lifting beam 7 is provided with a support seat 72, and the support seat 72 is provided with a second bearing 22. The drive shaft 21 passes through the second bearing 22. The support seat supports the drive shaft and facilitates the installation of the transmission components. The second bearing reduces friction between the support seat and the drive shaft, saving energy.
[0046] Furthermore, the height adjustment mechanism is a worm gear lifting mechanism. The worm gear lifting mechanism can employ existing technological structures.
[0047] Specifically, such as Figures 1-2As shown, the height adjusting mechanism comprises a lifting assembly, the lifting assembly comprises a lifting worm 8, a lifting worm wheel (not shown in the figure) and a driving worm 9, the lifting worm wheel is arranged on the lifting worm 8, the driving worm 9 and the lifting worm wheel are connected to drive the lifting worm 8 to rotate; the lifting worm 8 and the lifting beam 7 are threadedly connected.
[0048] The lifting worm wheel is sleeved on the lifting worm 8, and the lifting worm wheel and the lifting worm 8 are fixed in the circumferential direction. Rotating the driving worm makes the lifting worm wheel rotate, thereby driving the lifting worm to rotate. The lifting beam is fixedly installed with a nut, and the nut and the lifting worm are threadedly connected. When the lifting worm rotates, the nut, i.e. the lifting beam, will move along the lifting worm, thereby realizing the lifting of the lifting beam. The driving worm is provided with a hand wheel, and the worker rotates the hand wheel to make the driving worm rotate. Rotating the driving worm clockwise or counterclockwise realizes the lifting or lowering of the lifting beam.
[0049] Preferably, the number of the lifting assemblies is at least two, and the lifting assemblies are arranged at the two ends of the lifting beam 7 respectively. The arrangement of the two lifting assemblies ensures that the lifting beam as a whole is lifted synchronously and stably and reliably. More preferably, the lifting assemblies are symmetrically arranged at the two ends of the lifting beam 7.
[0050] In order to ensure that the two lifting assemblies operate synchronously, more preferably, as shown in Figures 1-2 As shown, the height adjusting mechanism further comprises a linkage assembly, the linkage assembly comprises a connecting shaft 11, the two ends of the connecting shaft 11 are respectively provided with linkage worm wheels (not shown in the figure), and the linkage worm wheels are respectively connected with the driving worm 9. The linkage worm wheels are sleeved on the connecting shaft 11 and are fixed in the circumferential direction of the connecting shaft 11. When the driving worm rotates, it drives the lifting worm wheel to rotate, and also drives the linkage worm wheel to rotate, which in turn drives the connecting shaft to rotate, so that the other linkage worm wheel rotates, thereby driving the other lifting assembly to operate, and realizing the synchronous lifting of the two ends of the lifting beam.
[0051] Preferably, as shown in Figures 1-2 As shown, the rack 1 is provided with a guide plate 10, the lifting beam 7 and the guide plate 10 abut and can move along the guide plate 10. The guide plate plays a limiting and guiding role in the movement of the lifting beam, avoiding the deviation of the guide plate. More preferably, the guide plate 10 is arranged at the opposite sides of the lifting beam 7 respectively and abuts with the lifting beam 7. Specifically, a guide channel is arranged between the two guide plates 10, and the lifting beam 7 moves up and down in the guide channel.
[0052] Preferably, the bottom of the pressing beam 6 is provided with a wear-resistant pad plate (not shown in the figure), and the pressing beam 6 contacts with the artificial stone through the wear-resistant pad plate, thereby improving the wear resistance of the pressing beam and also playing a role in protecting the artificial stone.
[0053] Preferably, as shown in Figure 1 , 3As shown, the lifting beam 7 is provided with a protective cover 23, which covers the driving assembly and the transmission assembly outside.
[0054] In summary, the artificial stone distributing device can meet different distribution requirements and has good distribution quality.
[0055] The above is the preferred embodiment of the present application, it should be pointed out that, for those skilled in the art, without departing from the principles of the present application, can make a number of improvements and refinements, these improvements and refinements also as the protection scope of the present application.
Claims
1. A manufactured stone cladding device, characterized in that, The cloth mechanism is installed on the lifting beam, and the cloth mechanism and the pressing beam are connected through the transmission assembly. The transmission assembly includes a wheel seat and a guide column, the eccentric wheel is arranged in the wheel seat and movably connected with the wheel seat, one end of the guide column is movably connected with the wheel seat, and the other end of the guide column is connected with the pressing beam.
2. The artificial stone distributing device according to claim 1, wherein The pressing beam is arranged below the lifting beam.
3. The artificial stone distributing device according to claim 2, wherein The lifting beam is provided with a transmission hole, and a guide sleeve is arranged on the transmission hole. The guide column is movably connected with the wheel seat through a positioning pin.
4. The artificial stone distributing device according to claim 2, wherein The guide column and the pressing beam are detachably connected. The driving mechanism is connected with the eccentric wheel through a driving assembly.
5. The artificial stone distributing device according to claim 2, wherein The driving assembly includes a driving shaft arranged on the lifting beam, one end of the driving shaft is connected with the driving mechanism, and the other end of the driving shaft is connected with the eccentric wheel. The wheel seat is provided with a first bearing, and the eccentric wheel is rotatably connected with the wheel seat through the first bearing.
6. The artificial stone distributing device according to claim 5, wherein The lifting beam is provided with a support seat, the support seat is provided with a second bearing, and the driving shaft is arranged in the second bearing. The transmission assembly includes a connecting plate and a fastener, the connecting plate is fixedly connected with the eccentric wheel through the fastener, and the connecting plate is fixedly connected with the driving shaft through the fastener. The height adjusting mechanism is a worm and gear lifting mechanism.
7. The artificial stone distributing device according to any one of claims 1 to 6, wherein The height adjusting mechanism includes a lifting assembly, the lifting assembly includes a lifting worm, a lifting worm gear and a driving worm, the lifting worm gear is arranged on the lifting worm, and the driving worm and the lifting worm gear are connected to drive the lifting worm to rotate.
8. The artificial stone distributing device according to claim 7, wherein The lifting worm is threadedly connected with the lifting beam. The number of the lifting assemblies is at least two, and the lifting assemblies are arranged at two ends of the lifting beam respectively.
9. The artificial stone distributing device according to claim 8, wherein The height adjusting mechanism further includes a linkage assembly, the linkage assembly includes a connecting shaft, and the connecting shaft is provided with linkage worm gears at two ends respectively. The lifting beam and the guide plate abut and can move along the guide plate.
10. The artificial stone distributing device according to claim 8, wherein