Ultrasonic cleaning carrier for dental implant matrix
By designing an ultrasonic cleaning carrier for dental implant substrates, which uses a frustum-shaped hole to collect debris and combines the movement of an electromagnet and a spring, the problems of cleaning fluid consumption and frequent equipment maintenance in existing technologies are solved, achieving more efficient cleaning results and cost control.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-17
- Publication Date
- 2026-03-31
AI Technical Summary
Existing ultrasonic cleaning methods cannot effectively collect debris from the surface of dental implant substrates, and the frequent consumption of cleaning fluid and equipment maintenance increase production costs.
An ultrasonic cleaning carrier for dental implant substrates was designed, comprising a first carrier plate, a second carrier plate, a third carrier plate, a column, a spring, a collection hopper, an electromagnet, and an iron plate. It collects debris through a frustum-shaped hole and uses the electromagnet and spring to drive the dental implant substrate to move up and down to enhance the cleaning effect.
It improves the cleanliness of the cleaning solution, extends the cleaning solution replacement cycle, enhances the cleaning effect on the surface of the dental implant matrix, and reduces the frequency and cost of equipment maintenance.
Smart Images

Figure CN224058220U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of dental implant technology, and in particular relates to an ultrasonic cleaning carrier for dental implant substrates. Background Technology
[0002] Dental implants are medical procedures that involve precisely designing and manufacturing a cylinder or other shape from pure titanium metal, which is highly biocompatible with human bone, to resemble a tooth root. This is then surgically implanted into the alveolar bone in the area of the missing tooth. After 1-3 months, once the titanium artificial root has integrated with the alveolar bone, a porcelain or all-ceramic crown is then fabricated on top of the artificial root. The implant matrix, manufactured through machining, requires ultrasonic cleaning to remove cutting fluid adhering to the implant matrix, as well as any residual metal powder and debris from grinding.
[0003] Current ultrasonic testing methods cannot collect cleaning debris from the surface of dental implant substrates. The cleaning fluid in ultrasonic equipment needs to be changed frequently, and the cleaning chamber of the ultrasonic equipment needs to be cleaned, which increases the production cost of cleaning fluid consumption and the frequency of maintenance and cleaning of ultrasonic equipment. Summary of the Invention
[0004] The technical problem to be solved by this utility model is to provide a cleaning carrier that can collect debris that falls off the dental implant substrate during ultrasonic cleaning.
[0005] To solve the above-mentioned technical problems, the present invention is achieved through the following technical solution: an ultrasonic cleaning carrier for dental implant substrates, comprising a first carrier plate, a second carrier plate, a third carrier plate, a fourth carrier plate, columns, a first spring, a second spring, a collection hopper, an end cap, an electromagnet, and an iron plate. The four columns are rectangularly distributed and fixedly installed on the first carrier plate. The fourth carrier plate is fixedly sleeved on the top of the columns. The second and third carrier plates are slidably sleeved on the columns, with the third carrier plate located between the second and fourth carrier plates. The first and second springs are sleeved on... On the column, the upper and lower ends of the first spring act on the fourth and third carrier plates respectively, and the upper and lower ends of the second spring act on the third and second carrier plates respectively. A support column is formed on the top surface of the third carrier plate, and a truncated cone hole with a larger upper part and a smaller lower part is provided around the support column. The collecting hopper is fixedly installed on the bottom surface of the third carrier plate, and the inner cavity of the collecting hopper is connected to the truncated cone hole. The end cap is screwed to the bottom of the collecting hopper, and the end cap is also screwed to the second carrier plate. The electromagnet and the iron plate are fixedly installed on the top surface of the first carrier plate and the bottom surface of the second carrier plate respectively.
[0006] Preferably, the top surface of the transition section between adjacent frustum holes is set as an arc surface structure.
[0007] Preferably, lifting rings are fixedly installed at the four corners of the top surface of the fourth carrier plate.
[0008] Preferably, the end cap is fixedly mounted with a connecting plate, and the connecting plate is fixedly connected to the second carrier plate by bolts.
[0009] Preferably, a support sleeve is slidably mounted on the column, the lower end of the support sleeve is fixedly connected to the second carrier plate, and the lower end of the second spring acts on the support sleeve.
[0010] Preferably, the collecting hopper is provided with a pressure balancing window, and a filter screen is provided inside the pressure balancing window.
[0011] Compared with the prior art, the advantages of this utility model are as follows: This cleaning carrier has a truncated cone hole with a larger upper part and a smaller lower part on the third carrier plate, so that the metal powder or debris that falls off during cleaning enters the collection hopper through the truncated cone hole for collection. Moreover, the metal powder or debris is not easy to flow back out from the truncated cone hole, thereby improving the cleanliness of the ultrasonic cleaning fluid and extending the cleaning fluid replacement and maintenance cycle. At the same time, the electromagnet, together with the first spring and the second spring, drives the dental implant matrix to move up and down reciprocally, which can improve the rinsing effect on the surface of the dental implant matrix. Attached Figure Description
[0012] The present invention will be further described below with reference to the accompanying drawings.
[0013] Figure 1 This is a schematic diagram of the internal structure of this utility model.
[0014] Figure 2 yes Figure 1 A magnified structural diagram at point M. Detailed Implementation
[0015] The present invention will now be described in detail with reference to specific embodiments:
[0016] like Figure 1 and Figure 2An ultrasonic cleaning carrier for dental implant substrates, as shown, includes a first carrier plate 1, a second carrier plate 2, a third carrier plate 3, a fourth carrier plate 4, uprights 5, a first spring 61, a second spring 62, a collection hopper 7, an end cap 71, an electromagnet 8, and an iron plate 81. The four uprights 5 are rectangularly distributed and fixedly installed on the first carrier plate 1. The fourth carrier plate 4 is fixedly sleeved on the top of the uprights 5. The second carrier plate 2 and the third carrier plate 3 are slidably sleeved on the uprights 5, with the third carrier plate 3 located between the second carrier plate 2 and the fourth carrier plate 4. The first spring 61 and the second spring 62 are both sleeved on the uprights 5. The upper and lower ends of the first spring 61 act on the fourth carrier plate 4 and the third carrier plate 3, respectively, while the upper and lower ends of the second spring 62 act on the third carrier plate 3 and the second carrier plate 2, respectively. The top surface of the third carrier plate 3... A support column 33 is formed, and a frustum-shaped hole 32 with a larger upper part and a smaller lower part is provided around the support column 33. The collection hopper 7 is fixedly installed on the bottom surface of the third carrier plate 3. The inner cavity of the collection hopper 7 is connected to the frustum-shaped hole 32. The end cap 71 is screwed to the bottom of the collection hopper 7. The end cap 71 is also screwed to the second carrier plate 2. The electromagnet 8 and the iron plate 81 are respectively fixedly installed on the top surface of the first carrier plate 1 and the bottom surface of the second carrier plate 2. Since the thickness of the second carrier plate 2 is only set to 0.5-1cm, a guide sleeve 21 is fixedly installed on the second carrier plate 2. The guide sleeve 21 is slidably sleeved on the column 5 to improve the straightness of the second carrier plate 2 when it moves up and down along the column 5. The fourth carrier plate 4 is provided with a through hole so that the dental implant base 10 can be inserted and placed on the support column 33 through the through hole.
[0017] The top surface of the transition section 34 between adjacent frustum holes 32 is set as an arc surface structure to avoid the accumulation of metal powder or debris that falls off during cleaning on the top surface of the transition section 34.
[0018] The fourth carrier plate 4 has four lifting rings 41 fixedly installed at the four corners of its top surface. The traction rope 41 is attached to the four lifting rings 41, which makes it easy to lift or lower the cleaning carrier smoothly.
[0019] The end cap 71 is fixedly mounted with a connecting plate 70, which is connected to the second carrier plate 2 by bolts. The connecting plate 70 facilitates the fixed connection between the end cap 71 and the second carrier plate 2.
[0020] A support sleeve 63 is slidably mounted on the column 5. The lower end of the support sleeve 63 is fixedly connected to the second carrier plate 2, and the lower end of the second spring 62 acts on the support sleeve 63.
[0021] The collection hopper 7 is equipped with a pressure balance window 72, and a filter screen is installed inside the pressure balance window 72. The filter screen can block the metal powder or debris that falls off during cleaning, and can allow the ultrasonic cleaning fluid to flow through, so as to achieve pressure balance inside and outside the collection hopper 7 and avoid the problem of the cleaning carrier being unstable in the cleaning fluid of the ultrasonic equipment due to the buoyancy of the collection hopper 7.
[0022] The dental implant base 10 is inserted and placed on the support column 33. The cleaning carrier is immersed in the cleaning solution of the ultrasonic cleaning device. The ultrasonic cleaning device is turned on to remove the oil film and debris from the dental implant base 10. The fallen metal powder or debris is cleaned and enters the collection hopper 7 through the conical hole 32 for collection. After the cleaning carrier is used 30-50 times, the collection hopper 7 is disassembled. At the same time, the end cap 71 is unscrewed to clean the metal powder and debris inside. The electromagnet 8 is switched on and off every 0.5s-1s. With the help of the first spring 61 and the second spring 62, the iron plate 81, the second carrier plate 2, the end cap 71, the collection hopper 7, the third carrier plate 3, and the dental implant base 10 move up and down, so as to realize the rinsing effect of the cleaning solution on the surface of the dental implant base 10, and further improve the cleaning effect of the surface of the dental implant base 10.
Claims
1. An ultrasonic cleaning carrier for dental implant substrates, characterized in that: The utility model provides a kind of device for collecting and separating waste metal, including first carrier plate (1), second carrier plate (2), third carrier plate (3), fourth carrier plate (4), column (5), first spring (61), second spring (62), collecting hopper (7), end cover (71), electromagnet (8) and iron plate (81), four columns (5) are fixedly installed in first carrier plate (1) in rectangular distribution, fourth carrier plate (4) is fixedly sleeved and installed on the top of column (5), second carrier plate (2), third carrier plate (3) are both slidably sleeved and installed on column (5), third carrier plate (3) is between second carrier plate (2), fourth carrier plate (4), first spring (61), second spring (62) are both sleeved and installed on column (5), the upper and lower ends of first spring (61) are respectively applied to fourth carrier plate (4), third carrier plate (3), the upper and lower ends of second spring (62) are respectively applied to third carrier plate (3), second carrier plate (2), the top of third carrier plate (3) is formed with support column (33), the periphery of support column (33) is provided with taper hole (32) of structure of big down small, collecting hopper (7) is fixedly installed on the bottom of third carrier plate (3), the inner chamber of collecting hopper (7) is communicated with taper hole (32), end cover (71) is screw-connected and installed in the bottom of collecting hopper (7), end cover (71) is also screw-connected and fixedly installed with second carrier plate (2), electromagnet (8), iron plate (81) are respectively fixedly installed on the top of first carrier plate (1), the bottom of second carrier plate (2).
2. The dental implant body ultrasonic cleaning rack of claim 1, wherein: The top surface of the transition section (34) between adjacent taper holes (32) is provided as a circular arc surface structure.
3. The dental implant body ultrasonic cleaning rack of claim 1, wherein: The top surface of the fourth carrier plate (4) is fixedly installed with eye loops (41) at the four corners.
4. The dental implant body ultrasonic cleaning rack of claim 1, wherein: The end cover (71) is fixedly installed with a connecting plate (70), which is fixedly connected to the second carrier plate (2) by bolts.
5. The dental implant body ultrasonic cleaning rack of claim 1, wherein: A support sleeve (63) is slidably sleeved and installed on the column (5), and the lower end of the support sleeve (63) is fixedly connected to the second carrier plate (2).
6. The dental implant body ultrasonic cleaning rack of claim 1, wherein: A pressure balance window (72) is provided on the collecting hopper (7), and a filter screen is provided in the pressure balance window (72).