WO2017159896A1 - Tapping screw capable of minimizing material strain rate of object to be coupled - Google Patents

Tapping screw capable of minimizing material strain rate of object to be coupled Download PDF

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Publication number
WO2017159896A1
WO2017159896A1 PCT/KR2016/002733 KR2016002733W WO2017159896A1 WO 2017159896 A1 WO2017159896 A1 WO 2017159896A1 KR 2016002733 W KR2016002733 W KR 2016002733W WO 2017159896 A1 WO2017159896 A1 WO 2017159896A1
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WO
WIPO (PCT)
Prior art keywords
flank
fastening
angle
thread
tapping screw
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PCT/KR2016/002733
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French (fr)
Korean (ko)
Inventor
이성윤
Original Assignee
주식회사 서울금속
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Application filed by 주식회사 서울금속 filed Critical 주식회사 서울금속
Priority to PCT/KR2016/002733 priority Critical patent/WO2017159896A1/en
Publication of WO2017159896A1 publication Critical patent/WO2017159896A1/en

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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16BDEVICES FOR FASTENING OR SECURING CONSTRUCTIONAL ELEMENTS OR MACHINE PARTS TOGETHER, e.g. NAILS, BOLTS, CIRCLIPS, CLAMPS, CLIPS OR WEDGES; JOINTS OR JOINTING
    • F16B33/00Features common to bolt and nut
    • F16B33/02Shape of thread; Special thread-forms

Definitions

  • the present invention relates to a tapping screw, and more particularly, to a tapping screw that can minimize the material strain and the material deformation portion of the fastening object when fastened to the fastening object.
  • screws In general, screws (screws) generally have a strong fixing force when joining a plurality of components, including mechanical parts or electronics, easy construction, and can adjust the fastening force according to the fastening partner (or the base material). Use screws that are easy to disassemble at the same time.
  • Such screws are divided into triangular screws, square screws, trapezoidal screws, toothed screws, round screws, ball screws, etc., depending on the cross-sectional shape of the thread formed on the outer circumferential surface. It is divided into various head screws.
  • the shape of the screw is divided into a variety of small screws, stop screws, screws, tapping screws, heli-inserts.
  • tapping screw is a screw that can be clipped to form a female screw on the fastening object by the screw itself.
  • the large material flow resistance generated in this way has increased the frictional heat of the fastening object to increase the material strain and the material deformation portion of the fastening object.
  • As the material strain and the material deformation portion are increased there has been a problem that the fastening force of the tapping screw on the fastening object is reduced, and the defective rate of the fastening object is increased.
  • the head And a body part having one end connected to the head and having a plurality of fastening threads provided on an outer circumferential surface thereof, wherein the fastening thread includes a flank of the fastening thread and the body when the fastening thread is fastened to a fastening object.
  • a tapping screw can be provided, comprising a material flow resistance alleviation structure for reducing the material flow resistance of the fastening object along the outer circumferential surface of the entire portion of the flank.
  • the fastening screw thread is configured such that a flank angle, which is an angle between opposing flank surfaces, increases from the peak portion of the fastening screw thread to the valley portion.
  • the fastening screw thread may include: a first flank portion positioned at a peak portion of the fastening screw thread, the flank angle being an angle between opposing flank surfaces being a first flank angle preset; A second flank portion extending below the first flank portion and having a predetermined second flank angle greater than the predetermined first flank angle; And a third flank portion extending between a lower portion of the second flank portion and an outer circumferential surface of the body portion and having a predetermined third flank angle greater than the predetermined second flank angle.
  • the predetermined first flank angle and the predetermined second flank angle are within an angle range of 20 ° to 50 °.
  • the predetermined first flank angle is in an angular range of 15 ° to 25 °
  • the predetermined second flank angle is in an angular range of 35 ° to 45 °
  • the predetermined third flank The angle is characterized in that it is in the angle range of 55 ° to 65 °.
  • the fastening screw thread is configured such that the height of the first flank portion: the height of the second flank portion: the height of the third flank portion is 1: 1: 0.5 to 1.
  • the fastening screw thread is configured such that the height of the first flank portion is 0.25 to 0.5 times the sum of the height of the second flank portion and the height of the third flank portion.
  • the fastening screw thread is characterized in that the pitch of the plurality of fastening screw threads is configured to be 0.15 to 0.5 times the outermost outer diameter of the fastening screw thread.
  • the present invention can minimize the material strain and the material deformation portion of the fastening object when the tapping screw is fastened to the fastening object. Therefore, the present invention increases the fastening area of the tapping screw for the fastening object by minimizing the material strain and the material deformation portion, thereby improving the fastening force and having an effect of significantly reducing the defective rate of the fastening object itself.
  • the present invention can easily form a female thread on the fastening object by having a first flank, thereby improving the convenience of fastening, and at the same time, by providing a second flank and / or a third flank, the mechanical strength of the screw thread can be stably maintained. It can be secured.
  • FIG. 1 is a schematic perspective view of a tapping screw according to an embodiment of the present invention.
  • FIG. 2 is a schematic enlarged view of the tapping screw of FIG. 1.
  • FIG. 2 is a schematic enlarged view of the tapping screw of FIG. 1.
  • FIG. 3 is a schematic cross-sectional view of FIG. 2.
  • FIG. 4 is a schematic partial enlarged cross-sectional view of a tapping screw according to the first prior art showing the material flow of the fastening object.
  • FIG. 5 is a schematic partially enlarged cross-sectional view of a tapping screw according to the second prior art showing the material flow of the fastening object.
  • FIG. 6 is a schematic diagram of a tapping screw according to an embodiment of the present invention showing the material flow of the fastening object.
  • Embodiments of the present invention specifically illustrate ideal embodiments of the present invention. As a result, various modifications of the drawings are expected. Thus, the embodiment is not limited to the specific form of the illustrated region, but includes, for example, modification of the form by manufacture.
  • tapping screw 100 (hereinafter referred to as 'tapping screw') according to an embodiment of the present invention will be described with reference to the accompanying drawings.
  • FIG. 1 is a schematic perspective view of a tapping screw 100 according to an embodiment of the present invention
  • FIG. 2 is a schematic enlarged view of the tapping screw 100 of FIG. 1
  • FIG. 3 is a schematic view of FIG. 2.
  • 4 is a schematic partial enlarged cross-sectional view of the tapping screw 100 according to the first conventional art showing the material flow Fm of the fastening object O
  • FIG. 5 is a material flow (of the fastening object O)
  • FIG. 6 is a partially enlarged cross-sectional view of a tapping screw 100 according to the second prior art representing Fm)
  • FIG. 6 is a tapping screw according to an embodiment of the present invention showing a material flow Fm of the fastening object O.
  • 100 is a schematic diagram.
  • the tapping screw 100 is connected to the head 110 and the head 110 and a plurality of fastening threads 130 on the outer peripheral surface It may include a body portion 120 is provided.
  • the head 110 is a portion connected to the body 120.
  • One end of the head 110 may be connected to the body portion 120, the other end may be a fastening portion (not shown).
  • the fastening part (not shown) formed at the other end of the head 110 is a tool for fastening the tapping screw 100 to the fastening object (O) or the preformed bore (B) of the fastening object (O).
  • the tool be provided in the form of a groove or groove so that the tool can be inserted.
  • the body 120 is completely inserted into the fastening object O by a tool inserted into the fastening part (not shown) of the head 110, one end of the head 110 is fastened to the fastening object O. Can be fully contacted.
  • the shape of the head 110 is illustrated in the form of a cylinder in the drawing, the shape of the head 110 is not necessarily limited thereto, and may be formed in various shapes such as a rectangle and a hexagon.
  • one end of the body 120 may be connected to the head 110, and a plurality of fastening threads 130 may be provided on an outer circumferential surface of the body 120.
  • the body portion 120 may be formed in a cylindrical shape having a length narrower than the width of the head 110 and the longitudinal direction.
  • a plurality of fastening threads 130 may be provided on the outer circumferential surface of the body 120 having a cylindrical shape.
  • the fastening thread 130 provided in the body portion 120 and the body portion 120 is provided with a plurality of fastening screw 130 is a fastening object (O) or in advance of the fastening object (O) along the fastening direction. Enter the formed bore (B) to form a female thread.
  • the fastening direction means one end of the body portion 120 from the other end of the body portion 120 (that is, the opposite end of the portion in which the head portion 110 is provided). Means the direction toward the head 110 is provided).
  • the tapping screw may be fastened to the fastening object O through a female thread formed in the fastening object O by the flank of the fastening screw 130 and the fastening screw thread.
  • the fastening screw 130 is preferably a cross-sectional shape of the flank surface is formed in a straight line.
  • the fastening thread 130 is a first flank surface and a flank surface facing the other end side of the body portion 120 (ie, the fastening direction) and one end side of the body portion 120.
  • a second flank surface which is a flank surface facing (ie facing in the opposite direction to the fastening direction F2) and a flank angle formed by the first and second flank surfaces (ie, opposite flank surfaces). Angle), a first flank side angle formed by the axis or axis direction of the first flank and the body portion, and an axis or axis direction A of the second flank surface and the body portion 120 are formed.
  • the flank angle again includes a front flank angle and a rear flank angle.
  • the front flank angle means an angle formed by a vertical line with respect to the axis of the first flank surface and the body portion
  • the rear flank angle means an angle formed by a vertical line with respect to the axis line of the second flank surface and the body portion.
  • the fastening screw 130 is configured to extend in the upper direction from the outer peripheral surface of the body portion 120, the fastening screw 130 is a material flow over the entire flank surface of the fastening screw 130 It has a resistance alleviation structure.
  • the material flow resistance relief structure of the fastening object 130 along the flank surface of the fastening screw 130 and the outer peripheral surface of the body portion 120 when the fastening screw 130 is fastened to the fastening object (O) It means the shape of the flank surface to reduce the material flow resistance.
  • the material flow resistance relief structure is configured such that the flank angle in the fastening screw thread 130 increases from the peak portion of the fastening screw thread 130 to the bone portion. That is, the material flow resistance mitigation structure gradually gradually angles the angle between the flank surface, which is the path of movement of the material flow Fm formed by the frictional heat between the tapping screw and the fastening object O, and the outer circumferential surface of the body portion 120. It can be formed so as to prevent the material flow (Fm) path to change suddenly or at a sharp angle.
  • the fastening screw 130 has a first bottom flank that extends integrally with the first flank 131 at the top and the outer circumferential surface of the body 120. And a third flank 133 and a second flank 132 connecting the first flank 131 and the third flank 133.
  • the first flank 131 is located at a peak of the fastening screw thread 130 and has a first flank angle of which a flank angle, which is an angle between opposing flanks, is a predetermined angle. ⁇ 1) is the uppermost part.
  • the fastening thread 130 may be a symmetrical thread in which the first first flank angle ⁇ 1 is the same as the first front flank angle and the first rear flank angle.
  • the preset first flank angle ⁇ 1 is within an angle range of 15 ° to 25 °, and more preferably, the preset first flank angle ⁇ 1 is 20 °.
  • the predetermined first flank angle ⁇ 1 When the predetermined first flank angle ⁇ 1 is less than 15 °, the thickness of the first flank 131 becomes too thin, so that the mechanical strength of the first flank 131 on which the fastening stress and the fastening torque are concentrated is excessively increased. This is because there is a high possibility that the first flank 131 breaks when tightened. In addition, when the predetermined first flank angle ⁇ 1 is greater than 25 °, the thickness of the first flank 131 becomes too thick, so that the tightening torque is large due to the thickness of the first flank 131 and the friction surface area. This is because there is a disadvantage that the fastening of the tapping screw is not easy. That is, by forming the predetermined flank angle within the angle range of 15 ° to 25 °, it is possible to prevent the breakage of the first flank 131 and at the same time to achieve a sharp shape to improve the ease of fastening.
  • the second flank 132 extends below the first flank 131 and is configured to have a second flank angle ⁇ 2 greater than the first flank angle ⁇ 1.
  • the preset second flank angle ⁇ 2 is within an angle range of 35 ° to 45 °, and more preferably, the preset second flank angle ⁇ 2 is 40 °.
  • the preset second flank angle ⁇ 2 When the preset second flank angle ⁇ 2 is less than 35 °, the preset second flank angle ⁇ 2 of the second flank 132 and the preset first flank angle of the first flank 131 may be used. This is because the angle difference of ⁇ 1 is almost eliminated so that the material flow (Fm) resistance relaxation function is not only deteriorated, but also the mechanical strength reinforcement function of the fastening thread 130, which is the main function of the second flank 132, is greatly reduced. In addition, when the preset second flank angle ⁇ 2 is greater than 45 °, the preset second flank angle ⁇ 2 of the second flank 132 and the preset first flank of the first flank 131. This is because the angular difference between the angles ⁇ 1 becomes excessively large, which lowers the material flow (Fm) resistance mitigation function.
  • the predetermined first flank angle ⁇ 1 and the predetermined second flank angle ⁇ 2 may be within an angle range of 20 ° to 50 °. For this reason, the screw fastening torque of a tapping screw can be reduced and fastening easiness can be improved.
  • the third flank 133 extends between a lower portion of the second flank 132 and an outer circumferential surface of the body 120 and has a preset second greater than the predetermined second flank angle ⁇ 2. It is comprised so that it may have three flank angles (theta) 3.
  • the predetermined third flank angle ⁇ 3 is preferably within an angle range of 55 ° to 65 °, and more preferably, the predetermined third flank angle ⁇ 3 is 60 °.
  • the preset third flank angle ⁇ 3 is greater than 65 °
  • the preset third flank angle ⁇ 3 of the third flank 133 and the second preset flank of the second flank 132 are set. This is because the angular difference between the angles ⁇ 2 becomes excessively large, which lowers the material flow (Fm) resistance mitigation function.
  • the fastening threads 130 may be asymmetric threads.
  • the first flank angle ⁇ 1 of the fastening screw 130 is formed to be different from the first front flank angle and the first rear flank angle
  • / or the second flank angle of the fastening screw 130 ( ⁇ 2) is different from the second front flank angle and the second rear flank angle
  • / or the third flank angle ⁇ 3 of the fastening thread 130 is different from the third front flank angle and the third rear flank angle. Is formed.
  • the description will be made based on the first flank angle ⁇ 1.
  • the asymmetric thread may be formed to have a slope of the second flank surface is gentler than that of the first flank surface, so that the size of the first front flank angle may be smaller than the first rear flank angle.
  • the asymmetric thread provided as described above is inclined in the same direction as the fastening direction F of the tapping screw 100, and since the asymmetric thread is inclined toward the advancing direction of the tapping screw, the first flank and the fastening object ( The stress generated between O) can be concentrated to increase the effect of preventing loosening of the tapping screw 100.
  • the asymmetrical thread may have a gentler slope of the first flank than the slope of the second flank. Accordingly, the size of the first front flank angle of the asymmetric thread may be larger than the first rear flank angle. Since the asymmetric thread is inclined toward the opposite direction of the fastening direction of the tapping screw 100, the stress generated between the second flank surface and the fastening object O is concentrated to increase the effect of preventing loosening of the tapping screw. Can be.
  • the inclinations of the first and second flanks of the asymmetric thread are not limited thereto, and the inclination of the first and second flanks (ie, the first front flank angle) depends on the position at which the asymmetric threads are provided. And the first rear flank angle) may vary.
  • the fastening screw 130, the height h1 of the first flank 131: the height h2 of the second flank 132: the height of the third flank 133 (h3) may be configured to be 1: 1: 0.5 to 1.
  • the fastening screw 130 has a height h1 of the first flank 131 and a height h2 of the second flank 132 and the third flank 133. It can be configured to be 0.25 to 0.5 times the sum of the height (h3) of.
  • the sharp portion of the entire fastening screw 130 may be reduced. It is because it reduces too much and the ease of fastening falls remarkably.
  • the overall thickness of the fastening screw 130 is The thin portion (i.e., the first flank 131) is too large and at the same time, the portion (i.e., the second flank 132 and / or the third flank 133) is too small to be fastened. This is because the mechanical strength of the first flank 131 where the stress and the fastening torque are concentrated is excessively weakened so that the first flank 131 may be broken during fastening.
  • the fastening screw 130 may be configured such that the pitch P of the plurality of fastening threads 130 is 0.15 to 0.5 times the outermost outer diameter of the fastening screw 130.
  • the material flow (Fm) space of the fastening object O may be secured due to frictional heat, thereby efficiently forming a female thread on the fastening object O. It is possible to secure the fastening area at the same time as it can secure the fastening force with high reliability.
  • the tapping screw according to the first prior art is based on both sides of the bottom part of the third flank 133 of the present invention and both sides of the top part of the first flank 131 of the present invention. It has a screw thread 10 set to.
  • the flank side angle of the tapping screw according to the first prior art is made at a significantly larger angle than the present invention, whereby the material flow (Fm) path of the fastening object (O) of the first prior art Since the flank surface and the outer peripheral surface of the body portion 120 changes rapidly, the material flow (Fm) stagnation and concentration and accumulation in the outer peripheral surface of the body portion 120 as well as the body portion 120 due to the accumulated material flow Repulsive flow (Fr) is formed on the outer circumferential surface of the, the friction heat between the first surface of the flank and the outer circumferential surface of the body portion 120 of the prior art is largely generated and the material strain is large and the material deformation section (D) is formed large Able to know.
  • the material flow (Fm) path of the fastening object (O) of the first prior art Since the flank surface and the outer peripheral surface of the body portion 120 changes rapidly, the material flow (Fm) stagnation and concentration and accumulation in the outer peripheral surface of the body portion 120 as well as the body portion 120 due to the
  • the tapping screw according to the second prior art includes a thread 20 set based on a first first flank angle ⁇ 1 of the first flank 131 of the present invention.
  • the flank side angle of the tapping screw according to the second prior art is made at a significantly larger angle than that of the present invention (and also compared to the first prior art), and thus the material flow of the fastening object O ( Since the Fm) path changes abruptly at the flanks of the second prior art and the outer circumferential surface of the body portion 120, the material flow Fm is stagnated, concentrated and accumulated at the outer circumferential surface of the body portion 120 as well as accumulated Due to the flow of the repulsive flow (Fr) is formed on the outer peripheral surface of the body portion 120, due to this the frictional heat is generated largely between the flank surface of the second prior art and the outer peripheral surface of the body portion 120 and the material strain rate is large and the material It can be seen that the deformation section D is largely formed. In addition, it can be seen that the tapping screw according to the second prior art has a very narrow width as a whole, and thus the mechanical strength is very weak.
  • the tapping screw according to the present invention includes the first flank 131, the second flank 132, and the third flank 133 so as to increase in sequence.
  • the flank side angle is made to gradually decrease toward the outer peripheral surface of the body portion 120, so that the material flow (Fm) path of the fastening object (O) is the flank surface and body portion of the fastening thread 130 according to the present invention Since it does not change suddenly at the outer circumferential surface of 120 (because it changes very slowly), the material flow Fm of the fastening object O is not only stagnant at the outer circumferential surface of the body portion 120, but also the repulsive flow Fr. It hardly occurs, and as a result, frictional heat is hardly generated between the flank of the fastening screw 130 and the outer circumferential surface of the body portion 120 as compared with the first and second prior arts. Material deformation section It can be minimized.
  • the present invention can minimize the material strain and the material deformation portion of the fastening object when the tapping screw is fastened to the fastening object. Therefore, the present invention increases the fastening area of the tapping screw for the fastening object by minimizing the material strain and the material deformation portion, thereby improving the fastening force and having an effect of significantly reducing the defective rate of the fastening object itself.
  • the present invention can easily form a female thread on the fastening object by having a first flank, thereby improving the convenience of fastening, and at the same time, by providing a second flank and / or a third flank, the mechanical strength of the screw thread can be stably maintained. It can be secured.

Abstract

The present invention relates to a tapping screw capable of minimizing the rate and area of material strain in an object to be coupled when the tapping screw is screwed thereinto. Specifically, the present invention comprises: a head part; and a body part connected at one end to the head part and provided with a plurality of screw threads on the outer circumferential surface, wherein the screw threads are provided with a structure for lessening the resistance to material movement on the full surface of the flanks, the structure reducing the resistance of the material of the object to be coupled for moving along the surfaces of the flanks and outer circumferential surface of the body part of the tapping screw when the screw threads are screwed into the object to be coupled.

Description

체결 대상물의 소재변형률을 최소화할 수 있는 태핑나사Tapping screw to minimize material strain of fastening object
본 발명은 태핑나사에 관한 것으로, 더욱 상세하게는 체결 대상물에 체결될 때 체결 대상물의 소재변형률 및 소재변형부분을 최소화할 수 있는 태핑나사에 관한 것이다. The present invention relates to a tapping screw, and more particularly, to a tapping screw that can minimize the material strain and the material deformation portion of the fastening object when fastened to the fastening object.
일반적으로 나사(스크류; screw)는 기계부품이나 전자기기를 포함하여 복수의 부품을 결합시킬 경우에 통상 강한 고정력을 갖는 한편, 시공성이 용이하며, 체결 상대물(또는 모재)에 따라 체결력을 조절할 수 있는 동시에 해체가 용이한 나사를 이용한다. In general, screws (screws) generally have a strong fixing force when joining a plurality of components, including mechanical parts or electronics, easy construction, and can adjust the fastening force according to the fastening partner (or the base material). Use screws that are easy to disassemble at the same time.
이와 같은 나사는 외주면에 형성된 나사산의 단면 형상에 따라 삼각 나사, 사각 나사, 사다리꼴 나사, 톱니 나사, 둥근 나사, 볼나사 등으로 나뉘며, 머리 형상에 따라 무두 나사, 접시머리 나사, 둥근머리 나사 및 납작머리 나사 등으로 다양하게 구분된다. Such screws are divided into triangular screws, square screws, trapezoidal screws, toothed screws, round screws, ball screws, etc., depending on the cross-sectional shape of the thread formed on the outer circumferential surface. It is divided into various head screws.
또한, 나사의 형태에 따라 작은 나사, 멈춤 나사, 나사못, 태핑나사, 헬리 인서트 등으로 다양하게 구분된다. In addition, according to the shape of the screw is divided into a variety of small screws, stop screws, screws, tapping screws, heli-inserts.
이때, 태핑나사(Tapping screw)는 나사 자체로 체결 대상물에 암나사를 형성하는 나사 깎기가 가능한 나사이다. At this time, the tapping screw (Tapping screw) is a screw that can be clipped to form a female screw on the fastening object by the screw itself.
이러한 태핑나사를 이용하여 체결 대상물에 체결하는 경우, 태핑나사의 플랭크면과 체결 대상물 사이의 마찰열로 인해 체결 대상물이 일부 용융되면서 태핑나사의 플랭크면을 따라 소재가 유동하게 되는데, 종래기술에 따른 태핑나사의 경우 플랭크면이 단일 경사면으로 구성되어 있어, 소재 유동이 유동경로가 플랭크면에서부터 몸체부의 외주면으로 급격하게 변화하므로 소재 유동 저항이 크게 발행하는 문제점이 존재하여 왔다.When fastening to the fastening object using such a tapping screw, the material flows along the flank of the tapping screw while the fastening object is partially melted due to frictional heat between the flank of the tapping screw and the fastening object. In the case of screws, since the flank is composed of a single inclined surface, there has been a problem in that the material flow resistance is large because the flow path changes rapidly from the flank to the outer peripheral surface of the body.
이렇게 발생된 큰 소재 유동 저항은 체결 대상물의 마찰열을 더욱 증가시켜 체결 대상물의 소재 변형률 및 소재 변형부분이 증가되는 문제점이 존재하여 왔다. 소재 변형률 및 소재 변형부분이 증가됨에 따라 체결 대상물에 대한 태핑 나사의 체결력이 저감되고, 체결 대상물의 불량률이 증가되는 문제점이 존재하여 왔다.The large material flow resistance generated in this way has increased the frictional heat of the fastening object to increase the material strain and the material deformation portion of the fastening object. As the material strain and the material deformation portion are increased, there has been a problem that the fastening force of the tapping screw on the fastening object is reduced, and the defective rate of the fastening object is increased.
따라서, 본 출원인은, 상기와 같은 문제점을 해결하기 위해서 본 발명은 제안하게 되었으며, 이와 관련된 선행기술문헌으로는, 대한민국 등록실용신안공보 20-0478117호 (발명의 명칭: 목재에 체결이 용이한 나사못, 등록일: 2015.08.24)가 있다.Therefore, the present applicant, the present invention has been proposed in order to solve the above problems, as related prior art documents, Republic of Korea Utility Model Publication No. 20-0478117 (name of the invention: screw fastening to wood easy to screw , Registration date: 2015.08.24).
본 발명의 목적은 종래의 문제점을 해결하는 태핑나사를 제공하는 것이다.It is an object of the present invention to provide a tapping screw that solves the conventional problems.
구체적으로, 본 발명의 목적은 체결 대상물에 체결될 때 체결 대상물의 소재변형률 및 소재변형부분을 최소화할 수 있는 태핑나사를 제공하는 것이다.Specifically, it is an object of the present invention to provide a tapping screw that can minimize the material strain and the material deformation portion of the fastening object when fastened to the fastening object.
본 발명이 해결하고자 하는 과제는 이상에서 언급한 과제들로 제한되지 않으며, 언급되지 않은 또 다른 과제들은 아래의 기재로부터 당업자에게 명확하게 이해될 수 있을 것이다. The problem to be solved by the present invention is not limited to the above-mentioned problem, another task that is not mentioned will be clearly understood by those skilled in the art from the following description.
전술한 과제를 해결하기 위한 본 발명의 일 실시예에 따르면, 본 발명은, 머리부; 및 일단부가 상기 머리부와 연결되되, 외주면에 복수 개의 체결 나사산이 마련되는 몸체부;를 포함하고, 상기 체결 나사산은, 상기 체결 나사산이 체결 대상물에 체결될 때 상기 체결 나사산의 플랭크면 및 상기 몸체부의 외주면을 따르는 상기 체결 대상물의 소재 유동 저항을 감소시키는 소재 유동저항 완화구조를 상기 플랭크면 전체에 걸쳐 구비하는 것을 특징으로 태핑나사를 제공할 수 있다.According to an embodiment of the present invention for solving the above problems, the present invention, the head; And a body part having one end connected to the head and having a plurality of fastening threads provided on an outer circumferential surface thereof, wherein the fastening thread includes a flank of the fastening thread and the body when the fastening thread is fastened to a fastening object. A tapping screw can be provided, comprising a material flow resistance alleviation structure for reducing the material flow resistance of the fastening object along the outer circumferential surface of the entire portion of the flank.
또한, 바람직하게는, 상기 체결 나사산은, 대향하는 플랭크면 사이의 각도인 플랭크각이 상기 체결 나사산의 산 부분에서 골 부분으로 갈수록 증가하도록 구성되는 것을 특징으로 한다.Further, preferably, the fastening screw thread is configured such that a flank angle, which is an angle between opposing flank surfaces, increases from the peak portion of the fastening screw thread to the valley portion.
또한, 바람직하게는, 상기 체결 나사산은, 상기 체결 나사산의 산 부분에 위치하고, 대향하는 플랭크면 사이의 각도인 플랭크각이 기설정된 제1 플랭크각인 제1 플랭크부와; 상기 제1 플랭크부의 하부에 연장되고, 상기 기설정된 제1 플랭크각보다 큰 기설정된 제2 플랭크각을 구비하는 제2 플랭크부와; 상기 제2 플랭크부의 하부와 상기 몸체부의 외주면 사이에 연장되고, 상기 기설정된 제2 플랭크각보다 큰 기설정된 제3 플랭크각을 구비하는 제3 플랭크부;를 포함하는 것을 특징으로 한다.Preferably, the fastening screw thread may include: a first flank portion positioned at a peak portion of the fastening screw thread, the flank angle being an angle between opposing flank surfaces being a first flank angle preset; A second flank portion extending below the first flank portion and having a predetermined second flank angle greater than the predetermined first flank angle; And a third flank portion extending between a lower portion of the second flank portion and an outer circumferential surface of the body portion and having a predetermined third flank angle greater than the predetermined second flank angle.
또한, 바람직하게는, 상기 기설정된 제1 플랭크각 및 상기 기설정된 제2 플랭크각은 20° 내지 50°의 각도범위 내에 있는 것을 특징으로 한다.Further, preferably, the predetermined first flank angle and the predetermined second flank angle are within an angle range of 20 ° to 50 °.
또한, 바람직하게는, 상기 기설정된 제1 플랭크각은 15° 내지 25°의 각도범위 내에 있고, 상기 기설정된 제2 플랭크각은 35° 내지 45°의 각도범위 내에 있고, 상기 기설정된 제3 플랭크각은 55° 내지 65°의 각도범위 내에 있는 것을 특징으로 한다.Further, preferably, the predetermined first flank angle is in an angular range of 15 ° to 25 °, and the predetermined second flank angle is in an angular range of 35 ° to 45 °, and the predetermined third flank The angle is characterized in that it is in the angle range of 55 ° to 65 °.
또한, 바람직하게는, 상기 체결 나사산은, 상기 제1 플랭크부의 높이 : 상기 제2 플랭크부의 높이 : 상기 제3 플랭크부의 높이가 1 : 1 : 0.5 ~ 1 이 되도록 구성되는 것을 특징으로 한다.Preferably, the fastening screw thread is configured such that the height of the first flank portion: the height of the second flank portion: the height of the third flank portion is 1: 1: 0.5 to 1.
또한, 바람직하게는, 상기 체결 나사산은, 상기 제1 플랭크부의 높이가 상기 제2 플랭크부의 높이와 상기 제3 플랭크부의 높이의 합의 0.25 내지 0.5 배가 되도록 구성되는 것을 특징으로 한다.Also preferably, the fastening screw thread is configured such that the height of the first flank portion is 0.25 to 0.5 times the sum of the height of the second flank portion and the height of the third flank portion.
또한, 바람직하게는, 상기 체결 나사산은, 상기 복수 개의 체결 나사산의 피치가 상기 체결 나사산의 최외곽 외경의 0.15 내지 0.5 배가 되도록 구성되는 것을 특징으로 한다.Preferably, the fastening screw thread is characterized in that the pitch of the plurality of fastening screw threads is configured to be 0.15 to 0.5 times the outermost outer diameter of the fastening screw thread.
전술한 과제의 해결수단에 의하면, 본 발명은 태핑나사가 체결 대상물에 체결될 때 체결 대상물의 소재변형률 및 소재변형부분을 최소화할 수 있다. 이로 인해, 본 발명은 소재 변형률 및 소재 변형부분을 최소화함에 따라 체결 대상물에 대한 태핑 나사의 체결면적이 증가되므로 체결력을 향상시킬 수 있고, 체결 대상물 자체의 불량률을 현저히 감소시킬 수 있는 효과가 있다.According to the above solution, the present invention can minimize the material strain and the material deformation portion of the fastening object when the tapping screw is fastened to the fastening object. Therefore, the present invention increases the fastening area of the tapping screw for the fastening object by minimizing the material strain and the material deformation portion, thereby improving the fastening force and having an effect of significantly reducing the defective rate of the fastening object itself.
또한, 본 발명은 제1 플랭크부를 구비함으로써 체결 대상물에 암나사산을 용이하게 형성할 수 있어 체결 편의성을 향상시키고, 동시에 제2 플랭크부 및/또는 제3 플랭크부를 구비함으로써 나사산의 기계적 강도를 안정적으로 확보할 수 있다. In addition, the present invention can easily form a female thread on the fastening object by having a first flank, thereby improving the convenience of fastening, and at the same time, by providing a second flank and / or a third flank, the mechanical strength of the screw thread can be stably maintained. It can be secured.
도 1은 본 발명의 일 실시예에 따른 태핑나사에 대한 개략적인 사시도이다. 1 is a schematic perspective view of a tapping screw according to an embodiment of the present invention.
도 2는 도 1의 태핑나사에 대한 개략적인 확대도이다.FIG. 2 is a schematic enlarged view of the tapping screw of FIG. 1. FIG.
도 3은 도 2의 개략적인 단면도이다. 3 is a schematic cross-sectional view of FIG. 2.
도 4는 체결 대상물의 소재 유동을 나타내는 제1 종래기술에 따른 태핑나사의 개략적인 부분 확대 단면도이다. 4 is a schematic partial enlarged cross-sectional view of a tapping screw according to the first prior art showing the material flow of the fastening object.
도 5는 체결 대상물의 소재 유동을 나타내는 제2 종래기술에 따른 태핑나사의 개략적인 부분 확대 단면도이다. 5 is a schematic partially enlarged cross-sectional view of a tapping screw according to the second prior art showing the material flow of the fastening object.
도 6은 체결 대상물의 소재 유동을 나타내는 본 발명의 일 실시예에 따른 태핑나사에 대한 개략도이다.6 is a schematic diagram of a tapping screw according to an embodiment of the present invention showing the material flow of the fastening object.
이하, 첨부된 도면을 참고로 하여 본 발명의 실시예들에 대하여 본 발명이 속하는 기술분야에서 통상의 지식을 가진 자가 용이하게 실시할 수 있도록 상세히 설명한다. 본 발명은 여러 가지 상이한 형태로 구현될 수 있으며 여기에서 설명하는 실시예들에 한정되지 않는다. Hereinafter, exemplary embodiments of the present invention will be described in detail with reference to the accompanying drawings so that those skilled in the art may easily implement the present invention. As those skilled in the art would realize, the described embodiments may be modified in various different ways, all without departing from the spirit or scope of the present invention.
도면들은 개략적이고 축적에 맞게 도시되지 않았다는 것을 일러둔다. 도면에 있는 부분들의 상대적인 치수 및 비율은 도면에서의 명확성 및 편의를 위해 그 크기에 있어 과장되거나 감소되어 도시되었으며 임의의 치수는 단지 예시적인 것이지 한정적인 것은 아니다. 그리고 둘 이상의 도면에 나타나는 동일한 구조물, 요소 또는 부품에는 동일한 참조 부호가 유사한 특징을 나타내기 위해 사용된다. It is noted that the figures are schematic and not drawn to scale. The relative dimensions and ratios of the parts in the figures have been exaggerated or reduced in size for clarity and convenience in the figures and any dimensions are merely exemplary and not limiting. And the same reference numerals are used to refer to similar features in the same structure, element or part shown in more than one figure.
본 발명의 실시예는 본 발명의 이상적인 실시예들을 구체적으로 나타낸다. 그 결과, 도면의 다양한 변형이 예상된다. 따라서 실시예는 도시한 영역의 특정 형태에 국한되지 않으며, 예를 들면 제조에 의한 형태의 변형도 포함한다.Embodiments of the present invention specifically illustrate ideal embodiments of the present invention. As a result, various modifications of the drawings are expected. Thus, the embodiment is not limited to the specific form of the illustrated region, but includes, for example, modification of the form by manufacture.
이하, 첨부된 도면을 참조하여 본 발명의 일 실시예에 따른 태핑나사(100, 이하 '태핑나사'라 함)을 설명한다. Hereinafter, a tapping screw 100 (hereinafter referred to as 'tapping screw') according to an embodiment of the present invention will be described with reference to the accompanying drawings.
도 1은 본 발명의 일 실시예에 따른 태핑나사(100)에 대한 개략적인 사시도이고, 도 2는 도 1의 태핑나사(100)에 대한 개략적인 확대도이고, 도 3은 도 2의 개략적인 단면도이고, 도 4는 체결 대상물(O)의 소재 유동(Fm)을 나타내는 제1 종래기술에 따른 태핑나사(100)의 개략적인 부분 확대 단면도이고, 도 5는 체결 대상물(O)의 소재 유동(Fm)을 나타내는 제2 종래기술에 따른 태핑나사(100)의 개략적인 부분 확대 단면도이고, 도 6은 체결 대상물(O)의 소재 유동(Fm)을 나타내는 본 발명의 일 실시예에 따른 태핑나사(100)에 대한 개략도이다.1 is a schematic perspective view of a tapping screw 100 according to an embodiment of the present invention, FIG. 2 is a schematic enlarged view of the tapping screw 100 of FIG. 1, and FIG. 3 is a schematic view of FIG. 2. 4 is a schematic partial enlarged cross-sectional view of the tapping screw 100 according to the first conventional art showing the material flow Fm of the fastening object O, and FIG. 5 is a material flow (of the fastening object O) FIG. 6 is a partially enlarged cross-sectional view of a tapping screw 100 according to the second prior art representing Fm), and FIG. 6 is a tapping screw according to an embodiment of the present invention showing a material flow Fm of the fastening object O. 100 is a schematic diagram.
도 1 내지 도 3에 도시한 바와 같이, 본 발명의 일 실시예에 따른 태핑나사(100)는, 머리부(110) 및 머리부(110)와 연결되며 외주면에 복수 개의 체결 나사산(130)이 마련되는 몸체부(120)를 포함할 수 있다. As shown in Figures 1 to 3, the tapping screw 100 according to an embodiment of the present invention, is connected to the head 110 and the head 110 and a plurality of fastening threads 130 on the outer peripheral surface It may include a body portion 120 is provided.
도 1 내지 도 3을 참조하면, 머리부(110)는 몸체부(120)와 연결되는 부분이다. 머리부(110)의 일단부는 몸체부(120)가 연결되고, 타단부에는 체결부(미도시)가 형성될 수 있다. 여기서, 머리부(110)의 타단부에 형성된 체결부(미도시)는 태핑나사(100)를 체결 대상물(O) 또는 체결 대상물(O)의 미리 형성된 보어(B)에 체결하기 위한 공구 등이 끼워질 수 있는 부분으로서, 공구가 삽입될 수 있도록 홈 또는 그루브의 형태로 마련되는 것이 바람직하다. 또한, 머리부(110)의 체결부(미도시)에 끼워진 공구에 의해 몸체부(120)가 체결 대상물(O)의 내부에 완전히 삽입되면 머리부(110)의 일단부는 체결 대상물(O)과 완전히 접촉될 수 있다. 1 to 3, the head 110 is a portion connected to the body 120. One end of the head 110 may be connected to the body portion 120, the other end may be a fastening portion (not shown). Here, the fastening part (not shown) formed at the other end of the head 110 is a tool for fastening the tapping screw 100 to the fastening object (O) or the preformed bore (B) of the fastening object (O). As a part that can be fitted, it is preferred that the tool be provided in the form of a groove or groove so that the tool can be inserted. In addition, when the body 120 is completely inserted into the fastening object O by a tool inserted into the fastening part (not shown) of the head 110, one end of the head 110 is fastened to the fastening object O. Can be fully contacted.
한편, 도면에는 머리부(110)의 형태를 원기둥의 형태로 도시하였지만, 반드시 이에 한정되는 것은 아니며, 사각형, 육각형 등 다양한 형태로 형성될 수 있다. Meanwhile, although the shape of the head 110 is illustrated in the form of a cylinder in the drawing, the shape of the head 110 is not necessarily limited thereto, and may be formed in various shapes such as a rectangle and a hexagon.
또한, 몸체부(120)는 일단부가 머리부(110)와 연결되며, 몸체부(120)의 외주면에는 복수 개의 체결 나사산(130)이 마련될 수 있다. 구체적으로, 몸체부(120)는 머리부(110)의 폭보다 좁고 길이방향으로 긴 길이를 가지는 원기둥 형태로 형성될 수 있다. 이때, 원기둥 형태를 가지는 몸체부(120)의 외주면에는 복수 개의 체결 나사산(130)이 마련될 수 있다. In addition, one end of the body 120 may be connected to the head 110, and a plurality of fastening threads 130 may be provided on an outer circumferential surface of the body 120. Specifically, the body portion 120 may be formed in a cylindrical shape having a length narrower than the width of the head 110 and the longitudinal direction. In this case, a plurality of fastening threads 130 may be provided on the outer circumferential surface of the body 120 having a cylindrical shape.
또한, 복수 개의 체결 나사산(130)이 마련되는 몸체부(120) 및 몸체부(120)에 마련되는 체결 나사산(130)은 체결 방향을 따라 체결 대상물(O) 또는 상기 체결 대상물(O)의 미리 형성된 보어(B)에 진입하여 암나사산을 형성한다. 여기서, 체결방향(도 2의 F 참조)이란 상기 몸체부(120)의 타단부(즉, 머리부(110)가 구비되는 부분의 반대쪽 단부)에서부터 상기 몸체부(120)의 일단부(즉, 머리부(110)가 구비되는 부분)를 향하는 방향을 의미한다.In addition, the fastening thread 130 provided in the body portion 120 and the body portion 120 is provided with a plurality of fastening screw 130 is a fastening object (O) or in advance of the fastening object (O) along the fastening direction. Enter the formed bore (B) to form a female thread. Here, the fastening direction (see F in FIG. 2) means one end of the body portion 120 from the other end of the body portion 120 (that is, the opposite end of the portion in which the head portion 110 is provided). Means the direction toward the head 110 is provided).
즉, 상기 태핑나사는, 상기 체결 나사산(130)의 플랭크면과 상기 체결 나사산에 의해 체결 대상물(O)의 내부에 형성된 암나사산을 통해 체결 대상물(O)과 체결될 수 있다. That is, the tapping screw may be fastened to the fastening object O through a female thread formed in the fastening object O by the flank of the fastening screw 130 and the fastening screw thread.
도면에 도시된 바와 같이, 상기 체결 나사산(130)은 플랭크면의 단면 모양이 직선으로 형성되는 것이 바람직하다. As shown in the figure, the fastening screw 130 is preferably a cross-sectional shape of the flank surface is formed in a straight line.
구체적으로, 상기 체결 나사산(130)은 상기 몸체부(120)의 타단부 쪽을 향하는(즉, 체결 방향을 향하는) 플랭크면인 제1 플랭크면과, 상기 몸체부(120)의 일단부 쪽을 향하는(즉, 체결 방향(F2)의 반대 방향을 향하는) 플랭크면인 제2 플랭크면과, 상기 제1 플랭크면과 상기 제2 플랭크면이 형성하는 플랭크각(즉, 대향하는 플랭크면 사이에 형성되는 각도)과, 상기 제1 플랭크면과 상기 몸체부의 축선 또는 축선방향이 형성하는 제1 플랭크 측면 각도와, 상기 제2 플랭크면과 상기 몸체부(120)의 축선 또는 축선 방향(A)이 형성하는 제2 플랭크 측면 각도를 포함한다. 여기서, 플랭크각은 다시 전방 플랭크각과 후방 플랭크각을 포함한다. 상기 전방 플랭크각은 제1 플랭크면과 몸체부의 축선에 대한 수직선이 형성하는 각도를 의미하고, 상기 후방 플랭크각은 제2 플랭크면과 몸체부의 축선에 대한 수직선이 형성하는 각도를 의미한다.Specifically, the fastening thread 130 is a first flank surface and a flank surface facing the other end side of the body portion 120 (ie, the fastening direction) and one end side of the body portion 120. A second flank surface which is a flank surface facing (ie facing in the opposite direction to the fastening direction F2) and a flank angle formed by the first and second flank surfaces (ie, opposite flank surfaces). Angle), a first flank side angle formed by the axis or axis direction of the first flank and the body portion, and an axis or axis direction A of the second flank surface and the body portion 120 are formed. Second flank lateral angle. Here, the flank angle again includes a front flank angle and a rear flank angle. The front flank angle means an angle formed by a vertical line with respect to the axis of the first flank surface and the body portion, and the rear flank angle means an angle formed by a vertical line with respect to the axis line of the second flank surface and the body portion.
본 실시예에 따르면, 상기 체결 나사산(130)은 몸체부(120)의 외주면에서부터 상부 방향으로 연장되도록 구성되고, 상기 체결 나사산(130)은 상기 체결 나사산(130)의 플랭크면 전체에 걸쳐 소재 유동저항 완화구조를 구비한다. 상기 소재 유동저항 완화구조는 상기 체결 나사산(130)이 체결 대상물(O)에 체결될 때 상기 체결 나사산(130)의 플랭크면 및 상기 몸체부(120)의 외주면을 따르는 상기 체결 대상물(O)의 소재 유동 저항을 감소시키는 플랭크면의 형상을 의미한다.According to this embodiment, the fastening screw 130 is configured to extend in the upper direction from the outer peripheral surface of the body portion 120, the fastening screw 130 is a material flow over the entire flank surface of the fastening screw 130 It has a resistance alleviation structure. The material flow resistance relief structure of the fastening object 130 along the flank surface of the fastening screw 130 and the outer peripheral surface of the body portion 120 when the fastening screw 130 is fastened to the fastening object (O) It means the shape of the flank surface to reduce the material flow resistance.
상기 소재 유동저항 완화구조는 상기 체결 나사산(130)에서 플랭크각이 상기 체결 나사산(130)의 산 부분에서 골 부분으로 갈수록 증가하도록 구성된다. 즉, 상기 소재 유동저항 완화구조는 태핑나사와 체결 대상물(O) 사이의 마찰열에 의해 형성되는 소재 유동(Fm)의 이동경로인 플랭크면과 몸체부(120)의 외주면 사이의 각도를 점차적으로 완만하게 형성하여 소재 유동(Fm) 경로가 급격하게 또는 급격한 각도로 변하는 것을 방지할 수 있는 구조이다.The material flow resistance relief structure is configured such that the flank angle in the fastening screw thread 130 increases from the peak portion of the fastening screw thread 130 to the bone portion. That is, the material flow resistance mitigation structure gradually gradually angles the angle between the flank surface, which is the path of movement of the material flow Fm formed by the frictional heat between the tapping screw and the fastening object O, and the outer circumferential surface of the body portion 120. It can be formed so as to prevent the material flow (Fm) path to change suddenly or at a sharp angle.
구체적으로, 도 2 및 도 3에 도시된 바와 같이, 상기 체결 나사산(130)은, 제일 상단의 제1 플랭크부(131)와, 몸체부(120)의 외주면에 일체로 연장되는 제일 하단의 제3 플랭크부(133)와, 상기 제1 플랭크부(131)와 상기 제3 플랭크부(133)를 연결하는 제2 플랭크부(132)를 포함한다.Specifically, as shown in FIGS. 2 and 3, the fastening screw 130 has a first bottom flank that extends integrally with the first flank 131 at the top and the outer circumferential surface of the body 120. And a third flank 133 and a second flank 132 connecting the first flank 131 and the third flank 133.
도 2 및 도 3에 도시된 바와 같이, 상기 제1 플랭크부(131)는 상기 체결 나사산(130)의 산 부분에 위치하고, 대향하는 플랭크면 사이의 각도인 플랭크각이 기설정된 제1 플랭크각(θ1)인 최상단 부분이다. 여기서, 상기 체결 나사산(130)은 상기 기설정된 제1 플랭크각(θ1)은 제1 전방 플랭크각과 제1 후방 플랭크각이 동일하게 형성되는 대칭 나사산일 수 있다.As shown in FIGS. 2 and 3, the first flank 131 is located at a peak of the fastening screw thread 130 and has a first flank angle of which a flank angle, which is an angle between opposing flanks, is a predetermined angle. θ1) is the uppermost part. Here, the fastening thread 130 may be a symmetrical thread in which the first first flank angle θ1 is the same as the first front flank angle and the first rear flank angle.
상기 기설정된 제1 플랭크각(θ1)은 15° 내지 25°의 각도범위 내에 있는 것이 바람직하고, 상기 기설정된 제1 플랭크각(θ1)은 20°인 것이 더욱 바람직하다. Preferably, the preset first flank angle θ1 is within an angle range of 15 ° to 25 °, and more preferably, the preset first flank angle θ1 is 20 °.
이는, 상기 기설정된 제1 플랭크각(θ1)이 15° 미만인 경우 제1 플랭크부(131)의 두께가 너무 얇아져 체결 응력 및 체결 토크가 집중되는 제1 플랭크부(131)의 기계적 강도가 과도하게 약해져 체결시 제1 플랭크부(131)가 파단될 우려가 높기 때문이다. 또한, 상기 기설정된 제1 플랭크각(θ1)이 25° 초과인 경우 제1 플랭크부(131)의 두께가 너무 두꺼워져 체결시 제1 플랭크부(131)의 두께 및 마찰 표면적으로 인해 큰 체결토크가 필요하기 때문에 태핑나사의 체결이 용이하지 않은 단점이 있기 때문이다. 즉, 상기 기설정된 플랭크각을 15° 내지 25°의 각도범위 내에 형성함으로써, 제1 플랭크부(131)의 파단을 방지하면서 동시에 날카로운 형상을 이루어 체결 용이성을 향상시킬 수 있다.When the predetermined first flank angle θ1 is less than 15 °, the thickness of the first flank 131 becomes too thin, so that the mechanical strength of the first flank 131 on which the fastening stress and the fastening torque are concentrated is excessively increased. This is because there is a high possibility that the first flank 131 breaks when tightened. In addition, when the predetermined first flank angle θ1 is greater than 25 °, the thickness of the first flank 131 becomes too thick, so that the tightening torque is large due to the thickness of the first flank 131 and the friction surface area. This is because there is a disadvantage that the fastening of the tapping screw is not easy. That is, by forming the predetermined flank angle within the angle range of 15 ° to 25 °, it is possible to prevent the breakage of the first flank 131 and at the same time to achieve a sharp shape to improve the ease of fastening.
상기 제2 플랭크부(132)는 상기 제1 플랭크부(131)의 하부에 연장되고, 상기 기설정된 제1 플랭크각(θ1)보다 큰 기설정된 제2 플랭크각(θ2)을 구비하도록 구성된다.The second flank 132 extends below the first flank 131 and is configured to have a second flank angle θ2 greater than the first flank angle θ1.
상기 기설정된 제2 플랭크각(θ2)은 35° 내지 45°의 각도범위 내에 있는 것이 바람직하고, 상기 기설정된 제2 플랭크각(θ2)은 40°인 것이 더욱 바람직하다. Preferably, the preset second flank angle θ2 is within an angle range of 35 ° to 45 °, and more preferably, the preset second flank angle θ2 is 40 °.
이는, 상기 기설정된 제2 플랭크각(θ2)이 35° 미만인 경우, 제2 플랭크부(132)의 기설정된 제2 플랭크각(θ2)과 제1 플랭크부(131)의 기설정된 제1 플랭크각(θ1)의 각도 차이가 거의 없어져 소재 유동(Fm)저항 완화기능이 저하될 뿐만 아니라 제2 플랭크부(132)의 주 기능인 체결 나사산(130)의 기계적 강도 보강기능이 크게 저하되기 때문이다. 또한, 상기 기설정된 제2 플랭크각(θ2)이 45° 초과인 경우, 제2 플랭크부(132)의 기설정된 제2 플랭크각(θ2)과 제1 플랭크부(131)의 기설정된 제1 플랭크각(θ1)의 각도 차이가 과도하게 커져 소재 유동(Fm)저항 완화기능이 저하되기 때문이다. When the preset second flank angle θ2 is less than 35 °, the preset second flank angle θ2 of the second flank 132 and the preset first flank angle of the first flank 131 may be used. This is because the angle difference of θ1 is almost eliminated so that the material flow (Fm) resistance relaxation function is not only deteriorated, but also the mechanical strength reinforcement function of the fastening thread 130, which is the main function of the second flank 132, is greatly reduced. In addition, when the preset second flank angle θ2 is greater than 45 °, the preset second flank angle θ2 of the second flank 132 and the preset first flank of the first flank 131. This is because the angular difference between the angles θ1 becomes excessively large, which lowers the material flow (Fm) resistance mitigation function.
바람직하게는, 상기 기설정된 제1 플랭크각(θ1) 및 상기 기설정된 제2 플랭크각(θ2)은 20° 내지 50°의 각도범위 내에 있을 수 있다. 이로 인해, 태핑나사의 나사 체결 토크를 저하시킬 수 있어 체결 용이성을 향상시킬 수 있다.Preferably, the predetermined first flank angle θ1 and the predetermined second flank angle θ2 may be within an angle range of 20 ° to 50 °. For this reason, the screw fastening torque of a tapping screw can be reduced and fastening easiness can be improved.
그리고, 상기 제3 플랭크부(133)는 상기 제2 플랭크부(132)의 하부와 상기 몸체부(120)의 외주면 사이에 연장되고, 상기 기설정된 제2 플랭크각(θ2)보다 큰 기설정된 제3 플랭크각(θ3)을 구비하도록 구성된다.The third flank 133 extends between a lower portion of the second flank 132 and an outer circumferential surface of the body 120 and has a preset second greater than the predetermined second flank angle θ2. It is comprised so that it may have three flank angles (theta) 3.
상기 기설정된 제3 플랭크각(θ3)은 55° 내지 65°의 각도범위 내에 있는 것이 바람직하고, 상기 기설정된 제3 플랭크각(θ3)은 60°인 것이 더욱 바람직하다. The predetermined third flank angle θ3 is preferably within an angle range of 55 ° to 65 °, and more preferably, the predetermined third flank angle θ3 is 60 °.
이는, 상기 기설정된 제3 플랭크각(θ3)이 55° 미만인 경우, 제3 플랭크부(133)의 기설정된 제3 플랭크각(θ3)과 제2 플랭크부(132)의 기설정된 제2 플랭크각(θ2)의 각도 차이가 거의 없어지고 동시에 제3 플랭크부(133)의 플랭크면과 몸체부(120)의 외주면 사이의 각도(즉, 플랭크 측면 각도)가 지나치게 증가하여 소재 유동(Fm)저항 완화기능이 현저히 저하될 뿐만 아니라, 제3 플랭크부(133)의 주 기능인 체결 나사산(130)의 기계적 강도 보강기능이 크게 저하되기 때문이다. 또한, 상기 기설정된 제3 플랭크각(θ3)이 65° 초과인 경우, 제3 플랭크부(133)의 기설정된 제3 플랭크각(θ3)과 제2 플랭크부(132)의 기설정된 제2 플랭크각(θ2)의 각도 차이가 과도하게 커져 소재 유동(Fm)저항 완화기능이 저하되기 때문이다. This means that when the preset third flank angle θ3 is less than 55 °, the preset third flank angle θ3 of the third flank 133 and the second preset flank angle of the second flank 132 are set. The angle difference of θ2 is almost eliminated and at the same time, the angle between the flank of the third flank 133 and the outer circumferential surface of the body part 120 (ie, flank side angle) is excessively increased, thereby alleviating material flow (Fm) resistance. This is because not only the function is significantly reduced, but also the mechanical strength reinforcement function of the fastening screw 130, which is the main function of the third flank 133, is greatly reduced. In addition, when the preset third flank angle θ3 is greater than 65 °, the preset third flank angle θ3 of the third flank 133 and the second preset flank of the second flank 132 are set. This is because the angular difference between the angles θ2 becomes excessively large, which lowers the material flow (Fm) resistance mitigation function.
추가 실시예로서, 상기 체결 나사산(130)은 비대칭 나사산일 수 있다. 이때, 상기 체결 나사산(130)의 상기 제1 플랭크각(θ1)은 제1 전방 플랭크각과 제1 후방 플랭크각이 상이하게 형성되고, 및/또는 상기 체결 나사산(130)의 상기 제2 플랭크각(θ2)은 제2 전방 플랭크각과 제2 후방 플랭크각이 상이하게 형성되고, 및/또는 상기 체결 나사산(130)의 상기 제3 플랭크각(θ3)은 제3 전방 플랭크각과 제3 후방 플랭크각이 상이하게 형성된다. 이하에서는, 설명의 중복을 피하기 위하여, 제1 플랭크각(θ1)을 기준으로 기술하기로 한다.As a further embodiment, the fastening threads 130 may be asymmetric threads. In this case, the first flank angle θ1 of the fastening screw 130 is formed to be different from the first front flank angle and the first rear flank angle, and / or the second flank angle of the fastening screw 130 ( θ2) is different from the second front flank angle and the second rear flank angle, and / or the third flank angle θ3 of the fastening thread 130 is different from the third front flank angle and the third rear flank angle. Is formed. In the following, in order to avoid duplication of description, the description will be made based on the first flank angle θ1.
우선, 상기 비대칭 나사산은 제2 플랭크면의 경사가 제1 플랭크면의 경사보다 완만하게 형성될 수 있으며, 그에 따라 제1 전방 플랭크각의 크기는 제1 후방 플랭크각보다 작은 크기로 형성될 수 있다. 이와 같이 마련되는 비대칭 나사산이 태핑나사(100)의 체결방향(F)과 동일한 방향으로 기울어지도록 형성되고, 이러한 비대칭 나사산은 태핑나사의 진행방향을 향해 기울어져 있기 때문에 제1 플랭크면과 체결 대상물(O) 사이에 발생하는 응력이 집중되어 태핑나사(100)의 풀림을 방지하는 효과를 높일 수 있다. First, the asymmetric thread may be formed to have a slope of the second flank surface is gentler than that of the first flank surface, so that the size of the first front flank angle may be smaller than the first rear flank angle. . The asymmetric thread provided as described above is inclined in the same direction as the fastening direction F of the tapping screw 100, and since the asymmetric thread is inclined toward the advancing direction of the tapping screw, the first flank and the fastening object ( The stress generated between O) can be concentrated to increase the effect of preventing loosening of the tapping screw 100.
반대로, 상기 비대칭 나사산은 제1 플랭크면의 경사가 제2 플랭크면의 경사보다 완만하게 형성될 수 있다. 그에 따라, 상기 비대칭 나사산의 제1 전방 플랭크각의 크기는 제1 후방 플랭크각 보다 크게 형성될 수 있다. 이렇게 비대칭 나사산은 태핑나사(100)의 체결방향의 반대방향을 향해 기울어져 있기 때문에, 제2 플랭크면과 체결 대상물(O) 사이에 발생하는 응력이 집중되어 태핑나사의 풀림을 방지하는 효과를 높일 수 있다. On the contrary, the asymmetrical thread may have a gentler slope of the first flank than the slope of the second flank. Accordingly, the size of the first front flank angle of the asymmetric thread may be larger than the first rear flank angle. Since the asymmetric thread is inclined toward the opposite direction of the fastening direction of the tapping screw 100, the stress generated between the second flank surface and the fastening object O is concentrated to increase the effect of preventing loosening of the tapping screw. Can be.
한편, 비대칭 나사산의 제1 플랭크면 및 제2 플랭크면의 경사는 이에 한정되는 것이 아니며, 비대칭 나사산이 마련되는 위치에 따라 제1 플랭크면 및 제2 플랭크면의 경사(즉, 제1 전방 플랭크각 및 제1 후방 플랭크각)가 달라질 수 있다. Meanwhile, the inclinations of the first and second flanks of the asymmetric thread are not limited thereto, and the inclination of the first and second flanks (ie, the first front flank angle) depends on the position at which the asymmetric threads are provided. And the first rear flank angle) may vary.
바람직하게는, 상기 체결 나사산(130)은, 상기 제1 플랭크부(131)의 높이(h1) : 상기 제2 플랭크부(132)의 높이(h2) : 상기 제3 플랭크부(133)의 높이(h3)가 1 : 1 : 0.5 ~ 1 이 되도록 구성될 수 있다. Preferably, the fastening screw 130, the height h1 of the first flank 131: the height h2 of the second flank 132: the height of the third flank 133 (h3) may be configured to be 1: 1: 0.5 to 1.
또한, 바람직하게는, 상기 체결 나사산(130)은, 상기 제1 플랭크부(131)의 높이(h1)가 상기 제2 플랭크부(132)의 높이(h2)와 상기 제3 플랭크부(133)의 높이(h3)의 합의 0.25 내지 0.5 배가 되도록 구성될 수 있다. In addition, preferably, the fastening screw 130 has a height h1 of the first flank 131 and a height h2 of the second flank 132 and the third flank 133. It can be configured to be 0.25 to 0.5 times the sum of the height (h3) of.
이는, 상기 제1 플랭크부(131)의 높이가 상기 제2 플랭크부(132)의 높이와 상기 제3 플랭크부(133)의 높이의 합의 0.25 배 미만인 경우, 체결 나사산(130) 전체적으로 날카로운 부분이 지나치게 줄어둘어 체결 용이성이 현저히 저하되기 때문이다. 또한, 상기 제1 플랭크부(131)의 높이가 상기 제2 플랭크부(132)의 높이와 상기 제3 플랭크부(133)의 높이의 합의 0.5 배 초과인 경우, 체결 나사산(130) 전체적으로 두께가 얇은 부분(즉, 제1 플랭크부(131))이 지나치게 많아지고 동시에 기계적 강도 보강역할하는 부분(즉, 제2 플랭크부(132) 및/또는 제3 플랭크부(133))이 지나치게 작아져 체결 응력 및 체결 토크가 집중되는 제1 플랭크부(131)의 기계적 강도가 과도하게 약해져 체결시 제1 플랭크부(131)가 파단될 우려가 높기 때문이다. When the height of the first flank 131 is less than 0.25 times the sum of the height of the second flank 132 and the height of the third flank 133, the sharp portion of the entire fastening screw 130 may be reduced. It is because it reduces too much and the ease of fastening falls remarkably. In addition, when the height of the first flank 131 is greater than 0.5 times the sum of the height of the second flank 132 and the height of the third flank 133, the overall thickness of the fastening screw 130 is The thin portion (i.e., the first flank 131) is too large and at the same time, the portion (i.e., the second flank 132 and / or the third flank 133) is too small to be fastened. This is because the mechanical strength of the first flank 131 where the stress and the fastening torque are concentrated is excessively weakened so that the first flank 131 may be broken during fastening.
또한, 바람직하게는, 상기 체결 나사산(130)은, 상기 복수 개의 체결 나사산(130)의 피치(P)가 상기 체결 나사산(130)의 최외곽 외경의 0.15 내지 0.5 배가 되도록 구성될 수 있다. 이로 인해, 체결 나사산(130)이 체결 대상물(O)에 체결되는 동안 마찰열로 인한 체결 대상물(O)의 소재 유동(Fm) 공간이 확보될 수 있어 체결 대상물(O)에 암나사산을 효율적으로 형성할 수 있는 동시에 체결면적을 최적으로 확보할 수 있어 신뢰도 높은 체결력을 확보할 수 있기 때문이다.In addition, preferably, the fastening screw 130 may be configured such that the pitch P of the plurality of fastening threads 130 is 0.15 to 0.5 times the outermost outer diameter of the fastening screw 130. As a result, while the fastening screw 130 is fastened to the fastening object O, the material flow (Fm) space of the fastening object O may be secured due to frictional heat, thereby efficiently forming a female thread on the fastening object O. It is possible to secure the fastening area at the same time as it can secure the fastening force with high reliability.
이하에서는, 도 4 내지 도 6을 참고하여 종래기술들과 대비한 결과 본 발명의 작용 효과에 대하여 보다 구체적으로 기술하기로 한다.Hereinafter, the operation and effect of the present invention will be described in more detail with reference to FIGS. 4 to 6 as compared with the prior art.
도 4에 도시된 바와 같이, 제1 종래기술에 따른 태핑나사는 본 발명의 제3 플랭크부(133)의 최저 부분의 양측면과 본 발명의 제1 플랭크부(131)의 최고 부분의 양측면을 기준으로 설정된 나사산(10)을 구비한다. As shown in FIG. 4, the tapping screw according to the first prior art is based on both sides of the bottom part of the third flank 133 of the present invention and both sides of the top part of the first flank 131 of the present invention. It has a screw thread 10 set to.
도 4을 참고하면, 제1 종래기술에 따른 태핑나사의 플랭크 측면 각도는 본 발명에 비해 현저히 큰 각도로 이루어지며, 이로 인해 체결 대상물(O)의 소재 유동(Fm) 경로가 제1 종래기술의 플랭크면 및 몸체부(120)의 외주면에서 급격하게 변화하므로, 소재 유동(Fm)이 몸체부(120)의 외주면에서 정체 및 집중 및 누적될 뿐만 아니라 누적된 소재의 유동으로 인해 몸체부(120)의 외주면에서 반발 유동(Fr)이 형성되며, 이로 인해 제1 종래기술의 플랭크면 및 몸체부(120)의 외주면 사이에서는 마찰열이 크게 발생하고 소재 변형률이 크고 소재 변형구간(D)이 크게 형성됨을 알 수 있다.Referring to Figure 4, the flank side angle of the tapping screw according to the first prior art is made at a significantly larger angle than the present invention, whereby the material flow (Fm) path of the fastening object (O) of the first prior art Since the flank surface and the outer peripheral surface of the body portion 120 changes rapidly, the material flow (Fm) stagnation and concentration and accumulation in the outer peripheral surface of the body portion 120 as well as the body portion 120 due to the accumulated material flow Repulsive flow (Fr) is formed on the outer circumferential surface of the, the friction heat between the first surface of the flank and the outer circumferential surface of the body portion 120 of the prior art is largely generated and the material strain is large and the material deformation section (D) is formed large Able to know.
도 5에 도시된 바와 같이, 제2 종래기술에 따른 태핑나사는 본 발명의 제1 플랭크부(131)의 기설정된 제1 플랭크각(θ1)을 기준으로 설정된 나사산(20)을 구비한다. As shown in FIG. 5, the tapping screw according to the second prior art includes a thread 20 set based on a first first flank angle θ1 of the first flank 131 of the present invention.
도 5를 참고하면, 제2 종래기술에 따른 태핑나사의 플랭크 측면 각도는 본 발명에 비해 (그리고 제1 종래기술에 비해서도) 현저히 큰 각도로 이루어지며, 이로 인해 체결 대상물(O)의 소재 유동(Fm) 경로가 제2 종래기술의 플랭크면 및 몸체부(120)의 외주면에서 급격하게 변화하므로, 소재 유동(Fm)이 몸체부(120)의 외주면에서 정체 및 집중 및 누적될 뿐만 아니라 누적된 소재의 유동으로 인해 몸체부(120)의 외주면에서 반발 유동(Fr)이 형성되며, 이로 인해 제2 종래기술의 플랭크면 및 몸체부(120)의 외주면 사이에서는 마찰열이 크게 발생하고 소재 변형률이 크고 소재 변형구간(D)이 크게 형성됨을 알 수 있다. 뿐만 아니라, 제2 종래기술에 따른 태핑나사는 나사산이 전체적으로 매우 좁은 폭으로 형성될 수 밖에 없어 기계적 강도가 매우 약함을 알 수 있다.Referring to FIG. 5, the flank side angle of the tapping screw according to the second prior art is made at a significantly larger angle than that of the present invention (and also compared to the first prior art), and thus the material flow of the fastening object O ( Since the Fm) path changes abruptly at the flanks of the second prior art and the outer circumferential surface of the body portion 120, the material flow Fm is stagnated, concentrated and accumulated at the outer circumferential surface of the body portion 120 as well as accumulated Due to the flow of the repulsive flow (Fr) is formed on the outer peripheral surface of the body portion 120, due to this the frictional heat is generated largely between the flank surface of the second prior art and the outer peripheral surface of the body portion 120 and the material strain rate is large and the material It can be seen that the deformation section D is largely formed. In addition, it can be seen that the tapping screw according to the second prior art has a very narrow width as a whole, and thus the mechanical strength is very weak.
이에 반해, 도 6에 도시된 바와 같이, 본 발명에 따른 태핑나사는 제1 플랭크부(131), 제2 플랭크부(132) 및 제3 플랭크부(133)를 순차작으로 커지도록 구비함으로써, 플랭크 측면 각도가 몸체부(120)의 외주면으로 갈수록 점차적으로 감소되도록 이루어지며, 이로 인해 체결 대상물(O)의 소재 유동(Fm) 경로가 본 발명에 따른 체결 나사산(130)의 플랭크면 및 몸체부(120)의 외주면에서 급격하게 변화하지 않으므로(매우 완만하게 변화하므로), 체결 대상물(O)의 소재 유동(Fm)이 몸체부(120)의 외주면에서 정체되지 않을 뿐만 아니라 반발 유동(Fr)도 거의 발생하지 않으며, 그 결과 제1 종래기술 및 제2 종래기술에 비해 본 발명의 체결 나사산(130)의 플랭크면 및 몸체부(120)의 외주면 사이에서는 마찰열이 거의 발생하지 않을 뿐만 아니라 소재 변형률 및 소재 변형구간이 최소화될 수 있는 것이다. On the contrary, as shown in FIG. 6, the tapping screw according to the present invention includes the first flank 131, the second flank 132, and the third flank 133 so as to increase in sequence. The flank side angle is made to gradually decrease toward the outer peripheral surface of the body portion 120, so that the material flow (Fm) path of the fastening object (O) is the flank surface and body portion of the fastening thread 130 according to the present invention Since it does not change suddenly at the outer circumferential surface of 120 (because it changes very slowly), the material flow Fm of the fastening object O is not only stagnant at the outer circumferential surface of the body portion 120, but also the repulsive flow Fr. It hardly occurs, and as a result, frictional heat is hardly generated between the flank of the fastening screw 130 and the outer circumferential surface of the body portion 120 as compared with the first and second prior arts. Material deformation section It can be minimized.
전술한 바에 의하면, 본 발명은 태핑나사가 체결 대상물에 체결될 때 체결 대상물의 소재변형률 및 소재변형부분을 최소화할 수 있다. 이로 인해, 본 발명은 소재 변형률 및 소재 변형부분을 최소화함에 따라 체결 대상물에 대한 태핑 나사의 체결면적이 증가되므로 체결력을 향상시킬 수 있고, 체결 대상물 자체의 불량률을 현저히 감소시킬 수 있는 효과가 있다.As described above, the present invention can minimize the material strain and the material deformation portion of the fastening object when the tapping screw is fastened to the fastening object. Therefore, the present invention increases the fastening area of the tapping screw for the fastening object by minimizing the material strain and the material deformation portion, thereby improving the fastening force and having an effect of significantly reducing the defective rate of the fastening object itself.
또한, 본 발명은 제1 플랭크부를 구비함으로써 체결 대상물에 암나사산을 용이하게 형성할 수 있어 체결 편의성을 향상시키고, 동시에 제2 플랭크부 및/또는 제3 플랭크부를 구비함으로써 나사산의 기계적 강도를 안정적으로 확보할 수 있다. In addition, the present invention can easily form a female thread on the fastening object by having a first flank, thereby improving the convenience of fastening, and at the same time, by providing a second flank and / or a third flank, the mechanical strength of the screw thread can be stably maintained. It can be secured.
이상과 같이 본 발명의 일 실시예에서는 구체적인 구성 요소 등과 같은 특정 사항들과 한정된 실시예 및 도면에 의해 설명되었으나 이는 본 발명의 보다 전반적인 이해를 돕기 위해서 제공된 것일 뿐, 본 발명은 상기의 실시예에 한정되는 것은 아니며, 본 발명이 속하는 분야에서 통상적인 지식을 가진 자라면 이러한 기재로부터 다양한 수정 및 변형이 가능하다. 따라서, 본 발명의 사상은 설명된 실시예에 국한되어 정해져서는 아니 되며, 후술하는 특허청구범위뿐 아니라 이 특허청구범위와 균등하거나 등가적 변형이 있는 모든 것들은 본 발명 사상의 범주에 속한다고 할 것이다. As described above, in one embodiment of the present invention has been described by the specific embodiments, such as specific components and limited embodiments and drawings, but this is provided to help a more general understanding of the present invention, the present invention in the above embodiment The present invention is not limited thereto, and various modifications and variations are possible to those skilled in the art. Therefore, the spirit of the present invention should not be limited to the described embodiments, and all of the equivalents and equivalents of the claims, as well as the following claims, will fall within the scope of the present invention. .

Claims (8)

  1. 머리부; 및 Head; And
    일단부가 상기 머리부와 연결되되, 외주면에 복수 개의 체결 나사산이 마련되는 몸체부;를 포함하고,One end is connected to the head, the body portion is provided with a plurality of fastening screw thread on the outer circumference;
    상기 체결 나사산은, 상기 체결 나사산이 체결 대상물에 체결될 때 상기 체결 나사산의 플랭크면 및 상기 몸체부의 외주면을 따르는 상기 체결 대상물의 소재 유동 저항을 감소시키는 소재 유동저항 완화구조를 상기 플랭크면 전체에 걸쳐 구비하는 것을 특징으로 태핑나사. The fastening thread has a material flow resistance alleviation structure that reduces the material flow resistance of the fastening object along the outer surface of the fastening thread and the flank of the fastening thread when the fastening thread is fastened to the fastening object. Tapping screw, characterized in that provided.
  2. 제1항에 있어서,The method of claim 1,
    상기 체결 나사산은, 대향하는 플랭크면 사이의 각도인 플랭크각이 상기 체결 나사산의 산 부분에서 골 부분으로 갈수록 증가하도록 구성되는 것을 특징으로 하는 태핑나사.And said fastening thread is configured such that a flank angle, which is an angle between opposite flank surfaces, increases from a peak portion of said fastening thread toward a valley portion.
  3. 제1항에 있어서,The method of claim 1,
    상기 체결 나사산은,The fastening screw thread,
    상기 체결 나사산의 산 부분에 위치하고, 대향하는 플랭크면 사이의 각도인 플랭크각이 기설정된 제1 플랭크각인 제1 플랭크부와;A first flank portion positioned in the peak portion of the fastening screw thread, the first flank angle being a predetermined flank angle, the flank angle being an angle between the opposite flank surfaces;
    상기 제1 플랭크부의 하부에 연장되고, 상기 기설정된 제1 플랭크각보다 큰 기설정된 제2 플랭크각을 구비하는 제2 플랭크부와;A second flank portion extending below the first flank portion and having a predetermined second flank angle greater than the predetermined first flank angle;
    상기 제2 플랭크부의 하부와 상기 몸체부의 외주면 사이에 연장되고, 상기 기설정된 제2 플랭크각보다 큰 기설정된 제3 플랭크각을 구비하는 제3 플랭크부;를 포함하는 것을 특징으로 하는 태핑나사.And a third flank portion extending between a lower portion of the second flank portion and an outer circumferential surface of the body portion and having a predetermined third flank angle greater than the predetermined second flank angle.
  4. 제3항에 있어서,The method of claim 3,
    상기 기설정된 제1 플랭크각 및 상기 기설정된 제2 플랭크각은 20° 내지 50°의 각도범위 내에 있는 것을 특징으로 하는 태핑나사.And the predetermined first flank angle and the predetermined second flank angle are within an angle range of 20 ° to 50 °.
  5. 제3항에 있어서,The method of claim 3,
    상기 기설정된 제1 플랭크각은 15° 내지 25°의 각도범위 내에 있고,The predetermined first flank angle is within an angle range of 15 ° to 25 °,
    상기 기설정된 제2 플랭크각은 35° 내지 45°의 각도범위 내에 있고,The predetermined second flank angle is within an angle range of 35 ° to 45 °,
    상기 기설정된 제3 플랭크각은 55° 내지 65°의 각도범위 내에 있는 것을 특징으로 하는 태핑나사.The preset third flank angle is a tapping screw, characterized in that in the angular range of 55 ° to 65 °.
  6. 제3항에 있어서,The method of claim 3,
    상기 체결 나사산은, 상기 제1 플랭크부의 높이 : 상기 제2 플랭크부의 높이 : 상기 제3 플랭크부의 높이가 1 : 1 : 0.5 ~ 1 이 되도록 구성되는 것을 특징으로 하는 태핑나사.The fastening thread is a tapping screw, characterized in that the height of the first flank portion: the height of the second flank portion: the height of the third flank portion is 1: 1: 0.5 to 1.
  7. 제3항에 있어서,The method of claim 3,
    상기 체결 나사산은, 상기 제1 플랭크부의 높이가 상기 제2 플랭크부의 높이와 상기 제3 플랭크부의 높이의 합의 0.25 내지 0.5 배가 되도록 구성되는 것을 특징으로 하는 태핑나사.The fastening screw thread is characterized in that the height of the first flank portion is configured to be 0.25 to 0.5 times the sum of the height of the second flank portion and the height of the third flank portion.
  8. 제1항 내지 제7항 중 어느 한 항에 있어서,The method according to any one of claims 1 to 7,
    상기 체결 나사산은, 상기 복수 개의 체결 나사산의 피치가 상기 체결 나사산의 최외곽 외경의 0.15 내지 0.5 배가 되도록 구성되는 것을 특징으로 하는 태핑나사.The fastening screw is configured to be configured such that the pitch of the plurality of fastening threads is 0.15 to 0.5 times the outermost outer diameter of the fastening screw thread.
PCT/KR2016/002733 2016-03-17 2016-03-17 Tapping screw capable of minimizing material strain rate of object to be coupled WO2017159896A1 (en)

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Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4527932A (en) * 1982-03-05 1985-07-09 Richard Bergner Gmbh & Co. Self-tapping screw
US5061135A (en) * 1990-08-28 1991-10-29 Research Engineering & Manufacturing, Inc. Thread tapping screw
US20020081171A1 (en) * 2000-12-22 2002-06-27 Michael Werner Thread forming screw
KR20100055462A (en) * 2007-08-13 2010-05-26 리써치 엔지니어링 앤 매뉴팩쳐링, 인크. Thread forming fastener
KR20130139960A (en) * 2010-10-01 2013-12-23 인파스텍 인텔렉츄얼 프로퍼티즈 피티이. 엘티디. Threaded fastener

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4527932A (en) * 1982-03-05 1985-07-09 Richard Bergner Gmbh & Co. Self-tapping screw
US5061135A (en) * 1990-08-28 1991-10-29 Research Engineering & Manufacturing, Inc. Thread tapping screw
US20020081171A1 (en) * 2000-12-22 2002-06-27 Michael Werner Thread forming screw
KR20100055462A (en) * 2007-08-13 2010-05-26 리써치 엔지니어링 앤 매뉴팩쳐링, 인크. Thread forming fastener
KR20130139960A (en) * 2010-10-01 2013-12-23 인파스텍 인텔렉츄얼 프로퍼티즈 피티이. 엘티디. Threaded fastener

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