A pottery clay material mixing treatment device for cultural relic restoration
By designing a clay material mixing and processing device, the problem of impurities that cannot be removed by the mixer was solved, achieving efficient mixing and quality control of clay, and improving the effect of cultural relic restoration.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-11-08
- Publication Date
- 2026-04-10
AI Technical Summary
Existing mixers cannot effectively remove impurities when mixing clay, resulting in a decline in clay quality and affecting the restoration effect.
A clay material mixing and processing device for cultural relic restoration was designed, which includes a cleaning device, a drying device, and a striking device. By combining the use of the feed inlet, the extrusion device, the screw rod, and the striking device, impurities are removed, dry and wet materials are separated, and air bubbles are eliminated.
It improves the uniformity and quality of clay mixing, simplifies the operation process, increases the degree of automation, and ensures the repair effect of clay.
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Figure CN116175767B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application relates to a material mixing device for restoring cultural relics. BACKGROUND
[0002] Cultural relic restoration is an important part of cultural relic protection, which directly applies traditional crafts and modern technical means to cultural relics to carry out physical and chemical restoration measures, so that the artistic and historical original appearance of the cultural relics can be preserved and recognized, the cultural relic diseases can be slowed down or terminated, the cultural relics can be safely preserved for a long time.
[0003] Currently, when cultural relics are restored, clay materials are mixed and stirred, water is added as a diluent, and then the mixed materials are used to repair cultural relics.
[0004] Currently, when clay is stirred and mixed, a stirrer is usually used for stirring. The clay is directly put into the stirrer. The clay contains some impurities. The traditional stirrer is only made of stirring blades and a stirring barrel. The stirring blades are driven to rotate by a motor to mix the mud. The impurities cannot be removed. The stirring range is limited. The position of the stirring blades needs to be adjusted manually. The stirring efficiency is poor. The impurities and the clay cannot be separated. After stirring, the quality of the clay is affected, and the clay cannot be further processed and used. Therefore, the application provides a clay material mixing device for restoring cultural relics. SUMMARY
[0005] The application aims to provide a clay material mixing device for restoring cultural relics to solve the problems in the background.
[0006] In order to achieve the above object, the present application provides the following technical scheme: a pottery clay material mixing treatment device for cultural relic restoration, comprising an upper cover body and a lower cover body, a plurality of feeding ports are arranged on the outer circle of the top of the upper cover body, a cleaning device for removing impurities in the pottery clay entering from the feeding port is arranged on the inner bottom of the upper cover body, a drying device for dry-wet separation of the pottery clay is arranged on the bottom of the cleaning device, a beating device for mixing and treating bubbles of the dried pottery clay is arranged on the inner bottom of the lower cover body near the bottom of the drying device; an axis sleeve is arranged in the inner part of the upper cover body, a feeding device is arranged on the top of the cleaning device in the inner part of the upper cover body, the feeding device mixes the pottery clay material in the inner part of the upper cover body through a contraction mode, the feeding device comprises an extrusion device for extruding and mixing the pottery clay, a driving member for driving the extrusion device to extrude is arranged on the top of the upper cover body, and the extrusion device is arranged on the axis sleeve; the driving member comprises a working hydraulic rod arranged on the top of the upper cover body and a conical column arranged on the bottom of the output rod of the working hydraulic rod, and the diameter of the conical column is matched with the axis sleeve; the extrusion device comprises a plurality of push rods movably connected to the axis sleeve, a first spring sleeved on one end of the push rod and fixed with the axis sleeve, and an extrusion plate arranged on the end of the push rod away from the conical column, a plurality of extrusion holes are formed in the extrusion plate; a mixing cavity is arranged between every two adjacent extrusion plates in the inner part of the upper cover body, a plurality of spiral rods for repeatedly mixing the mixed material through lifting are arranged on the bottom of the upper cover body, an inclined cavity is arranged on the bottom of the spiral rods, a transmission assembly for driving the spiral rods to rotate is arranged on the bottom of the inclined cavity, and a leakage hole is formed between every two adjacent mixing cavities on the top of the inclined cavity; the transmission assembly comprises a gear ring arranged on the inner bottom of the upper cover body, a spiral rod driving wheel arranged on the bottom of each spiral rod and engaged with the gear ring, a gear arranged in the inner circle of the gear ring, and a first motor arranged on the floor of the bottom of the upper cover body; wherein the pottery clay flows into the mixing cavity on the top of the spiral rod, the mixing cavity and the inclined cavity are in communication with each other, and the pottery clay reflows into the inclined cavity after free fall.
[0007] Preferably, an outlet is formed in the bottom of the axis sleeve and located in the inclined cavity, the cleaning device comprises a sundry treatment shell arranged on the bottom of the inclined cavity, a leakage plate arranged on the top of the sundry treatment shell, a filter plate arranged in the middle of the sundry treatment shell, a rotating shaft arranged in the middle of the leakage plate, a shielding plate arranged on the top of the rotating shaft and matched with the outlet, a piston arranged on the bottom of the conical column, and a plurality of pressing hammers arranged on the bottom of the piston, and the filter plate is made of two spliced plates clamped with each other.
[0008] Preferably, the drying device comprises a supporting plate arranged on the bottom of the sundry treatment shell, a heating wire electrically connected with the heater between the filter plate and the supporting plate, a second spring sleeved on the outer circle of the rotating shaft and abutting against the supporting plate, and a blocking block arranged on the bottom of the second spring.
[0009] Preferably, the beating device comprises a rotating bottom plate arranged at the bottom outer ring of the rotating shaft, an inclined plate arranged at the inner ring of the lower cover body, a water outlet shell arranged at the top inner ring of the inclined plate, a plurality of hammer hydraulic rods arranged on the inner ring of the water outlet shell, a speed reducer arranged at the inner bottom of the lower cover body, and a second motor arranged at the bottom of the speed reducer, the lower cover body is provided with water outlet holes around, and the water outlet holes are connected and communicated with the bottom of the outer ring of the inclined plate, and the bottom of the hammer hydraulic rod is provided with a hammer.
[0010] Preferably, a lifting hydraulic rod is arranged between the upper cover body and the lower cover body, a connecting ring is fixed to the outer ring of the upper cover body, and the upper cover body and the lower cover body are connected together through the lifting hydraulic rod driving the connecting ring. The upper cover body and the lower cover body are matched up and down, and support frames are arranged around the outer periphery of the lower cover body.
[0011] Preferably, the sundry processing shell is made of metal material.
[0012] Compared with the prior art, the present application has the following advantages:
[0013] The present application has the following advantages: BRIEF DESCRIPTION OF DRAWINGS
[0014] Figure 1 It is a schematic diagram of the overall structure of the present application;
[0015] Figure 2 It is a schematic diagram of the overall internal structure of the present application;
[0016] Figure 3 It is a schematic diagram of the structure of the material feeding device of the present application;
[0017] Figure 4 It is a schematic diagram of the structure of the material feeding device of the present application; Figure 3
[0018] Figure 5 The schematic view of the transmission assembly, the mixing cavity and the connecting structure of the screw rod of the application;
[0019] Figure 6 The schematic view of the structure of the transmission assembly of the application;
[0020] Figure 7 The schematic view of the structure of the cleaning device and the drying device of the application;
[0021] Figure 8 The schematic view of the structure of the striking device of the application.
[0022] In the figure: 1 - upper cover body; 2 - lower cover body; 201 - water outlet hole; 3 - support frame; 4 - lifting hydraulic rod; 5 - connecting ring; 6 - feeding inlet; 7 - working hydraulic rod; 701 - conical column; 8 - shaft sleeve; 801 - discharge port; 9 - extrusion plate; 10 - mixing cavity; 11 - sundry processing shell; 12 - water outlet shell; 13 - first spring; 14 - push rod; 15 - piston; 16 - pressing hammer; 17 - screw rod; 18 - material leakage hole; 19 - tooth ring; 20 - screw rod driving wheel; 21 - gear; 22 - first motor; 23 - shielding plate; 24 - leakage plate; 25 - filter plate; 26 - heating wire; 27 - support plate; 28 - second spring; 29 - rotating shaft; 30 - hammer hydraulic rod; 31 - rotating bottom plate; 32 - speed reducer; 33 - second motor; 34 - inclined plate. DETAILED DESCRIPTION
[0023] The technical solutions in the embodiments of the application will be described clearly and completely below with reference to the accompanying drawings in the embodiments of the application. Obviously, the described embodiments are only part of the embodiments of the application, rather than all the embodiments of the application. Based on the embodiments in the application, all other embodiments obtained by those skilled in the art without creative work fall within the protection scope of the application.
[0024] Please refer to Figures 1-8The application provides a technical scheme: a pottery clay material mixing treatment device for cultural relic restoration, which comprises an upper cover body 1 and a lower cover body 2, a plurality of feeding openings 6 are arranged on the outer ring of the top of the upper cover body 1, a cleaning device for removing impurities in the pottery clay after entering the feeding openings 6 is arranged on the inner bottom of the upper cover body 1, a drying device for dry-wet separation of the pottery clay is arranged on the bottom of the cleaning device, and a beating device for mixing the pottery clay after drying is arranged on the inner bottom of the lower cover body 2. In the application, the pottery clay is first mixed and then scattered, and then the impurities in the pottery clay are removed through the cleaning device. In the process of removing the impurities, the pottery clay is first put into the upper cover body 1 through the feeding openings 6, then a certain amount of water is injected into the upper cover body 1 through the feeding openings 6, the pottery clay and the water are mixed to become mud, then the impurities in the pottery clay are removed through the cleaning device, then the pottery clay is dried through the drying device below the cleaning device, the water in the mud is evaporated, then the pottery clay is dried and becomes blocks, and then the blocks fall on the beating device in the lower cover body 2. The beating device first integrates the blocky pottery clay blocks through rotation, then beats the blocky pottery clay when the beating device stops, so that the blocky pottery clay does not have bubbles, and finally the pottery clay is removed.
[0025] In addition, the drying device needs to control the heating time according to the dilution amount of the pottery clay required by the restoration of certain cultural relics. If the cultural relic to be restored needs a relatively hard pottery clay for restoration, the heating time is prolonged, and vice versa.
[0026] This step is used for mixing materials, so that the materials are mixed uniformly, therefore, a common stirring blade is not used for stirring, the mixing time is reduced, and the impurities are quickly mixed together. An axis sleeve 8 is arranged in the upper cover body 1, a feeding device is arranged on the top of the cleaning device in the upper cover body 1, the feeding device mixes the pottery clay materials in the upper cover body 1 through a contraction mode, the feeding device comprises an extrusion device for extruding and mixing the pottery clay, a driving member arranged on the top of the upper cover body 1 for driving the extrusion device to extrude, and the extrusion device is arranged on the axis sleeve 8 (the extrusion device and the axis sleeve 8 are slidably connected together).
[0027] The driving member comprises a working hydraulic rod 7 arranged on the top of the upper cover body 1 and a conical column 701 arranged on the bottom of the output rod of the working hydraulic rod 7, and the caliber of the conical column 701 matches the axis sleeve 8. The extrusion device comprises a plurality of push rods 14 movably connected to the axis sleeve 8, a first spring 13 sleeved on one end of the push rod 14 and fixed together with the axis sleeve 8, and an extrusion plate 9 arranged on the end of the push rod 14 away from the conical column 701, a plurality of extrusion holes are formed in the extrusion plate 9,Figures 3-5 It is known that the first spring 13 is in the initial state when the extrusion plate 9 is not working, and the end of the push rod 14 and the bottom of the conical column 701 are in contact, that is, at this time the extrusion plate 9 and the shaft sleeve 8 are close to each other. First, in the scheme design, each inlet 6 corresponds to the position of each extrusion plate 9 above. As the material is fed into the inlet 6, the clay enters between the extrusion plate 9 and the inner circle of the upper cover body 1, and then the PLC control system is opened to drive the output rod of the working hydraulic rod 7 to descend and ascend. When the output rod of the working hydraulic rod 7 descends, the conical column 701 is driven to descend, and the push rod 14 slides along the surface of the conical column 701. Since the bottom of the conical column 701 is conical, the push rod 14 can be driven to slide on the shaft sleeve 8. When the push rod 14 moves, it can drive the extrusion plate 9 to move between the outer circle of the shaft sleeve 8 and the inner circle of the upper cover body 1 to extrude the clay material inside the upper cover body 1. After the clay material is extruded, it can shuttle between the extrusion holes of the extrusion plate 9 when the output rod of the working hydraulic rod 7 rises.
[0028] As described above, the mixing chamber 10 is installed between the two adjacent extrusion plates 9 in the upper cover body 1 (the clay material is extruded by the extrusion plate 9 between the two adjacent mixing chambers 10), a plurality of screw rods 17 that repeatedly mix the mixed material by lifting are installed at the bottom of the upper cover body 1, a slope cavity is installed at the bottom of the plurality of screw rods 17, a transmission assembly that drives the plurality of screw rods 17 to rotate is installed at the bottom of the slope cavity, and a leakage hole 18 is formed between the two adjacent mixing chambers 10 at the top of the slope cavity. When the extrusion plate 9 moves back and forth between the two mixing chambers 10, the clay material will flow into the leakage hole 18 from the extrusion hole of the extrusion plate 9, and then flow into the inside of the slope cavity. Figure 5 It is known that the slope cavity is in an inclined state, and the inner circle of the slope cavity is in contact with the shaft sleeve 8. Figure 3 It is known that the slope cavity is in an inclined state, and the inner circle of the slope cavity is in contact with the shaft sleeve 8. At this time, the PIC control transmission assembly works to upload the clay inside the slope cavity through the screw rod 17, and then the clay flows into the mixing chamber 10 at the top of the screw rod 17, wherein the mixing chamber 10 and the inside of the slope cavity are in communication (not shown in the figure). The clay reflows into the inside of the slope cavity after free fall, and the free-falling clay hits the inside of the slope cavity to provide a dispersing force to the clay. Then, the clay flows into the cleaning device after being mixed and dispersed by the screw rod 17.
[0029] The transmission assembly includes a gear ring 19 arranged at the bottom of the upper cover body 1, a screw rod driving wheel 20 arranged at the bottom of each screw rod 17 and engaged with the gear ring 19, a gear 21 arranged at the inner circle of the gear ring 19, and a first motor 22 arranged on the floor at the bottom of the upper cover body 1. Figure 5It can be seen that the first motor 22 shaft is connected with a separate gear, the gear 21 and these gears are engaged, and then drive the gear ring 19 to rotate, wherein the gear ring 19 bottom has a slip ring, which needs to be supported during the installation of the device (not shown in the figure), the PIC controls the first motor 22 to drive the gear 21 to rotate, the gear 21 drives the gear ring 19 to rotate, the gear ring 19 drives the screw rod driving wheel 20 to rotate, and each screw rod 17 is driven to rotate, that is, the pottery mud can be lifted.
[0030] The bottom of the shaft sleeve 8 is provided with a discharge port 801 inside the inclined cavity, the cleaning device comprises a sundry processing shell 11 (the sundry processing shell 11 is made of metal material) arranged at the bottom of the inclined cavity, a sieve plate 24 arranged at the top of the sundry processing shell 11, a filter plate 25 (optionally a sieve plate with a mesh size of 100-500) arranged in the middle of the sundry processing shell 11, a rotating shaft 29 arranged in the middle of the sieve plate 24, a shielding plate 23 arranged at the top of the rotating shaft 29 and matched with the discharge port 801, a piston 15 arranged at the bottom of the conical column 701, and a plurality of pressing hammers 16 arranged at the bottom of the piston 15. The filter plate 25 is made of two interlocking splice plates. First, the discharge port 801 is located inside the inclined cavity for discharging. When the above-mentioned extrusion plate 9 and the screw rod 17 are moving, the shielding plate 23 and the discharge port 801 are in a matching state, so that the pottery material will not leak during mixing. Then, after the material is mixed, it only needs to be discharged by separating the shielding plate 23 from the discharge port 801 driven by the rotating shaft 29. After the pottery material flows into the discharge port 801 (according to the amount of the material, if the material is too much, the shielding plate 23 is reversed to block the discharge port 801, reducing the workload of the drying device, and processing the material in batches), then the material flows into the sieve plate 24 for pre-cleaning. The material passes through the sieve plate 24 (starting solid-liquid separation, and the heating device is started), and at the same time, the work hydraulic rod 7 continues to control the output rod to output the stroke, so that the piston 15 descends in the inner circle of the shaft sleeve 8 to compress the gas (after the heating device is started, the air in the inner circle of the shaft sleeve 8 is in a heated and expanded state), so that the piston 15 can drive the mud above the sieve plate 24 to be quickly separated out, and after the separation, the pottery material flows onto the filter plate 25. Since the piston 15 continues to compress the hot gas to drive the mud on the filter plate 25 to continue to separate out, the small stones in the mud are isolated above the filter plate 25. Since the filter plate 25 is made of two interlocking splice plates, when the filter plate 25 is separated out, the splice plate on one side is separated from the other splice plate (according to the Figure 7 It can be seen that the filter plate 25 can be directly separated from the sundry processing shell 11. One of the splice plates of the filter plate 25 is movably connected with the rotating shaft 29, and the splice plate is clamped on the other splice plate (according to the Figure 7 According to the direction of expression, the filter plate 25 is separated to the right side) to facilitate the external cleaning of the plate.
[0031] After the foregoing clay flows into the drying device through the filter plate 25, the drying device comprises a support plate 27 arranged at the bottom of the sundry processing shell 11, heating wires 26 arranged between the filter plate 25 and the support plate 27 and electrically connected with the heating wires 26, a second spring 28 sleeved on the outer ring of a rotating shaft 29 and abutting against the support plate 27, and a blocking block arranged at the bottom of the second spring 28, wherein Figure 7 It is known that the support plate 27 also has a mesh hole with a smaller diameter than the filter plate 25, so that water flows into the lower beating device, when the clay above the support plate 27 increases, the support plate 27 is pressed downward due to the self weight of the clay, the heating wires 26 are always in the heating state when the clay falls, the water on the surface of the clay is heated by the gas in the shaft sleeve 8 and the surface of the heating wires 26, and the water is evaporated, and when the clay increases, the support plate 27 is separated from the bottom of the sundry processing shell 11, so that the clay falls on the beating device, wherein the shape of the support plate 27 is conical when installed and implemented, the tip of the cone is directed to the filter plate 25, the falling clay is facilitated, and the specification shown in the figure is not necessarily followed.
[0032] The hitting device comprises a rotating bottom plate 31 arranged at the bottom outer ring of the rotating shaft 29, an inclined plate 34 arranged at the inner ring of the bottom cover 2, a water outlet shell 12 arranged at the top inner ring of the inclined plate 34, a plurality of hammer hydraulic rods 30 arranged on the inner ring of the water outlet shell 12, a speed reducer 32 arranged at the bottom inner part of the bottom cover 2, and a second motor 33 arranged at the bottom of the speed reducer 32. The bottom cover 2 is provided with water outlet holes 201 around the periphery, and the water outlet holes 201 and the bottom outer ring of the inclined plate 34 are connected and communicated. The bottom of the hammer hydraulic rod 30 is provided with a hammer. Firstly, when the mud pre-separates water, the water flows from the supporting plate 27 to the rotating bottom plate 31. The second motor 33 is controlled by the PLC to drive the rotating bottom plate 31 to rotate, so that the water is quickly thrown out along the bottom hole of the water outlet shell 12 to the inclined plate 34. Then the water flows out to the outside through the water outlet holes 201 (when the rotating bottom plate 31 rotates quickly, the shutter 23 sweeps the shaft sleeve 8 quickly to block the discharge port 801. The second motor 33 is set to rotate several turns. After the shaft of the second motor 33 rotates several turns, the shutter 23 and the discharge port 801 are matched together. Then the motor enters a stop rotating state). Then when the mud rolls to the rotating bottom plate 31, it is in a semi-dry state. Then the speed reducer 32 is shifted to adjust the speed, so that the shaft of the second motor 33 rotates at a lower speed. A pile of mud is located at the edge of the rotating bottom plate 31 due to the centrifugal force. Then the motor enters a stop rotating state (similar to the working mechanism of a washing machine motor - intermittent stop). When the second motor 33 is intermittently stopped, the hammer hydraulic rod 30 can be lifted by the PLC control, so that the hammer at the bottom of the hammer hydraulic rod 30 rolls and presses the mud at the edge of the rotating bottom plate 31. Then the second motor 33 is continuously driven to rotate and stop, so that the bubbles in the mud are discharged.
[0033] The lifting hydraulic rod 4 is arranged between the upper cover 1 and the bottom cover 2. The connecting ring 5 is fixed to the outer ring of the upper cover 1. The upper cover 1 and the bottom cover 2 are connected together through the lifting hydraulic rod 4 driving the connecting ring 5. The upper cover 1 and the bottom cover 2 are matched together. The support frame 3 is arranged around the periphery of the bottom cover 2. The upper cover 1 and the bottom cover 2 are spliced together before being installed. After the bubbles in the mud are discharged, the upper cover 1 is separated from the bottom cover 2 by driving the output rod of the lifting hydraulic rod 4 to extend upwards. Then the mud in the rotating bottom plate 31 can be taken out manually, so that the whole device can be cleaned. The external water pipe is connected to each inlet 6 to directly pour water into the inside of the upper cover 1. When the output rod of the lifting hydraulic rod 4 rises, it is convenient for manual cleaning of the inside of the bottom cover 2.
[0034] It is to be understood that the terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting; it is not intended to exclude myriad other embodiments of the present application that other inventors can develop based on the same general inventive concepts embodied by the described embodiments. That is, although the present application is described in terms of particular embodiments and implementations, it is to be understood that the terminology used is for the purpose of descriptive clarity and that it is intended to be limited only by the words recited in the appended claims. It is to be understood that the terms such as first and second, etc., merely are used to differentiate one from another without necessarily implying or requiring any actual relationship or order between them. Moreover, the terms "comprises", "comprising", or any other variations thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but can include other elements not expressly listed or inherent to such process, method, article, or apparatus.
[0035] While the embodiments of the application have been shown and described herein, it is to be understood that the application is not limited to these embodiments. Rather, many modifications, changes, substitutions, and alterations can be made thereto without departing from the spirit and scope of the present application as defined by the appended claims and their equivalents.
Claims
1. A kind of pottery clay material mixing processing device for cultural relics restoration, including upper cover body (1) and lower cover body (2), it is characterized by: The top outer ring of the upper cover (1) is provided with multiple feed inlets (6). The bottom of the upper cover (1) is equipped with a cleaning device for removing impurities from the clay after it enters from the feed inlets (6). The bottom of the cleaning device is equipped with a drying device for separating the clay into wet and dry states. The bottom of the lower cover (2) is equipped with a striking device for mixing and removing air bubbles from the dried clay near the bottom of the drying device. The upper cover (1) is provided with a spindle sleeve (8) inside. The upper cover (1) is provided with a feeding device installed on the top of the cleaning device. The feeding device mixes the clay material inside the upper cover (1) by shrinkage. The feeding device includes an extrusion device for extruding and mixing the clay, and a driving component located on the top of the upper cover (1) for driving the extrusion device to extrude. The extrusion device is provided on the spindle sleeve (8). The driving component includes a working hydraulic rod (7) located on the top of the upper cover (1) and a tapered column (701) located at the bottom of the output rod of the working hydraulic rod (7), wherein the diameter of the tapered column (701) matches that of the shaft sleeve (8). The extrusion device includes a plurality of push rods (14) movably connected to the shaft sleeve (8), a first spring (13) sleeved on one end of the push rod (14) and fixed together with the shaft sleeve (8), and an extrusion plate (9) disposed on the end of the push rod (14) away from the tapered column (701), the extrusion plate (9) having a plurality of extrusion holes. The upper cover (1) has a mixing chamber (10) installed between two adjacent extrusion plates (9) inside. The bottom of the upper cover (1) is equipped with a plurality of spiral rods (17) that use lifting to repeatedly mix the mixed materials. The upper cover (1) has an inclined cavity installed at the bottom of the plurality of spiral rods (17). The bottom of the inclined cavity is equipped with a transmission component that drives the plurality of spiral rods (17) to rotate. The top of the inclined cavity has a material leakage hole (18) between two adjacent mixing chambers (10). The transmission assembly includes a toothed ring (19) located at the bottom of the upper cover (1), a screw drive wheel (20) located at the bottom of each screw (17) and meshing with the toothed ring (19), a gear (21) located on the inner ring of the toothed ring (19), and a first motor (22) located on the bottom floor of the upper cover (1). The clay flows into the mixing chamber (10) from the top of the screw rod (17). The mixing chamber (10) and the inclined chamber are interconnected. After free fall, the clay flows back into the inclined chamber.
2. The device for mixing and processing pottery clay material for restoring cultural relics according to claim 1, characterized in that: The bottom of the shaft sleeve (8) is provided with a discharge port (801) inside the inclined cavity, the cleaning device comprises a sundry processing shell (11) arranged at the bottom of the inclined cavity, a sieve plate (24) arranged at the top of the sundry processing shell (11), a filter plate (25) arranged in the middle of the sundry processing shell (11), a rotating shaft (29) arranged in the middle of the sieve plate (24), a baffle (23) arranged at the top of the rotating shaft (29) and matched with the discharge port (801), a piston (15) arranged at the bottom of the conical column (701), and a plurality of pressing hammers (16) arranged at the bottom of the piston (15), and the filter plate (25) is made of two spliced plates.
3. The device for mixing and processing pottery clay material for restoring cultural relics according to claim 1, characterized in that: The drying device comprises a support plate (27) arranged at the bottom of the sundry processing shell (11), a heating wire (26) arranged between the filter plate (25) and the support plate (27) and electrically connected with the heater, a second spring (28) sleeved on the outer circle of the rotating shaft (29) and abutting against the support plate (27), and the rotating shaft (29) is provided with a blocking block at the bottom of the second spring (28).
4. The device for mixing and processing pottery clay material for restoring cultural relics according to claim 1, characterized in that: The striking device comprises a rotating bottom plate (31) arranged at the outer circle of the bottom of the rotating shaft (29), an inclined plate (34) arranged at the inner circle of the lower cover body (2), a water outlet shell (12) arranged at the top of the inner circle of the inclined plate (34), a plurality of hammer hydraulic rods (30) arranged on the inner circle of the water outlet shell (12), a speed reducer (32) arranged at the bottom of the lower cover body (2), and a second motor (33) arranged at the bottom of the speed reducer (32), the lower cover body (2) is provided with a water outlet hole (201) around, and the water outlet hole (201) is connected and communicated with the outer circle bottom of the inclined plate (34), and the bottom of the hammer hydraulic rod (30) is provided with a hammer.
5. The device for mixing and processing clay material for restoring cultural relics according to claim 1, characterized in that: The lifting hydraulic rod (4) is arranged between the upper cover body (1) and the lower cover body (2), the connecting ring (5) is fixed to the outer circle of the upper cover body (1), and the upper cover body (1) and the lower cover body (2) are connected together by driving the connecting ring (5) through the lifting hydraulic rod (4), the upper cover body (1) and the lower cover body (2) are matched in up and down, and the support frame (3) is arranged around the outer circle of the lower cover body (2).
6. The clay material mixing and processing device for cultural relic restoration according to claim 2, characterized in that: The sundry processing shell (11) is made of metal material.
Citation Information
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