CN213249859U - Dental handpiece - Google Patents

Dental handpiece Download PDF

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Publication number
CN213249859U
CN213249859U CN202021638794.1U CN202021638794U CN213249859U CN 213249859 U CN213249859 U CN 213249859U CN 202021638794 U CN202021638794 U CN 202021638794U CN 213249859 U CN213249859 U CN 213249859U
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China
Prior art keywords
bearing
dental handpiece
wind wheel
barrel
sealing member
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CN202021638794.1U
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Chinese (zh)
Inventor
李敏
陈昌明
杨华
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Best Deyou Medical Equipment Guangzhou Co ltd
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Best Deyou Medical Equipment Guangzhou Co ltd
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Priority to CN202021638794.1U priority Critical patent/CN213249859U/en
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Abstract

The utility model provides a dental handpiece, including the barrel, set up with rotating in wind wheel in the barrel, pin joint in along with wind wheel pivoted axis, support axis pivoted bearing and sealing member in the wind wheel, the barrel includes an axial open end, the sealing member is the loudspeaker form, set up in the open end of barrel with between the bearing, the sealing member including the ring overlap in epaxial sealing, the sealing with the centraxonial face of cylinder pastes mutually establishes, the utility model discloses dental handpiece's sealing member produces corresponding deformation under the effect of inside and outside pressure differential, outwards opens or inwards contracts, and sealing member and axis separation make things convenient for centraxonial rotation when using, sealing member and axis hold tightly when shutting down and form good brake and sealed effect, avoid the external material resorption and get into in the barrel.

Description

Dental handpiece
Technical Field
The utility model relates to the technical field of medical equipment, especially, relate to a dental handpiece.
Background
The dental turbine handpiece blows the wind wheel to rotate in the wind barrel through compressed air to generate power, and the rotating speed of the wind wheel driving the middle shaft can reach 30-40 ten thousand revolutions per minute when the dental turbine handpiece works on the current market.
However, in the treatment process of a patient, a doctor often needs to stop the turbine handpiece to replace a needle or observe the oral condition of the patient, and the middle shaft and the wind wheel can still rotate for 4-5 seconds after the treatment is stopped due to the inertia effect, so that negative pressure is generated inside the wind barrel of the turbine handpiece, and blood, water and various impurities generated by grinding teeth in the oral cavity of the patient are sucked back into the wind barrel. On one hand, the sucked impurities can enter the mobile phone bearing, so that the use safety and the service life of the bearing are seriously influenced; on the other hand, blood and the like enter the cylinder body to cause pollution, and cross infection of patients cannot be completely avoided even if the patients are disinfected subsequently.
SUMMERY OF THE UTILITY MODEL
In view of this, a dental handpiece capable of effectively preventing suck-back during shutdown is provided.
A dental handpiece comprises a barrel body, a wind wheel rotatably arranged in the barrel body, a center shaft pivoted in the wind wheel and rotating along with the wind wheel, a bearing supporting the center shaft to rotate and a sealing element, wherein the barrel body comprises an axial opening end, the sealing element is horn-shaped and arranged between the opening end of the barrel body and the bearing, the sealing element comprises a sealing part sleeved on the center shaft in a sleeved mode, and the sealing part is attached to the outer cylindrical surface of the center shaft.
Preferably, the sealing element is an elastic element with the hardness of 50-70 degrees, the inner diameter of the sealing part is smaller than the diameter of the middle shaft in a natural state, and the sealing part is tightly matched with the outer cylindrical surface of the middle shaft.
Preferably, the sealing part is an arc surface structure which is arched towards the outer cylindrical surface of the middle shaft, and the corresponding arc surface radius is 1-3 mm.
Preferably, the radial inner side surface of the sealing part is a cylindrical surface, and the cylindrical surface is attached to the outer cylindrical surface of the middle shaft.
Preferably, the sealing element further comprises an annular mounting part surrounding the sealing part, the thickness of the mounting part is 0.4-1.0mm, and the thickness of the sealing part is 0.1-0.3 mm.
Preferably, a bearing seat is arranged in the cylinder, a bearing hole is formed in the bearing seat and used for assembling the bearing, and the mounting part is arranged between the bearing and the bearing seat and is clamped flat by the bearing and the bearing seat.
Compared with the prior art, the utility model discloses dental handpiece outwards opens or inwards contracts through the corresponding deformation that its sealing member produced under inside and outside pressure differential's effect, and the sealing member makes things convenient for centraxonial rotation, the sealing member is held tightly with the axis and is formed good brake and sealed effect when shutting down with axis separation when using, avoids in the foreign matter resorption and gets into the barrel, guarantees the safe in utilization and life of bearing on the one hand, on the other hand avoids patient's cross infection.
Drawings
Fig. 1 is a schematic structural view of an embodiment of the dental handpiece of the present invention.
Fig. 2 is a cross-sectional view of the dental handpiece of fig. 1.
Figure 3 is a cross-sectional view of the seal of the dental handpiece of figure 2.
Fig. 4 is an enlarged view of circle IV in fig. 2.
Fig. 5 is a schematic view of the dental handpiece of fig. 1 in use.
Fig. 6 is a schematic view of the dental handpiece shown in fig. 1 in a state of being stopped.
Detailed Description
In order to facilitate understanding of the present invention, the present invention will be described more fully hereinafter with reference to the accompanying drawings. One or more embodiments of the present invention are illustrated in the accompanying drawings to provide a more accurate and thorough understanding of the disclosed embodiments. It should be understood, however, that the present invention may be embodied in many different forms and is not limited to the embodiments described below.
As shown in fig. 1-2, a dental handpiece according to an embodiment of the present invention includes a handpiece 10 and a handle 30 connected to the handpiece 10. The handle 30 is convenient for a user, such as a doctor, to hold. The machine head 10 comprises a cylinder 11, a wind wheel 12 rotatably arranged in the cylinder 11, a middle shaft 13 pivoted in the wind wheel 12, a bearing 14 supporting the middle shaft 13 to rotate, and a sealing element 20.
The barrel 11 is of a hollow cylindrical structure, and an accommodating cavity 110 is formed inside the barrel and used for mounting the wind wheel 12. The axial two ends of the cylinder 11 are open, wherein the rear end of the cylinder 11 is covered with a rear cover 15. The central shaft 13 fixedly penetrates through the center of the wind wheel 12, and the front end and the rear end of the central shaft both extend out of the wind wheel 12. The rear end of the central shaft 13 is rotatably supported at the center of the rear cover 15, and the front end extends out of the cylinder 11 from the front end opening of the cylinder 11, and is connected with a medical apparatus, such as a needle 40. Corresponding to the wind wheel 12, a main air channel 32 and an exhaust air channel 34 are formed on the handle 30, and the main air channel 32 and the exhaust air channel 34 are both communicated with the accommodating cavity 110 and are respectively used for the inflow and outflow of compressed air.
The utility model discloses dental handpiece when using, compressed air by main air channel 32 carries to holding chamber 110 in, orders about wind wheel 12 rotates at a high speed, and then drives axis 13 and connects medical appliances such as epaxial car needle 40 of epaxial car and rotate, grinding tooth. Usually, the rotation speed of the middle shaft 13 can reach 30-40 ten thousand revolutions per minute during operation. The compressed air flows along the wall surface of the accommodating cavity 110 along with the rotation of the wind wheel 12, and finally flows out of the accommodating cavity 110 through the exhaust passage 34. In order to ensure the effectiveness of torque transmission between the wind wheel 12 and the middle shaft 13, the wind wheel 12 and the middle shaft 13 can also form limit in the circumferential direction through bonding, buckling and other modes, and the wind wheel 12 and the middle shaft 13 keep synchronous rotation under the driving of compressed air.
The bearings 14 are two, and for convenience of description, the first bearing 14a and the second bearing 14b are respectively referred to below. The first bearing 14a and the second bearing 14b are respectively sleeved at the front end and the rear end of the middle shaft 13 and are respectively positioned at the front side and the rear side of the wind wheel 12 in the axial direction, so that the balance and stability of the rotation of the wind wheel 12 and the middle shaft 13 are ensured, and the generation of noise is reduced. In this embodiment, the first and second bearings 14a and 14b are both ball bearings, and form rolling friction during the rotation of the central shaft 13, thereby effectively reducing wear. It should be understood that the first and second bearings 14a, 14b may also be sliding bearings, ceramic bearings, etc.; in addition, the first and second bearings 14a and 14b may also be different types of bearings, and are not limited to specific embodiments.
The first bearing 14a is fitted into the cylinder 11 through a first bearing housing 16, and the second bearing 14b is fitted into the cylinder 11 through a second bearing housing 17. In this embodiment, the outer edge of the front end of the first bearing seat 16 and the inner edge of the front end of the cylinder 11 form a matching step, and are abutted and limited in the axial direction; the outer wall surface of the second bearing seat 17 and the inner wall surface of the rear end of the cylinder 11 form matched threads, and the two are screwed and fixed; the rear cover 15 is hook-coupled to an end of the second bearing housing 17. It should be understood that the first and/or second bearing seats 16, 17 may be integrally formed in the barrel 11, or the second bearing seat 17 and the rear cover 15 may be a unitary structure.
A first bearing hole is formed at the center of a side of the first bearing housing 16 facing the wind wheel 12 for fitting the first bearing 14 a. Preferably, a flat pad 18 is disposed between the first bearing seat 16 and the axial front end of the first bearing 14 a. The sealing member 20 is sleeved on the middle shaft 13 and located at the front side of the first bearing 14a, and in this embodiment, the sealing member is clamped between the flat gasket 18 and the first bearing seat 16, so that when the dental handpiece of the present invention is stopped, a seal is formed between the first bearing 14a and the front side end of the barrel 11. It should be understood that the flat gasket 18 between the first bearing seat 16 and the first bearing 14a may be omitted, with the seal 20 sandwiched between the first bearing 14a and the first bearing seat 16.
A second bearing hole is formed at the center of the second bearing housing 17 for fitting the second bearing 14 b. An elastic member 19, such as an elastic washer, is disposed between the second bearing seat 17 and the axial rear end of the second bearing 14 b. During assembly, the first bearing seat 16, the sealing element 20, the flat gasket 18, the first bearing 14a, the middle shaft 13 and the wind wheel 12 are sequentially assembled in the cylinder 11; the elastic piece 19 and the second bearing 14b are assembled into the second bearing seat 17, then the second bearing seat 17 is screwed to the cylinder 11, during the screwing process, the inner rings of the first bearing 14a and the second bearing 14b clamp the wind wheel 12, the elastic piece 19 is pressed and deformed to form forward pretightening force and acts on the sealing element 20 through the second bearing 14b, the wind wheel 12, the first bearing 14a and the flat gasket 18, so that the sealing element 20 is clamped flat.
Referring to fig. 3, the sealing member 20 is made of materials such as fluorine glue and hydrogenated nitrile rubber, and has a hardness of preferably 50-70 degrees, which not only has the advantages of oil resistance, wear resistance, high temperature resistance, but also can be directly molded by mold opening and injection, and has a low production cost. The seal 20 is generally annular and includes a mounting portion 22 at an outer edge thereof and a sealing portion 24 within the mounting portion 22. A through hole 26 is formed in the center of the sealing portion 24 for sleeving the middle shaft 13. The radially inner side of the seal 24, i.e. the surface thereof surrounding the through hole 26, is in close contact with the outer cylindrical surface of the central shaft 13 as an active surface 28. Preferably, the through hole 26 is a cylindrical hole, and the active surface 28 is a cylindrical surface. The diameter D1 of the active surface 28 is preferably 2.8-3.0mm, slightly smaller than the diameter of the central axis 13.
The mounting portion 22 is generally annular and has a circular or oval cross-section, similar to an O-ring. In this embodiment, the cross section of the mounting portion 22 in the natural state is circular, and the diameter D2 of the circular cross section is 0.4-1.0mm, that is, the thickness of the mounting portion 22 in the axial direction of the cylinder 11/the middle shaft 13 is 0.4-1.0 mm. Preferably, the first bearing seat 16 has an annular groove 160 formed therein for receiving and positioning the mounting portion 22 of the seal 20. As shown in fig. 4, the groove 160 has a square or rectangular cross section, which is different from the cross section of the mounting portion 22, and provides a space for deformation of the mounting portion 22. The axial depth of the annular groove 160 is less than the thickness D2 of the mounting portion 22 in the natural state. After assembly, the mounting portion 22 is sandwiched between the flat pad 18 and the first mounting seat 16 and flattened, wherein the mounting portion 22 has a generally oval cross-section when flattened, as shown by the dashed lines in FIG. 3. After being flattened, the thickness D3 of the mounting portion 22 corresponds to the axial depth of the groove 160, and differs from its original thickness D2 by 0.05-0.1 mm.
The sealing portion 24 is formed in a horn shape as a whole, and extends from the inner edge of the mounting portion 22 radially inward and axially toward the front end of the cylinder 11. The sealing portion 24 is tapered from the rear toward the front in the axial direction of the seal member 20. Preferably, the thickness of the sealing portion 24 is smaller than the diameter of the mounting portion 22, so that the sealing portion 24 has better elastic deformability and the mounting portion 22 can be better fixed. Preferably, the thickness T of the sealing portion 24 in the axial direction of the cylinder 11/center shaft 13 is 0.1-0.3 mm. In this embodiment, the sealing portion 24 is an arc structure that arches toward the central axis 13, and the corresponding arc radius R is 1-3 mm.
As shown in fig. 4, when the dental handpiece of the present invention is not in use, the acting surface 28 of the sealing portion 24 is tightly wrapped on the outer cylindrical surface of the center shaft 13. Because the diameter of the acting surface 28 is slightly smaller than that of the middle shaft 13, the sealing element 20 and the middle shaft 13 generate certain elastic deformation when being assembled, the sealing element 20 is tightly matched with the middle shaft 13 after being assembled, the acting surface 28 tightly embraces the outer cylindrical surface of the middle shaft 13, the outer cylindrical surface and the acting surface are tightly contacted to form seamless connection, elements in the cylinder body 11, particularly the first bearing 14a and the second bearing 14b are isolated from the outside, and the cleanness of the elements in the cylinder body 11 is ensured. It should be noted that, the utility model discloses mean axis 13's outer face of cylinder indicates mean axis 13's circumference outer wall, distinguishes rather than axial terminal surface, chamfer face, and it is cylindrical face form on the whole, nevertheless does not exclude to be formed with little notch isotructure on mean axis 13's the circumference outer wall, that is to say the utility model discloses mean axis 13's outer face of cylinder is not injectd to complete face of cylinder.
As shown in fig. 5, the utility model discloses dental handpiece when using, compressed air is introduced to drive wind wheel 12 rotates with axis 13 in the barrel 11, and a small amount of compressed air flows extremely by the gap of first bearing 14a sealing member 20 department, because compressed air's atmospheric pressure is greater than the atmospheric pressure of external environment far away, compressed air forms outside effort to sealing portion 24, makes sealing portion 24 warp and outwards opens, forms the clearance between sealing portion 24's active surface 28 and axis 13's the outer face of cylinder, so axis 13's rotation does not receive sealing member 20's restriction, effectively reduces the friction, guarantees that axis 13 rotates at a high speed. During the operation of the dental handpiece, due to the pressure difference between the inside and the outside of the cylinder 11, external blood, impurities and the like cannot enter the cylinder 11 through the gap between the sealing element 20 and the central shaft 13.
As shown in fig. 6, when the dental handpiece of the present invention is suspended in the using process, the central shaft 13 and the wind wheel 12 will continue to rotate due to inertia. In the process of stopping the machine, firstly, because compressed air is not conveyed to the accommodating cavity 110 any more, the air pressure in the cylinder body 11 is rapidly reduced, and the sealing part 24 recovers deformation and is tightly held with the middle shaft 13; afterwards, the air in the cylinder 11 is discharged due to the continuous rotation of the middle shaft 13 and the wind wheel 12, negative pressure is formed in the cylinder 11, external ambient air forms inward acting force on the sealing part 24, the sealing part 24 deforms and contracts inwards, the middle shaft 13 is further tightly held, and enough strong acting force is formed between the acting surface 28 of the middle shaft 13 and the outer cylindrical surface of the middle shaft 13, so that a braking effect is formed on the middle shaft 13 on one hand, the middle shaft 13 can be rapidly stopped rotating, and the middle shaft 13 of the dental handpiece can be stopped rotating within 2 seconds after the dental handpiece is stopped; on the other hand, the sufficiently strong force also prevents external materials, including blood, impurities, debris, etc., from entering the cylinder 11, i.e., prevents damage to internal components, particularly the bearings 14a, 14b, and also prevents cross-contamination of the patient.
In a word, the utility model discloses a set up sealing member 20, sealing member 20 produces corresponding deformation under inside and outside pressure differential's effect, outwards opens or inwards contracts, and sealing member 20 and axis 13 separation make things convenient for axis 13's rotation, sealing member 20 and axis 13 when shutting down hold tightly and form good brake and sealed effect when using, avoid the foreign matter to get into in the barrel 11. To produce a good deformation effect, the sealing portion 24 of the sealing member 20 is thinner in thickness relative to its mounting portion 22, and the relatively thicker mounting portion 22 may have a sufficient thickness to deform under pressure during assembly to provide a good seal at the mounting location of the sealing member 20, further enhancing the overall sealing effect. In addition, the sealing portion 24 has a curved structure that is arched toward the center axis 13, and the deformation direction thereof is consistent with the bending direction of the inner edge of the sealing portion 24 when the sealing portion is deformed by a force, so that the sealing portion is easier to deform and has better effect.
It should be noted that the present invention is not limited to the above embodiments, and other changes can be made by those skilled in the art according to the spirit of the present invention, and all the changes made according to the spirit of the present invention should be included in the scope of the present invention.

Claims (6)

1. A dental handpiece comprises a barrel body, a wind wheel rotatably arranged in the barrel body, a center shaft pivoted in the wind wheel and rotating along with the wind wheel, a bearing supporting the center shaft to rotate and a sealing element, wherein the barrel body comprises an axial opening end.
2. A dental handpiece according to claim 1, wherein the seal is a resilient member having a hardness of 50 to 70 degrees, and wherein the seal portion has an internal diameter which is smaller than the diameter of the central shaft in its natural state, and wherein the seal portion is a close fit with the outer cylindrical surface of the central shaft.
3. A dental handpiece according to claim 1, wherein the sealing portion is a curved structure that curves towards an outer cylindrical surface of the central axis, corresponding to a curved radius of 1-3 mm.
4. A dental handpiece according to claim 1, wherein the radially inner side of the seal is a cylindrical surface which abuts an outer cylindrical surface of the central shaft.
5. A dental handpiece according to any of claims 1 to 4, wherein the seal further comprises an annular mounting portion disposed around the sealing portion, the mounting portion having a thickness of 0.4 to 1.0mm and the sealing portion having a thickness of 0.1 to 0.3 mm.
6. A dental handpiece according to claim 5, wherein a bearing mount is provided in the barrel, the bearing mount being formed with a bearing aperture for mounting the bearing, the mounting portion being provided between and clamped flat by the bearing and the bearing mount.
CN202021638794.1U 2020-08-07 2020-08-07 Dental handpiece Active CN213249859U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021638794.1U CN213249859U (en) 2020-08-07 2020-08-07 Dental handpiece

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202021638794.1U CN213249859U (en) 2020-08-07 2020-08-07 Dental handpiece

Publications (1)

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CN213249859U true CN213249859U (en) 2021-05-25

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CN202021638794.1U Active CN213249859U (en) 2020-08-07 2020-08-07 Dental handpiece

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113349952A (en) * 2021-07-21 2021-09-07 佛山市丹特尔医疗器材有限公司 Anti-suck-back dental handpiece

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113349952A (en) * 2021-07-21 2021-09-07 佛山市丹特尔医疗器材有限公司 Anti-suck-back dental handpiece

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