Fixing holder

The semi-permanently reusable fixed holder addresses the inefficiencies and high costs of existing systems by integrating with cutting processing devices and abutments, enabling precise and efficient processing of dental prosthesis components while reducing manufacturing costs.

WO2025095455A1PCT designated stage expired Publication Date: 2025-05-08HAAS CO LTD
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Patent Information

Application Number
PCT/KR2024/016224
Authority / Receiving Office
WO · WO
Patent Type
Applications
Current Assignee / Owner
Priority Date
2024-10-22
Filing Date
2024-10-24
Publication Date
2025-05-08

AI Technical Summary

Technical Problem

The existing fixed holders for processing objects in dental prosthesis production are costly and inefficient, leading to increased manufacturing costs for dental implants and requiring manual, time-consuming alignment of artificial teeth and abutments.

Method used

A semi-permanently reusable fixed holder that integrates with the cutting processing device and the abutment, featuring a connection portion with a coupling hole, an expansion member, and a receptive member with a seating groove for the abutment, allowing for precise alignment and repeated use.

Benefits of technology

The fixed holder enables precise and efficient mounting of processed objects with integrated abutments, reducing manufacturing costs and improving processing efficiency by allowing semi-permanent reuse and facilitating easier alignment of artificial teeth and abutments.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to a fixing holder for mounting an object to be machined to a cutting machine, the object being integrally connected to an abutment, the fixing holder including: a connection part connected to a jig of the cutting machine; and a coupling part provided on the other side of the connection part in the longitudinal direction and coupled to an end part of the abutment.
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Description

Fixed holder

[0001] The present invention relates to a fixing holder, and more particularly, to a fixing holder used when mounting a machining target (aka mill blank) used for manufacturing a dental prosthesis to a jig of a cutting processing device.

[0002] A dental implant is an artificial tooth structure or dental procedure that is formed by planting an artificial tooth root in an area where a tooth has been partially or completely lost, attaching it to the alveolar bone, and fixing a dental prosthesis to the artificial tooth root.

[0003] In general, a dental implant is largely composed of a fixture that is implanted into the alveolar bone and acts as an artificial tooth root, an abutment that is connected to the fixture and rises above the patient's gums, and an artificial tooth that is connected to the abutment.

[0004] In other words, a fixture can be said to be a fixed body that is implanted into the alveolar bone of a missing tooth area, similar to the root of a natural tooth, to support an artificial tooth.

[0005] An abutment, also called a base, is configured to connect a fixture implanted in the alveolar bone to an artificial tooth, and the artificial tooth is fixed in the oral cavity by the abutment to reproduce the same shape and function as a natural tooth.

[0006] One common method for manufacturing artificial teeth involves milling and processing a prosthetic material (hereinafter referred to as the "working object"), known as a "mill blank," to create a prosthetic device of a predetermined shape. In some cases, abutments are also custom-made by milling and processing this prosthetic material.

[0007] In this processing method, in order to mount the object to be processed on the jig of the cutting processing device, a medium that connects the object to be processed and the jig to each other is required, and this medium can be referred to as a fixing holder.

[0008] The above-mentioned fixing holder can be said to be a component that supports the workpiece (block) and firmly places it on the jig of the cutting processing device so that the cutting tool can precisely process the workpiece (block).

[0009] Conventional fixed holders are typically configured to be bonded to one side of a processing target by an adhesive method.

[0010] Specifically, one side of the fixed holder is bonded to one side of the object to be processed by an adhesive method, and the other side is mounted on a jig of a cutting processing device. When the cutting processing of the object to be processed is completed, the fixed holder cannot be separated and reused, and is thus discarded together with the unprocessed part of the object to be processed, as shown in Fig. 5.

[0011] Therefore, the existing fixed holder has the problem of increasing the manufacturing cost of dental implants.

[0012] Meanwhile, the conventional method of manufacturing dental prosthetics, such as implants, has the disadvantage of a long manufacturing time because it requires sequential steps of cutting the object to be processed using a cutting processing device, separating the processed object (artificial teeth, etc.) from the cutting processing device, and combining it with an abutment.

[0013] In addition, since the process of combining the artificial tooth and the abutment must be performed manually, the accuracy of the combining position of the abutment and the artificial tooth is low, and if the abutment is combined out of alignment with the set position, the work must be performed again, which increases the procedure time.

[0014] In order to solve the above problems, the applicant has developed a processing object in which an abutment is integrally connected and a method for manufacturing an artificial tooth using the processing object so that the post-processing of connecting an abutment to a processed artificial tooth can be omitted, and the technical contents thereof are specifically disclosed in Korean Patent No. 10-2426218, to which the applicant is the patent holder.

[0015] However, in the case of a workpiece having an integrally bonded abutment, there is a limitation in that it can only be easily mounted on a jig of a specific type of cutting processing device, and therefore, a method to increase versatility is required.

[0016] Accordingly, the applicant developed the present invention to solve the above-mentioned problems, and a related prior art document is 'Artificial teeth and manufacturing method thereof' of Republic of Korea Patent No. 10-2426218.

[0017] The present invention is intended to solve the above-mentioned problems, and the purpose of the present invention is to provide a fixing holder that is connected to an end of an abutment integrally connected to a processing object (block) so as to enable the processing object (block) to be created on a jig of a cutting processing device, and that can be reused semi-permanently.

[0018] The present invention provides a fixing holder for mounting a machining object with an abutment integrally connected to a cutting processing device, the fixing holder including: a connecting portion connected to a jig of the cutting processing device; and a connecting portion provided on the other longitudinal side of the connecting portion and connected to an end of the abutment.

[0019] In addition, the connecting part may include a connecting pin that can be inserted into a joining hole formed in a jig of the cutting processing device; and an expanding member that is integrally connected to the connecting pin and has an outer diameter larger than the outer diameter of the connecting pin and is positioned facing the processing target.

[0020] In addition, a hollow receiving member is formed protrudingly at the center of one side of the expansion member, and the connecting portion that is connected to the end of the abutment can be formed in the receiving member in the form of a fixing groove.

[0021] Additionally, the above-mentioned joint may be formed in a portion of the length of the receiving member.

[0022] Additionally, a fastening hole may be formed in the remaining longitudinal section of the receiving member and the expanding member to be screw-connected with a fastening member passing through the interior of the abutment.

[0023] Additionally, a first reference mark that can be visually confirmed by a worker may be displayed or formed on the circumference of the above-mentioned receiving member.

[0024] In addition, the first reference mark may correspond to a second reference mark displayed or formed on the outer surface of the processing object when the end of the abutment is inserted and seated in the joint.

[0025] Additionally, the connecting portion that is connected to the end of the abutment may be formed in the center of one side of the expanding member in the form of a fixing groove.

[0026] Additionally, the above-mentioned joint may be formed in a portion of the longitudinal direction of the expansion member.

[0027] Additionally, a fastening hole may be formed in the remaining longitudinal section of the expansion member or in a portion of the longitudinal section of the connecting pin to be screw-connected with a fastening member passing through the interior of the abutment.

[0028] Additionally, a first reference mark that can be visually confirmed by a worker may be displayed or formed on the circumference of the above-mentioned expansion member.

[0029] In addition, the first reference mark may correspond to a second reference mark displayed or formed on the outer surface of the processing object when the end of the abutment is inserted and seated in the joint.

[0030] In addition, the above-mentioned connecting portion may be formed by protruding from one side of the expanding member or from an end of a receiving member formed by protruding from one side of the expanding member in the form of a connecting projection.

[0031] The fixing holder according to the present invention can firmly mount a machining object with an abutment integrally connected to a jig of a cutting processing device, and can increase compatibility so that a machining object with an abutment integrally connected can be machined in various types of cutting processing devices.

[0032] In addition, the fixing holder according to the present invention provides convenience in cutting processing by allowing the worker to easily set the processing direction of the processing object.

[0033] In addition, the fixing holder according to the present invention is manufactured using a material and manufacturing method that can withstand the load generated from the cutting tool and the rigidity according to the mechanical strength, so that it can be used semi-permanently over a number of times, thereby reducing the cost of manufacturing artificial teeth.

[0034] Fig. 1 is a perspective view showing the configuration of a fixing holder according to one embodiment of the present invention.

[0035] FIG. 2 is a perspective view showing an end of an abutment integrally connected to a processing object mounted on a fixing holder according to one embodiment of the present invention.

[0036] Fig. 3 is a cross-sectional view of the fixing holder, machining object, and abutment shown in Fig. 2.

[0037] Fig. 4 is an exploded perspective view showing the fixed holder, the workpiece, and the abutment shown in Fig. 2 separated from each other.

[0038] Figure 5 is a drawing showing the state in which the conventional fixed holder and the processing residue portion of the movable object are abandoned in an adhesively bonded state.

[0039] FIG. 6 is a perspective view showing a state in which a fixing holder, a processing object, and an abutment are separated from each other according to another embodiment of the present invention.

[0040] FIG. 7 is a perspective view showing a state in which a fixing holder, a processing object, and an abutment are separated from each other according to another embodiment of the present invention.

[0041] Figure 8 is a cross-sectional view showing a through hole formed in an inclined direction in a processing object.

[0042] Fig. 9 is an exploded perspective view showing a joint in the form of a fixing groove that is joined to the end of a non-submerged type abutment.

[0043] Fig. 10 is a cross-sectional view showing a state in which the fixing holder illustrated in Fig. 9 and the non-submerged type abutment are combined.

[0044] Figure 11 is an exploded perspective view showing a joint in the form of a joint projection that is combined with an external type abutment.

[0045] Fig. 12 is a cross-sectional view showing a state in which the fixing holder and the external type abutment shown in Fig. 11 are combined.

[0046] The advantages and features of the present invention and the methods for achieving them will become clear with reference to the embodiments described in detail below together with the accompanying drawings.

[0047] However, the present invention is not limited to the embodiments disclosed below, but may be implemented in various different forms, and these embodiments are provided only to ensure that the disclosure of the present invention is complete and to fully inform a person having ordinary skill in the art to which the present invention pertains of the scope of the invention, and the present invention is defined only by the scope of the claims.

[0048] Hereinafter, a fixing holder according to one embodiment of the present invention will be described in detail with reference to FIGS. 1 to 4. In describing the present invention, specific descriptions of related known functions or configurations are omitted to avoid obscuring the gist of the invention.

[0049] FIG. 1 is a perspective view showing the configuration of a fixing holder according to one embodiment of the present invention, FIG. 2 is a perspective view showing an end of an abutment integrally connected to a workpiece is mounted on a fixing holder according to one embodiment of the present invention, FIG. 3 is a cross-sectional view of the fixing holder, the workpiece, and the abutment shown in FIG. 2, and FIG. 4 is an exploded perspective view showing the fixing holder, the workpiece, and the abutment shown in FIG. 2 separated from each other.

[0050] First, as illustrated in FIGS. 1 to 4, a fixing holder (100) according to one embodiment of the present invention has a characteristic configuration in which a workpiece (10) to which an abutment (20) is integrally connected is mounted on a cutting processing device, and further, the workpiece (10) to which the abutment (20) is integrally connected can be processed in various cutting processing devices, and in this process, the worker can perform the work without checking the processing direction of the workpiece (10).

[0051] In addition, the fixing holder (100) according to one embodiment of the present invention can prevent the machining origin of the machining object (10) from being distorted within a set range even when mounted on various jigs.

[0052] Before the specific configuration of the fixing holder (100) according to one embodiment of the present invention is described, the configuration of the processing object (10) having an integrally connected abutment (20) is briefly described with reference to FIGS. 2 to 4.

[0053] First, the above-mentioned processing target (10) can be composed of a known shape and material that can be easily selected and implemented by a person skilled in the art.

[0054] For example, the object to be processed may be composed of one or more materials selected from the group consisting of glass, glass-ceramic, polymer infiltrated glass, composite resin or hybrid material, unsintered or partially sintered or densely-sintered ceramic, metal or metal alloy. In addition, the object to be processed (10) has characteristics such as high strength, thermal stability and high corrosion resistance, and may be used in white or colored form alone, or in a mixture of white and colored form.

[0055] In addition, the processing object (10) may have various shapes such as a cube, a rectangular parallelepiped, a cylinder, a polygonal pillar, etc. The processing object (10) according to an embodiment of the present invention is illustrated in the drawing as having the shape of a cylinder with a through hole (11) formed in the center.

[0056] The above through hole (11) can be formed along the entire length of the processing target (10).

[0057] For reference, a fastening member (not shown) that is screw-connected to a fixture or a receiving member (120) of a fixing holder (100) to be described later can be inserted through a through hole (11) formed in the processing target (10).

[0058] For reference, the through hole (11) formed in the above-mentioned processing object (10) may be formed in a vertical direction as shown in FIG. 3, or as another example, may be formed in an inclined direction as shown in FIG. 8.

[0059] The end portion (21) formed on one longitudinal side of the abutment (20) can be said to be a portion that is detachably coupled to a receiving member (120) of a fixing holder (100) to be described later. In addition, the portion formed on the other longitudinal side of the abutment (20) (direction of arrow X shown in FIG. 1) can have the shape of a truncated cone and can be said to be a portion that is coupled to a processing target (10).

[0060] In detail, with respect to the flange (22) constituting the abutment (20), the end portion (21) formed on one longitudinal side of the abutment (20) can be detachably connected to a connecting portion (200) formed on a receiving member (120) to be described later. In addition, with respect to the flange (22) constituting the abutment (20), the portion in the shape of a truncated cone formed on the other longitudinal side of the abutment (20) can be said to be a portion that is inserted into the inside of the object to be processed (10) and connected to the object to be processed (10).

[0061] Meanwhile, a buffer portion (30) made of zirconia may be interposed between the longitudinal side of the abutment (20) and the object to be processed (10). The buffer portion (30) serves to prevent fracture in advance due to a difference in physical properties between the object to be processed (10) and the abutment (20), and also serves to maintain the bonding force between the object to be processed (10) and the abutment (20).

[0062] The machining target (10) configured as above and integrally connected to the abutment (20) can be mounted on a jig (not shown) of a cutting processing device by a fixing holder (100) according to one embodiment of the present invention.

[0063]

[0064] As illustrated in FIGS. 1 to 4, a fixing holder (100) according to one embodiment of the present invention may largely include a connecting portion (110) that is mounted on one side in the longitudinal direction (direction of arrow X illustrated in FIG. 1) to a jig of a cutting processing device; and a connecting portion (200) that is provided on the other side in the longitudinal direction of the connecting portion (110) and is coupled to an end portion (21) of the abutment (20) that is integrally connected to a processing target (10).

[0065] First, the above-mentioned connecting part (110) can be said to be a component that is combined with a jig of a cutting processing device.

[0066] The connecting part (110) may include a connecting pin (111) that can be inserted into a joining hole formed in the jig; and an expanding member (112) that is integrally connected to the connecting pin (111) and has an outer diameter larger than the outer diameter of the connecting pin (111) and is positioned to face an end portion in the longitudinal direction (direction of arrow X shown in FIG. 1) of the processing object (10).

[0067] The connecting pin (111) is a component that is inserted into a joining hole formed in a jig of a cutting processing device as described above, and is also a part that is held by the worker's hand.

[0068] The connecting pin (111) has a size and shape that can be inserted into the connecting hole formed in the jig, and a portion of its outer surface can be cut to form a notch. The notch can serve as a guide so that the connecting pin (111) can be inserted into the connecting hole in a set direction.

[0069] As described above, the expansion member (112) can be placed facing the longitudinal end of the workpiece (10) with an outer diameter larger than the outer diameter of the connecting pin (111).

[0070] The expansion member (112) serves to prevent the workpiece (10) and the receiving member (120) described later from flowing or deforming due to the load generated by the cutting tool when the cutting tool of the cutting processing device comes into direct contact with the workpiece (10) to cut the workpiece (10).

[0071] That is, the expansion member (112) can serve as a support to prevent the receiving member (120) connected to the end (21) of the abutment (20) from unintentionally flowing or deforming due to a load generated from the cutting tool.

[0072] In addition, a hollow receiving member (120) is formed protrudingly at the center of one side of the expansion member (112) and is connected to the end (21) of the abutment (20) integrally connected to the processing target (10).

[0073] At this time, the connecting portion (200) that is connected to the end (21) of the abutment (20) can be formed inside the receiving member (120) in the form of a fixing groove.

[0074] In addition, the length of the receiving member (120) protruding from one side of the expansion member (112) is preferably smaller than the total length of the processing object (10) and the length of the end (21) of the abutment (20), and further, it is preferably shorter than the total length of the abutment (20).

[0075] If it is assumed that the total length of the receiving member (120), i.e., the length protruding from one side of the expanding member (112), is equal to or longer than the total length of the abutment (20) or the total length of the object to be processed (10), the receiving member (120) cannot withstand the load generated from the cutting tool and is deformed or broken.

[0076] Therefore, as described above, the length of the receiving member (120) protruding from one side of the expansion member (112) is preferably smaller than the total length of the object to be processed (10) and the length of the end (21) of the abutment (20), and further, it is preferably shorter than the total length of the abutment (20).

[0077] As described above, the above-mentioned connecting portion (200) can be formed in the receiving member (120) in the form of a seating groove into which the longitudinal end (21) of the abutment (20) is inserted and seated.

[0078] The fixing groove-shaped joint (200) can be formed only in a portion of the entire longitudinal section formed by the receiving member (120). That is, the fixing groove can be formed only in the other side of the longitudinal section of the receiving member (120), as shown in FIG. 3.

[0079] In addition, a fastening hole (121) may be formed in the remaining lengthwise section of the receiving member (120) where the fixing groove is not formed and in a portion of the thickness direction (direction of arrow X shown in FIG. 1) of the expanding member (112). That is, a fastening hole (121) may be formed in one lengthwise portion of the receiving member (120) and in a portion of the thickness direction of the expanding member (112).

[0080] The above fastening hole (121) can be screw-connected with a fastening member inserted into a receiving member (120) after sequentially passing through the through hole (11) of the processing target (10) and the interior of the abutment (20).

[0081] Accordingly, when the end (21) of the abutment (20) integrally connected to the processing object (10) is inserted into the fixing groove in the receiving member (120), and the fastening member is coupled with the fastening hole (121) of the receiving member (120), the processing object (10) and the abutment (20) can be detachably coupled to the receiving member (120).

[0082] For reference, the anchoring groove can be formed according to the shape of the end (21) of the abutment (20). For example, if the end (21) of the abutment (20) is circular, the anchoring groove can also be formed in a circular shape in the receiving member (120). As another example, if the end (21) of the abutment (20) is a polygon such as a pentagon or a hexagon, the anchoring groove can also be formed in a polygonal shape in the receiving member (120) accordingly.

[0083] Meanwhile, a first reference mark (M1) that can be visually confirmed by a worker may be displayed or formed on the circumference of the receiving member (120) or the circumference of the expanding member (112).

[0084] The first reference mark (M1) can be displayed or formed on the peripheral surface of the receiving member (120) or the peripheral surface of the expanding member (112) by a known printing method or a known engraving technique for forming an intaglio or relief on the surface of the object.

[0085] At this time, the first reference mark (M1) displayed or formed on the circumference of the receiving member (120) and the circumference of the expanding member (112) can be aligned with the longitudinal axis (arrow X direction shown in FIG. 4) that divides the fixing holder (100) in half.

[0086] The above first reference mark (M1) can correspond to the second reference mark (M2) displayed or formed on the outer surface of the processing target (10) when the end (21) of the abutment (20) is inserted and seated in the seating groove.

[0087] For reference, the second reference mark (M2) can also be displayed or formed on the outer surface of the processing target (10) by a known printing method or a known engraving technique that forms an intaglio or relief on the surface of the target.

[0088] The second reference mark (M2) can be displayed or formed on the circumferential surface or longitudinal surface of the processing target (10), as shown in FIGS. 2 and 4.

[0089] When the first reference mark (M1) and the second reference mark (M2) correspond to each other, the machining direction of the machining target (10) can be set. Therefore, the operator can easily set the machining direction of the machining target (10) within the cutting processing device simply by aligning the first reference mark (M1) displayed or formed on the fixing holder (100) with the second reference mark (M2) displayed or formed on the machining target (10).

[0090] For reference, although the shape of the object to be processed (10) illustrated as an example is cylindrical, the shape of the object to be processed (10) is not limited to cylindrical, and may have various shapes such as a rectangular parallelepiped, a pseudo-rectangular parallelepiped, etc., and the direction of processing of the object to be processed (10) may be different depending on the type or manufacturer of the cutting processing device. However, in the case of the fixing holder (100) of the present invention, the operator can easily set the direction of processing of the object to be processed (10). In other words, during the nesting process of the cutting processing device program, the operator can perform processing work without having to set the direction of processing of the object to be processed (10) one by one, thereby providing convenience of work.

[0091] In addition, the fixing holder (100) according to one embodiment of the present invention is preferably manufactured from a metal material having excellent corrosion resistance and strength, such as titanium, in order to increase rigidity according to the load or mechanical strength generated from the cutting tool, and in particular, it is more preferably manufactured by integrally connecting the connecting pin (111), the expanding member (112), and the receiving member (120) to each other by a known molding method. Therefore, the fixing holder (100) according to one embodiment of the present invention has the advantage of being able to be used semi-permanently over a number of times.

[0092] In addition, the fixing holder (100) according to one embodiment of the present invention can be used semi-permanently, unlike the existing one-time fixing holder that is discarded together with the processing object (10) that is discarded unprocessed, and thus, the cost of manufacturing artificial teeth can be reduced.

[0093] Although specific embodiments of the present invention have been described so far, it is obvious that various modifications are possible within the scope of the present invention.

[0094] For example, in one embodiment of the present invention, a fixing groove-shaped joint (200) that is coupled with the end (21) of the abutment (20) is formed inside a receiving member (120) that protrudes from one surface of the expanding member (112) as described and illustrated in the drawings, but is not limited thereto.

[0095] That is, the above-mentioned fixing groove-shaped joint (200) may be formed in the center of one side of the expansion member (112), as shown in FIG. 6.

[0096] The above-mentioned joint (200) can be formed in a portion of the longitudinal direction (direction of arrow X shown in FIG. 6) of the expansion member (112).

[0097] In addition, a fastening hole (not shown) that is screw-connected to a fastening member (not shown) passing through the inside of the abutment (20) may be formed in the remaining longitudinal section of the expanding member (112) where the fixing groove-shaped connecting portion (200) is not formed. At this time, the fastening hole may be formed up to a portion of the longitudinal section of the connecting pin (111).

[0098] In other words, a connecting portion (200) in the form of a fixing groove into which the end portion (21) of the abutment (20) is inserted and fixed, and a fixing hole into which the fixing member is inserted can be sequentially formed in the center of one side of the expansion member (112).

[0099] When the fixed holder (100') having the above configuration is inserted and seated in the fixing groove-shaped joint (200) with the end (21) of the abutment (20), one surface of the expansion member (112) can come into contact with the processing target (10).

[0100] In detail, when the end (21) of the abutment (20) is inserted into the fixing groove and fixed, the longitudinal end surface of the workpiece (10) facing the expansion member (112) may come into contact with one surface of the expansion member (112). Accordingly, the longitudinal end portion of the workpiece (10) can be processed while being supported by one surface of the expansion member (112).

[0101] In addition, a first reference mark (M1) that can be visually confirmed by a worker may be marked or formed on the circumference of the expansion member (112). In addition, when the end (21) of the abutment (20) is inserted and seated in the seating groove, the first reference mark (M1) may be aligned with a second reference mark (M2) marked or formed on the outer surface of the workpiece (10).

[0102] Since the first reference mark (M1) and the second reference mark (M2) have the same configuration as the first reference mark (M1) and the second reference mark (M2) described in one embodiment of the present invention, a detailed description of the configuration is omitted below.

[0103] As above, a connecting portion (200) in the form of a fixing groove into which the end (21) of the abutment (20) is inserted may be formed on one surface of the expanding member (112), and the object to be processed (10) may be placed on the expanding member (112) and then mounted on a jig of a cutting processing device.

[0104] In addition, as shown in Fig. 7, the expansion member (112) may be omitted and a mounting groove and a fastening hole may be sequentially formed on the longitudinal opposite end of the connecting pin (111).

[0105]

[0106] Meanwhile, the connecting portion (200) having the shape of the above-mentioned fixing groove may be formed on one side of the expanding member (112) or the receiving member (120) in a shape corresponding to the type of abutment (20). FIGS. 9 and 10 illustrate that the connecting portion (200) having the shape of the fixing groove is formed on the receiving member (120).

[0107] As shown in FIGS. 9 and 10, in the case of a non-submerged type abutment (20), only the end (21) is inserted into the connecting portion (200) in the form of a fixing groove formed in the receiving member (120), and the remaining outer surface may not be inserted into the connecting portion (200).

[0108] For reference, the outer surface (23) of the abutment (20) that is not inserted into the fixing groove-shaped joint (200) may be arranged in the same line as the outer surface of a fixture (not shown) or the outer surface of a receiving member (120).

[0109] And, as illustrated in FIGS. 11 and 12, the connecting portion (200') provided on the other longitudinal side of the connecting portion (110) may be formed to protrude from one surface of the expanding member (112) or the end of the receiving member (120) in the form of a connecting protrusion rather than a seating groove in order to be combined with the external type abutment (20). In FIGS. 11 and 12, the connecting portion (200') having the form of a connecting protrusion is illustrated as being formed at the end of the longitudinal side of the receiving member (120).

[0110] In the case of an external type abutment (20), as shown in FIGS. 11 and 12, a groove is formed on one side in the longitudinal direction for coupling with a fixture.

[0111] Accordingly, the connecting portion (200') having the form of a connecting projection can be formed in a raised shape on one side of the expanding member (112) or the end of the receiving member (120) in order to be inserted into the groove.

[0112] In this way, it goes without saying that the connecting portion (200, 200') according to one embodiment of the present invention can be formed in the form of a mounting groove or a connecting protrusion on one surface of the expanding member (112) or the receiving member (120) corresponding to various types of abutments (20).

[0113] Therefore, the scope of the present invention should not be limited to the described embodiments, but should be defined not only by the scope of the claims described below, but also by equivalents of the claims.

[0114] The present invention can be applied and sold in the dental medical industry.

Claims

1. A fixing holder for mounting a workpiece to which an abutment is integrally connected to a cutting processing device. A connecting part connected to the jig of the above cutting processing device; and A fixing holder characterized by including a connecting portion provided on the longitudinal side of the connecting portion and connected to an end of the abutment.

2. In paragraph 1, The above connection part is, A connecting pin that can be inserted into a connecting hole formed in a jig of the above cutting processing device; and A fixing holder characterized by including an expanding member that is integrally connected to the connecting pin and is positioned facing the processing target while having an outer diameter larger than the outer diameter of the connecting pin.

3. In paragraph 2, A hollow receiving member is formed protruding in the center of one side of the above-mentioned expansion member, A fixing holder characterized in that the connecting portion, which is connected to the end of the abutment, is formed in the receiving member in the form of a fixing groove.

4. In paragraph 3, A fixing holder characterized in that the above-mentioned connecting portion is formed in a portion of the length direction of the above-mentioned receiving member.

5. In paragraph 4, A fixing holder characterized in that a fixing hole is formed in the longitudinal remaining section of the receiving member and the expanding member to be screw-connected with a fixing member passing through the inside of the abutment.

6. In paragraph 4, A fixed holder characterized in that a first reference mark that can be visually confirmed by a worker is displayed or formed on the circumference of the above-mentioned receiving member.

7. In paragraph 6, The above first standard mark is, A fixing holder characterized in that when the end of the abutment is inserted and seated in the above-mentioned joint, it corresponds to the second reference mark displayed or formed on the outer surface of the object to be processed.

8. In paragraph 2, A fixing holder characterized in that the connecting portion, which is connected to the end of the abutment, is formed in the center of one side of the expanding member in the form of a fixing groove.

9. In paragraph 8, A fixing holder characterized in that the above-mentioned connecting portion is formed in a portion of the longitudinal direction of the expanding member.

10. In paragraph 9, A fixing holder characterized in that a fastening hole is formed in the remaining longitudinal section of the above-mentioned expansion member or a portion of the longitudinal section of the above-mentioned connecting pin to be screw-connected with a fastening member passing through the interior of the above-mentioned abutment.

11. In paragraph 9, A fixed holder characterized in that a first reference mark that can be visually confirmed by a worker is displayed or formed on the circumference of the above-mentioned expansion member.

12. In paragraph 11, The above first standard mark is, A fixing holder characterized in that when the end of the abutment is inserted and seated in the above-mentioned joint, it corresponds to the second reference mark displayed or formed on the outer surface of the object to be processed.

13. In paragraph 2, A fixing holder characterized in that the above-mentioned connecting portion is formed in the form of a connecting projection, protruding from one surface of the expanding member or from an end of a receiving member formed protruding from one surface of the expanding member.

Citation Information

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