Waste wax emission reduction treatment device and treatment method
The wax reduction processing apparatus addresses the issue of water pollution and recovery inefficiency by mechanically melting and collecting wax from mold blocks, enhancing recycling and reducing water usage.
Patent Information
- Application Number
- CN202510578714.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-07
- Publication Date
- 2025-07-15
- Estimated Expiration
- 2045-05-07
AI Technical Summary
In the prior art, the residual wax body in the candle lamp mold mold setting block is difficult to effectively clean, resulting in an increase in the discharge of contaminated water and difficulty in recycling wax body.
A waste wax emission reduction treatment device is designed. After heating and melting the wax body, the wax body is cleaned from the shaping block and recycled in a centralized manner by heating and using a combination of rotation, splint, scraper and plate body to reduce the use of water washing.
It realizes efficient recycling of wax bodies, significantly reduces sewage discharge, and improves the recycling efficiency and environmental protection of waste wax.
Smart Images

Figure CN120306336A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of waste wax treatment, and more specifically, to a waste wax emission reduction treatment device and a treatment method. Background Art
[0002] Currently, the molds used for manufacturing candle lamps include shaping blocks for shaping the inner wall surface of the candle lamp cylinder. The shaping blocks are prone to residual wax. After the operation stops, the wax on the outer wall of the shaping blocks is likely to form protrusions and adhere firmly to the shaping blocks, which can easily cause defects in the products during subsequent use. Therefore, the shaping blocks need to be regularly cleaned to remove the surface wax. The usual treatment method is to directly wash with water, and the shaping blocks are directly rinsed to remove the surface wax. This treatment method leads to an increase in the discharge of polluted water and makes it difficult to recycle the wax. Summary of the Invention
[0003] The purpose of the present invention is to overcome the above-mentioned deficiencies of the prior art, and provide a waste wax emission reduction treatment device and a treatment method, which can reduce sewage discharge and improve the waste wax recycling efficiency.
[0004] To achieve the above purpose, the present invention adopts the following technical solutions: A waste wax emission reduction treatment device includes a clamping component that can rotate along its own axis and is used for fixedly installing the shaping block inside the wax body; it includes a cover body into which the shaping block inside the wax body is inserted; it includes a clamping plate and a scraping plate. The clamping plate can move left and right to approach or move away from the shaping block inside the wax body. The clamping plate is located on both sides of the scraping plate. The scraping plate can move left and right along the wall surface of the clamping plate. The side of the scraping plate close to the shaping block inside the wax body can extend out of the clamping plate and abut against the shaping block inside the wax body; it includes a moving component that can move up and down. When the moving component moves downward, it can be inserted between the scraping plate and the shaping block inside the wax body. The moving component includes a first plate body and a second plate body. When the second plate body moves downward, it can push the scraping plate away, so that the scraping plate moves away from the shaping block inside the wax body, and the first plate body can abut against the outer wall of the shaping block inside the wax body.
[0005] The present invention is further arranged such that when the moving component moves downward, the left end of the clamping plate abuts against the outer wall of the shaping block inside the wax body.
[0006] The present invention is further arranged such that a spring abuts against the right end of the scraping plate, and the right end of the spring abuts against the wall surface of the clamping plate, so that the first plate body inserted between the scraping plate and the shaping block inside the wax body closely adheres to the outer wall of the shaping block inside the wax body.
[0007] The present invention is further arranged such that the second plate body is provided with rollers that can rotate along their own axes and extend out of the right end of the second plate body.
[0008] The present invention is further arranged such that the scraping plate is provided with an extension plate. The extension plate is provided with a fixed sleeve. The inner wall of the fixed sleeve is movably connected with a connecting seat. The left end of the connecting seat is inserted into the fixed sleeve. A baffle is installed at the left end of the connecting seat, and the outer diameter of the baffle is larger than the aperture of the inner hole of the fixed sleeve through which the connecting seat passes.
[0009] The present invention is further configured such that a support body is installed on the cover body, the support body is provided with a groove body, the left bottom of the inner shaping block in the wax body is inserted into the groove body, the support body is provided with a flow channel hole, and the flow channel hole is communicated with the groove body.
[0010] The present invention is further configured such that the bottom of the first plate body is provided with a groove portion, and the depth of the groove portion gradually increases along the upward direction of the length axis.
[0011] The present invention is further configured such that the moving member is movably connected to the moving module, and the moving member is movably connected to the moving end of the moving module in the left-right direction.
[0012] The present invention is further configured such that the cover body is conical and both the upper and lower ends are open, and the opening diameter of the upper end of the cover body is larger than the opening diameter of the lower end.
[0013] The present invention also adopts the following technical solution: A waste wax emission reduction treatment method, using a waste wax emission reduction treatment device, includes the following steps:
[0014] ① Install the inner shaping block in the wax body on the clamping member, insert the inner shaping block in the wax body into the cover body, and heat it by baking, so that the wax body on the outer wall of the inner shaping block in the wax body melts;
[0015] ② Rotate the inner shaping block in the wax body to throw out the melted wax body;
[0016] ③ Stop rotating the inner shaping block in the wax body, move the scraping plate to the left to abut against the inner shaping block in the wax body, rotate the inner shaping block in the wax body for one week, and the scraping plate concentrates the wax body on the inner shaping block in the wax body on one side;
[0017] ④ Move the clamping plate to the left to abut against the inner shaping block in the wax body, move the scraping plate to the right, and the scraping plate is separated from the inner shaping block in the wax body;
[0018] ⑤ Move the moving member downward and insert it between the scraping plate and the inner shaping block in the wax body, and the first plate body pushes the melted wax body on the outer wall of the inner shaping block in the wax body downward to gather the melted wax body on the outer wall of the inner shaping block in the wax body at the bottom;
[0019] ⑥ Separate the clamping plate, the scraping plate from the inner shaping block in the wax body, and move the moving member upward to leave the inner shaping block in the wax body;
[0020] ⑦ Rotate the inner shaping block in the wax body, and the wax body at the bottom of the inner shaping block in the wax body directly flows downward.
[0021] In summary, the present invention has the following beneficial effects:
[0022] After melting the wax on the outer wall of the wax internal shaping block and then spinning off the wax by rotation, and through the cleaning effect of the clamping plate, scraping plate and plate body on the wax on the outer wall of the wax internal shaping block, the wax on the outer wall of the wax internal shaping block can be efficiently separated, and at the same time, it can be directly solidified and recycled, improving the recycling efficiency and cost. Compared with the method of directly washing the wax internal shaping block with water, the discharge of industrial wastewater is greatly reduced, which is more environmentally friendly. BRIEF DESCRIPTION OF THE DRAWINGS
[0023] Figure 1 is a cross-sectional view of the embodiment;
[0024] Figure 2 is Figure 1 an enlarged view of part A in
[0025] Figure 3 is Figure 1 an enlarged view of part B in
[0026] Figure 4 is Figure 1 a partial cross-sectional view taken along the M-M direction in
[0027] Figure 5 is Figure 4 an enlarged view of part C in
[0028] Figure 6 is a state diagram of the moving part pushing open the scraping plate in the embodiment;
[0029] Figure 7 is a side view of plate body 1 in the embodiment.
[0030] Reference numerals: clamping component 1, cover body 2, support body 21, groove body 211, flow channel hole 212, jet component 3, moving seat 4, driving component 1 41, fixing plate 5, clamping plate 51, scraping plate 52, end face 1 521, end face 2 522, extension rod 523, extension plate 524, fixing sleeve 525, connecting seat 526, baffle 527, driving component 2 528, driving component 3 53, spring 54, moving part 6, plate body 1 61, groove part 611, plate body 2 62, roller 63, elastic pad 64, moving module 65, wax internal shaping block 7. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0031] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.
[0032] As Figures 1 - 7As shown in the figure, this embodiment discloses a waste wax emission reduction treatment device. The entire waste wax emission reduction treatment device is placed in an oven, and the temperature inside the oven is controlled at 50 - 80 degrees, which is specifically set according to the wax to be melted. As Figure 1 shown, the waste wax emission reduction treatment device includes a clamping component 1. The top of the clamping component 1 can rotate along its own axis driven by a motor. The clamping component 1 is used to fixedly install the inner shaping block 7 of the wax body. The extension column at the upper end of the inner shaping block 7 of the wax body is inserted into the clamping component 1 and fixed. The inner shaping block 7 of the wax body is of a cylindrical structure, and there is a lot of wax residue on the outer wall of the inner shaping block 7 of the wax body. After the inner shaping block 7 of the wax body is installed on the clamping component 1, as the temperature rises, the wax melts.
[0033] As Figure 1 shown, the waste wax emission reduction treatment device includes a cover body 2. The inner shaping block 7 of the wax body is inserted into the cover body 2, and the inner diameter of the cover body 2 is larger than the outer diameter of the inner shaping block 7 of the wax body. The cover body 2 is conical and has openings at both the upper and lower ends. The opening diameter at the upper end of the cover body 2 is larger than the opening diameter at the lower end. When the inner shaping block 7 of the wax body rotates, the melted wax is thrown onto the inner wall of the cover body 2, and the wax flows downward along the inner wall of the cover body 2 and is collected.
[0034] As Figure 1 shown, the waste wax emission reduction treatment device includes a jet component 3. The outlet end of the jet component 3 points to the upper outer wall of the inner shaping block 7 of the wax body. The airflow ejected by the jet component 3 pushes the melted wax to flow, so as to improve the efficiency.
[0035] As Figure 1 、 Figure 3 shown, the cover body 2 is installed with a support body 21. The support body 21 is provided with a groove body 211. The left bottom of the inner shaping block 7 of the wax body is inserted into the groove body 211. The support body 21 is provided with a flow channel hole 212, and the flow channel hole 212 is communicated with the groove body 211. The bottom of the inner shaping block 7 of the wax body is close to the wall surface of the groove body 211, and the wall surface of the groove body 211 plays a role in guiding the flow, so as to flow the melted wax out from the flow channel hole 212.
[0036] Combined with Figure 1 、 Figure 4 、 Figure 5, the waste wax emission reduction treatment device includes clamping plates 51 and a scraping plate 52. The clamping plates 51 are located on both sides of the scraping plate 52. A fixing plate 5 is installed at the right end of the clamping plate 51, and a third driving component 53 is fixedly installed at the right end of the fixing plate 5. The third driving component 53 is a cylinder. Driven by the third driving component 53, the clamping plate 51 can move left and right to approach or move away from the wax inner shaping block 7 on the left. The scraping plate 52 can move left and right along the wall surface of the clamping plate 51. The scraping plate 52 includes an end face two 522 on the side close to the wax inner shaping block 7 and an end face one 521 on the side far from the wax inner shaping block 7. The end face two 522 can extend out of the clamping plate 51 and abut against the wax inner shaping block 7. An extension rod 523 is installed at the right end of the scraping plate 52. A spring 54 is sleeved on the extension rod 523. The left end of the spring 54 abuts against the end face one 521, and the right end of the spring 54 abuts against the wall surface of the clamping plate 51, so that the scraping plate 52 can be tightly attached to the wall surface of the wax inner shaping block 7. After the scraping plate 52 is tightly attached to the wall surface of the wax inner shaping block 7, the wax inner shaping block 7 rotates, and the scraping plate 52 concentrates the melted wax, facilitating the downward flow of the melted wax.
[0037] As Figure 1 shown, it includes a moving component 6. The moving component 6 is movably connected to a moving module 65. The moving component 6 is movably connected left and right to the moving end of the moving module 65 (a horizontal groove is provided at the moving end of the moving module 65, and the top of the moving component 6 passes through the horizontal groove at the moving end of the moving module 65). The moving component 6 can move up and down driven by the moving end of the moving module 65.
[0038] As Figure 1 , Figure 2 shown, and in combination with Figure 6 , when the moving component 6 moves downward, it can be inserted between the scraping plate 52 and the wax inner shaping block 7. The moving component 6 includes a first plate body 61 and a second plate body 62. When the second plate body 62 moves downward, it can push away the scraping plate 52, so that the scraping plate 52 moves away from the wax inner shaping block 7. The first plate body 61 can abut against the outer wall of the wax inner shaping block 7. As the first plate body 61 moves downward, the first plate body 61 pushes the melted wax on the outer wall of the wax inner shaping block 7 downward. When the moving component 6 moves downward, the left end of the clamping plate 51 abuts against the outer wall of the wax inner shaping block 7 to reduce the outward dispersion of the wax along the circumference of the wax inner shaping block 7. As Figure 7 shown, a groove portion 611 is provided at the bottom of the first plate body 61. The depth of the groove portion 611 gradually increases along the length axis upward direction. When the first plate body 61 moves downward, it can converge the melted wax in the groove portion 611.
[0039] As Figure 2 , Figure 6As shown in the figure, through the elastic force of the spring 54, the first plate body 61 between the insertion scraper 52 and the wax body inner shaping block 7 is closely attached to the outer wall of the wax body inner shaping block 7, increasing the cleaning effect of the first plate body 61 on the wax on the surface of the wax body inner shaping block 7. The second plate body 62 is installed with a roller 63. The roller 63 can rotate along its own axis. The roller 63 extends out of the right end of the second plate body 62. The roller 63 can abut against the scraper 52. The setting of the roller 63 is used to reduce the friction between the scraper 52 and the second plate body 62 and improve the service life of the scraper 52. As Figure 6 shown, the first plate body 61 is installed with an elastic pad 64. The elastic pad 64 abuts against the wall surface of the clamping plate 51 to reduce the overflow of the wax body from the clamping plate 51.
[0040] As Figure 1 , Figure 2 shown, the scraper 52 is installed with an extension plate 524. The extension plate 524 is installed with a fixed sleeve 525. The inner wall of the fixed sleeve 525 is movably connected with a connecting seat 526. The left end of the connecting seat 526 is inserted into the fixed sleeve 525. The left end of the connecting seat 526 is installed with a baffle 527. The outer diameter of the baffle 527 is larger than the aperture of the inner hole of the fixed sleeve 525 through which the connecting seat 526 passes. The connecting seat 526 is installed with a second driving component 528. The second driving component 528 drives the connecting seat 526 to move left and right. When the connecting seat 526 moves to the right, when the baffle 527 abuts against the fixed sleeve 525, the fixed sleeve 525 drives the extension plate 524 to move to the right, so as to leave a gap between the scraper 52 and the wax body inner shaping block 7 for the moving component 6 to be inserted. When the baffle 527 moves to the left, the scraper 52 moves to the left under the elastic force of the spring 54 to abut against the roller 63. At the same time, the scraper 52 can keep abutting against the wax body inner shaping block 7. As Figure 1 shown, the fixing plate 5 is installed with a moving seat 4. The moving seat 4 is installed with a first driving component 41. The first driving component 41 is a cylinder. The moving seat 4 moves under the action of the first driving component 41 to drive the clamping plate 51 and the scraper 52 to move left and right.
[0041] The treatment method of the above waste wax emission reduction treatment device includes the following steps:
[0042] ① Install the wax body inner shaping block 7 on the clamping component 1. The wax body inner shaping block 7 is inserted into the cover body 2. Through baking and heating, the wax on the outer wall of the wax body inner shaping block 7 melts.
[0043] ② The wax body inner shaping block 7 rotates to throw out the melted wax body.
[0044] ③ The wax body inner shaping block 7 stops rotating. The moving seat 4 moves to the left. The clamping plate 51 and the scraper 52 approach the wax body inner shaping block 7. The clamping plate 51 remains separated from the wax body inner shaping block 7. The scraper 52 abuts against the wax body inner shaping block 7. The wax body inner shaping block 7 rotates one week, and the scraper 52 concentrates the wax on the wax body inner shaping block 7 on one side.
[0045] ④ The moving seat 4 moves to the right, the scraping plate 52 separates from the wax internal shaping block 7, and the wax internal shaping block 7 rotates by 2 degrees.
[0046] ⑤ The moving seat 4 moves to the left, the scraping plate 52 abuts against the wax internal shaping block 7, the wax internal shaping block 7 rotates one week, and the scraping plate 52 concentrates the wax on the wax internal shaping block 7 again.
[0047] ⑥ The moving seat 4 moves to the left, the clamping plate 51 abuts against the wax internal shaping block 7, and the scraping plate 52 moves to the right under the drive of the second drive component 528, and the scraping plate 52 separates from the wax internal shaping block 7.
[0048] ⑦ The moving component 6 moves downward and inserts between the scraping plate 52 and the wax internal shaping block 7, and the first plate body 61 pushes the melted wax on the outer wall of the wax internal shaping block 7 downward to gather the melted wax on the outer wall of the wax internal shaping block 7 at the bottom.
[0049] ⑧ The moving seat 4 moves to the right, the clamping plate 51 and the scraping plate 52 separate from the wax internal shaping block 7, and the moving component 6 moves upward to leave the wax internal shaping block 7.
[0050] ⑨ The wax internal shaping block 7 rotates, and the wax at the bottom of the wax internal shaping block 7 directly flows out downward or is drained out through the groove body 211 and the flow channel hole 212.
[0051] ⑩ After the wax on the wax internal shaping block 7 is cleaned, it is washed with water.
[0052] The above are only the preferred embodiments of the present invention. The protection scope of the present invention is not limited to the above embodiments. All technical solutions falling within the idea of the present invention belong to the protection scope of the present invention. It should be noted that for those of ordinary skill in the art, without departing from the principle of the present invention, several improvements and retouches should also be regarded as the protection scope of the present invention.
Claims
1. A waste wax emission reduction treatment device, characterized in that It includes a clamping component (1) which can rotate along its own axis and is used for fixedly installing an inner shaping block (7) in the wax body. It includes a cover body (2) into which the inner shaping block (7) in the wax body is inserted. It includes a clamping plate (51) and a scraping plate (52). The clamping plate (51) can move left and right to approach or move away from the inner shaping block (7) in the wax body. The clamping plate (51) is located on both sides of the scraping plate (52). The scraping plate (52) can move left and right along the wall surface of the clamping plate (51). The side of the scraping plate (52) close to the inner shaping block (7) can extend out of the clamping plate (51) and abut against the inner shaping block (7) in the wax body. It includes a moving component (6) which can move up and down. When the moving component (6) moves downwards, it can be inserted between the scraping plate (52) and the inner shaping block (7) in the wax body. The moving component (6) includes a first plate body (61) and a second plate body (62). When the second plate body (62) moves downwards, it can push open the scraping plate (52) to make the scraping plate (52) move away from the inner shaping block (7) in the wax body. The first plate body (61) can abut against the outer wall of the inner shaping block (7) in the wax body.
2. The waste wax emission reduction treatment device according to claim 1, wherein, When the moving component (6) moves downwards, the left end of the clamping plate (51) abuts against the outer wall of the inner shaping block (7) in the wax body.
3. An apparatus for reducing waste wax emissions according to claim 1, wherein, A spring (54) abuts against the right end of the scraping plate (52), and the right end of the spring (54) abuts against the wall surface of the clamping plate (51), so that the first plate body (61) inserted between the scraping plate (52) and the inner shaping block (7) in the wax body closely adheres to the outer wall of the inner shaping block (7) in the wax body.
4. A waste wax emission reduction treatment device according to claim 1, characterized in that, The second plate body (62) is provided with a roller (63) which can rotate along its own axis and extends out of the right end of the second plate body (62).
5. A waste wax emission reduction treatment device according to claim 1, characterized in that, The scraping plate (52) is provided with an extension plate (524). The extension plate (524) is provided with a fixed sleeve (525). A connecting seat (526) is movably connected to the inner wall of the fixed sleeve (525). The left end of the connecting seat (526) is inserted into the fixed sleeve (525). A baffle (527) is installed at the left end of the connecting seat (526). The outer diameter of the baffle (527) is larger than the aperture of the inner hole of the fixed sleeve (525) through which the connecting seat (526) passes.
6. The waste wax emission reduction treatment device according to claim 1, characterized in that, The cover body (2) is provided with a support body (21). The support body (21) is provided with a groove body (211). The left bottom of the inner shaping block (7) in the wax body is inserted into the groove body (211). The support body (21) is provided with a flow channel hole (212) which is communicated with the groove body (211).
7. A waste wax emission reduction treatment device according to claim 1, characterized in that, The bottom of the first plate body (61) is provided with a groove part (611), and the depth of the groove part (611) gradually increases along the upward direction of the length axis.
8. A waste wax emission reduction treatment device according to claim 1, characterized in that The moving component (6) is movably connected to a moving module (65), and the moving component (6) is movably connected to the moving end of the moving module (65) left and right.
9. The waste wax emission reduction treatment device according to claim 1, characterized in that, The cover body (2) is conical and has openings at both the upper and lower ends. The aperture of the upper opening of the cover body (2) is larger than that of the lower opening.
10. A waste wax emission reduction treatment method, using the waste wax emission reduction treatment device described in claim 1, characterized in that, The steps are as follows: ① Install the wax inner shaping block (7) on the clamping component (1). The wax inner shaping block (7) is inserted into the cover body (2). Through baking and heating, the wax on the outer wall of the wax inner shaping block (7) melts; ② The wax inner shaping block (7) rotates to throw out the melted wax; ③ The wax inner shaping block (7) stops rotating. The scraper (52) moves leftward to abut against the wax inner shaping block (7). The wax inner shaping block (7) rotates one week, and the scraper (52) concentrates the wax on the wax inner shaping block (7) on one side; ④ The clamping plate (51) moves leftward to abut against the wax inner shaping block (7). The scraper (52) moves rightward and separates from the wax inner shaping block (7); ⑤ The moving component (6) moves downward and is inserted between the scraper (52) and the wax inner shaping block (7). The first plate body (61) pushes the melted wax on the outer wall of the wax inner shaping block (7) downward to gather the melted wax on the outer wall of the wax inner shaping block (7) at the bottom; ⑥ The clamping plate (51), the scraper (52) and the wax inner shaping block (7) are separated. The moving component (6) moves upward and leaves the wax inner shaping block (7); ⑦ The wax inner shaping block (7) rotates, and the wax at the bottom of the wax inner shaping block (7) directly flows downward.
Citation Information
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