Laser shaping processing equipment for dental implant abutment

By designing a dental abutment laser processing equipment that includes a collecting support, a bracket, a bending frame plate and a laser shaping mechanism, the problem of laser beam deviation caused by interference from bumps on the surface of the dental abutment is solved, high-precision laser cutting and thermal management are achieved, and processing efficiency is improved.

CN120755529APending Publication Date: 2025-10-10深圳市德钰医疗器械有限公司
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Patent Information

Application Number
CN202511119067.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-08-11
Publication Date
2025-10-10

AI Technical Summary

Technical Problem

During the processing of existing dental abutment laser shaping equipment, due to interference from raised points on the surface of the dental abutment, the laser beam may be displaced and offset, affecting the processing accuracy.

Method used

A laser shaping processing equipment for dental implant abutments is used, including a collecting support, a bracket, a bending frame plate, an adjustment mechanism and a laser shaping mechanism. The path of the laser beam is adjusted by the matching plate and the aperture assembly in the semicircular sleeve. Combined with the adjustment of the gear transmission and the hydraulic rod, it ensures that the laser beam accurately cuts the annular groove body of the dental abutment.

Benefits of technology

It achieves accurate cutting of the laser beam and effective blocking of excess laser light, improves processing accuracy and efficiency, and absorbs heat through copper embedded plates to reduce thermal impact.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the field of laser shaping, in particular to laser shaping processing equipment for an implant tooth abutment, which comprises a tooth abutment, a collecting support table is embedded in the outer side of the tooth abutment, and the collecting support table is not only used for supporting and limiting the tooth abutment, but also used for collecting scraps; the support is used for supporting the collecting supporting table, and the support is fixedly installed at the bottom of the collecting supporting table; according to the laser shaping machining equipment for the dental implant abutment, the center of the first pairing plate and the center of the second pairing plate correspond to different holes, the positions of the first pairing plate and the second pairing plate correspond to different holes, and the positions of the first pairing plate and the second pairing plate correspond to different holes; the holes are different types of ring groove bodies required to be processed by the dental abutment, and meanwhile, the two pairing plates can block redundant laser, so that the laser only irradiates outwards from the holes and carries out shaping treatment on the dental abutment.
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Description

Technical Field

[0001] The present invention relates to the field of laser shaping technology, in particular to a laser shaping processing device for a dental implant abutment. Background Art

[0002] Dental implants generally consist of three parts: the crown, the abutment, and the implant.

[0003] The abutment is a crucial component of dental implants, connecting and securing the implant and crown. It provides stability and support, later improving chewing function and enhancing oral aesthetics. Laser shaping of abutments is an advanced technology in the field of dental implants that enables high-precision morphological processing of the abutment (the key component connecting the implant to the crown). Through the high energy density and precise control of the laser beam, it enables personalized shaping of materials such as titanium alloys and zirconia.

[0004] The following problems exist with existing laser shaping equipment for dental abutments: because the dental abutment itself is symmetrical in shape and the required processing surfaces are all annular, traditional laser beam processing will cause "breakpoints" when programming the annular trajectory due to the bumps on the dental abutment surface, which will cause the displacement of the laser beam to shift. Summary of the Invention

[0005] The present invention provides a laser shaping processing device for a dental implant abutment to solve the problems raised in the above background technology.

[0006] To achieve the above-mentioned objectives, the present invention provides the following technical solutions: a laser shaping processing device for a dental implant abutment, comprising a dental abutment, wherein the outer side of the dental abutment is appropriately embedded with a collecting support, wherein the collecting support is used not only to support and limit the dental abutment, but also to collect and process debris; A bracket for supporting the collecting support platform, wherein the bracket is fixedly mounted on the bottom of the collecting support platform; A bending frame plate, the bottom of which is connected to the bracket via a plate; An adjustment mechanism for adjusting and changing the orientation of the laser shaping device, the adjustment mechanism being arranged on a bending frame plate; A laser shaping mechanism for laser cutting and shaping the outer groove of the dental abutment; The laser shaping mechanism includes a laser head, the outer end face of the laser head is fixedly connected to a cylinder, the end of the cylinder away from the laser head is fixedly connected to a semicircular sleeve, and a separator ring is fixedly installed inside the semicircular sleeve, wherein the separator ring is used to divide the interior of the semicircular sleeve into two symmetrical cavities so that the two symmetrical cavities can be embedded and matched with different types of matching plates.

[0007] Preferably, a first matching plate is slidably adapted in the cavity of the semicircular sleeve, an outer end surface of the semicircular sleeve is fixedly connected to a limited sliding bar, and a second matching plate is slidably adapted inside the limited sliding bar; There are a plurality of sliding limit bars, and the interiors of the sliding limit bars are slidably adapted to the first matching plate.

[0008] Preferably, an aperture assembly is provided on the outer end surface of the laser head, wherein the laser head is connected to a fixed housing on the surface of the aperture assembly, and the aperture assembly is used to limit and control the laser beam; One end of the aperture assembly away from the laser head is fixedly connected with a protective cover.

[0009] Preferably, the outer side of the annular component rotating inside the aperture assembly is fixedly connected to an adjustment handle, and the outer side of the adjustment handle is respectively provided with a straight groove and a through hole, wherein the straight groove is connected to the through hole; The interior of the straight groove is appropriately equipped with a reducing shaft, and the top fixing sleeve of the reducing shaft is provided with a shaft connecting sleeve.

[0010] Preferably, the bottom end of the reducing shaft is fixedly connected to a bottom connecting shaft, the outer side of the bottom connecting shaft is connected to a No. 3 gear through a bearing, the bottom of the reducing shaft is connected to a No. 2 gear through a bearing, the outer side of the No. 2 gear is meshed with a No. 1 gear, and the No. 1 gear is fixedly mounted on the outer side of the aperture assembly.

[0011] Preferably, a placement basket is fixedly connected to the outer side of the laser head, wherein the straight groove is slidably matched with the bottom connecting shaft, and the through hole is embedded and matched with the large diameter portion of the variable diameter shaft.

[0012] Preferably, the adjustment mechanism includes a fixed circular table, the top of the fixed circular table is fixedly connected to the bending frame plate, the bottom of the fixed circular table is provided with a groove, and an adapter plate is rotatably installed in the groove, a limiting through rod is inserted inside the adapter plate, and an electric rotator is installed on the outside of the adapter plate; The limiting penetrating rod is used for supporting and limiting the electric rotator.

[0013] Preferably, an outer side of the electric rotator is fixedly connected to an outer slider, and the outer slider is slidably adapted to be fitted with a circular rail at one end away from the electric rotator, and a docking strip is fixedly connected to the inner wall of the circular rail, and the docking strip is fixedly connected to the bending frame plate at one end away from the circular rail.

[0014] Preferably, an embedded rod and an axis support are fixedly installed on the bottom of the adapter plate, the embedded rod is arranged inside the axis support, a deflection plate is rotatably installed inside the axis support through a fixed axis, and the bottom end of the deflection plate is fixedly connected to the housing of the laser head; The top of the deflection plate is connected to a hydraulic rod through a hinge, and an extension folding plate is fixedly installed on the end of the hydraulic rod away from the deflection plate. The end of the extension folding plate away from the hydraulic rod is fixedly connected to a top slider, and the top slider is slidably adapted in a groove opened on the top of the circular rail.

[0015] Preferably, the bottom end of the embedded rod is fixedly connected to an S-shaped rod, the bottom end of the S-shaped rod is fixedly connected to a seat beam, the outer side of the seat beam is fixedly connected to an elastic telescopic rod, the end of the elastic telescopic rod away from the seat beam is fixedly connected to an end bent rod, and the upper and lower sides of the end bent rod are connected to a chiseled plate via fasteners; The outer sides of the interlocking plate and the end curved rod are both in contact with the parts of the dental abutment that need to be shaped.

[0016] Compared with the prior art, the present invention has the following beneficial effects: 1. The centers of the No. 1 and No. 2 matching plates correspond to different holes, which are the different types of ring grooves required for the abutment. At the same time, the two matching plates will block excess laser light, allowing the laser to irradiate outward from the holes and shape the abutment.

[0017] 2. Through the meshing transmission of gear No. 2 and gear No. 1, the movement speed of the blades inside the aperture assembly will be linked to gears No. 1 and No. 2, thereby increasing the accuracy of blade displacement and fine-tuning the area of ​​the center hole.

[0018] 3. Gear No. 3, which is connected to the outside of the bottom shaft through a bearing, moves in the same trajectory as gear No. 2, but it will eventually mate with gear No. 1, thereby increasing the speed of blade displacement and quickly adjusting the area of ​​the center hole.

[0019] 4. The extended folding plate and top slider support the hydraulic rod. Furthermore, the adapter plate, shaft support, and deflection plate form a compass-like shape, allowing the laser shaping mechanism to continuously rotate tangentially around the abutment.

[0020] 5. The interlocking plate is made of copper, which can quickly absorb and cool the heat generated by the laser shaping of the dental abutment. At the same time, the end bending rod will always fit in the groove, thereby balancing the force of the entire device. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] Figure 1 This is a schematic diagram of the external structure of a laser shaping processing device for a dental implant abutment according to the present invention.

[0022] Figure 2It is a schematic cross-sectional structural diagram of the dental abutment of the present invention.

[0023] Figure 3 It is a schematic diagram of the planar structure of the laser shaping mechanism of the present invention.

[0024] Figure 4 It is a structural schematic diagram of the laser shaping mechanism of the present invention.

[0025] Figure 5 This is a schematic structural diagram of the first component of the laser shaping mechanism of the present invention.

[0026] Figure 6 This is a schematic diagram of the full cross-section structure of the first component of the laser shaping mechanism of the present invention.

[0027] Figure 7 This is a schematic structural diagram of the second component of the laser shaping mechanism of the present invention.

[0028] Figure 8 Schematic diagram of the internal structure of the second component of the laser shaping mechanism of the present invention.

[0029] Figure 9 This is a schematic cross-sectional view of the second component of the laser shaping mechanism of the present invention.

[0030] Figure 10 Schematic diagram of the structure of the first component of the adjustment mechanism of the present invention.

[0031] Figure 11 It is a schematic cross-sectional structural diagram of the first component of the adjustment mechanism of the present invention.

[0032] Figure 12 Schematic diagram of the structure of the second component of the adjustment mechanism of the present invention.

[0033] Figure 13 It is a partially enlarged structural schematic diagram of the second component of the adjustment mechanism of the present invention.

[0034] In the picture: 1. Bracket; 2. Collect support platforms; 3. Tooth abutment; 4. Bending frame plate; 5. Adjustment mechanism; 51. Fixed round table; 52. Adapter plate; 53. Electric rotator; 54. Outer slider; 55. Circular rail; 56. Docking bar; 57. Limiting rod; 58. Top slider; 59. Extended folding plate; 50. Hydraulic rod; 501. Inlaid rod; 502. Axis support; 503. Deflection plate; 504. S-shaped rod; 505. Seat beam; 506. Elastic telescopic rod; 507. End bending rod; 508. Interlocking plate; 6. Laser shaping mechanism; 61. Laser head; 62. Cylinder; 63. Semicircular sleeve; 64. Separator ring; 65. Pairing plate No. 1; 66. Slide limiter; 67. Pairing plate No. 2; 68. Aperture assembly; 69. Protective cover; 60. Gear No. 1; 601. Adjustment handle; 602. Straight groove; 603. Perforation; 604. Reducer shaft; 605. Shaft coupling; 606. Bottom coupling; 607. Gear No. 2; 608. Gear No. 3; 609. Placement basket. DETAILED DESCRIPTION

[0035] The present invention is further described below in conjunction with the accompanying drawings and specific embodiments. It should be noted that, without conflict, the various embodiments or technical features described below can be arbitrarily combined to form new embodiments. It should be noted that the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative work are within the scope of protection of the present invention.

[0036] See also Figures 1 to 13 , the present invention provides a technical solution: Figure 1 、 Figure 2 、 Figure 3 、 Figure 4 、 Figure 5 、 Figure 6 、 Figure 7 、 Figure 8 and Figure 9 As shown, it includes a dental abutment 3, and a collecting support 2 is appropriately embedded on the outer side of the dental abutment 3, wherein the collecting support 2 is not only used for supporting and limiting the dental abutment 3, but also for collecting and processing debris; A bracket 1 for supporting the collecting support 2, wherein the bracket 1 is fixedly mounted on the bottom of the collecting support 2; A bending frame plate, the bottom of which is connected to the bracket via a plate; An adjusting mechanism 5 for adjusting and changing the orientation of the laser shaping device, the adjusting mechanism 5 being arranged on the bending frame plate 4; A laser shaping mechanism 6 is used to perform laser cutting and shaping processing on the groove body outside the dental abutment 3.

[0037] The laser shaping mechanism 6 includes a laser head 61, the outer end face of which is fixedly connected to a column 62, and the end of the column 62 away from the laser head 61 is fixedly connected to a semicircular sleeve 63, and a separator ring 64 is fixedly installed inside the semicircular sleeve 63, wherein the separator ring 64 is used to divide the interior of the semicircular sleeve 63 into two symmetrical cavities, so that the two symmetrical cavities can be fitted with different types of matching plates without interfering with each other; The inner cavity of the semicircular sleeve 63 is adapted to slide with a No. 1 matching plate 65, and the outer end surface of the semicircular sleeve 63 is fixedly connected to the limited sliding bar 66, and the inner sliding bar 66 is adapted to slide with a No. 2 matching plate 67; by inserting the No. 1 matching plate 65 into the semicircular sleeve 63 along the limited sliding bar 66, and the No. 2 matching plate 67 is stationary and still placed on the limited sliding bar 66, wherein the surface of the limited sliding bar 66 has friction protrusions, so the No. 1 matching plate 65 and the No. 2 matching plate 67 will not move outward from the semicircular sleeve 63 again or enter the interior of the semicircular sleeve 63 due to the overall rotation. In addition, the centers of the No. 1 matching plate 65 and the No. 2 matching plate 67 correspond to different holes, and the holes are different types of annular grooves required for processing the dental abutment 3. At the same time, the two matching plates will block the excess laser, allowing the laser to irradiate outward from the hole and shape the dental abutment 3.

[0038] The number of the sliding limit strips 66 is several, and the interior thereof is slidably adapted to the first matching plate 65; The outer end surface of the laser head 61 is provided with an aperture assembly 68, wherein the laser head 61 is connected to a fixed housing on the surface of the aperture assembly 68. In addition, the aperture assembly 68 is used to limit and control the laser beam; A protective cover 69 is fixedly connected to one end of the aperture assembly 68 away from the laser head 61; The aperture assembly 68 is an annular component that rotates inside, and an adjustment handle 601 is fixedly connected to its outer side. A straight groove 602 and a through-hole 603 are respectively provided on the outer side of the adjustment handle 601, wherein the straight groove 602 is connected to the through-hole 603; wherein the aperture assembly 68 and the matching plate No. 1 65 and the matching plate No. 2 67 can be paired together, or they can be laser beam controlled separately. In addition, it is necessary to explain that the end of the straight groove 602 away from the through-hole 603 is embedded and matched with the end of the reducing shaft 604 with a smaller diameter, and the inner diameter of the straight groove 602 is the same as the diameter of the bottom connecting shaft 606, and the through-hole 603 is embedded and matched with the end of the reducing shaft 604 with a larger diameter.

[0039] The inner part of the straight groove 602 is fitted with a reducing shaft 604, and the top fixed sleeve of the reducing shaft 604 is provided with a shaft connecting sleeve 605; the operator manually lifts the reducing shaft 604 upwards and allows the bottom connecting shaft 606 to fit with the straight groove 602, and then moves the bottom connecting shaft 606 outward along the straight groove 602 until the reducing shaft 604 is embedded in the through-hole 603, and at the same time, the shaft connecting sleeve 605 will fit with the top of the adjustment handle 601. During this process, the No. 2 gear 607 will first move upward, then move outward, and finally move downward and be stored in the placement basket 609. The No. 3 gear 608 connected to the outside of the bottom connecting shaft 606 through a bearing has the same movement trajectory as the No. 2 gear 607, but it will eventually fit with the No. 1 gear 60, thereby increasing the speed of blade displacement and quickly adjusting the area of ​​the center hole.

[0040] The bottom end of the reducing shaft 604 is fixedly connected to the bottom connecting shaft 606, and the outer side of the bottom connecting shaft 606 is connected to the third gear 608 through a bearing. The bottom of the reducing shaft 604 is connected to the second gear 607 through a bearing. The outer side of the second gear 607 is meshed with the first gear 60, and the first gear 60 is fixedly installed on the outer side of the aperture assembly 68. When the operator rotates the adjustment handle 601 counterclockwise, the annular structure welded to the other end of the adjustment handle 601 will rotate counterclockwise accordingly. The annular structure is part of the internal part of the aperture assembly 68, and the working principle of the aperture is to adjust the blades by rotating the annular structure, so that several The center circle surrounded by the blades will change. Its main function is to control the size of the light beam entering the optical system. In addition, as the adjustment handle 601 is rotated counterclockwise, the reducing shaft 604 fitted on its top will rotate with the bottom connecting shaft 606 welded to its bottom end, and then the No. 2 gear 607 connected to the bottom connecting shaft 606 through the bearing will engage with the No. 1 gear 60 for transmission. At this time, the moving speed of the blades inside the aperture assembly 68 will be linked to the No. 1 gear 60 and the No. 2 gear 607, thereby increasing the accuracy of the blade displacement and fine-tuning the area of ​​the center hole.

[0041] A placement basket 609 is fixedly connected to the outer side of the laser head 61 , wherein the straight groove 602 is slidably matched with the bottom connecting shaft 606 , and the through hole 603 is embedded and matched with the large diameter portion of the reducing shaft 604 .

[0042] like Figure 10 、 Figure 11 、 Figure 12 and Figure 13 As shown, the adjustment mechanism 5 includes a fixed circular platform 51, the top of which is fixedly connected to the bending frame plate 4. A groove is formed at the bottom of the fixed circular platform 51, and an adapter plate 52 is rotatably mounted in the groove. A limit rod 57 is inserted into the interior of the adapter plate 52, and an electric rotator 53 is mounted on the outside of the adapter plate 52. The limiting rod 57 is used to support and limit the electric rotator 53; An outer slider 54 is fixedly connected to the outer side of the electric rotator 53. The end of the outer slider 54 away from the electric rotator 53 is slidably adapted to a circular rail 55. A docking bar 56 is fixedly connected to the inner wall of the circular rail 55. The end of the docking bar 56 away from the circular rail 55 is fixedly connected to the bending frame plate 4. The bottom of the adapter plate 52 is fixedly installed with an embedded rod 501 and an axis support 502, respectively. The embedded rod 501 is arranged inside the axis support 502, and a deflection plate 503 is installed inside the axis support 502 through a fixed axis. The bottom end of the deflection plate 503 is fixedly connected to the shell of the laser head 61; by manually placing the dental abutment 3 on the collection support 2, where the dental abutment 3 is made of titanium alloy, and then starting the hydraulic rod 50, the deflection plate 503 welded to its output end will be deflected through the fixed axis inside the axis support 502. At this time, the deflection plate 503 can fine-tune the orientation of the laser shaping mechanism 6, and make the laser generated by the laser shaping mechanism 6 tangent to the outer ring groove of the dental abutment 3, so as to facilitate the processing and removal of the remaining material on the processing part of the dental abutment 3.

[0043] The top of the deflection plate 503 is connected to a hydraulic rod 50 through a hinge. An extension folding plate 59 is fixedly installed on the end of the hydraulic rod 50 away from the deflection plate 503. An upper slider 58 is fixedly connected to the end of the extension folding plate 59 away from the hydraulic rod 50. The upper slider 58 slides and fits into the groove opened on the top of the circular rail 55. By starting the electric rotator 53, the outer slider 54 connected to the outer side of the electric rotator will rotate along the circular rail 55. The electric rotator 53 is rotated by electromagnetic drive. The center part of the rotator 53 is connected to the adapter plate 52, so the adapter plate 52 will rotate with the embedded rod 501 and the shaft support 502 respectively, wherein the shaft support 502 is hinged to the deflection plate 503 through a fixed axis, and the deflection plate 503 is adjusted and controlled by the hydraulic rod 50. Therefore, when the electric rotator 53 rotates, the deflection plate 503 will deflect with the laser shaping mechanism 6, and the laser generated by the laser shaping mechanism 6 will always be tangent to the annular groove of the dental abutment 3.

[0044] The extended folding plate 59 and the top slide 58 support the hydraulic rod 50. Furthermore, the adapter plate 52, the shaft support 502, and the deflection plate 503 form a compass-like shape, thereby allowing the laser shaping mechanism 6 to continuously rotate tangentially around the abutment 3.

[0045] The bottom end of the embedded rod 501 is fixedly connected to an S-shaped rod 504, the bottom end of the S-shaped rod 504 is fixedly connected to a seat beam 505, the outer side of the seat beam 505 is fixedly connected to an elastic telescopic rod 506, and the end of the elastic telescopic rod 506 away from the seat beam 505 is fixedly connected to an end bending rod 507. The upper and lower sides of the end bending rod 507 are connected to a chiseled plate 508 via fasteners. The outer sides of the interlocking plate 508 and the end curved rod 507 are aligned with the area to be shaped on the dental abutment 3. The embedded rod 501 rotates the S-shaped rod 504, causing the seat beam 505 welded to the other end of the S-shaped rod 504 to rotate accordingly. Then, under the elastic force of the elastic telescopic rod 506, the end curved rod 507 is tightly attached to the groove to be machined on the dental abutment 3. The interlocking plate 508 is made of copper, which quickly absorbs and cools the dental abutment 3 due to laser shaping. At the same time, the end curved rod 507 remains attached to the groove, thus balancing the forces of the entire device.

[0046] When using the present invention, the dental abutment 3 is first manually placed on the collection support 2. The hydraulic rod 50 is then activated, causing the deflection plate 503 welded to its output end to deflect via the fixed axis within the shaft support 502. The deflection plate 503 can then fine-tune the orientation of the laser shaping mechanism 6, allowing the laser generated by the laser shaping mechanism 6 to intersect with the outer annular groove of the dental abutment 3. The first matching plate 65 is inserted into the semicircular sleeve 63 along the limiting slide 66, while the second matching plate 67 remains stationary and placed on the limiting slide 66. Furthermore, the centers of the first and second matching plates 65, 67 correspond to different holes corresponding to the different types of annular grooves required for machining the dental abutment 3. The two matching plates simultaneously block excess laser light.

[0047] When the operator rotates the adjustment handle 601 counterclockwise, the annular structure welded to the other end of the handle will rotate counterclockwise accordingly. The annular structure is a part of the aperture assembly 68, and the working principle of the aperture is to adjust the blades by rotating the annular structure, so that the center circle surrounded by several blades will change. Its main function is to control the size of the light beam entering the optical system. In addition, as the adjustment handle 601 rotates counterclockwise, the reducing shaft 604 fitted on the top will rotate with the bottom connecting shaft 606 welded to the bottom end, and then the No. 2 gear 607 connected to the bottom connecting shaft 606 through the bearing will engage with the No. 1 gear 60 for transmission. At this time, the movement speed of the blades inside the aperture assembly 68 will be related to the No. 1 gear 60 and the No. 2 gear 607.

[0048] The operator manually lifts the reducing shaft 604 upwards and fits the bottom connecting shaft 606 into the straight groove 602, and then moves the bottom connecting shaft 606 outward along the straight groove 602 until the reducing shaft 604 is embedded in the through hole 603. At the same time, the shaft connecting sleeve 605 will fit into the top of the adjustment handle 601. During this process, the No. 2 gear 607 will first move upward, then move outward, and finally move downward and be stored in the placement basket 609. The No. 3 gear 608 connected to the outside of the bottom connecting shaft 606 through a bearing has the same movement trajectory as the No. 2 gear 607, but it will eventually fit into the No. 1 gear 60.

[0049] By starting the electric rotator 53, the outer slider 54 connected to the outside of it will rotate along the circular rail 55, wherein the electric rotator 53 is rotated by electromagnetic drive. In addition, the center part of the electric rotator 53 is connected to the adapter plate 52, so the adapter plate 52 will rotate with the embedded rod 501 and the shaft support 502 respectively, wherein the shaft support 502 is hinged to the deflection plate 503 through a fixed axis, and the deflection plate 503 is adjusted and controlled by the hydraulic rod 50. Therefore, when the electric rotator 53 rotates, the deflection plate 503 will deflect with the laser shaping mechanism 6, and the laser generated by the laser shaping mechanism 6 will always be tangent to the annular groove body of the dental abutment 3. The embedded rod 501 rotates the S-shaped rod 504, causing the seat beam 505 welded to the other end of the S-shaped rod 504 to rotate accordingly. Then, under the elastic force of the elastic telescopic rod 506, the end curved rod 507 will be tightly attached to the groove required for processing the dental abutment 3. The interlocking plate 508 is made of copper, which will quickly absorb and cool the heat generated by the laser shaping of the dental abutment 3. At the same time, the end curved rod 507 will always be attached to the groove.

[0050] The above embodiments are only preferred embodiments of the present invention and cannot be used to limit the scope of protection of the present invention. Various changes made by ordinary technicians in this field based on the above concepts without creative work fall within the scope of protection of the present invention.

Claims

1. A laser shaping processing device for dental implant abutments, characterized in that: include: A dental abutment, wherein the outer side of the dental abutment is appropriately equipped with a collecting support, wherein the collecting support is used not only for supporting and limiting the dental abutment, but also for collecting debris; A bracket for supporting the collecting support platform, wherein the bracket is fixedly mounted on the bottom of the collecting support platform; A bending frame plate, the bottom of which is connected to the bracket via a plate; An adjusting mechanism for adjusting and changing the orientation of the laser shaping device, the adjusting mechanism being arranged on the bending frame plate; A laser shaping mechanism for laser cutting and shaping the outer groove of the dental abutment; The laser shaping mechanism includes a laser head, the outer end face of the laser head is fixedly connected to a cylinder, the end of the cylinder away from the laser head is fixedly connected to a semicircular sleeve, and a separator ring is fixedly installed inside the semicircular sleeve, wherein the separator ring is used to divide the interior of the semicircular sleeve into two symmetrical cavities so that the two symmetrical cavities can be embedded and matched with different types of matching plates.

2. The laser shaping processing equipment for dental implant abutments according to claim 1, characterized in that: A first matching plate is slidably adapted in the cavity of the semicircular sleeve, an outer end surface of the semicircular sleeve is fixedly connected to a limited sliding bar, and a second matching plate is slidably adapted inside the limited sliding bar; There are a plurality of sliding limit bars, and the interiors of the sliding limit bars are slidably adapted to the first matching plate.

3. The laser shaping processing equipment for dental implant abutments according to claim 1, characterized in that: The outer end surface of the laser head is provided with an aperture assembly, wherein the laser head is connected to a fixed housing on the surface of the aperture assembly, and the aperture assembly is used to limit and control the laser beam; One end of the aperture assembly away from the laser head is fixedly connected with a protective cover.

4. The laser shaping processing equipment for dental implant abutments according to claim 3, characterized in that: An annular member rotating inside the aperture assembly has an adjustment handle fixedly connected to its outer side, and a straight groove and a through hole are respectively formed on the outer side of the adjustment handle, wherein the straight groove is connected to the through hole; The interior of the straight groove is appropriately equipped with a reducing shaft, and the top fixing sleeve of the reducing shaft is provided with a shaft connecting sleeve.

5. The laser shaping processing equipment for dental implant abutments according to claim 4, characterized in that: The bottom end of the reducing shaft is fixedly connected to a bottom connecting shaft, the outer side of the bottom connecting shaft is connected to a No. 3 gear via a bearing, the bottom of the reducing shaft is connected to a No. 2 gear via a bearing, the outer side of the No. 2 gear is meshed with a No. 1 gear, and the No. 1 gear is fixedly mounted on the outer side of the aperture assembly.

6. The laser shaping processing equipment for a dental implant abutment according to claim 4, characterized in that: A placement basket is fixedly connected to the outer side of the laser head, wherein the straight groove is slidably matched with the bottom connecting shaft, and the through hole is embedded and matched with the large diameter part of the variable diameter shaft.

7. The laser shaping processing equipment for dental implant abutments according to claim 1, characterized in that: The adjustment mechanism includes a fixed circular platform, the top of which is fixedly connected to the bending frame plate, the bottom of which is provided with a groove, and an adapter plate is rotatably installed in the groove, a limiting through rod is inserted into the interior of the adapter plate, and an electric rotator is installed on the outside of the adapter plate; The limiting penetrating rod is used for supporting and limiting the electric rotator.

8. The laser shaping processing equipment for dental implant abutments according to claim 7, characterized in that: An outer slider is fixedly connected to the outer side of the electric rotator, and the outer slider is slidably adapted to be fitted with a circular rail at one end away from the electric rotator. A docking bar is fixedly connected to the inner wall of the circular rail, and the end of the docking bar away from the circular rail is fixedly connected to the bending frame plate.

9. The laser shaping processing equipment for dental implant abutments according to claim 8, characterized in that: An embedded rod and an axis support are fixedly installed at the bottom of the adapter plate, respectively. The embedded rod is arranged inside the axis support. A deflection plate is rotatably installed inside the axis support via a fixed axis. The bottom end of the deflection plate is fixedly connected to the housing of the laser head. The top of the deflection plate is connected to a hydraulic rod through a hinge, and an extension folding plate is fixedly installed on the end of the hydraulic rod away from the deflection plate, wherein the hinge is a ball joint, and the end of the extension folding plate away from the hydraulic rod is fixedly connected to a top slider, and the top slider slides and fits in the groove opened at the top of the circular rail.

10. The laser shaping processing equipment for dental implant abutments according to claim 9, characterized in that: The bottom end of the embedded rod is fixedly connected to an S-shaped rod, the bottom end of the S-shaped rod is fixedly connected to a seat beam, the outer side of the seat beam is fixedly connected to an elastic telescopic rod, the end of the elastic telescopic rod away from the seat beam is fixedly connected to an end bending rod, and the upper and lower sides of the end bending rod are connected to a mosaic plate through fasteners; The outer sides of the interlocking plate and the end curved rod are both in contact with the parts of the dental abutment that need to be shaped.