Anti-crack and anti-seepage putty powder and production process thereof
By designing a putty powder production device including a rolling roller and a circulation cavity, the circulating crushing of putty powder raw materials is realized, and the problem of inability to circulating rolling in the prior art is solved, and the production efficiency and product quality are improved.
Patent Information
- Application Number
- CN202510167175.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-15
- Publication Date
- 2025-05-06
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The existing putty powder production process cannot cycle through rolling and crushing the putty powder raw material until the putty powder raw material is crushed to a specified size.
A crack-resistant and leak-proof putty powder production device is designed, including a device bracket, sliding seat, drive sleeve, rolling roller and circulation cavity. Through multiple rolling and screening, the putty powder raw material can be circulated and crushed.
The circulating crushing and crushing of putty powder raw materials is realized, ensuring that the putty powder reaches the specified size, and improving production efficiency and product quality.
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Figure CN119926564A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to putty powder production, and more specifically to crack-resistant and leak-proof putty powder and a production process. Background Art
[0002] Putty powder is a material used for surface treatment of walls, ceilings, etc. It is mainly used to fill gaps, repair surface defects, and make the coating smoother. For example, publication number CN113926262A discloses an improved high-efficiency dust removal equipment for the production of putty powder, which can enable the filter bin to have a collection function. When the filter screen in the filter bin is replaced after use, even if the large particles of impurities collected on the filter screen fall off during the replacement process, the fallen large particles of impurities can be collected in time to prevent them from falling and scattering dust, thereby reducing the burden of dust removal operations. However, the disadvantage of this patent is that the putty powder raw material cannot be crushed and crushed in a cycle until the putty powder raw material is crushed to a specified size. Summary of the invention
[0003] The invention aims to provide a crack-resistant and leak-proof putty powder and a production process, which can cyclically crush and crush the putty powder raw materials until the putty powder raw materials are crushed into a specified size.
[0004] The purpose of the present invention is achieved through the following technical solutions:
[0005] A crack-resistant and leak-proof putty powder production device comprises a device support, wherein four sliding seats are slidably connected to the device support, and driving sleeves are rotatably connected to the four sliding seats, and rolling rollers II are fixedly connected to the four driving sleeves, and two rolling rollers I are rotatably connected between the four rolling rollers II, and the two rolling rollers I are respectively fixedly connected to two driving shafts, and the two driving shafts are rotatably connected between the four driving sleeves;
[0006] The sliding seat is fixedly connected with a power mechanism I for driving the driving sleeve to rotate, and the sliding seat is fixedly connected with a power mechanism II for driving the driving shaft to rotate;
[0007] The rolling roller II is provided with a plurality of rolling protrusions I, and the rolling roller I is provided with a plurality of rolling protrusions II;
[0008] The device bracket is rotatably connected to two screw rods, the threads at both ends of the screw rods are rotated in opposite directions, four sliding seats are respectively connected to the two ends of the two screw rods by threads, and the device bracket is fixedly connected to a power mechanism III for driving the screw rods to rotate;
[0009] Two circulation cavities are fixedly connected to the device bracket, each circulation cavity is rotatably connected to a circulation disk, each circulation disk is fixedly connected to a plurality of pusher plates, and a power mechanism IV for driving the circulation disk to rotate is fixedly connected to the circulation cavity;
[0010] The lower part of the upper side of the circulation cavity is fixedly connected with a connection cavity I, the lower sides of the two connection cavities I are fixedly connected to the ash shielding cavity, the ash shielding cavity is covered on the outside of the four rolling rollers II and the two rolling rollers I, the lower end of the ash shielding cavity is fixedly connected with a connection cavity II, and the connection cavity II and the two circulation cavities are connected;
[0011] The upper side of the ash shielding cavity is fixedly connected with a feeding cavity;
[0012] The bottom of the connecting cavity II is conical, and a plurality of sieve holes are arranged at the bottom of the connecting cavity II;
[0013] A crack-resistant and leak-proof putty powder, which is processed by using an anti-cracking and leak-proof putty powder production device;
[0014] A production process for anti-cracking and anti-leakage putty powder, the process comprising the following steps:
[0015] Step 1: The putty powder raw material is passed through the feeding cavity to between the two rolling rollers I. The rolling roller I crushes the putty powder raw material for the first time and then enters the bottom of the connecting cavity II for filtration;
[0016] Step 2: The putty powder raw materials that cannot be filtered out enter the circulation cavity, and enter the connecting cavity I again through the rotation of the circulation disk, and enter between the two rolling rollers II through the connecting cavity I;
[0017] Step 3: The two rolling rollers II crush the putty powder raw materials for the second time and then enter the bottom of the connecting cavity II for filtration;
[0018] Step 4: Repeat steps 2 and 3 for the putty powder raw materials that cannot be filtered out. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] The present invention is further described in detail below with reference to the accompanying drawings and specific implementation methods.
[0020] Figure 1 It is a structural schematic diagram of the anti-cracking and anti-leakage putty powder production device of the present invention;
[0021] Figure 2 It is a cross-sectional view of the production device of the anti-cracking and anti-leakage putty powder of the present invention;
[0022] Figure 3 It is a schematic diagram of the device support structure of the present invention;
[0023] Figure 4 It is a schematic diagram of the structure of the rolling roller I of the present invention;
[0024] Figure 5 It is a schematic diagram of the screw rod structure of the present invention;
[0025] Figure 6 It is a schematic diagram of the structure of the rolling roller II of the present invention;
[0026] Figure 7 It is a schematic diagram of the structure of the sliding seat of the present invention;
[0027] Figure 8 It is a schematic diagram of the drive shaft structure of the present invention;
[0028] Fig. 9 It is a schematic diagram of the structure of the connection cavity I of the present invention;
[0029] Fig.10 It is a schematic diagram of the structure of the connection cavity II of the present invention;
[0030] Fig.11 is a cross-sectional view of the connection cavity II of the present invention;
[0031] Fig.12 It is a schematic diagram of the circulation cavity structure of the present invention;
[0032] Fig.13 It is a schematic diagram of the circulation cavity structure of the present invention;
[0033] Fig.14 It is a schematic diagram of the circulation disk structure of the present invention.
[0034] In the figure: device bracket 11; screw rod 12; sliding seat 21; driving sleeve 22; rolling roller II 23; rolling protrusion I 24; driving shaft 31; rolling roller I 32; rolling protrusion II 33; dust shielding cavity 41; connecting cavity II 42; connecting cavity I 43; feeding cavity 44; circulation cavity 51; circulation disk 52; pushing plate 53. DETAILED DESCRIPTION
[0035] The present invention is further described in detail below with reference to the accompanying drawings.
[0036] like Figures 1 to 14 As shown, in order to achieve the technical effect of "the putty powder raw materials can be cyclically crushed and crushed until the putty powder raw materials are crushed into a specified size", the structure and function of the crack-resistant and leak-proof putty powder production device are described in detail below;
[0037] A crack-resistant and leak-proof putty powder production device comprises a device support 11, four sliding seats 21 are slidably connected to the device support 11, driving sleeves 22 are rotatably connected to the four sliding seats 21, rolling rollers II 23 are fixedly connected to the four driving sleeves 22, two rolling rollers I 32 are rotatably connected between the four rolling rollers II 23, the two rolling rollers I 32 are respectively fixedly connected to two driving shafts 31, and the two driving shafts 31 are rotatably connected between the four driving sleeves 22;
[0038] The sliding seat 21 is fixedly connected with a power mechanism I for driving the driving sleeve 22 to rotate, and the sliding seat 21 is fixedly connected with a power mechanism II for driving the driving shaft 31 to rotate;
[0039] The rolling roller II 23 is provided with a plurality of rolling protrusions I 24 , and the rolling roller I 32 is provided with a plurality of rolling protrusions II 33 ;
[0040] The device bracket 11 is rotatably connected to two screw rods 12, the threads at both ends of the screw rods 12 are rotated in opposite directions, and four sliding seats 21 are respectively connected to the two ends of the two screw rods 12 through threads. The device bracket 11 is fixedly connected to a power mechanism III for driving the screw rods 12 to rotate;
[0041] The device bracket 11 is fixedly connected to two circulation chambers 51, each circulation chamber 51 is rotatably connected to a circulation disk 52, each circulation disk 52 is fixedly connected to a plurality of pusher plates 53, and the circulation chamber 51 is fixedly connected to a power mechanism IV for driving the circulation disk 52 to rotate;
[0042] The lower part of the upper side of the circulation cavity 51 is fixedly connected with a connection cavity Ⅰ43, and the lower sides of the two connection cavities Ⅰ43 are fixedly connected to the dust shielding cavity 41. The dust shielding cavity 41 is covered on the outside of the four rolling rollers Ⅱ23 and the two rolling rollers Ⅰ32. The lower end of the dust shielding cavity 41 is fixedly connected with a connection cavity Ⅱ42, and the connection cavity Ⅱ42 is connected with the two circulation cavities 51.
[0043] The upper side of the ash shielding cavity 41 is fixedly connected with a feeding cavity 44;
[0044] The bottom of the connecting cavity II 42 is conical, and a plurality of sieve holes are arranged at the bottom of the connecting cavity II 42;
[0045] When using, Figure 1 As shown, the raw materials of the anti-cracking and anti-leakage putty powder are put into the feeding cavity 44, the lower side of the feeding cavity 44 is located at the lower side between the two rolling rollers Ⅰ32, the power mechanism Ⅱ is started, the power mechanism Ⅱ is preferably a servo motor, the output shaft of the power mechanism Ⅱ starts to rotate, the output shaft of the power mechanism Ⅱ drives the drive shaft 31 to rotate, the drive shaft 31 drives the rolling roller Ⅰ32 to rotate, the two rolling rollers Ⅰ32 rotate in opposite directions, that is, the rolling roller Ⅰ32 on the left rotates clockwise, and the rolling roller Ⅰ32 on the right rotates counterclockwise, the rolling roller Ⅰ32 drives the multiple rolling protrusions Ⅱ33 thereon to move, and the multiple rolling protrusions Ⅱ33 on the two rolling rollers Ⅰ32 are staggered with each other, so that the two rolling rollers Ⅰ32 roll the raw materials of the anti-cracking and anti-leakage putty powder through the multiple rolling protrusions Ⅱ33 during the rotation process;
[0046] Further, the power mechanism III can be started, and the power mechanism III is preferably a servo motor, and the output shaft of the power mechanism III starts to rotate, and the output shaft of the power mechanism III drives the screw rod 12 to rotate. When the screw rod 12 rotates, the two sliding seats 21 thereon are driven to move closer to or away from each other through the thread, thereby adjusting the relative distance between the two rolling rollers I 32, thereby meeting different rolling requirements;
[0047] Further, the crushed raw material of the anti-cracking and anti-leakage putty powder enters the connection cavity II 42 and falls to the bottom of the connection cavity II 42. Figure 2 and Fig.11 As shown, the bottom of the connecting cavity II 42 is conical, and the crushed anti-cracking and anti-leakage putty powder has a tendency to move to both sides under the gravity, and the crushed anti-cracking and anti-leakage putty powder is filtered through a plurality of sieve holes. The putty powder that can pass through the sieve holes is qualified, and the putty powder that cannot pass through the sieve holes is unqualified with a larger diameter, and enters the two circulation cavities 51 under the guidance of the conical surface;
[0048] Start the power mechanism IV, which is preferably a servo motor, and the output shaft of the power mechanism IV starts to rotate, and the output shaft of the power mechanism IV drives the circulation disk 52 to rotate, and the circulation disk 52 drives the plurality of push plates 53 to move, so that the push plates 53 move in the circulation cavity 51, and then push the putty powder with a larger diameter to move to the upper side of the circulation cavity 51, and enter into the connecting cavity I43. The lower side of the connecting cavity I43 is located on the upper side between the two rolling rollers II23, and then the putty powder with a larger diameter enters between the two rolling rollers II23 for re-rolling;
[0049] Start the power mechanism I, which is preferably a servo motor, and the output shaft of the power mechanism I starts to rotate, and the output shaft of the power mechanism I drives the driving sleeve 22 to rotate, and the driving sleeve 22 drives the rolling roller II23 to rotate, and the rolling roller II23 drives the multiple rolling protrusions I24 to move, and the two rolling rollers II23 rotate in opposite directions, that is, the rolling roller II23 on the left rotates clockwise, and the rolling roller II23 on the right rotates counterclockwise, and the multiple rolling protrusions I24 on the two rolling rollers II23 are mutually staggered, so that the two rolling rollers II23 roll the raw materials of the anti-cracking and anti-leakage putty powder through the multiple rolling protrusions I24 during the rotation process, and the two rolling rollers II23 crush the putty powder raw materials for the second time and enter the bottom of the connecting cavity II42 for filtration;
[0050] Further, the torque of the output shafts of the power mechanism II and the power mechanism I is controlled. Since the output shaft of the power mechanism I drives the rolling roller II 23 to rotate, the output shaft of the power mechanism II drives the rolling roller I 32 to rotate. Since the rolling roller I 32 needs to complete the first rolling, the amount of raw materials is relatively large, so the rolling roller I 32 needs a larger torque when rotating. Therefore, the rotation speed of the rolling roller I 32 is slow, and the torque of the rolling roller I 32 is large. The rolling roller II 23 needs to complete the second rolling, and the amount of raw materials is relatively small. Therefore, the rolling roller II 23 needs a smaller torque when rotating. Therefore, the rotation speed of the rolling roller II 23 is fast, thereby satisfying the putty powder rolling effect while also ensuring the processing efficiency;
[0051] A crack-resistant and leak-proof putty powder, which is processed by using an anti-cracking and leak-proof putty powder production device;
[0052] A production process for anti-cracking and anti-leakage putty powder, the process comprising the following steps:
[0053] Step 1: The putty powder raw material is passed through the feeding cavity 44 to between the two rolling rollers I32. The rolling roller I32 crushes the putty powder raw material for the first time and then enters the bottom of the connecting cavity II42 for filtration;
[0054] Step 2: The putty powder raw material that cannot be filtered out enters the circulation cavity 51, enters the connecting cavity Ⅰ43 again through the rotation of the circulation disk 52, and enters between the two rolling rollers Ⅱ23 through the connecting cavity Ⅰ43;
[0055] Step 3: The two rolling rollers II 23 crush the putty powder raw materials for the second time and then enter the bottom of the connecting cavity II 42 for filtration;
[0056] Step 4: Repeat steps 2 and 3 for the putty powder raw materials that cannot be filtered out.
Claims
1. A crack-resistant and leak-proof putty powder production device, comprising a device support (11), characterized in that: The device bracket (11) is slidably connected to four sliding seats (21), the four sliding seats (21) are rotatably connected to drive sleeves (22), the four drive sleeves (22) are fixedly connected to rolling rollers II (23), two rolling rollers I (32) are rotatably connected between the four rolling rollers II (23), the two rolling rollers I (32) are respectively fixedly connected to two drive shafts (31), and the two drive shafts (31) are rotatably connected between the four drive sleeves (22).
2. The anti-cracking and anti-leakage putty powder production device according to claim 1, characterized in that: The sliding seat (21) is fixedly connected with a power mechanism I for driving the driving sleeve (22) to rotate, and the sliding seat (21) is fixedly connected with a power mechanism II for driving the driving shaft (31) to rotate.
3. The anti-cracking and anti-leakage putty powder production device according to claim 1, characterized in that: The rolling roller II (23) is provided with a plurality of rolling protrusions I (24), and the rolling roller I (32) is provided with a plurality of rolling protrusions II (33).
4. The anti-cracking and anti-leakage putty powder production device according to claim 1, characterized in that: The device bracket (11) is rotatably connected to two screw rods (12), the threads at the two ends of the screw rods (12) are rotated in opposite directions, four sliding seats (21) are respectively connected to the two ends of the two screw rods (12) through threads, and a power mechanism III for driving the screw rods (12) to rotate is fixedly connected to the device bracket (11).
5. The device for producing crack-resistant and leak-proof putty powder according to claim 1, characterized in that: Two circulation chambers (51) are fixedly connected to the device bracket (11), each circulation chamber (51) is rotatably connected to a circulation disk (52), each circulation disk (52) is fixedly connected to a plurality of pusher plates (53), and a power mechanism IV for driving the circulation disk (52) to rotate is fixedly connected to the circulation chamber (51).
6. The device for producing crack-resistant and leak-proof putty powder according to claim 5, characterized in that: The lower part of the upper side of the circulation cavity (51) is fixedly connected to a connecting cavity I (43), the lower sides of the two connecting cavities I (43) are fixedly connected to the dust shielding cavity (41), the dust shielding cavity (41) is covered on the outside of four rolling rollers II (23) and two rolling rollers I (32), the lower end of the dust shielding cavity (41) is fixedly connected to a connecting cavity II (42), and the connecting cavity II (42) and the two circulation cavities (51) are connected.
7. The device for producing crack-resistant and leak-proof putty powder according to claim 6, characterized in that: The upper side of the ash shielding cavity (41) is fixedly connected to a feeding cavity (44).
8. The device for producing crack-resistant and leak-proof putty powder according to claim 6, characterized in that: The bottom of the connecting cavity II (42) is conical, and a plurality of sieve holes are arranged at the bottom of the connecting cavity II (42).
9. A crack-resistant and anti-leakage putty powder, characterized in that: The putty powder is processed by using the anti-cracking and anti-leakage putty powder production device described in claim 1.
10. A production process for anti-cracking and anti-leakage putty powder, characterized in that: The process includes the following steps: Step 1: The putty powder raw material is passed through the feeding cavity (44) and fed between the two rolling rollers I (32). The rolling roller I (32) crushes the putty powder raw material for the first time and then enters the bottom of the connecting cavity II (42) for filtering; Step 2: the putty powder raw material that cannot be filtered out enters the circulation cavity (51), enters the connecting cavity I (43) again through the rotation of the circulation disk (52), and enters between the two rolling rollers II (23) through the connecting cavity I (43); Step 3: two rolling rollers II (23) crush the putty powder raw material for the second time and then enter the bottom of the connecting cavity II (42) for filtration; Step 4: Repeat steps 2 and 3 for the putty powder raw materials that cannot be filtered out.
Citation Information
Patent Citations
Improved efficient dust removal equipment for putty powder production
CN113926262A