JP4283082B2 - Screw head structure - Google Patents

Screw head structure Download PDF

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JP4283082B2
JP4283082B2 JP2003349583A JP2003349583A JP4283082B2 JP 4283082 B2 JP4283082 B2 JP 4283082B2 JP 2003349583 A JP2003349583 A JP 2003349583A JP 2003349583 A JP2003349583 A JP 2003349583A JP 4283082 B2 JP4283082 B2 JP 4283082B2
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cutting
cutting edge
head
cutting blade
blade
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JP2005114061A (en
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英二 山本
稔剛 小川
隆 木山
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若井産業株式会社
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この発明は、ネジの頭部構造、更に詳しくは、被締結物である木材に対して頭部で座ぐりし、この頭部を木材に木割れを生じさせることなく沈み込ませることができるようにしたネジの頭部構造に関する。   According to the present invention, the head structure of the screw, more specifically, the head that is to be fastened against the wood to be fastened can be spotted, and the head can be depressed without causing the wood to crack. It relates to the screw head structure.

木材の締結に用いるネジにおいて、その頭部に座ぐり機能を与え、頭部を木材に沈み込ませることにより、締結の仕上がり形態の向上を図ることができるようにしたネジが提案されている。   In a screw used for fastening wood, a screw has been proposed in which a finish function of fastening can be improved by giving a counterbore function to the head and sinking the head into the wood.

上記頭部に座ぐり機能を付加するには、シャンク部の一端側に設けた頭部の座面に切削刃を設け、ネジのねじ込み回転により上記切削刃で木材を切削して、木材に頭部を沈み込ませるようになっている。   In order to add a counterbore function to the head, a cutting blade is provided on the head seating surface provided at one end of the shank, and the wood is cut with the cutting blade by screwing rotation of the screw. It is designed to sink the part.

従来、木材の締結に用いるネジにおいて、座ぐり用の切削刃を設けた頭部構造は、頭部の外周に切削屑の排出部を形成すると共に、頭部の座面に直線や円弧状となる複数の切削刃を放射状の配置で設けたものが提案されている(例えば、特許文献1と2参照)。   Conventionally, in a screw used for fastening wood, a head structure provided with a counterbore cutting blade forms a cutting waste discharge portion on the outer periphery of the head, and a straight or arc shape on the seat surface of the head. There have been proposed a plurality of cutting blades provided in a radial arrangement (see, for example, Patent Documents 1 and 2).

特開昭59−131013号公報(図4、図5、図9)JP 59-1331013 (FIGS. 4, 5, and 9) 特開平5−133411号公報(図3、図5、図7)JP-A-5-133411 (FIGS. 3, 5, and 7)

ところで、上記した従来の直線や円弧状の各切削刃は、半径方向に連続した構造になっているので、木材の座ぐり時において、切削した木材の切削屑を外側に排出する機能が極めて低く、頭部の外周に切削屑の排出部を設けても、シャンク部の側に切削屑を閉じ込めた目詰まり状態になり、このため、閉じ込められた切削屑が頭部の沈み込みを阻害することになり、頭部の完全な沈み込み状態を得ることが困難であるという問題がある。   By the way, the above-mentioned conventional straight and arc-shaped cutting blades have a structure that is continuous in the radial direction, so that the function of discharging the cutting waste of the cut wood to the outside is very low when the wood is countersunk. Even if a cutting waste discharge part is provided on the outer periphery of the head, it becomes clogged with the cutting waste confined on the side of the shank, and this prevents the trapped cutting waste from blocking the head. Therefore, there is a problem that it is difficult to obtain a completely depressed state of the head.

また、連続した構造の各切削刃は、その刃先の木材への接触部分が長くなり、このため、切削時の抵抗が大きくなり、ビスのねじ込みによる座ぐりに大きな力が必要になる。   In addition, each cutting blade having a continuous structure has a long contact portion with the wood of the cutting edge, which increases resistance during cutting, and requires a large force for counterbore by screwing.

そこで、この発明の課題は、切削した木材の切削屑を確実に外側へ排出することで、シャンク部の側に切削屑を閉じ込める目詰まり状態の発生をなくし、軽いねじ込み力で頭部の完全な沈み込み状態を得ることができるネジの頭部構造を提供することにある。   Accordingly, an object of the present invention is to reliably discharge the cutting waste of the cut wood to the outside, thereby eliminating the occurrence of a clogging state that traps the cutting waste on the side of the shank portion, and the complete head of the head with a light screwing force. An object of the present invention is to provide a screw head structure capable of obtaining a depressed state.

上記のような課題を解決するため、請求項1の発明は、シャンク部の一端側に設けた頭部の外周に切削屑の排出部を頭部の最大外径よりも凹入するように形成し、上記頭部の座面側に、頭部の最大外径寄りの位置に配置した座ぐり用の外側切り刃と、外側切り刃に対してねじ込み回転方向の後方で排出部と対応し、シャンク部側に配置した座ぐり用の内側切り刃を設け、上記外側切り刃と内側切り刃は、内側切り刃の方がシャンク部の軸方向への突出長さが長く、外側切り刃と内側切り刃のねじ込み回転方向の前方に向く面が、それぞれ、頭部の軸心を通る半径方向の軸線に一致し、かつ、外側切り刃による内側端の切削軌跡と内側切り刃による外側端の切削軌跡が一致するか、外側切り刃の切削軌跡と内側切り刃の切削軌跡が部分的に重なるように設定されている構成を採用したものである。 In order to solve the above problems, the invention of claim 1 is formed so that a cutting waste discharging portion is recessed in the outer periphery of the head portion provided on one end side of the shank portion with respect to the maximum outer diameter of the head portion. And, on the seat surface side of the head, an outer cutting blade for counterbore disposed at a position near the maximum outer diameter of the head, and corresponds to the discharge portion behind the outer cutting blade in the screwing rotation direction, An internal cutting edge for counterbore provided on the shank part side is provided. The outer cutting edge and the inner cutting edge have a longer protruding length in the axial direction of the inner cutting edge, and the outer cutting edge and the inner cutting edge are longer. The front-facing surface of the cutting blade in the screwing rotation direction coincides with the radial axis passing through the axis of the head, and the cutting trajectory of the inner end by the outer cutting blade and the outer end cutting by the inner cutting blade or the trajectory match, partially I heavy cutting trajectory of the cutting trajectory and the inner cutting edge of the outer cutting blade It is obtained by employing the set Configurations like.

請求項2の発明は、シャンク部の一端側に設けた頭部の外周に切削屑の排出部を頭部の最大外径よりも凹入するように形成し、上記頭部の座面側に、頭部の最大外径寄りの位置に配置した座ぐり用の外側切り刃と、外側切り刃に対してねじ込み回転方向の後方で排出部と対応し、シャンク部側に配置した座ぐり用の内側切り刃と、上記外側切り刃と内側切り刃の間に配置した中間切り刃を設け、上記外側切り刃と内側切り刃及び中間切り刃は、内側切り刃がシャンク部の軸方向への突出長さが最も長く、中間切り刃はシャンク部の軸方向への突出長さが外側切り刃と同等かそれよりも長く設定され、上記外側切り刃と内側切り刃及び中間切り刃のねじ込み回転方向の前方に向く面が、それぞれ、頭部の軸心を通る半径方向の軸線に一致し、かつ、外側切り刃による内側端の切削軌跡と中間切り刃による外側端の切削軌跡及び、中間切り刃による内側端の切削軌跡と内側切り刃による外側端の切削軌跡が一致するか、外側切り刃の切削軌跡と内側切り刃の切削軌跡が部分的に重なるように設定されている構成を採用したものである。 According to a second aspect of the present invention, a cutting waste discharging portion is formed in the outer periphery of the head portion provided on one end side of the shank portion so as to be recessed from the maximum outer diameter of the head portion, and on the seat surface side of the head portion. , The outer cutting edge for counterbore arranged at a position near the maximum outer diameter of the head, and the counterbore for the counterbore located on the shank part side corresponding to the discharge part behind the outer cutting edge in the screwing rotation direction An inner cutting blade and an intermediate cutting blade disposed between the outer cutting blade and the inner cutting blade are provided. The outer cutting blade, the inner cutting blade, and the intermediate cutting blade are protruded in the axial direction of the shank portion. The longest length of the intermediate cutting blade is set so that the protruding length in the axial direction of the shank is equal to or longer than that of the outer cutting blade. Each of the front-facing surfaces coincides with the radial axis passing through the head axis, and Cutting trajectory of the outer edge by cutting trajectory and the intermediate cutting edge of the inner end by the outer cutting edge and, if the cutting trajectory of the outer edge by cutting trajectory and the inner cutting edge of the inner end by the intermediate cutting edge is matched, the outer cutting blades A configuration in which the cutting locus and the cutting locus of the inner cutting edge are partially overlapped is adopted.

請求項3の発明は、シャンク部の一端側に設けた頭部の外周に切削屑の排出部を頭部の最大外径よりも凹入するように形成し、上記頭部の座面側に、頭部の最大外径寄りの位置に配置した座ぐり用の外側切り刃と、外側切り刃に対してねじ込み回転方向の後方で排出部と対応し、シャンク部側に配置した座ぐり用の内側切り刃を設け、上記外側切り刃と内側切り刃は、内側切り刃の方がシャンク部の軸方向への突出長さが長く、外側切り刃と内側切り刃のねじ込み回転方向の前方に向く面が、外側切り刃は頭部の軸心を通る半径方向の軸線に対して頭部の外周から内側に向けてねじ込み回転方向の後方へ下がり傾斜になり、内側切り刃は上記軸線に対してシャンク部側から外側に向けてねじ込み回転方向の後方へ下がり傾斜になり、かつ、外側切り刃による内側端の切削軌跡と内側切り刃による外側端の切削軌跡が一致するか、外側切り刃の切削軌跡と内側切り刃の切削軌跡が部分的に重なるように設定されている構成を採用したものである。 According to a third aspect of the present invention, a cutting waste discharging part is formed in the outer periphery of the head provided on one end side of the shank part so as to be recessed from the maximum outer diameter of the head, , The outer cutting edge for counterbore arranged at a position near the maximum outer diameter of the head, and the counterbore for the counterbore located on the shank part side corresponding to the discharge part behind the outer cutting edge in the screwing rotation direction An inner cutting blade is provided, and the outer cutting blade and the inner cutting blade have a longer protruding length in the axial direction of the shank portion, and the outer cutting blade and the inner cutting blade are directed forward in the screwing rotation direction of the outer cutting blade and the inner cutting blade. The surface of the outer cutting edge is inclined downward from the outer periphery of the head toward the inner side with respect to the radial axis passing through the head axis, and the inner cutting edge is inclined with respect to the axis. From the shank side toward the outside, the screwing direction of rotation is lowered and inclined, and the outside Or cutting trajectory of the outer edge by cutting trajectory and the inner cutting edge of the inner end by the cutting blade coincide, adopt a configuration in which cutting path of the cutting trajectory and the inner cutting edge of the outer cutter is configured to overlap partially It is what.

請求項4の発明は、請求項1乃至3の何れかに記載の発明において、上記内側切り刃の頭部と反対側の先端で外側コーナを傾斜面に形成した構成を採用したものである。   According to a fourth aspect of the present invention, in the first aspect of the present invention, a configuration in which an outer corner is formed on an inclined surface at a tip opposite to the head of the inner cutting blade is employed.

ここで、木材の締結に用いるネジは、外周に雄ネジが設けられたシャンク部の一端側に頭部と他端側に先鋭端を設け、上記頭部は、上面に工具の係合溝が設けられ、雄ネジよりも大径の板状でその外周に切削屑の排出部が複数形成され、上記外側切り刃と内側切り刃及び中間切り刃は、排出部と等しい数の複数組がそれぞれ各排出部と対応する位置に配置されている。   Here, the screws used for fastening the wood are provided with a head on one end side of a shank portion provided with a male screw on the outer periphery and a sharp end on the other end side. A plurality of cutting waste discharge portions are formed on the outer periphery of the plate having a diameter larger than that of the male screw, and the outer cutting blade, the inner cutting blade, and the intermediate cutting blade each have a plurality of sets equal to the discharging portion. It arrange | positions in the position corresponding to each discharge part.

上記のように、この発明によると、頭部の座面に設けた外側切り刃と内側切り刃がねじ込み回転方向に断続し、外側切り刃と内側切り刃のねじ込み回転方向の前方に向く面を、それぞれ、頭部の軸心を通る半径方向の軸線に一致するか、回転方向の後方に傾斜させたので、木材の切削屑を小さくして確実に外側へ排出することができ、シャンク部の側に切削屑を閉じ込めた目詰まり状態の発生をなくし、頭部の完全な沈み込み状態を得ることができる。   As described above, according to the present invention, the outer cutting edge and the inner cutting edge provided on the seat surface of the head are intermittently engaged in the screwing rotation direction, and the surface facing the front in the screwing rotation direction of the outer cutting edge and the inner cutting blade is provided. Since each of them coincides with the radial axis passing through the axis of the head or is inclined rearward in the rotational direction, the cutting waste of the wood can be reduced and discharged to the outside with certainty. Occurrence of a clogged state in which cutting waste is confined on the side can be eliminated, and a completely submerged state of the head can be obtained.

また、内側切り刃の方がシャンク部の軸方向への突出長さを長くしたので、座ぐりは先ず最初に内側切り刃でシャンク部の周囲から切削を開始し、内側切り刃の幅での切削は部分的な切削になるので、切削に要するねじ込み回転力が小さくて済み、内側切り刃での切削後に外側切り刃での切削が生じることにより、切削屑を小さくして切削屑の排出が円滑に行えることになる。   Also, since the inner cutting edge has a longer protruding length in the axial direction of the shank part, the counterbore first starts cutting around the shank part with the inner cutting edge, and cuts with the width of the inner cutting edge. Since this is a partial cutting, the screwing rotational force required for the cutting is small, and the cutting with the outer cutting edge occurs after the cutting with the inner cutting edge, so that the cutting waste is reduced and the cutting waste is smoothly discharged. Will be able to do it.

更に、外側切り刃と内側切り刃のねじ込み回転方向の前方に向く面を、それぞれ、頭部の軸心を通る半径方向の軸線に一致するか、回転方向の後方に傾斜させたので、木材繊維を確実に切断して座ぐり時に外側切り刃が木材繊維を外側に押し広げるようなことがなく、したがって、切削屑を頭部の外周側へ送り出して排出させることができ、しかも、外側切り刃による内側端の切削軌跡と内側切り刃による外側端の切削軌跡が一致するか、外側切り刃の切削軌跡と内側切り刃の切削軌跡が部分的に重なるように設定したので、被締結木材に対して頭部の座面による削り残しの発生がなく、軽いねじ込み力で頭部を完全に沈み込ませることができる。 Furthermore, the surfaces of the outer cutting blade and the inner cutting blade that face forward in the screwing rotation direction coincide with the radial axis passing through the axis of the head, respectively, or are inclined backward in the rotation direction. The outer cutting blade does not push the wood fiber outward when it is securely cut and countersunk, so the cutting waste can be sent out to the outer periphery of the head and discharged, and the outer cutting blade The cutting trajectory of the inner edge and the cutting trajectory of the outer edge by the inner cutting edge are the same, or the cutting trajectory of the outer cutting edge and the cutting trajectory of the inner cutting edge are partially overlapped. Therefore, there is no uncut material due to the seating surface of the head, and the head can be completely submerged with a light screwing force.

更にまた、外側切り刃と内側切り刃の間に中間切り刃を設けることにより、座ぐり時の切削屑をより小さくすることができ、切削屑の排出が一段と円滑に行えると共に、切削に要するねじ込み回転力を小さくすることができる。
また、内側切り刃の頭部と反対側の先端で外側コーナを傾斜面に形成すると、座ぐり開始時の切り込み抵抗の発生を少なくし、ねじ込み力を軽くすることができる。
Furthermore, by providing an intermediate cutting blade between the outer cutting blade and the inner cutting blade, it is possible to further reduce the cutting waste during counter boring, and the discharge of the cutting waste can be performed more smoothly and the screwing required for cutting can be achieved. The rotational force can be reduced.
Further, when the outer corner is formed on the inclined surface at the tip opposite to the head of the inner cutting blade, the generation of the cutting resistance at the start of the counterbore can be reduced, and the screwing force can be reduced.

外周に切削屑の排出部を凹入するように形成した頭部の座面側に、頭部の外周寄りに配置した外側切り刃と、外側切り刃に対してねじ込み回転方向の後方で排出部と対応するようシャンク部側に配置した内側切り刃を設け、上記外側切り刃と内側切り刃は、内側切り刃の方がシャンク部の軸方向への突出長さが長く、かつ、外側切り刃と内側切り刃のねじ込み回転方向の前方に向く面が、それぞれ、頭部の軸心を通る半径方向の軸線に一致するか、回転方向の後方に傾斜し、外側切り刃による内側端の切削軌跡と内側切り刃による外側端の切削軌跡が一致するか、外側切り刃の切削軌跡と内側切り刃の切削軌跡が部分的に重なるようになっている。 An outer cutting blade disposed near the outer periphery of the head on the seat surface side of the head formed so as to insert a cutting waste discharging portion on the outer periphery, and a discharge portion screwed with respect to the outer cutting blade at the rear in the rotational direction. An inner cutting blade arranged on the shank portion side is provided so as to correspond to the outer cutting blade, and the outer cutting blade and the inner cutting blade have a longer protruding length in the axial direction of the shank portion and the outer cutting blade. And the cutting direction of the inner edge by the outer cutting edge, the surface of the inner cutting blade facing forward in the screwing rotation direction coincides with the radial axis passing through the axis of the head, or is inclined backward in the rotation direction. And the cutting locus of the outer edge by the inner cutting edge coincide with each other , or the cutting locus of the outer cutting edge and the cutting locus of the inner cutting edge partially overlap.

以下、この発明の実施例を図示に基づいて説明する。   Embodiments of the present invention will be described below with reference to the drawings.

図1乃至図5は、木材の締結に用いるネジ1の第1の例を示し、ネジ1は外周に雄ネジ2が設けられたシャンク部3の一端側に、上面で開口する工具係合溝4aを有する頭部4と他端側に図示省略した先鋭端を設け、上記頭部4は、雄ネジ2の外径よりも大径となる板状に形成され、この頭部4とシャンク部3の間にテーパー部5が設けられている。   FIGS. 1 to 5 show a first example of a screw 1 used for fastening wood, and the screw 1 is a tool engagement groove opened on the upper surface at one end side of a shank portion 3 provided with a male screw 2 on the outer periphery. A head 4 having 4a and a sharp end (not shown) are provided on the other end side, and the head 4 is formed in a plate shape having a diameter larger than the outer diameter of the male screw 2. The head 4 and the shank portion 3 is provided with a tapered portion 5.

上記頭部4は、円形状となる外周の四等分した位置に、それぞれ弧状に凹入する切削屑の排出部6を、隣接する排出部6の間に最大径部7を残して設けた構造になっており、この頭部4の座面側に、ネジ1のねじ込み回転方向に分断された配置となる外側切り刃8と内側切り刃9が、各排出部6と対応する数の複数組が設けられている。   The head 4 is provided with a cutting waste discharging portion 6 that is recessed in an arc shape at positions divided into four equal parts on the outer periphery that is circular, leaving the maximum diameter portion 7 between the adjacent discharging portions 6. The outer cutting blade 8 and the inner cutting blade 9 are arranged on the seat surface side of the head 4 in the screwing rotation direction of the screw 1. A set is provided.

上記外側切り刃8と内側切り刃9は、四角形や三角形の軸状に形成され、それぞれ、頭部4の座面からシャンク部3の軸方向に突出するよう設けられ、外側切り刃8は、排出部6に対してネジ1のねじ込み回転方向の前方に位置する最大径部7に外接する配置となり、また、内側切り刃9は、排出部6と対応する位置においてシャンク部3に沿うような配置で設けられている。   The outer cutting blade 8 and the inner cutting blade 9 are formed in a quadrangular or triangular shaft shape, and are respectively provided so as to protrude in the axial direction of the shank portion 3 from the seating surface of the head 4. It is arranged so as to circumscribe the maximum diameter portion 7 located forward of the screw 1 in the screwing rotation direction with respect to the discharge portion 6, and the inner cutting edge 9 extends along the shank portion 3 at a position corresponding to the discharge portion 6. It is provided by arrangement.

上記外側切り刃8と内側切り刃9は、内側切り刃9の方がシャンク部3の軸方向への突出長さが長く、外側切り刃8は頭部4の座面から独立して突出していると共に、内側切り刃9は、図1乃至図4では、内側がテーパー部5の外面に一体化し、外側面がシャンク部3の軸方向に直線状に延びているが、図5のように、内側切り刃9の頭部4と反対側の先端で外側コーナを傾斜面10に形成し、座ぐり開始時の切り込み抵抗の発生を少なくするようにしてもよい。   The outer cutting edge 8 and the inner cutting edge 9 have a longer protruding length in the axial direction of the shank portion 3 than the inner cutting edge 9, and the outer cutting edge 8 protrudes independently from the seating surface of the head 4. 1 to 4, the inner cutting edge 9 is integrated with the outer surface of the tapered portion 5 and the outer surface extends linearly in the axial direction of the shank portion 3, as shown in FIG. Further, an outer corner may be formed on the inclined surface 10 at the tip of the inner cutting blade 9 opposite to the head 4 to reduce the occurrence of cutting resistance at the start of counterbore.

また、外側切り刃8と内側切り刃9のねじ込み回転方向の前方に向く前面が、それぞれ、頭部4の軸心を通る半径方向の軸線Xに一致するか、この軸線aに対して後方に傾斜し、かつ、外側切り刃8による内側端の切削軌跡と内側切り刃9による外側端の切削軌跡が一致するか、外側切り刃8の切削軌跡と内側切り刃9の切削軌跡が部分的に重なるように設定され、外側切り刃8と内側切り刃9は、それぞれ、ねじ込み回転方向の前方に向く前面の先端が切削刃先8aと9aになっている。 In addition, the front surfaces of the outer cutting blade 8 and the inner cutting blade 9 facing forward in the screwing rotation direction respectively coincide with the radial axis X passing through the axis of the head 4, or rearward with respect to the axis a. The cutting locus of the inner end by the outer cutting edge 8 and the cutting locus of the outer end by the inner cutting edge 9 are inclined, or the cutting locus of the outer cutting edge 8 and the cutting locus of the inner cutting edge 9 are partially The outer cutting edge 8 and the inner cutting edge 9 are set so as to overlap with each other, and the front ends of the outer cutting edge 8 and the inner cutting edge 9 facing forward in the screwing rotation direction are the cutting edges 8a and 9a, respectively.

図6は、ネジ1の第2の例を示し、上記頭部4の座面側に、頭部4の最大外径寄りの位置に配置した座ぐり用の外側切り刃8と、外側切り刃8に対してねじ込み回転方向の後方で排出部6と対応し、シャンク部3側に配置した座ぐり用の内側切り刃9と、上記外側切り刃8と内側切り刃9の間に配置した中間切り刃11を設けた構造になっている。   FIG. 6 shows a second example of the screw 1, an outer cutting edge 8 for counterbore disposed on the seat surface side of the head 4 at a position near the maximum outer diameter of the head 4, and an outer cutting edge 8, an internal cutting blade 9 for counterbore corresponding to the discharge portion 6 at the rear of the screwing rotation direction and disposed on the shank portion 3 side, and an intermediate disposed between the outer cutting blade 8 and the inner cutting blade 9 The cutting blade 11 is provided.

図1乃至図5は、第1の例における外側切り刃8と内側切り刃9の具体的な配置と刃先形状の異なった例を示し、図6は、第2の例における外側切り刃8と内側切り刃9及び中間切り刃11の構造を示し、図7は、外側切り刃8と内側切り刃9の好ましくない対比例を示している。   1 to 5 show an example in which the specific arrangement of the outer cutting edge 8 and the inner cutting edge 9 and the shape of the cutting edge in the first example are different, and FIG. 6 shows the outer cutting edge 8 in the second example. The structure of the inner cutting edge 9 and the intermediate cutting edge 11 is shown, and FIG. 7 shows an unfavorable contrast between the outer cutting edge 8 and the inner cutting edge 9.

図7の、好ましくない対比例は、外側切り刃8を、ねじ込み回転方向の前方に向く前面が内側から外側へねじ込み回転方向に対して後方下がりに傾斜するよう形成し、また、内側切り刃9を、ねじ込み回転方向の前方に向く前面が内側から外側へねじ込み回転方向に対して先端上がりに傾斜するよう形成し、かつ、外側切り刃8による内側端の切削軌跡と内側切り刃9による外側端の切削軌跡が内外に離れた位置関係にあるように配置した構造になっている。   The unfavorable contrast of FIG. 7 is that the outer cutting edge 8 is formed such that the front face facing forward in the screwing rotation direction is inclined from the inner side to the outer side and downwardly inclined with respect to the screwing rotation direction. Is formed such that the front surface facing forward in the screwing rotation direction is inclined from the inside to the outside and the tip is inclined upward with respect to the screwing rotation direction, and the cutting locus of the inner end by the outer cutting blade 8 and the outer end by the inner cutting blade 9 are formed. Are arranged so that the cutting trajectory is in a positional relationship away from inside and outside.

このような、外側切り刃8と内側切り刃9の構造は、ビス1のねじ込みによる座ぐり時において、図7(B)のように、内側切り刃9の前面に被締結木材Aの切削屑aが閉じ込められて排出することができないことになり、しかも、外側切り刃8と内側切り刃9の間に削り残しが発生するので、この削り残しと上記閉じ込た切削屑aが座ぐりによる頭部の沈み込みを阻害する。   Such a structure of the outer cutting edge 8 and the inner cutting edge 9 is such that the cutting waste of the wood A to be fastened on the front surface of the inner cutting edge 9 as shown in FIG. a is confined and cannot be discharged, and uncut material is generated between the outer cutting blade 8 and the inner cutting blade 9, so that the uncut material and the above-mentioned confined cutting waste a are countersunk. Impairs the sinking of the head.

また、外側切り刃8は、図7(B)の矢印bのように、切削屑を頭部の外側に切削屑を排出することになるが、図8の矢印cのように、回転する外側切り刃8は、外周において木材繊維が切れずに木目を外方に押し広げることになり、これが原因で木割れを生じさせるという不都合がある。   Further, the outer cutting edge 8 discharges the cutting waste to the outside of the head as indicated by the arrow b in FIG. 7B, but rotates outside as indicated by the arrow c in FIG. The cutting blade 8 has an inconvenience that the wood fiber is not cut off on the outer periphery and the wood grain is pushed outward, which causes a wood crack.

これに対して、図1と図2に示した例のネジ1は、外側切り刃8と内側切り刃9のねじ込み回転方向の前方に向く前面を、それぞれ頭部4の軸心を通る半径方向の軸線Xに一致させ、更に、外側切り刃8による内側端の切削軌跡と内側切り刃9による外側端の切削軌跡を一致させた構造になっている。   On the other hand, the screw 1 in the example shown in FIGS. 1 and 2 has a radial direction passing through the axial center of the head 4 on the front surface of the outer cutting blade 8 and the inner cutting blade 9 facing forward in the screwing rotation direction. The cutting locus of the inner end by the outer cutting edge 8 and the cutting locus of the outer end by the inner cutting edge 9 are made to coincide with each other.

このような図1と図2に示した例では、ビス1のねじ込みによる座ぐり時において、図1(B)の矢印で示すように、内側切り刃9の前面による切削屑は頭部4の外周側に向けて排出部6から頭部4の外周に排出され、また、外側切り刃8による切削屑は頭部4の内側に送られ、この切削屑は後続の上記内側切り刃9により頭部4の外周側に向けて排出され、排出部6から出ていくことになる。   In the example shown in FIGS. 1 and 2, when the screw 1 is countersunk by screwing, as shown by the arrow in FIG. The cutting waste is discharged from the discharge portion 6 to the outer periphery of the head 4 toward the outer peripheral side, and the cutting waste from the outer cutting edge 8 is sent to the inside of the head 4. It is discharged toward the outer peripheral side of the part 4 and goes out from the discharge part 6.

上記外側切り刃8は、切削屑を内側に取り込むことにより、その外周の刃先で木材繊維を切断することになり、木目を押し広げて木割れを生じさせるというようなことがないと共に、外側切り刃8による内側端の切削軌跡と内側切り刃9による外側端の切削軌跡が一致しているので、削り残しの発生がなく、しかも、切削屑を排出部6から頭部4の外周へ確実に排出することで、座ぐりによる頭部4の沈み込みが確実に得られることになる。   The above-mentioned outer cutting blade 8 cuts wood fibers at the outer peripheral cutting edge by taking the cutting waste inward, so that it does not spread the grain and cause cracks. Since the cutting trajectory of the inner end by the blade 8 and the cutting trajectory of the outer end by the inner cutting blade 9 coincide with each other, there is no generation of uncut material and the cutting waste is reliably transferred from the discharge part 6 to the outer periphery of the head 4. By discharging, the sinking of the head 4 due to the spot facing is surely obtained.

図3に示した例のネジ1は、外側切り刃8のねじ込み回転方向の前方に向く前面を、頭部4の軸心を通る半径方向の軸線Xに対して、外周から内側に向けてねじ込み回転方向の後方下がりに傾斜させ、また、内側切り刃9のねじ込み回転方向の前方に向く前面を、頭部4の軸心を通る半径方向の軸線Xに対して、内側から外側に向けてねじ込み回転方向の後方下がりに傾斜させ、更に、外側切り刃8の切削軌跡と内側切り刃9の切削軌跡が部分的に重なるようにした構造になっている。 The screw 1 in the example shown in FIG. 3 is screwed inward from the outer periphery toward the inner side with respect to the radial axis X passing through the axis of the head 4 with the front surface facing forward in the screwing rotation direction of the outer cutting edge 8. The front surface of the inner cutting blade 9 that is inclined downward in the rotational direction and that faces forward in the rotational direction of the inner cutting blade 9 is screwed from the inner side toward the outer side with respect to the radial axis X passing through the axis of the head 4. The structure is such that it is inclined downward in the rotational direction, and the cutting locus of the outer cutting edge 8 and the cutting locus of the inner cutting edge 9 partially overlap.

この図3に示した例においては、上述した図1と図2に示した例で挙げた効果と共に、外側切り刃8と内側切り刃9の前面を傾斜させることにより、切削した切削屑の排出部6への送り出しがより円滑になり、座ぐりに要する切削トルクの削減が可能になる。   In the example shown in FIG. 3, the cutting chips are discharged by inclining the front surfaces of the outer cutting blade 8 and the inner cutting blade 9 together with the effects described in the examples shown in FIGS. The feeding to the portion 6 becomes smoother, and the cutting torque required for counterbore can be reduced.

図4で示した例のネジ1は、基本的に図3に示した例と同様であるが、外側切り刃8を三角形の軸状とすると共に、内側切り刃9をその外側部が排出部6に接するように形成し、外側切り刃8の切削軌跡と内側切り刃9の切削軌跡が部分的に重なるようにした構造になっている。 The screw 1 of the example shown in FIG. 4 is basically the same as the example shown in FIG. 3 except that the outer cutting blade 8 has a triangular shaft shape and the inner cutting blade 9 has an outer portion at the discharge portion. 6, the cutting locus of the outer cutting edge 8 and the cutting locus of the inner cutting edge 9 partially overlap each other.

この図4で示した例も、図3に示した例と同じく切削した切削屑の排出部6への送り出しがより円滑になり、座ぐりに要する切削トルクの削減が可能になる。   In the example shown in FIG. 4 as well, as in the example shown in FIG. 3, the cut scraps that are cut out are more smoothly delivered to the discharge portion 6, and the cutting torque required for counterbore can be reduced.

図6は、第2の例における外側切り刃8と内側切り刃9及び中間切り刃11の構造を示し、中間切り刃11は、外側切り刃8と内側切り刃9の間のねじ込み方向の略中間に位置し、上記外側切り刃8と内側切り刃9及び中間切り刃11は、内側切り刃9がシャンク部3の軸方向への突出長さが最も長く、中間切り刃11はシャンク部3の軸方向への突出長さが外側切り刃8と同等かそれよりも長く設定され、上記外側切り刃8と内側切り刃9及び中間切り刃11のねじ込み回転方向の前方に向く面が、それぞれ、頭部4の軸心を通る半径方向の軸線に一致し、かつ、外側切り刃8による内側端の切削軌跡と中間切り刃11による外側端の切削軌跡及び、中間切り刃11による内側端の切削軌跡と内側切り刃9による外側端の切削軌跡が一致するか、外側切り刃8の切削軌跡と中間切り刃11の切削軌跡及び、中間切り刃11の切削軌跡と内側切り刃(9)の切削軌跡がそれぞれ部分的に重なるように設定されている。 FIG. 6 shows the structure of the outer cutting edge 8, the inner cutting edge 9 and the intermediate cutting edge 11 in the second example. The intermediate cutting edge 11 is substantially the screwing direction between the outer cutting edge 8 and the inner cutting edge 9. Located in the middle, the outer cutting edge 8, the inner cutting edge 9 and the intermediate cutting edge 11 have the longest protruding length in the axial direction of the shank portion 3, and the intermediate cutting blade 11 has the shank portion 3 The axially protruding length of the outer cutting blade 8 is set to be equal to or longer than the outer cutting blade 8, and the surfaces of the outer cutting blade 8, the inner cutting blade 9 and the intermediate cutting blade 11 facing forward in the screwing rotation direction are respectively , Which coincides with the radial axis passing through the axis of the head 4, and the cutting trajectory of the inner end by the outer cutting edge 8, the cutting trajectory of the outer end by the intermediate cutting edge 11, and the inner end by the intermediate cutting edge 11 The cutting locus coincides with the cutting locus of the outer edge by the inner cutting edge 9. Or cutting trajectory of the cutting trajectory and the intermediate cutting edge 11 of outer cutting edge 8 and the cutting trajectory of the cutting trajectory and the inner cutting edge of the intermediate cutting edge 11 (9) is set so as to overlap each part.

この第2の例において、外側切り刃8と内側切り刃9のねじ込み回転方向の前方に向く面が、外側切り刃8は上記軸線に対して頭部4の外周から内側に向けてねじ込み回転方向の後方へ下がり傾斜になり、内側切り刃9は上記軸線に対してシャンク部3側から外側に向けてねじ込み回転方向の後方へ下がり傾斜になっているようにしたり、内側切り刃9の頭部4と反対側の先端で外側コーナを傾斜面に形成した構造を採用することができる。   In this second example, the surface of the outer cutting blade 8 and the inner cutting blade 9 facing forward in the screwing rotation direction is the screwing rotation direction of the outer cutting blade 8 toward the inside from the outer periphery of the head 4 with respect to the axis. The inner cutting edge 9 is inclined downward from the shank part 3 side toward the outer side with respect to the above-mentioned axis, or the head of the inner cutting edge 9 is inclined. The structure which formed the outer corner in the inclined surface at the front-end | tip on the opposite side to 4 is employable.

上記のように、この発明の第1の例で示した頭部構造は、木材の締結に用いるネジにおいて、その頭部4に外側切り刃8と内側切り刃9をねじ込み回転方向の前後に分断して設け、外側切り刃8と内側切り刃9をねじ込み回転方向の前方に向く面が、それぞれ、頭部4の軸心を通る半径方向の軸線Xに一致するか、この軸線Xに対してねじ込み回転方向の後方に傾斜させ、かつ、外側切り刃8による内側端の切削軌跡と内側切り刃9による外側端の切削軌跡が一致するか、外側切り刃8の切削軌跡と内側切り刃9の切削軌跡が部分的に重なるように設定して形成したので、内側切り刃9による切削開始後に外側切り刃8が切削する時間差と、外側切り刃8と内側切り刃9による切削屑の排出の向上により、座ぐりに要する切削トルクの削減が可能になり、しかも、切削屑を確実に排出して閉じ込めることがないので、座ぐりによって頭部4を確実に木材に沈み込ませることができ、ビス1による締結の仕上がり形態の向上が図れる。 As described above, in the head structure shown in the first example of the present invention, in the screw used for fastening the wood, the outer cutting edge 8 and the inner cutting edge 9 are screwed into the head 4 and divided into the front and rear in the rotational direction. The outer cutting edge 8 and the inner cutting edge 9 are screwed in, and the surfaces facing forward in the rotational direction coincide with the radial axis X passing through the axis of the head 4, respectively. The cutting locus of the inner end by the outer cutting edge 8 and the cutting locus of the outer end by the inner cutting edge 9 coincide with each other, or the cutting locus of the outer cutting edge 8 and the inner cutting edge 9 are Since the cutting trajectory is set so as to partially overlap, the time difference that the outer cutting edge 8 cuts after the start of cutting by the inner cutting edge 9 and the improvement of discharge of cutting waste by the outer cutting edge 8 and the inner cutting edge 9 are improved. Reduces cutting torque required for spot facing It becomes ability, yet, since no confining reliably discharged shavings, can be reliably sink timber head 4 by spot facing, thereby improving the finished form of fastening by screws 1.

また、この発明の第2の例では、外側切り刃8と内側切り刃9の間に中間切り刃11を設けたので、切削屑を更に小さくして切削屑の排出を一段と向上させることができ、座ぐりに要する切削トルクの更なる削減が可能になる。   In the second example of the present invention, since the intermediate cutting blade 11 is provided between the outer cutting blade 8 and the inner cutting blade 9, it is possible to further reduce the cutting waste and further improve the discharge of the cutting waste. Further, the cutting torque required for counterbore can be further reduced.

なお、何れの例においても、頭部4の平面形状は図示に限定されるものではなく、三角形や四角形、各種異形のような最大径部と排出部を備えた形状を採用することができ、外側切り刃8と内側切り刃9及び中間切り刃11の設ける数も、例えば、頭部4の排出部6の数に合わせて設定すればよい。   In any example, the planar shape of the head 4 is not limited to the illustrated shape, and a shape having a maximum diameter portion and a discharge portion such as a triangle, a quadrangle, and various irregularities can be adopted. The number of outer cutting blades 8, inner cutting blades 9, and intermediate cutting blades 11 may be set in accordance with, for example, the number of discharge portions 6 of the head 4.

(A)は第1の例の頭部構造を有するネジの正面図、(B)は同横断底面図(A) is a front view of a screw having the head structure of the first example, and (B) is a transverse bottom view thereof. (A)は第1の例の頭部構造を示す上下反転した状態での斜視図、(B)は同上のネジを用いた締結状態の縦断面図(A) is a perspective view in a state where the head structure of the first example is turned upside down, (B) is a longitudinal sectional view of a fastening state using the same screw. (A)は第1の例の他の頭部構造を有するネジの正面図、(B)は同横断底面図(A) is a front view of a screw having another head structure of the first example, and (B) is a transverse bottom view thereof. (A)は第1の例の更に他の頭部構造を有するネジの正面図、(B)は同横断底面図(A) is a front view of a screw having still another head structure of the first example, and (B) is a transverse bottom view of the same. 第1の例の頭部構造を有するネジの内側切り刃に傾斜面を設けた例を示す斜視図The perspective view which shows the example which provided the inclined surface in the inner side cutting blade of the screw which has the head structure of a 1st example. (A)は第2の例の頭部構造を有するネジの正面図、(B)は同横断底面図(A) is a front view of a screw having the head structure of the second example, and (B) is a transverse bottom view of the same. (A)は比較例の頭部構造を有するネジの正面図、(B)は同横断底面図(A) is a front view of a screw having a head structure of a comparative example, and (B) is a transverse bottom view thereof. 比較例の頭部構造による板割れの発生状態を示す平面的な図Plan view showing the state of occurrence of plate cracking due to the head structure of the comparative example

符号の説明Explanation of symbols

1 ネジ
2 雄ねじ
3 シャンク部
4 頭部
5 テーパー部
6 排出部
7 最大径部
8 外側切り刃
9 内側切り刃
10 傾斜面
11 中間切り刃
DESCRIPTION OF SYMBOLS 1 Screw 2 Male screw 3 Shank part 4 Head part 5 Taper part 6 Discharge part 7 Maximum diameter part 8 Outer cutting blade 9 Inner cutting blade 10 Inclined surface 11 Intermediate cutting blade

Claims (4)

シャンク部(3)の一端側に設けた頭部(4)の外周に切削屑の排出部(6)を頭部(4)の最大外径よりも凹入するように形成し、上記頭部(4)の座面側に、頭部(4)の最大外径寄りの位置に配置した座ぐり用の外側切り刃(8)と、外側切り刃(8)に対してねじ込み回転方向の後方で排出部(6)と対応し、シャンク部(3)側に配置した座ぐり用の内側切り刃(9)を設け、上記外側切り刃(8)と内側切り刃(9)は、内側切り刃(9)の方がシャンク部(3)の軸方向への突出長さが長く、外側切り刃(8)と内側切り刃(9)のねじ込み回転方向の前方に向く面が、それぞれ、頭部(4)の軸心を通る半径方向の軸線に一致し、かつ、外側切り刃(8)による内側端の切削軌跡と内側切り刃(9)による外側端の切削軌跡が一致するか、外側切り刃(8)の切削軌跡と内側切り刃(9)の切削軌跡が部分的に重なるように設定されているネジの頭部構造。 The cutting waste discharging part (6) is formed in the outer periphery of the head part (4) provided on one end side of the shank part (3) so as to be recessed from the maximum outer diameter of the head part (4), On the seat surface side of (4), an outer cutting edge (8) for counterbore disposed at a position near the maximum outer diameter of the head (4), and a rear side in the screwing rotation direction with respect to the outer cutting edge (8) The inner cutting blade (9) for counterbore provided on the shank portion (3) side corresponding to the discharge portion (6) is provided, and the outer cutting blade (8) and the inner cutting blade (9) The blade (9) has a longer protruding length in the axial direction of the shank portion (3), and the surfaces of the outer cutting blade (8) and the inner cutting blade (9) facing forward in the screwing rotation direction are respectively heads. The cutting trajectory of the inner end by the outer cutting edge (8) and the cutting trajectory of the outer end by the inner cutting edge (9) that coincide with the radial axis passing through the axis of the section (4) Either match head of screw cutting trajectory of the cutting trajectory and the inner cutting edge of the outer cutting edge (8) (9) is set to overlap partially. シャンク部(3)の一端側に設けた頭部(4)の外周に切削屑の排出部(6)を頭部(4)の最大外径よりも凹入するように形成し、上記頭部(4)の座面側に、頭部(4)の最大外径寄りの位置に配置した座ぐり用の外側切り刃(8)と、外側切り刃(8)に対してねじ込み回転方向の後方で排出部(6)と対応し、シャンク部(3)側に配置した座ぐり用の内側切り刃(9)と、上記外側切り刃(8)と内側切り刃(9)の間に配置した中間切り刃(11)を設け、上記外側切り刃(8)と内側切り刃(9)及び中間切り刃(11)は、内側切り刃(9)がシャンク部(3)の軸方向への突出長さが最も長く、中間切り刃(11)はシャンク部(3)の軸方向への突出長さが外側切り刃(8)と同等かそれよりも長く設定され、上記外側切り刃(8)と内側切り刃(9)及び中間切り刃(11)のねじ込み回転方向の前方に向く面が、それぞれ、頭部(4)の軸心を通る半径方向の軸線に一致し、かつ、外側切り刃(8)による内側端の切削軌跡と中間切り刃(11)による外側端の切削軌跡及び、中間切り刃(11)による内側端の切削軌跡と内側切り刃(9)による外側端の切削軌跡が一致するか、外側切り刃(8)の切削軌跡と内側切り刃(9)の切削軌跡が部分的に重なるように設定されているネジの頭部構造。 The cutting waste discharging part (6) is formed in the outer periphery of the head part (4) provided on one end side of the shank part (3) so as to be recessed from the maximum outer diameter of the head part (4), On the seat surface side of (4), an outer cutting edge (8) for counterbore disposed at a position near the maximum outer diameter of the head (4), and a rear side in the screwing rotation direction with respect to the outer cutting edge (8) Corresponding to the discharge part (6) and arranged between the inner cutting edge (9) for counterbore arranged on the shank part (3) side, and between the outer cutting edge (8) and the inner cutting edge (9). An intermediate cutting blade (11) is provided, and the outer cutting blade (8), the inner cutting blade (9), and the intermediate cutting blade (11) have an inner cutting blade (9) protruding in the axial direction of the shank portion (3). The longest length of the intermediate cutting blade (11) is set so that the protruding length in the axial direction of the shank portion (3) is equal to or longer than that of the outer cutting blade (8). The front-facing surfaces of the cutting blade (8), the inner cutting blade (9), and the intermediate cutting blade (11) facing the front in the rotational direction of rotation coincide with the radial axis passing through the axis of the head (4), Further, the cutting trajectory of the inner end by the outer cutting edge (8), the cutting trajectory of the outer end by the intermediate cutting edge (11), and the cutting trajectory of the inner end by the intermediate cutting edge (11) and the outer side by the inner cutting edge (9). The head structure of the screw set so that the cutting trajectories at the ends coincide or the cutting trajectory of the outer cutting edge (8) and the cutting trajectory of the inner cutting edge (9) partially overlap. シャンク部(3)の一端側に設けた頭部(4)の外周に切削屑の排出部(6)を頭部(4)の最大外径よりも凹入するように形成し、上記頭部(4)の座面側に、頭部(4)の最大外径寄りの位置に配置した座ぐり用の外側切り刃(8)と、外側切り刃(8)に対してねじ込み回転方向の後方で排出部(6)と対応し、シャンク部(3)側に配置した座ぐり用の内側切り刃(9)を設け、上記外側切り刃(8)と内側切り刃(9)は、内側切り刃(9)の方がシャンク部(3)の軸方向への突出長さが長く、外側切り刃(8)と内側切り刃(9)のねじ込み回転方向の前方に向く面が、外側切り刃(8)は頭部(4)の軸心を通る半径方向の軸線に対して頭部(4)の外周から内側に向けてねじ込み回転方向の後方へ下がり傾斜になり、内側切り刃(9)は上記軸線に対してシャンク部(3)側から外側に向けてねじ込み回転方向の後方へ下がり傾斜になり、かつ、外側切り刃(8)による内側端の切削軌跡と内側切り刃(9)による外側端の切削軌跡が一致するか、外側切り刃(8)の切削軌跡と内側切り刃(9)の切削軌跡が部分的に重なるように設定されているネジの頭部構造。 The cutting waste discharging part (6) is formed in the outer periphery of the head part (4) provided on one end side of the shank part (3) so as to be recessed from the maximum outer diameter of the head part (4), On the seat surface side of (4), an outer cutting edge (8) for counterbore disposed at a position near the maximum outer diameter of the head (4), and a rear side in the screwing rotation direction with respect to the outer cutting edge (8) The inner cutting blade (9) for counterbore provided on the shank portion (3) side corresponding to the discharge portion (6) is provided, and the outer cutting blade (8) and the inner cutting blade (9) The blade (9) has a longer protruding length in the axial direction of the shank portion (3), and the surface of the outer cutting blade (8) and the inner cutting blade (9) facing forward in the screwing rotation direction is the outer cutting blade. (8) is inclined downwardly to the rear in the screwing rotation direction from the outer periphery of the head (4) to the inside with respect to the radial axis passing through the axis of the head (4), The cutting edge (9) is inclined downward with respect to the axis line from the shank (3) side toward the outside in the screwing rotation direction, and the cutting locus of the inner end and the inner cutting edge by the outer cutting edge (8). Screw head structure set so that the cutting trajectory of the outer edge by the blade (9) matches or the cutting trajectory of the outer cutting blade (8) and the cutting trajectory of the inner cutting blade (9) partially overlap. . 上記内側切り刃(9)の頭部(4)と反対側の先端で外側コーナを傾斜面(10)に形成した請求項1乃至3の何れかに記載のネジの頭部構造。   The screw head structure according to any one of claims 1 to 3, wherein an outer corner is formed on the inclined surface (10) at a tip opposite to the head (4) of the inner cutting blade (9).
JP2003349583A 2003-10-08 2003-10-08 Screw head structure Expired - Fee Related JP4283082B2 (en)

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