ULTRASONIC DENTAL INSTRUMENTS, INSERT ASSEMBLIES, AND INSERTS WITH IMPROVED PERFORMANCE DURABILITY
20220361995 · 2022-11-17
Inventors
Cpc classification
B06B1/08
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
Ultrasonic dental instruments, inserts, and insert assemblies are provided which include an acoustic transformer and a tip that, in combination, are configured to operate at an operational frequency different from the frequency of resonance of the transducer that drives the combination. As a result, the ultrasonic dental instruments, inserts, and insert assemblies provide improved performance durability by providing improved output stroke ranges over nominal wear lengths between, for example, 2 mm and 3 mm, which results in more durable performance over a longer service life.
Claims
1. A dental ultrasonic assembly, comprising: a tip defining a pre-determined initial length and configured to releasably attach to an acoustic transformer connected to a transducer for driving a combination of the tip and the acoustic transformer, wherein the combination defines an initial frequency of resonance substantially less than a transducer frequency of resonance, and wherein as the tip wears from the pre-determined initial length to a pre-determined worn length less than the pre-determined initial length, the combination defines a worn frequency of resonance that substantially equals the transducer frequency of resonance, wherein the tip includes a proximal section defining a centerline, a distal section defining a straight configuration, and an intermediate section that is disposed between the proximal and distal sections and defines a bend radius, and wherein the intermediate section extends from the proximal section at a first angle relative to the centerline, and wherein the distal section is oriented to define a second angle relative to the centerline, and wherein a ratio of the first angle to the second angle is greater than 3 and less than 15.
2. The dental ultrasonic assembly according to claim 1, further comprising the acoustic transformer.
3. The dental ultrasonic assembly according to claim 2, further comprising the transducer connected to the acoustic transformer, wherein the transducer is piezoelectric or magnetostrictive.
4. The dental ultrasonic assembly according to claim 3, wherein the transducer is configured to drive the combination at an operational frequency of between 18 kHz and 50 kHz.
5. The dental ultrasonic assembly according to claim 1, wherein the tip is configured to releasably attach to the distal portion of the acoustic transformer by screw threads.
6. The dental ultrasonic assembly according to claim 1, wherein the ratio is selected to minimize reduction in an output stroke of the tip over a reduction in a length of the distal section of the tip from a distal point thereof of at least 2.0 mm.
7. A dental ultrasonic tip, comprising: a tip defining a pre-determined initial length, the tip configured to releasably attach to an acoustic transformer connected to a transducer having a fixed transducer frequency of resonance and configured for driving a combination of the tip and the acoustic transformer, wherein the combination defines an initial combined length and has a first frequency of resonance defined by the initial combined length that is substantially different than the fixed transducer frequency of resonance, and wherein the transducer is configured to produce a vibrational wave defining a force component having a non-zero value at the junction of the transducer and the acoustic transformer, wherein, as a length of the combination decreases from the initial combined length towards a worn combined length that is less than the initial combined length as a result of wear of the tip: a frequency of resonance of the combination varies from the first frequency of resonance towards a second frequency of resonance that is defined by the worn combined length; and the force component of the vibrational wave approaches a zero value at the junction.
8. A dental ultrasonic assembly, comprising: the dental ultrasonic tip according to claim 7; and the acoustic transformer.
9. The dental ultrasonic assembly according to claim 8, further comprising the transducer, wherein the transducer is piezoelectric or magnetostrictive.
10. The dental ultrasonic assembly according to claim 9, wherein the transducer is configured to drive the combination at an operational frequency of between 18 kHz and 50 kHz.
11. The dental ultrasonic tip according to claim 7, wherein the tip is configured to releasably attach to the distal portion of the acoustic transformer by screw threads.
12. The dental ultrasonic tip assembly according to claim 7, wherein a ratio of the pre-determined initial length of the tip to a distance from a distal point of the tip to tangency with a bend radius of the tip is selected to minimize reduction in an output stroke of the tip over a reduction in length of the tip from the pre-determined initial length.
13. A dental ultrasonic tip, comprising: a tip defining a pre-determined initial length and including a proximal section, a distal section, and a curved intermediate section disposed between the proximal and distal sections, the tip configured to releasably operably couple to a transducer configured to drive the tip, wherein after wear of the tip from the pre-determined initial length resulting in a reduction in length of from between and including about 2 mm to about 3 mm from the pre-determined initial length, the tip defines a subsequent length, the tip configured such that: at the pre-determined initial length, in response to the transducer driving the tip at a frequency and power, the tip defines an initial range of deflection, and at the subsequent length, in response to the transducer driving the tip at a frequency and power, the tip defines a subsequent range of deflection that is within 20% of the initial range of deflection.
14. The dental ultrasonic tip according to claim 13, wherein the subsequent range of deflection is within 10% of the initial range of deflection.
15. The dental ultrasonic tip according to claim 13, wherein the tip is configured to operably couple to the transducer via an acoustic transformer.
16. The dental ultrasonic tip according to claim 15, wherein the tip is configured to releasably attach to the acoustic transformer via screw threads.
17. The dental ultrasonic tip according to claim 13, wherein the transducer is piezoelectric or magnetostrictive.
18. A dental ultrasonic tip, comprising: a tip defining a mesial portion and a distal portion, the mesial portion of the tip configured to releasably attach to an acoustic transformer having a transducer connected thereto for driving a combination of the tip and the acoustic transformer, wherein the transducer defines a length substantially equal to an integer multiple, n, of one-quarter wavelengths of the transducer frequency of resonance, wherein the tip defines a pre-determined initial length and, after use resulting in a pre-determined reduction in length from the pre-determined initial length, the tip defines a pre-determined subsequent length less than the pre-determined initial length, wherein, at the pre-determined initial length, a combination of the tip and the attached acoustic transformer define an initial frequency of resonance that is substantially different from a transducer frequency of resonance, and wherein, at the pre-determined subsequent length, the combination of the tip and the attached acoustic transformer define a subsequent frequency of resonance that is substantially equal to the transducer frequency of resonance.
19. The dental ultrasonic tip according to claim 18, wherein the pre-determined reduction is from between and including about 2 mm to about 3 mm.
20. The dental ultrasonic tip according to claim 18, wherein the pre-determined reduction is 2 mm or 3 mm.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION
[0050] Aspects and features of the present disclosure are described herein with reference to the accompanying drawings. In the following descriptions, well known functions or constructions are summarily described or omitted entirely to avoid obscuring the present disclosure in unnecessary detail. The terms insert, insert tip, and tip are used interchangeably herein, while the term tip portion refers to a distal end portion of the insert, insert tip, or tip. In addition, the terms insert assembly, tip assembly, or insert tip assembly are used interchangeably and include, in addition to the insert, insert tip, or tip, one or more additional components (whether monolithically formed or otherwise directly or indirectly coupled with the insert, insert tip, or tip), thus forming an assembly. The assembly may itself be or may be connectable to a tool or instrument, which terms are used interchangeably as well. Further, although the aspects and features of the present disclosure are described herein, by way of example, with respect to magnetostrictive systems, it is understood that the aspects and features of the present disclosure also apply equally to piezoelectric systems.
[0051] Referring to
[0052] With continued reference to
[0053] With reference to
[0054] With reference to
[0055] Referring to
[0056] Referring to
[0057] With continued reference to
[0058] In some aspects, the present insert assembly includes a transducer defining a frequency of resonance; an acoustic transformer; and a tip coupled to a distal portion of the acoustic transformer, where a mesial portion of a combination of the acoustic transformer and the tip is coupled to the transducer, and wherein an operational frequency of the combination is not equal to the frequency of resonance of the transducer, e.g., wherein, at a full length of the tip, a force at a junction of the transducer and the acoustic transformer is finite, and wherein, at a reduced length due to an amount of wear of the tip, the force is substantially zero and an output stroke of the tip is substantially at a maximum.
[0059] In some aspects, for example, the operational frequency at the reduced length is coincident with the frequency of resonance. In additional or alternative aspects, the wear is greater than 1 mm and/or greater than 0 mm and less than 4 mm. In aspects, at the full length, the operational frequency of the combination of the acoustic transformer and tip is less than the frequency of resonance of the transducer. In aspects, the tip is press fitted onto the acoustic transformer, connected by threaded engagement, or is an integral part of the acoustic transformer. In aspects, at the full length, the operational frequency of the combination of the acoustic transformer and the tip is greater than the frequency of resonance of the transducer.
[0060] Referring to
at resonance, wherein n can be 1 or 2.
[0061] With reference to
[0062] Referring to
[0063] Further reference to
[0064] In aspects, the insert assembly includes a transducer having a frequency of resonance and defining a length substantially equal to a frequency of resonance; wherein the length is defined by a
section, where n=1 or 2, and an acoustic transformer; and a tip extending distally from the acoustic transformer, wherein a combination of the acoustic transformer and the tip is configured to operate at an operational frequency below the frequency of resonance, and wherein the combination defines a length greater than
of the frequency of the transducer, where n=1 or 2, e.g., wherein the operational frequency of the combination approaches the frequency of resonance as a length of the tip is reduced from a full length.
[0065] In aspects, for example, the operational frequency is between 18 kHz and 50 kHz.
[0066] In aspects, the combination of the transducer, acoustic transformer and tip are configured to operate at an operational frequency below the frequency of resonance, e.g., wherein the combination has a non-monotonic stroke value that includes a maxima as the length of the tip is reduced, and wherein the operational frequency of the combination approaches the frequency of resonance as the length of the tip is reduced, such as wherein the operational frequency is between 18 kHz and 50 kHz, and the transducer is piezoelectric or magnetostrictive.
[0067]
[0068] With reference to
[0069] Referring to
[0070] In aspects, the insert assembly includes a transducer defining a length substantially equal to
at a frequency of resonance thereof, where n=1 or n=2, and a combination of a tip and an acoustic transformer, wherein the combination is configured to operate at an operational frequency below the frequency of resonance, e.g., wherein the tip has a bend radius, wherein a ratio of a distance from a distal point of the tip to tangency with the bend radius is greater than 1.25, and wherein the tip defines two angles, wherein a ratio of a more-proximal of the two angles to a more-distal of the two angles is greater than 3.
[0071] In aspects, the ratio of the distance is greater than 1.25 and less than 2.25.
[0072] In aspects, the ratio of the more-proximal angle to the more-distal angle is such that an output stroke remains within 25% of an initial output stroke over a reduction in a length of the tip of at least 2.0 mm.
[0073] In aspects, the ratio of the distance is such that an output stroke remains within 25% of an initial output stroke over a reduction in a length of the tip of at least 3.0 mm.
[0074] In aspects, the ratio of the more-proximal angle to the more-distal angle is such that an output stroke remains within 25% of an initial output stroke over a reduction in a length of the tip of at least 2.0 mm.
[0075] In aspects, the ratio of the more-proximal angle to the more-distal angle is such that an output stroke remains within 25% of an initial output stroke over a reduction in a length of the tip of at least 3.0 mm.
[0076] In aspects, the ratio of the more-proximal angle to the more-distal angle in combination with the ratio of the distance are such that an output stroke remains within 25% of an initial output stroke over a reduction in a length of the tip of at least 2.0 mm.
[0077] In aspects, the ratio of the more-proximal angle to the more-distal angle in combination with the ratio of the distance LL1 are such that an output stroke remains within 25% of an initial output stroke over a reduction in a length of the tip of at least 3.0 mm.
[0078] With reference to
[0079] With continued reference to
[0080] Referring still to
[0081] It should be understood that various aspects disclosed herein may be combined in different combinations than the combinations specifically presented in the description and accompanying drawings.