Wide-grain filling device and powder distributing machine

By designing the wide and long material outlets and rotating drive of the wide-textured filler device, combined with the material pusher and tamping device, precise material distribution and texture control of the powder were achieved, solving the problem of the lack of three-dimensionality and naturalness in the texture of artificial stone slabs, and improving filling efficiency and aesthetics.

CN223719784UActive Publication Date: 2025-12-26VEEGOO TECH CO LTD
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Patent Information

Application Number
CN202520155354.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-22
Publication Date
2025-12-26
Estimated Expiration
2035-01-22

AI Technical Summary

Technical Problem

Existing spray nozzle technology cannot precisely control the position of the powder, resulting in a lack of three-dimensionality and naturalness in the texture of artificial stone slabs. Furthermore, the powder tends to exceed the predetermined area, reducing the filling efficiency of wide and narrow textures and increasing costs.

Method used

Design a wide-texture filler device, which uses a length-to-width ratio greater than 1 for the material feeding opening. The length and width of the material feeding opening are adjusted by a wide-texture rotary driver. Combined with a pusher and a tamping device, the device can achieve precise material feeding and texture control.

Benefits of technology

It improves the filling efficiency of wide and narrow textures, forming three-dimensional, natural, unique and beautiful textures. The textures are closer to nature, solving the problem of the lack of three-dimensionality and naturalness in existing technologies, and reducing the cost of fillers.

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Abstract

The utility model discloses a wide-grain filling device and a powder distributing machine. The wide-grain filling device comprises a wide-grain distribution hopper, a wide-grain distribution frame and a wide-grain rotation driver; the wide-grain distribution hopper is provided with a wide-grain feeding channel; the wide-grain material distribution frame is provided with a long-wide material distribution opening, and the input end of the long-wide material distribution opening is communicated with the output end below the wide-grain feeding channel; the length-width ratio of the length-width distribution opening is greater than 1; and the wide-grain rotation driver is used for driving the wide-grain material distribution frame to rotate and adjusting the length direction and the width direction of the length-width material distribution opening. According to the scheme, width control over the filling texture can be achieved, the filling efficiency of the width texture is improved, the plate blank can form the three-dimensional, natural, unique and attractive texture, the texture is closer to the natural texture, and the problems that the texture of an existing artificial stone plate blank lacks the three-dimensional sense and the natural sense, and the filling efficiency is low are solved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to cloth device field especially relates to a wide line filling device and powder cloth distributor. BACKGROUND

[0002] The existing artificial stone blank is generally through the spray head and directly outputs the powder to the blank, and the powder output position and angle of the spray head are uncontrollable, on the one hand, the precision of powder spraying is reduced, the formed texture lacks stereoscopic and natural feeling, and lacks uniqueness and beauty compared with natural stone, on the other hand, the powder may exceed the predetermined area, needs to be sprayed repeatedly, also leads to the filling efficiency of wide and narrow texture to be reduced, and the cost of filling is also increased. SUMMARY

[0003] The utility model discloses a wide line filling device, which is provided with a length-width cloth outlet with a length-width ratio greater than 1, and can adjust the length direction and width direction of the length-width cloth outlet under the driving action of a wide line rotating driver, so as to realize the width control of the filling texture, improve the filling efficiency of the wide and narrow texture, and enable the blank to form a stereoscopic, natural and unique and beautiful texture.

[0004] The utility model also provides a powder cloth distributor, which uses the above wide line filling device.

[0005] To achieve this purpose, the utility model adopts the following technical scheme:

[0006] A wide line filling device, comprising: a wide line cloth hopper, a wide line cloth frame and a wide line rotating driver;

[0007] The wide line cloth hopper is provided with a wide line feeding channel; the wide line cloth frame is provided with a length-width cloth outlet, and the input end of the length-width cloth outlet is communicated with the output end below the wide line feeding channel; and the length-width ratio of the length-width cloth outlet is greater than 1.

[0008] The wide line rotating driver is used to drive the wide line cloth frame to rotate and adjust the length direction and width direction of the length-width cloth outlet.

[0009] Optimally, the wide line cloth frame is rotatably installed at the lower end of the wide line cloth hopper, and the output end of the wide line rotating driver is connected to the wide line cloth frame, so as to drive the wide line cloth frame to relatively rotate in the wide line cloth hopper.

[0010] Optimally, the wide line cloth frame is installed at the lower end of the wide line cloth hopper, and the two are synchronously rotatably connected; and the output end of the wide line rotating driver is connected to the wide line cloth frame or the wide line cloth hopper, so as to drive the wide line cloth frame and the wide line cloth hopper to synchronously rotate.

[0011] The wide-line cloth frame is provided with a pushing plate on the outer edge of the long and wide cloth port.

[0012] The wide-line rotating driver includes a wide-line rotating motor, a wide-line rotating driving wheel and a wide-line rotating driven wheel.

[0013] The output end of the wide-line rotating motor is connected to the wide-line rotating driving wheel for driving the wide-line rotating driving wheel to rotate.

[0014] The wide-line filling machine frame and the tamping device are further included.

[0015] The wide-line cloth hopper, the wide-line rotating driver and the tamping device are respectively installed on the wide-line filling machine frame.

[0016] The output end of the tamping device extends into the wide-line feeding channel.

[0017] The tamping device includes a tamping lifting driver and a tamping device.

[0018] The output end of the tamping lifting driver is connected to the tamping device for driving the tamping device to move up and down, so that the tamping device moves up and down in the wide-line feeding channel and / or the long and wide cloth port.

[0019] The tamping device further includes a tamping rotating driver.

[0020] The tamping rotating driver is installed on the wide-line filling machine frame, and the output end of the tamping rotating driver is connected to the tamping lifting driver for driving the tamping lifting driver to rotate and drive the tamping device to rotate.

[0021] The tamping device includes a tamping fixed plate and a tamping column.

[0022] A plurality of tamping columns are arranged in a straight line on the same tamping fixed plate, and a gap is formed between adjacent two tamping columns. The output end of the tamping lifting driver is connected to the tamping fixed plate for driving the tamping fixed plate to move up and down, so that a plurality of tamping columns move up and down.

[0023] A powder filling machine includes a wide-line filling moving device and the above-mentioned wide-line filling device.

[0024] The output end of the wide-line filler moving device is connected to the wide-line filler device, and is used to drive the wide-line filler device to move at an arbitrary angle.

[0025] Compared with the prior art, the above technical scheme has the following beneficial effects:

[0026] The wide-line filler device has a long-width cloth feeding port with a length-width ratio greater than 1, and can adjust the length direction and width direction of the long-width cloth feeding port under the driving action of the wide-line rotating driver. The wide-line filler device can realize the width control of the filler texture, improve the filling efficiency of the wide-line texture, and make the plate blank form a three-dimensional, natural, and unique aesthetic texture. The texture is closer to the natural texture, and solves the problems of lack of three-dimensional and natural feeling of the existing artificial stone plate blank and low filling efficiency. BRIEF DESCRIPTION OF DRAWINGS

[0027] Fig. 1 is a structural schematic diagram of one embodiment of the wide-line filler device;

[0028] Fig. 2 is a structural schematic diagram of one embodiment of the wide-line filler device;

[0029] Fig. 3 is a structural schematic diagram of one embodiment of the wide-line cloth feeding frame.

[0030] Among them:

[0031] Wide-line filler device 1; wide-line filler moving device 4;

[0032] Wide-line cloth feeding hopper 11, wide-line cloth feeding frame 12, wide-line rotating driver 13; wide-line filler frame 14, material tamping device 15;

[0033] Wide-line feeding channel 111; long-width cloth feeding port 121; length direction 1211; width direction 1212; material pushing cambered plate 1213; material pushing end face 1214; material pushing inclined surface 1215;

[0034] Wide-line rotating motor 131, wide-line rotating driving wheel 132, wide-line rotating driven wheel 133;

[0035] Material tamping lifting driver 151, material tamping device 152; material tamping rotating driver 153;

[0036] Material tamping fixed plate 1521, material tamping column 1522. DETAILED DESCRIPTION

[0037] The embodiments of the present application are described below in detail, examples of which are shown in the drawings, wherein the same or similar notations represent the same or similar elements or elements having the same or similar functions throughout. The embodiments described below by reference to the drawings are exemplary only, and are used only for explaining the present application, and cannot be understood as a limitation of the present application.

[0038] In the description of the present application, it should be understood that the orientation or positional relationship indicated by the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "upper", "lower", "left", "right", "front", "rear", "vertical", "horizontal", "top", "bottom", "inner", "outer", "inner side", "outer side", "inner end", "outer end", "axial", "radial", "circumferential" and the like is based on the orientation or positional relationship shown in the drawings, and is only for the convenience of describing the present application and simplifying the description, and therefore cannot be understood as indicating or implying that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation of the present application. In addition, the features limited as "first" and "second" can explicitly or implicitly include one or more of the features, which are used to distinguish the described features, and have no order or weight. In the description of the present application, unless otherwise stated, the meaning of "a plurality of" is two or more.

[0039] As Figs. 1-3 A wide-line filling device 1, comprising: a wide-line hopper 11, a wide-line feeding frame 12 and a wide-line rotating driver 13;

[0040] The wide-line hopper 11 is provided with a wide-line feeding channel 111; the wide-line feeding frame 12 is provided with a long-and-wide feeding port 121, an input end of the long-and-wide feeding port 121 being communicated with an output end below the wide-line feeding channel 111; and a length-to-width ratio of the long-and-wide feeding port 121 is greater than 1;

[0041] The wide-line rotating driver 13 is used for driving the wide-line feeding frame 12 to rotate, so as to adjust a length direction 1211 and a width direction 1212 of the long-and-wide feeding port 121.

[0042] The present scheme provides a wide-line filling device 1, which is provided with a long-and-wide feeding port 121 with a length-to-width ratio greater than 1, and can adjust a length direction 1211 and a width direction 1212 of the long-and-wide feeding port 121 under the driving action of a wide-line rotating driver 13, so as to realize the control of the width of the filling texture, improve the filling efficiency of the wide-and-narrow texture, enable the plate blank to form a three-dimensional, natural and unique and beautiful texture, and make the texture closer to the natural texture, thereby solving the problems of lack of three-dimensional and natural feeling of the texture of the existing artificial stone plate blank and low filling efficiency.

[0043] Specifically, the wide-line cloth hopper 11 is provided with a wide-line feeding channel 111, which is equivalent to a funnel structure. The inner diameter of the wide-line feeding channel 111 gradually narrows from top to bottom, that is, the wide-line feeding channel 111 forms a large-diameter end at the upper end and a small-diameter end at the lower end. The large-diameter end is more convenient for receiving the material from above, and the small-diameter end can output the powder to the length-width cloth opening 121 of the wide-line cloth frame 12. The length-width cloth opening 121 has a certain length-width ratio, which is greater than 1, that is, the length is greater than the width. After the length-width cloth opening 121 receives the powder, the powder will be distributed according to the inner diameter profile of the length-width cloth opening 121, so as to be distributed according to the length and width of the length-width cloth opening 121. The output end of the wide-line rotating driver 13 is directly or indirectly connected to the wide-line cloth frame 12 for driving the wide-line cloth frame 12 to rotate, driving the length-width cloth opening 121 to rotate, and adjusting the length direction 1211 and the width direction 1212 of the length-width cloth opening 121. When the wide-line cloth frame 12 distributes powder to a certain area, the side of the wide-line cloth frame 12 in the length direction 1211 is perpendicular to the distribution direction, so the width of the distribution is large. When the side of the wide-line cloth frame 12 in the width direction 1212 is perpendicular to the distribution direction, the width of the distribution is small. Further, the length direction 1211 or the width direction 1212 can be inclined toward the distribution direction, so that the width of the distribution is smaller than the length or the width of the length-width cloth opening 121. The projection of the length-width cloth opening 121 in the length direction 1211 or the width direction 1212 to the distribution area can control the width of the filling texture, and the width can make the distribution concentrated in a certain area, avoiding the waste of powder, thereby improving the filling efficiency of the wide-line texture.

[0044] The wide-line rotating driver 13 is a mechanism known to have a rotating driving function, such as a motor, or a combination of a motor and a speed reducer, etc.

[0045] Optimally, the wide-line cloth frame 12 is rotatably installed at the lower end of the wide-line cloth hopper 11, and the output end of the wide-line rotating driver 13 is connected to the wide-line cloth frame 12 for driving the wide-line cloth frame 12 to rotate relative to the wide-line cloth hopper 11.

[0046] In this embodiment, the position of the wide-line cloth hopper 11 is fixed, for example, fixed to the wide-line filling frame 14, the wide-line cloth frame 12 is rotatably installed on the wide-line cloth hopper 11, and only the output end of the wide-line rotating driver 13 needs to be connected to the wide-line cloth frame 12 to drive the length-width cloth opening 121 to rotate, thereby adjusting the length direction 1211 and the width direction 1212 of the length-width cloth opening 121.

[0047] The wide-line cloth frame 12 is preferably mounted at the lower end of the wide-line cloth hopper 11, and the two are connected in synchronous rotation; the output end of the wide-line rotation driver 13 is connected to the wide-line cloth frame 12 or the wide-line cloth hopper 11, for driving the wide-line cloth frame 12 and the wide-line cloth hopper 11 to rotate synchronously.

[0048] In this embodiment, the position of the wide-line cloth hopper 11 can be adjusted by rotation, for example, the wide-line cloth hopper 11 is rotatably mounted on the wide-line filling frame 14; the wide-line cloth frame 12 is integrally connected to the wide-line cloth hopper 11; only the output end of the wide-line rotation driver 13 needs to be connected to the wide-line cloth frame 12 or the wide-line cloth hopper 11, so as to drive the wide-line cloth hopper 11 to rotate relative to the wide-line filling frame 14, thereby improving the mixing effect, and also making the long-and-wide cloth port 121 rotate, so as to adjust the length direction 1211 and the width direction 1212 of the long-and-wide cloth port 121.

[0049] The wide-line cloth frame 12 is preferably provided with a pushing-up plate 1213 at the outer edge of the long-and-wide cloth port 121; the outer side of the pushing-up plate 1213 is provided with a pushing end face 1214; the outer diameter of the pushing end face 1214 gradually increases from low to high, so as to form a pushing-up slope 1215 below the top surface of the pushing-up plate 1213.

[0050] The pushing-up plate 1213 is located at the outer edge of the long-and-wide cloth port 121, that is, the pushing-up plate 1213 can surround the length direction 1211 and the width direction 1212 of the long-and-wide cloth port 121; the outer side of the pushing-up plate 1213 is provided with a pushing end face 1214, and the outer diameter of the pushing end face 1214 gradually increases from low to high; that is, the lower end of the pushing-up slope 1215 is closer to the long-and-wide cloth port 121 in the horizontal direction, and the upper end of the pushing-up slope 1215 is farther away from the long-and-wide cloth port 121 in the horizontal direction, thereby forming the pushing-up slope 1215; when the wide-line filling device 1 moves in the direction of the cloth, it can drive the wide-line cloth frame 12 to move, thereby driving the pushing-up slope 1215 to push the flat powder; the wide-line cloth frame 12 has both the function of cloth and the function of pushing, and can push away the powder in the area during the adjustment of the length direction 1211 and the width direction 1212 of the long-and-wide cloth port 121, thereby accurately distributing the cloth.

[0051] The wide-line rotation driver 13 preferably comprises a wide-line rotation motor 131, a wide-line rotation driving wheel 132, and a wide-line rotation driven wheel 133.

[0052] The output end of the wide-line rotation motor 131 is connected to the wide-line rotation driving wheel 132, for driving the wide-line rotation driving wheel 132 to rotate; the wide-line rotation driven wheel 133 is coaxially connected to the wide-line cloth frame 12, and the two rotate synchronously; the wide-line rotation driving wheel 132 is used for driving the wide-line rotation driven wheel 133 to rotate, thereby driving the wide-line cloth frame 12 to rotate.

[0053] The wide-rib rotating motor 131 can drive the wide-rib rotating driving wheel 132 to rotate, and drive the wide-rib rotating driven wheel 133 to rotate directly or indirectly through the wide-rib rotating driving wheel 132. In one embodiment, the wide-rib rotating driving wheel 132 and the wide-rib rotating driven wheel 133 are gears, and the two gears are engaged with each other. The wide-rib rotating driving wheel 132 directly drives the wide-rib rotating driven wheel 133 to rotate, and drives the wide-rib cloth frame 12 to rotate. In one embodiment, the wide-rib rotating driving wheel 132 and the wide-rib rotating driven wheel 133 are gears, and the two gears are engaged with each other. The wide-rib rotating driving wheel 132 can drive the wide-rib rotating driven wheel 133 to rotate through a toothed chain, and drive the wide-rib cloth frame 12 to rotate. In one embodiment, the wide-rib rotating driving wheel 132 and the wide-rib rotating driven wheel 133 are ordinary wheel structures, and the two are connected in synchronous rotation by using a synchronous belt. The wide-rib rotating driving wheel 132 can drive the wide-rib rotating driven wheel 133 to rotate through a toothed chain, and drive the wide-rib cloth frame 12 to rotate.

[0054] The wide-rib filler frame 14 and the tamping device 15 can be further optimized.

[0055] The wide-rib cloth hopper 11, the wide-rib rotating driver 13, and the tamping device 15 are respectively installed on the wide-rib filler frame 14.

[0056] The output end of the tamping device 15 extends into the wide-rib feeding channel 111.

[0057] The wide-rib filler frame 14 is a frame of the wide-rib cloth hopper 11, the wide-rib cloth frame 12, the wide-rib rotating driver 13, and the tamping device 15. The output end of the tamping device 15 can extend into the wide-rib feeding channel 111 from top to bottom, and can tamp and crush the powder in the wide-rib feeding channel 111 and / or the powder in the long-and-wide cloth port 121, so as to break the block-shaped stone material and form more powder, thereby avoiding that the block-shaped stone material blocks the wide-rib feeding channel 111 and / or the long-and-wide cloth port 121.

[0058] The tamping device 15 can be further optimized, and includes a tamping lifting driver 151 and a tamping device 152.

[0059] The output end of the tamping lifting driver 151 is connected to the tamping device 152, and is used to drive the tamping device 152 to move up and down, so as to make the tamping device 152 move up and down in the wide-rib feeding channel 111 and / or the long-and-wide cloth port 121.

[0060] The tamping lifting driver 151 can be used to drive the tamping device 152 to move up and down, so that the tamping device 152 moves up and down in the wide groove feeding channel 111 and / or the long and wide feeding port 121, and the powder in the wide groove feeding channel 111 and / or the long and wide feeding port 121 can be tamped. The block-shaped powder can be tamped mainly by the lifting action of the tamping device 152.

[0061] The tamping lifting driver 151 is a mechanism with a lifting function, such as a cylinder, an oil cylinder, a combination of a motor and a screw rod, a mechanical arm, etc.

[0062] Optimally, the tamping device 15 further comprises a tamping rotating driver 153.

[0063] The tamping rotating driver 153 is installed on the wide groove filling machine frame 14, and the output end of the tamping rotating driver 153 is connected to the tamping lifting driver 151, which is used to drive the tamping lifting driver 151 to rotate, so as to drive the tamping device 152 to rotate.

[0064] The tamping rotating driver 153 can drive the tamping lifting driver 151 to rotate, so as to drive the tamping device 152 of the tamping lifting driver 151 to rotate. In addition to tamping the powder by lifting, the tamping device 152 can also tamping the powder by rotating, and can stir the powder, so that the powder is more dispersed.

[0065] The tamping rotating driver 153 is a mechanism with a rotating function, such as a motor, or a combination of a motor and a speed reducer, etc.

[0066] Optimally, the tamping device 152 comprises a tamping fixed plate 1521 and a tamping column 1522.

[0067] A plurality of tamping columns 1522 are arranged in a straight line on the same tamping fixed plate 1521, and a gap is formed between two adjacent tamping columns 1522. The output end of the tamping lifting driver 151 is connected to the tamping fixed plate 1521, which is used to drive the tamping fixed plate 1521 to move up and down, so that the plurality of tamping columns 1522 move up and down.

[0068] The plurality of tamping columns 1522 are installed on the same tamping fixed plate 1521, the output end of the tamping lifting driver 151 is connected to the tamping fixed plate 1521, the tamping lifting driver 151 drives the tamping fixed plate 1521 to lift, that is, the plurality of tamping columns 1522 can be driven to lift simultaneously; the lower end bottom area of the tamping column 1522 is small, and the contact area with the powder is small, so that the pressure when the tamping column 1522 is pressed is large, and the powder can be more easily crushed. Combined with the rotating driving effect of the tamping rotating driver 153 on the tamping lifting driver 151, the tamping column 1522 can also rotate after crushing the powder, and the powder crushed and separated from the gap between the tamping columns 1522 is more uniform.

[0069] A powder distributing machine, comprising: a wide-line filler moving device 4 and the wide-line filler device 1 described above;

[0070] The output end of the wide-line filler moving device 4 is connected to the wide-line filler device 1, and is used for driving the wide-line filler device 1 to move at an arbitrary angle.

[0071] The wide-line filler moving device 4 is a device known to have a driving moving function, such as a mobile machine tool, etc., which generally has driving mechanisms in X-axis, Y-axis and Z-axis directions, and can drive the wide-line filler device 1 to move at an arbitrary angle, so as to realize the distribution of the powder in different areas of the stone slab, and the width control of the filler texture in multiple areas.

[0072] Although the embodiments of the present application have been shown and described, those skilled in the art can understand that various changes, modifications, replacements and variations can be made to these embodiments without departing from the principles and purposes of the present application, and the scope of the present application is defined by the claims and their equivalents.

Claims

1. A wide line filler device, characterized by, The application relates to a wide-rib filling device. The wide-rib filling device comprises a wide-rib hopper, a wide-rib frame and a wide-rib rotating driver. The wide-rib hopper is provided with a wide-rib feeding channel. The wide-rib frame is provided with a long-wide material port, and the input end of the long-wide material port is communicated with the output end below the wide-rib feeding channel; the length-width ratio of the long-wide material port is greater than 1. The wide-rib rotating driver is used for driving the wide-rib frame to rotate, so as to adjust the length direction and width direction of the long-wide material port.

2. A wide slot filler device according to claim 1, wherein, The wide-rib frame is rotatably installed at the lower end of the wide-rib hopper, and the output end of the wide-rib rotating driver is connected to the wide-rib frame, so as to drive the wide-rib frame to relatively rotate with the wide-rib hopper.

3. A wide slot filler device according to claim 1, wherein, The wide-rib frame is installed at the lower end of the wide-rib hopper, and the two are synchronously rotatably connected; the output end of the wide-rib rotating driver is connected to the wide-rib frame or the wide-rib hopper, so as to drive the wide-rib frame and the wide-rib hopper to synchronously rotate.

4. A wide slot filler device according to claim 1, wherein, The wide-rib frame is provided with a material pushing camber plate at the outer edge of the long-wide material port; the outer side of the material pushing camber plate is provided with a material pushing end face; the outer diameter of the material pushing end face gradually increases from low to high, so that a material pushing inclined surface is formed below the top surface of the material pushing camber plate.

5. A wide slot filler device according to claim 1, wherein, The wide-rib rotating driver comprises a wide-rib rotating motor, a wide-rib rotating driving wheel and a wide-rib rotating driven wheel. The output end of the wide-rib rotating motor is connected to the wide-rib rotating driving wheel, so as to drive the wide-rib rotating driving wheel to rotate; the wide-rib rotating driven wheel is coaxially connected to the wide-rib frame, and the two synchronously rotate; the wide-rib rotating driving wheel is used for driving the wide-rib rotating driven wheel to rotate, so as to drive the wide-rib frame to rotate.

6. A wide-line filling device according to any one of claims 1-5, characterized in that The application further relates to a wide-rib filling device. The wide-rib filling device comprises a wide-rib filling frame and a material tamping device. The wide-rib hopper, the wide-rib rotating driver and the material tamping device are respectively installed on the wide-rib filling frame. The output end of the material tamping device extends into the wide-rib feeding channel.

7. A wide slot filler device according to claim 6, wherein, The material tamping device comprises a material tamping lifting driver and a material tamper. The output end of the material tamping lifting driver is connected to the material tamper, so as to drive the material tamper to lift and move, and make the material tamper lift and move in the wide-rib feeding channel and / or the long-wide material port.

8. A wide slot filler device according to claim 7, wherein, The material tamping device further comprises a material tamping rotating driver. The material tamping rotating driver is installed on the wide-rib filling frame, and the output end of the material tamping rotating driver is connected to the material tamping lifting driver, so as to drive the material tamping lifting driver to rotate, and drive the material tamper to rotate.

9. A wide slot filler device according to claim 8, wherein, The material tamper comprises a material tamping fixed plate and a material tamping column. A plurality of material tamping columns are arranged in a straight line on the same material tamping fixed plate, and a gap is formed between two adjacent material tamping columns; the output end of the material tamping lifting driver is connected to the material tamping fixed plate, so as to drive the material tamping fixed plate to lift and move, and make the plurality of material tamping columns lift and move.

10. A powder distributor, characterized in that The application further relates to a wide-rib filling device. The wide-rib filling device comprises a wide-rib filling frame and a material tamping device. The output end of the wide-rib filling moving device is connected to the wide-rib filling device, so as to drive the wide-rib filling device to move at an arbitrary angle.