JP4628403B2 - Axial pin tumbler lock with defense mechanism - Google Patents

Axial pin tumbler lock with defense mechanism Download PDF

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JP4628403B2
JP4628403B2 JP2007175867A JP2007175867A JP4628403B2 JP 4628403 B2 JP4628403 B2 JP 4628403B2 JP 2007175867 A JP2007175867 A JP 2007175867A JP 2007175867 A JP2007175867 A JP 2007175867A JP 4628403 B2 JP4628403 B2 JP 4628403B2
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pin
defense
tumbler
key
magazine
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JP2009013644A (en
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慶 佐々木
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Takigen Manufacturing Co Ltd
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本発明は、固定本体側のボトムピンとローター側のタンブラピンが軸方向に配置され、キーの筒状部外周面に操作段部が軸方向に形成された軸方向ピンタンブラー錠に関する。 The present invention relates to an axial pin tumbler lock in which a bottom pin on a fixed body side and a tumbler pin on a rotor side are arranged in an axial direction, and an operation step portion is formed in an axial direction on an outer peripheral surface of a cylindrical portion of a key.

固定本体の円筒状空洞部の底側にステーターを配置し、ステーターの中心部に軸受孔を軸方向に形成し、ステーターの前面より複数個のボトムピン孔を同一円周上に配置して軸方向に形成し、円筒状空洞部に回転可能にローターを収容したローターの後方部の施錠軸部を前記軸受孔に嵌挿し、ローターのマガジン部に複数個のタンブラーピン孔を軸方向に形成し、相連通する前記タンブラーピン孔とボトムピン孔に、キーコードに対応して長さを個別設定されたタンブラーピンとバネで前進付勢されたボトムピンを収容し、固定本体1の内向き段差部の背面にタンブラーピンの前端を当接させ、内向き段差部の内周面とローターの前端部外周面との間に環状キー孔を形成し、前記内向き段差部の内周面に前記環状キー孔に開口する位置決め溝を軸方向に形成し、ローターの前端部外周面に受動溝を軸方向に形成し、キーの筒状部の先端部外周面に、前記位置決め溝に嵌められる位置決め突起と前記タンブラーピンの前端を押す操作段部を形成し、前記筒状部の先端部内周面に前記受動溝に嵌められる駆動突起を設け、前記各操作段部に個別設定された深さに対応して、全てのタンブラーピンとボトムピンの当接点を、ステーターとマガジン部とのシャーライン上に移動させるようにした軸方向ピンタンブラー錠は既に知られている(特許文献1及び特許文献2参照)。 A stator is arranged on the bottom side of the cylindrical cavity of the fixed body, a bearing hole is formed in the axial direction in the center of the stator, and a plurality of bottom pin holes are arranged on the same circumference from the front surface of the stator. Formed into a cylindrical cavity, and a locking shaft portion of the rear portion of the rotor that rotatably accommodates the rotor is fitted into the bearing hole, and a plurality of tumbler pin holes are formed in the axial direction in the magazine portion of the rotor, The tumbler pin hole and the bottom pin hole that communicate with each other accommodate a tumbler pin whose length is individually set corresponding to the key cord and a bottom pin that is forward-biased by a spring. The front end of the tumbler pin is brought into contact, an annular key hole is formed between the inner peripheral surface of the inward stepped portion and the outer peripheral surface of the front end portion of the rotor, and the annular key hole is formed on the inner peripheral surface of the inward stepped portion. Opening positioning groove It is formed in the axial direction, a passive groove is formed in the axial direction on the outer peripheral surface of the front end portion of the rotor, and the positioning projection fitted into the positioning groove and the front end of the tumbler pin are pushed on the outer peripheral surface of the cylindrical portion of the key All the tumbler pins and bottom pins corresponding to the depths individually set in the respective operation step portions are formed by forming operation step portions and providing driving projections fitted in the passive grooves on the inner peripheral surface of the tip portion of the cylindrical portion. An axial pin tumbler lock in which the contact point is moved on the shear line between the stator and the magazine is already known (see Patent Document 1 and Patent Document 2).

このような軸方向ピンタンブラー錠は、タンブラーピンの前端の約半分が環状キー孔に露出しているため、キーの筒状部を模した円筒体の外周面に、タンブラーピンの本数と同数のスライド部材を装備してあるピッキング用具が不正に作製されており、ローターに回転テンションをかけながら各スライド部材を軸方向に進退させることによって、解錠状態を作り出すことが行なわれている。 In such an axial pin tumbler lock, about half of the front end of the tumbler pin is exposed in the annular key hole, so that the number of tumbler pins is the same as the number of tumbler pins on the outer peripheral surface of the cylindrical body simulating the cylindrical portion of the key. A picking tool equipped with a slide member has been illegally produced, and an unlocked state is created by advancing and retracting each slide member in the axial direction while applying rotational tension to the rotor.

実公昭56−38123号公報Japanese Utility Model Publication No. 56-38123 実公平7−21774号公報Japanese Utility Model Publication No. 7-21774

本発明の課題は、ピッキング操作が非常に困難である防御機構付きピンタンブラー錠を提供する。 An object of the present invention is to provide a pin tumbler lock with a defense mechanism that is very difficult to perform a picking operation.

請求項1に係る発明の主たる特徴は、固定本体1の円筒状空洞部2の底側にステーター3を配置し、前記ステーター3の中心部に軸受孔4を軸方向に形成し、前記ステーター3の前面より複数個のボトムピン孔5を同一円周上に配置して軸方向に形成し、前記円筒状空洞部2にローター6を回転可能に収容し、前記ローター6の後方部の施錠軸部7を前記軸受孔4に嵌挿し、前記ローター6の中間部のマガジン部8に複数個のタンブラーピン孔9を軸方向に形成し、相連通する前記タンブラーピン孔9と前記ボトムピン孔5に、キーコードに対応して長さを個別設定されたタンブラーピン10とバネ12で前進付勢されたボトムピン11を収容し、前記固定本体1の内向き段差部13の背面に前記タンブラーピン10の前端を当接させ、前記内向き段差部13の内周面と前記ローター6の前端部14の外周面との間に環状キー孔15を形成し、前記内向き段差部13の内周面に前記環状キー孔15に開口する位置決め溝16を軸方向に形成し、前記ロータ6の前端部14の外周面に受動溝17を軸方向に形成し、キー18の筒状部19の先端部外周面に、前記位置決め溝16に嵌められる位置決め突起20と前記タンブラーピン14の前端を押す操作段部21を形成し、前記筒状部19の先端部内周面に前記受動溝17に嵌められる駆動突起22を設け、前記各操作段部21に個別設定された深さに対応して、全ての前記タンブラーピン10と前記ボトムピン11の当接点を前記ステーター3と前記マガジン部8とのシャーライン上に移動させるようにした軸方向ピンタンブラー錠において、
前記固定本体1に前記ローター6の前端部14の前方向に超えた延長部1aを形成し、前記キー18の筒状部19に固定本体1の前記延長部1aに対応して延伸部19aを形成し、前記延長部1aの円筒状空洞部2aに防御マガジン23を回転可能に配置し、前記防御マガジン23の中心部に円形状のキー挿通孔24を軸方向に形成し、前記タンブラーピン10の前端が当接する前記内向き段差部13を前記防御マガジン23の基端部分に形成し、前記位置決め溝16を前記防御マガジン23の内周面に形成し、前記延長部1aに複数個の駆動ピン孔25を半径方向に形成し、前記防御マガジン23に前記駆動ピン孔25に対応させて防御ピン孔26を半径方向に形成し、前記駆動ピン孔25と前記防御ピン孔26に、キーコードに対応して長さを個別設定された防御ピン27とバネ29で求心方向に付勢された駆動ピン28を収容し、前記複数本のタンブラーピン10を前記複数本の防御ピン27の真後ろの位置に配置し、キー18の前記延伸部19aの外周面に前記防御ピン孔26に対面させて環状凹部30を形成し、前記キー18の最終挿入位置において前記位置決め突起20を前記位置決め溝16の末端部より突出させる一方、前記駆動突起22を前記受動溝18に係合させ、前記環状凹部30に個別設定された深さに対応して、全ての前記防御ピン27と前記駆動ピン28の当接点を前記防御マガジン23と固定本体1の前記延長部1aとのシャーライン上に移動させるようにしたことである。
The main feature of the invention according to claim 1 is that a stator 3 is disposed on the bottom side of the cylindrical cavity 2 of the fixed body 1, a bearing hole 4 is formed in the axial direction in the center of the stator 3, and the stator 3 A plurality of bottom pin holes 5 are arranged on the same circumference from the front surface of the rotor and are formed in the axial direction. A rotor 6 is rotatably accommodated in the cylindrical cavity 2, and a locking shaft portion at the rear of the rotor 6 7 is inserted into the bearing hole 4, a plurality of tumbler pin holes 9 are formed in the magazine portion 8 in the middle of the rotor 6 in the axial direction, and the tumbler pin holes 9 and the bottom pin holes 5 communicate with each other. A tumbler pin 10 whose length is individually set corresponding to the key code and a bottom pin 11 which is forwardly urged by a spring 12 are accommodated, and a front end of the tumbler pin 10 is provided on the back surface of the inwardly stepped portion 13 of the fixed body 1. Abut An annular key hole 15 is formed between the inner peripheral surface of the facing step portion 13 and the outer peripheral surface of the front end portion 14 of the rotor 6, and opens in the annular key hole 15 on the inner peripheral surface of the inward step portion 13. The positioning groove 16 is formed in the axial direction, the passive groove 17 is formed in the outer peripheral surface of the front end portion 14 of the rotor 6 in the axial direction, and the positioning groove 16 is formed on the outer peripheral surface of the distal end portion of the cylindrical portion 19 of the key 18. A positioning projection 20 to be fitted and an operation step portion 21 for pushing the front end of the tumbler pin 14 are formed, and a driving projection 22 to be fitted to the passive groove 17 is provided on the inner peripheral surface of the distal end portion of the cylindrical portion 19. Axial pins adapted to move the contact points of all the tumbler pins 10 and the bottom pins 11 on the shear lines of the stator 3 and the magazine portion 8 corresponding to the depths individually set in the portions 21. Tumbler tablets Oite,
An extension portion 1 a that extends in the forward direction of the front end portion 14 of the rotor 6 is formed on the fixed body 1, and an extension portion 19 a corresponding to the extension portion 1 a of the fixed body 1 is formed on the cylindrical portion 19 of the key 18. The defense magazine 23 is rotatably arranged in the cylindrical hollow portion 2a of the extension portion 1a, and a circular key insertion hole 24 is formed in the center of the defense magazine 23 in the axial direction. The tumbler pin 10 The inwardly stepped portion 13 with which the front end of the protective magazine 23 abuts is formed in the proximal end portion of the defense magazine 23, the positioning groove 16 is formed on the inner peripheral surface of the defense magazine 23, and a plurality of drives are provided on the extension portion 1 a. A pin hole 25 is formed in the radial direction, a defense pin hole 26 is formed in the defense magazine 23 corresponding to the drive pin hole 25 in the radial direction, and a key code is formed in the drive pin hole 25 and the defense pin hole 26. In response to The accommodating a biased drive pin 28 in the centripetal direction in defense pin 27 and the spring 29 is individually set, place the tumbler pins 10 of the plurality of the positions right behind said plurality of protection pin 27 is, An annular recess 30 is formed on the outer peripheral surface of the extending portion 19 a of the key 18 so as to face the defense pin hole 26, and the positioning protrusion 20 protrudes from the end portion of the positioning groove 16 at the final insertion position of the key 18. On the other hand, the drive protrusions 22 are engaged with the passive grooves 18, and the contact points of all the defense pins 27 and the drive pins 28 are set in the defense magazine corresponding to the depths individually set in the annular recesses 30. 23 and the extension part 1a of the fixed body 1 are moved on a shear line.

請求項2に係る発明の主たる特徴は、固定本体1の円筒状空洞部2の底側にステーター3を配置し、前記ステーター3の中心部に軸受孔4を軸方向に形成し、前記ステーター3の前面より複数個のボトムピン孔5を同一円周上に配置して軸方向に形成し、前記円筒状空洞部2にローター6を回転可能に収容し、前記ローター6の後方部の施錠軸部7を前記軸受孔4に嵌挿し、前記ローター6の中間部のマガジン部8に複数個のタンブラーピン孔9を軸方向に形成し、相連通する前記タンブラーピン孔9と前記ボトムピン孔5に、キーコードに対応して長さを個別設定されたタンブラーピン10とバネ12で前進付勢されたボトムピン11を収容し、前記固定本体1の内向き段差部13の背面に前記タンブラーピン10の前端を当接させ、前記内向き段差部13の内周面と前記ローター6の前端部14の外周面との間に環状キー孔15を形成し、前記内向き段差部13の内周面に前記環状キー孔15に開口する位置決め溝16を軸方向に形成し、前記ロータ6の前端部14の外周面に受動溝17を軸方向に形成し、キー18の筒状部19の先端部外周面に、前記位置決め溝16に嵌められる位置決め突起20と前記タンブラーピン14の前端を押す操作段部21を形成し、前記筒状部19の先端部内周面に前記受動溝17に嵌められる駆動突起22を設け、前記各操作段部21に個別設定された深さに対応して、全ての前記タンブラーピン10と前記ボトムピン11の当接点を前記ステーター3と前記マガジン部8とのシャーライン上に移動させるようにした軸方向ピンタンブラー錠において、
前記固定本体1に前記ローター6の前端部14の前方向に超えた延長部1aを形成し、前記キー18の筒状部19に固定本体1の前記延長部1aに対応して延伸部19aを形成し、前記延長部1aの円筒状空洞部2aに防御マガジン23を回転可能に配置し、前記防御マガジン23の中心部に円形状のキー挿通孔24を軸方向に形成し、前記タンブラーピン10の前端が当接する前記内向き段差部13を前記防御マガジン23の基端部分に形成し、前記位置決め溝16を前記防御マガジン23の内周面に形成し、前記延長部1aに複数個の駆動ピン孔25を半径方向に形成し、前記防御マガジン23に前記駆動ピン孔25に対応させて防御ピン孔26を半径方向に形成し、前記駆動ピン孔25と前記防御ピン孔26に、キーコードに対応して長さを個別設定された防御ピン27とバネ29で求心方向に付勢された駆動ピン28を収容し、前記複数本のタンブラーピン10を前記複数本の防御ピン27の真後ろの位置に配置し、キー18の前記延伸部19aの外周面に前記防御ピン孔26に対面させて環状凹部30を形成し、前記キー18の最終挿入位置において、前記位置決め突起20を前記位置決め溝16に係合させる一方、前記駆動突起22を前記受動溝18に係合させ、前記環状凹部30に個別設定された深さに対応して、全ての前記防御ピン27と前記駆動ピン28の当接点を前記防御マガジン23と固定本体1の前記延長部1aとのシャーライン上に移動させるようにしたことである。
The main feature of the invention according to claim 2 is that the stator 3 is disposed on the bottom side of the cylindrical cavity portion 2 of the fixed main body 1, the bearing hole 4 is formed in the axial direction in the center portion of the stator 3, and the stator 3 A plurality of bottom pin holes 5 are arranged on the same circumference from the front surface of the rotor and are formed in the axial direction. A rotor 6 is rotatably accommodated in the cylindrical cavity 2, and a locking shaft portion at the rear of the rotor 6 7 is inserted into the bearing hole 4, a plurality of tumbler pin holes 9 are formed in the magazine portion 8 in the middle of the rotor 6 in the axial direction, and the tumbler pin holes 9 and the bottom pin holes 5 communicate with each other. A tumbler pin 10 whose length is individually set corresponding to the key code and a bottom pin 11 which is forwardly urged by a spring 12 are accommodated, and a front end of the tumbler pin 10 is provided on the back surface of the inwardly stepped portion 13 of the fixed body 1. Abut An annular key hole 15 is formed between the inner peripheral surface of the facing step portion 13 and the outer peripheral surface of the front end portion 14 of the rotor 6, and opens in the annular key hole 15 on the inner peripheral surface of the inward step portion 13. The positioning groove 16 is formed in the axial direction, the passive groove 17 is formed in the outer peripheral surface of the front end portion 14 of the rotor 6 in the axial direction, and the positioning groove 16 is formed on the outer peripheral surface of the distal end portion of the cylindrical portion 19 of the key 18. A positioning projection 20 to be fitted and an operation step portion 21 for pushing the front end of the tumbler pin 14 are formed, and a driving projection 22 to be fitted to the passive groove 17 is provided on the inner peripheral surface of the distal end portion of the cylindrical portion 19. Axial pins adapted to move the contact points of all the tumbler pins 10 and the bottom pins 11 on the shear lines of the stator 3 and the magazine portion 8 corresponding to the depths individually set in the portions 21. Tumbler tablets Oite,
An extension portion 1 a that extends in the forward direction of the front end portion 14 of the rotor 6 is formed on the fixed body 1, and an extension portion 19 a corresponding to the extension portion 1 a of the fixed body 1 is formed on the cylindrical portion 19 of the key 18. The defense magazine 23 is rotatably arranged in the cylindrical hollow portion 2a of the extension portion 1a, and a circular key insertion hole 24 is formed in the center of the defense magazine 23 in the axial direction. The tumbler pin 10 The inwardly stepped portion 13 with which the front end of the protective magazine 23 abuts is formed in the proximal end portion of the defense magazine 23, the positioning groove 16 is formed on the inner peripheral surface of the defense magazine 23, and a plurality of drives are provided on the extension portion 1 a. A pin hole 25 is formed in the radial direction, a defense pin hole 26 is formed in the defense magazine 23 corresponding to the drive pin hole 25 in the radial direction, and a key code is formed in the drive pin hole 25 and the defense pin hole 26. In response to The accommodating a biased drive pin 28 in the centripetal direction in defense pin 27 and the spring 29 is individually set, place the tumbler pins 10 of the plurality of the positions right behind said plurality of protection pin 27 is, An annular recess 30 is formed on the outer peripheral surface of the extended portion 19a of the key 18 so as to face the defense pin hole 26, and the positioning protrusion 20 is engaged with the positioning groove 16 at the final insertion position of the key 18. The drive protrusions 22 are engaged with the passive grooves 18, and the contact points of all the defense pins 27 and the drive pins 28 corresponding to the depths individually set in the annular recesses 30 are defined in the defense magazine 23. It is made to move on the shear line with the said extension part 1a of the fixed main body 1.

請求項1の発明に係る軸方向タンブラー錠では、所定のキーコードに従って操作段部21と環状凹部30を筒状部19と延伸部19aに形成してあるキー18を使用したときには、前記キー18の最終挿入位置において、各操作段部21の深さに対応して全てのタンブラーピン10とボトムピン11の当接点がステーター3とマガジン部8とのシャーライン上に移動する一方、環状凹部30の深さに対応して全ての防御ピン27と駆動ピン28の当接点が回転マガジン23と固定本体1の延長部1aとのシャーライン上に移動しており、このときにはキー18側の位置決め突起20が防御マガジン23側の位置決め溝16より突出している一方、キー18側の駆動突起22がローター6側の受動溝17に係合しているため、キー18を回転操作することによって、ローター6が同方向に回転させられ、施錠軸部7に装着した施錠部材による施解錠が実行される。 In the axial tumbler lock according to the first aspect of the present invention, when the key 18 having the operation step portion 21 and the annular recess 30 formed in the cylindrical portion 19 and the extending portion 19a according to a predetermined key code is used, the key 18 At the final insertion position, the contact points of all the tumbler pins 10 and the bottom pins 11 move on the shear line between the stator 3 and the magazine portion 8 corresponding to the depth of each operation step portion 21, while the annular recess 30 The contact points of all the defense pins 27 and the drive pins 28 are moved on the shear line between the rotary magazine 23 and the extension 1a of the fixed body 1 corresponding to the depth. At this time, the positioning projection 20 on the key 18 side. rotation Misao There while protrudes from the positioning groove 16 of the defense magazine 23 side, the driving projections 22 of the key 18 side is engaged with the passive groove 17 of the rotor 6 side, a key 18 By, the rotor 6 is rotated in the same direction, unlocking by the locking member mounted on the locking shaft portion 7 is executed.

しかしながら、所定のキーコードに従って操作段部21と環状凹部30を形成してあるキー18を使用しないときには、前記キー18の最終挿入位置において、全てのタンブラーピン10とボトムピン11の当接点がステーター3とマガジン部8とのシャーライン上に移動しない一方、全ての防御ピン27と駆動ピン28の当接点が回転マガジン23と固定本体1の延長部1aとのシャーライン上に移動しないため、駆動突起22が受動溝17に係合していても、キー18によってローター6を回転させることができない。 However, when the key 18 having the operation step portion 21 and the annular recess 30 formed in accordance with a predetermined key code is not used, the contact points of all the tumbler pins 10 and the bottom pins 11 are the stator 3 at the final insertion position of the key 18. Since the contact points of all the defense pins 27 and the drive pins 28 do not move on the shear line between the rotating magazine 23 and the extension 1a of the fixed body 1, the drive protrusions are not moved. Even if 22 is engaged with the passive groove 17 , the rotor 6 cannot be rotated by the key 18.

上記したような従前のピッキング用具の使用によって、全てのタンブラーピン10とボトムピン11の当接点をステーター3とマガジン部8とのシャーライン上に移動させようとしても、防御マガジン23のキー挿通孔24に突出している防御ピン27によってピッキング用具の筒状体の挿入が阻止されるため、ピッキング用具はタンブラーピン10に真正面方向からアクセスすることができない。
防御機構を構成している前記防御ピン27と本来のタンブラーピン10の配列方向は、前者が防御マガジン23の半径方向であるのに対して、後者がローター6の軸方向であり、90度位相の違った方向に配置されているため、同時に防御ピン27とタンブラーピン10にアクセスしてそれぞれを所定の距離だけ移動させるピッキング操作は非常に困難であり、請求項1の発明によれば、防御性能の高いピンタンブラー錠が得られる。
また、前記複数本のタンブラーピン10は前記複数本の防御ピン27の真後ろの位置に配置されているので、前記各タンブラーピン10へのピッキング操作が邪魔され、防御性能がその分だけ向上する。
Even if it is attempted to move the contact points of all the tumbler pins 10 and the bottom pins 11 on the shear line between the stator 3 and the magazine portion 8 by using the conventional picking tool as described above, the key insertion hole 24 of the defense magazine 23 is used. Therefore, the picking tool cannot access the tumbler pin 10 from the front direction.
The arrangement direction of the defense pins 27 and the original tumbler pins 10 constituting the defense mechanism is that the former is the radial direction of the defense magazine 23, whereas the latter is the axial direction of the rotor 6, and the phase is 90 degrees. Therefore, it is very difficult to perform a picking operation in which the defense pin 27 and the tumbler pin 10 are simultaneously accessed and moved by a predetermined distance. High performance pin tumbler tablets can be obtained.
Further, since the plurality of tumbler pins 10 are arranged at positions immediately behind the plurality of defense pins 27, the picking operation to each of the tumbler pins 10 is obstructed, and the defense performance is improved accordingly.

請求項2の発明に係る軸方向タンブラー錠では、所定のキーコードに従って操作段部21と環状凹部30を筒状部19と延伸部19aに形成してあるキー18を使用したときには、前記キー18の最終挿入位置において、各操作段部21の深さに対応して全てのタンブラーピン10とボトムピン11の当接点がステーター3とマガジン部8とのシャーライン上に移動する一方、環状凹部30の深さに対応して全ての防御ピン27と駆動ピン28の当接点が回転マガジン23と固定本体1の延長部1aとのシャーライン上に移動しており、このときにはキー18側の位置決め突起20が防御マガジン23側の位置決め溝16に係合している一方、キー18側の駆動突起22がローター6側の受動溝17に係合しているため、キー18を回転操作することによって、防御マガジン27とローター6が同方向に回転させられ、施錠軸部7に装着した施錠部材による施解錠が実行される。 In the axial tumbler lock according to the invention of claim 2, when the key 18 having the operation step portion 21 and the annular recess 30 formed in the cylindrical portion 19 and the extending portion 19a according to a predetermined key code is used, the key 18 At the final insertion position, the contact points of all the tumbler pins 10 and the bottom pins 11 move on the shear line between the stator 3 and the magazine portion 8 corresponding to the depth of each operation step portion 21, while the annular recess 30 The contact points of all the defense pins 27 and the drive pins 28 are moved on the shear line between the rotary magazine 23 and the extension 1a of the fixed body 1 corresponding to the depth. At this time, the positioning projection 20 on the key 18 side. rotation operation but while engaged with the positioning groove 16 of the defense magazine 23 side, the driving projections 22 of the key 18 side is engaged with the passive groove 17 of the rotor 6 side, a key 18 By Rukoto, protection magazine 27 and the rotor 6 is rotated in the same direction, unlocking by the locking member mounted on the locking shaft portion 7 is executed.

しかしながら、所定のキーコードに従って操作段部21と環状凹部30を形成してあるキー18を使用しないときには、前記キー18の最終挿入位置において、全てのタンブラーピン10とボトムピン11の当接点がステーター3とマガジン部8とのシャーライン上に移動しない一方、全ての防御ピン27と駆動ピン28の当接点が回転マガジン23と固定本体1の延長部1aとのシャーライン上に移動しないため、位置決め突起20が位置決め溝16に係合し、駆動突起22が受動溝17に係合していても、キー18によって防御マガジン27とローター6を回転させることができない。 However, when the key 18 having the operation step portion 21 and the annular recess 30 formed in accordance with a predetermined key code is not used, the contact points of all the tumbler pins 10 and the bottom pins 11 are the stator 3 at the final insertion position of the key 18. Since the contact points of all the protection pins 27 and the drive pins 28 do not move on the shear line between the rotary magazine 23 and the extension 1a of the fixed body 1, the positioning protrusions do not move. Even if 20 is engaged with the positioning groove 16 and the drive protrusion 22 is engaged with the passive groove 17 , the defense magazine 27 and the rotor 6 cannot be rotated by the key 18.

上記したような従前のピッキング用具の使用によって、全てのタンブラーピン10とボトムピン11の当接点をステーター3とマガジン部8とのシャーライン上に移動させようとしても、防御マガジン23のキー挿通孔24に突出している防御ピン27によってピッキング用具の筒状体の挿入が阻止されるため、ピッキング用具はタンブラーピン10に真正面方向からアクセスすることができない。
防御機構を構成している前記防御ピン27と本来のタンブラーピン10の配列方向は、前者が防御マガジン23の半径方向であるのに対して、後者がローター6の軸方向であり、90度位相の違った方向に配置されているため、同時に防御ピン27とタンブラーピン10にアクセスしてそれぞれを所定の距離だけ移動させるピッキング操作は非常に困難であり、請求項2の発明によれば、防御性能の高いピンタンブラー錠が得られる。
また、前記複数本のタンブラーピン10は前記複数本の防御ピン27の真後ろの位置に配置されているので、前記各タンブラーピン10へのピッキング操作が邪魔され、防御性能がその分だけ向上する。
Even if it is attempted to move the contact points of all the tumbler pins 10 and the bottom pins 11 on the shear line between the stator 3 and the magazine portion 8 by using the conventional picking tool as described above, the key insertion hole 24 of the defense magazine 23 is used. Therefore, the picking tool cannot access the tumbler pin 10 from the front direction.
The arrangement direction of the defense pins 27 and the original tumbler pins 10 constituting the defense mechanism is that the former is the radial direction of the defense magazine 23, whereas the latter is the axial direction of the rotor 6, and the phase is 90 degrees. Therefore, it is very difficult to perform a picking operation in which the defense pin 27 and the tumbler pin 10 are simultaneously accessed and moved by a predetermined distance. High performance pin tumbler tablets can be obtained.
Further, since the plurality of tumbler pins 10 are arranged at positions immediately behind the plurality of defense pins 27, the picking operation to each of the tumbler pins 10 is obstructed, and the defense performance is improved accordingly.

図1から図6に示した請求項1の発明の実施例と、図7から図12に示した請求項2の発明の実施例のいずれにおいても、固定本体1と別体に構成されたステーター3は固定本体1の後端空洞部に嵌め込まれ、半径方向の固定ビス31によって固定本体1に対して固定されている。固定本体1は取付け対象物例えば機器ボックスの扉32の取付孔33に前面側から嵌挿され、外周段差面34を扉32の前面に当接させた状態で、後端部の外周ねじ部35に螺合した六角ナット36によって扉32に締め付け固定されている。ステーター3の軸受孔4に嵌挿されたロータ6の施錠軸部7は、固定本体1の後面側に突出しており、施錠軸部7の後端角軸部37には施錠板38が嵌められ、施錠板38は六角ボルト39によって施錠軸部7に固着されている。防御マガジン23は別途手段によって前方移動を規制されている。 1 to 6 and the embodiment of the invention of claim 2 shown in FIGS. 7 to 12, the stator constituted separately from the fixed body 1. 3 is fitted into the rear end cavity of the fixed body 1 and is fixed to the fixed body 1 by a fixing screw 31 in the radial direction. The fixed main body 1 is fitted into the mounting object 33, for example, the mounting hole 33 of the door 32 of the equipment box from the front side, and the outer peripheral threaded portion 35 at the rear end in a state where the outer peripheral step surface 34 is in contact with the front surface of the door 32. It is fastened and fixed to the door 32 by a hexagon nut 36 that is screwed onto the door 32. The locking shaft portion 7 of the rotor 6 fitted in the bearing hole 4 of the stator 3 protrudes to the rear surface side of the fixed body 1, and a locking plate 38 is fitted to the rear end corner shaft portion 37 of the locking shaft portion 7. The locking plate 38 is fixed to the locking shaft portion 7 by hexagon bolts 39. The forward movement of the defense magazine 23 is restricted by another means.

ボトムピン11を前進方向に付勢するバネ12は圧縮コイルバネで構成され、駆動ピン28を求心方向に付勢するバネ19も圧縮コイルバネで構成されている。ボトムピン孔5はステーター3を貫通しないように形成されているため、バネ12の末端部はボトムピン孔の底面で支持されている。駆動ピン孔25は固定本体1の延長部1aに貫通して形成されているため、駆動ピン孔25の開口端部にバネ支持部材40が嵌め込み固定されている。 The spring 12 that urges the bottom pin 11 in the forward direction is constituted by a compression coil spring, and the spring 19 that urges the drive pin 28 in the centripetal direction is also constituted by a compression coil spring. Since the bottom pin hole 5 is formed so as not to penetrate the stator 3, the end of the spring 12 is supported by the bottom surface of the bottom pin hole. Since the drive pin hole 25 is formed so as to penetrate through the extension 1 a of the fixed body 1, the spring support member 40 is fitted and fixed to the open end of the drive pin hole 25.

防御ピン27は、45度間隔を置いて放射状に7本設けられているが、防御ピン27の配置角度と本数はこれに限定されるものではなく、要求される防御性能レベルに対応して増減することができる。タンブラーピン10は45度間隔を置いて同一円周上に7本設けられているが、これも適宜増減することができる。図示の各実施例では、タンブラーピン10は防御ピン27の真後ろの位置に配置されている。これによってタンブラーピン10へのピッキング操作が邪魔され、防御性能がその分だけ向上する。
また、図示の各実施例のように防御ピン27を防御マガジン23の軸方向に沿って複数の異なる断面上に配置したときには、防御性能が格段に向上する。この防御ピン27の配置断面数は図示のものに限定されるものではなく、適宜増減することができる。
Although seven defense pins 27 are provided in a radial manner at intervals of 45 degrees, the arrangement angle and the number of the defense pins 27 are not limited to this, and increase or decrease corresponding to the required defense performance level. can do. Seven tumbler pins 10 are provided on the same circumference at intervals of 45 degrees, but this can be increased or decreased as appropriate. In each of the illustrated embodiments, the tumbler pin 10 is disposed at a position immediately behind the defense pin 27. As a result, the picking operation to the tumbler pin 10 is obstructed, and the defense performance is improved accordingly.
Further, when the defense pins 27 are arranged on a plurality of different cross sections along the axial direction of the defense magazine 23 as in the illustrated embodiments, the defense performance is significantly improved. The number of cross-sections of the defense pins 27 is not limited to that shown in the figure, and can be increased or decreased as appropriate.

ローター6の中間部のマガジン部8は、防御マガジン23の後端部の拡径空洞部41に嵌め込まれている。キー18が防御マガジン23のキー挿通孔24から抜き取られている施錠状態では、ボトムピン11の前端部がタンブラピン孔9に入り込んでいるため、ロータ6はステーター3に対して回転不能に拘束されている。また、前記施錠状態では、駆動ピン28の内側端部が防御ピン孔26に入り込んでいるため、防御マガジン23は固定本体1の延長部1aに対して回転不能に拘束されている。 The magazine portion 8 at the middle portion of the rotor 6 is fitted into the enlarged diameter cavity portion 41 at the rear end portion of the defense magazine 23. In the locked state in which the key 18 is removed from the key insertion hole 24 of the defense magazine 23, the front end portion of the bottom pin 11 enters the tumbler pin hole 9, so that the rotor 6 is restrained so as not to rotate with respect to the stator 3. . Further, in the locked state, the inner end portion of the drive pin 28 enters the defense pin hole 26, so that the defense magazine 23 is restrained against rotation with respect to the extension portion 1 a of the fixed body 1.

キー18は、筒状部19の軸方向の割溝部42に摘み板43を嵌め込み固定してなるものであり、キー18側の位置決め突起20と駆動突起22は、摘み板43の延長板部44の先端部の内縁部と外縁部に一体に形成されている。各操作段部21は半円筒形状に形成されており、筒状部19の先端面からの深さは、割り当てられたキーコードに従って変更されている。各環状凹部30は断面半円形状に形成され、延伸部19aの外周面からの深さは、割り当てられたキーコードに従って変更されている。 The key 18 is formed by fitting and fixing a knob plate 43 in the axially dividing groove portion 42 of the cylindrical portion 19, and the positioning protrusion 20 and the driving protrusion 22 on the key 18 side are extended plate portions 44 of the knob plate 43. Are formed integrally with the inner edge and the outer edge of the tip. Each operation step portion 21 is formed in a semi-cylindrical shape, and the depth from the distal end surface of the tubular portion 19 is changed according to the assigned key code. Each annular recess 30 is formed in a semicircular cross section, and the depth from the outer peripheral surface of the extending portion 19a is changed according to the assigned key code.

請求項1の発明の実施例では、位置決め突起20の軸方向長さが短く設定されているので、図2に示したようにキー18の最終挿入位置においては、位置決め突起20が防御マガジン23の位置決め溝16の末端部から突出して、前記マガジン部8と前記段差部13との間の逃げ空間45内に進入する一方、駆動突起22がローター6の受動溝18に係合している。そのため、摘み板42を介して与えた回転力は、ローター6のみに伝達される。 In the embodiment of the first aspect of the invention, since the axial length of the positioning projection 20 is set short, the positioning projection 20 of the defense magazine 23 is at the final insertion position of the key 18 as shown in FIG. The drive projection 22 is engaged with the passive groove 18 of the rotor 6 while projecting from the end portion of the positioning groove 16 and entering the clearance space 45 between the magazine portion 8 and the step portion 13. Therefore, the rotational force applied via the knob plate 42 is transmitted only to the rotor 6.

請求項2の発明の実施例では、位置決め突起20の軸方向長さが長く設定されているので、図8に示したようにキー18の最終挿入位置においては、位置決め突起20が防御マガジン23の位置決め溝16の末端部に係合する一方、駆動突起22がローター6の受動溝18に係合している。そのため、摘み板42を介して与えた回転力は、防御マガジン23とローター6の双方に伝達される。 In the embodiment of the invention of claim 2, since the axial length of the positioning projection 20 is set long, the positioning projection 20 of the defense magazine 23 is at the final insertion position of the key 18 as shown in FIG. The drive protrusion 22 is engaged with the passive groove 18 of the rotor 6 while engaging with the end portion of the positioning groove 16. Therefore, the rotational force applied through the knob plate 42 is transmitted to both the defense magazine 23 and the rotor 6.

請求項1の発明の実施例では、前記最終挿入位置においては、全てのタンブラーピン10とボトムピン11の当接点がステーター3とマガジン部8とのシャーライン上に移動しており、また、全ての防御ピン27と駆動ピン28の当接点が回転マガジン23と固定本体1の前記延長部1aとのシャーライン上に移動しているため、キー18を回すと、ローター6が固定本体1に対して回転させられる。このキー18の回転中、キー18の位置決め突起20が前記逃げ空間45内を空転し、防御マガジン23側の防御ピン27の先端部がキー18側の環状凹部30内を相対的に移動する。 In the embodiment of the invention of claim 1, in the final insertion position, the contact points of all the tumbler pins 10 and the bottom pins 11 are moved on the shear line between the stator 3 and the magazine portion 8, Since the contact point of the defense pin 27 and the drive pin 28 has moved on the shear line between the rotary magazine 23 and the extension 1 a of the fixed body 1, when the key 18 is turned, the rotor 6 moves relative to the fixed body 1. Rotated. During the rotation of the key 18, the positioning projection 20 of the key 18 idles in the escape space 45, and the tip of the defense pin 27 on the defense magazine 23 side relatively moves in the annular recess 30 on the key 18 side.

請求項2の発明の実施例では、前記最終挿入位置においては、全てのタンブラーピン10とボトムピン11の当接点がステーター3とマガジン部8とのシャーライン上に移動しており、また、全ての防御ピン27と駆動ピン28の当接点が回転マガジン23と固定本体1の前記延長部1aとのシャーライン上に移動しているため、キー18を回すと、防御マガジン27とローター6が固定本体1に対して回転させられる。 In the embodiment of the invention of claim 2, in the final insertion position, the contact points of all the tumbler pins 10 and the bottom pins 11 are moved on the shear line between the stator 3 and the magazine portion 8, Since the contact point of the defense pin 27 and the drive pin 28 moves on the shear line between the rotation magazine 23 and the extension 1a of the fixed body 1, the defense magazine 27 and the rotor 6 are fixed to the fixed body when the key 18 is turned. 1 is rotated.

請求項1の発明の一実施例に係る防御機構付き軸方向ピンタンブラー錠のキー抜取り状態の正面図である。It is a front view of the key extraction state of the axial direction pin tumbler lock with a defense mechanism which concerns on one Example of invention of Claim 1. 図1のA−A線断面図であり、キーは最終挿入位置にある。FIG. 2 is a cross-sectional view taken along the line AA in FIG. 1 and the key is in a final insertion position. 図1のB−B線断面図であり、キーは最終挿入位置にある。FIG. 2 is a cross-sectional view taken along line B-B in FIG. 1, and the key is in a final insertion position. 図2のC−C線断面図であり、キーは最終挿入位置にある。FIG. 3 is a cross-sectional view taken along the line C-C in FIG. 2 and the key is in a final insertion position. 図1の軸方向タンブラー錠に使用するキーの側面図であり、筒状部の先端部を一部切欠いて示してある。It is a side view of the key used for the axial direction tumbler lock of FIG. 1, and has shown the front-end | tip part of the cylindrical part partly notched. 図5のキーの背面図である。It is a rear view of the key of FIG. 請求項2の発明の一実施例に係る防御機構付き軸方向ピンタンブラー錠のキー抜取り状態の正面図である。It is a front view of the key extraction state of the axial direction pin tumbler lock with a defense mechanism which concerns on one Example of invention of Claim 2. 図7のD−D線断面図であり、キーは最終挿入位置にある。FIG. 8 is a sectional view taken along line D-D in FIG. 7, and the key is in a final insertion position. 図7のE−E線断面図であり、キーは最終挿入位置にある。FIG. 8 is a cross-sectional view taken along the line E-E in FIG. 7 and the key is in a final insertion position. 図8のF−F線断面図であり、キーは最終挿入位置にある。FIG. 9 is a cross-sectional view taken along line FF in FIG. 8 and the key is in a final insertion position. 図7の軸方向タンブラー錠に使用するキーの側面図であり、筒状部の先端部を一部切欠いて示してある。It is a side view of the key used for the axial direction tumbler lock of FIG. 7, and has shown the front-end | tip part of the cylindrical part partly notched. 図11のキーの背面図である。It is a rear view of the key of FIG.

1 固定本体
1a 固定本体の延長部
2 円筒状空洞部
3 ステーター
4 軸受孔
5 ボトムピン孔
6 ローター
7 施錠軸部
8 マガジン部
9 タンブラーピン孔
10 タンブラーピン
11 ボトムピン
12 バネ
13 内向き段差部
14 ローターの前端部
15 環状キー孔
16 位置決め溝
17 受動溝
18 キー
19 筒状部
19a 筒状部の延伸部
20 位置決め突起
21 操作段部
22 駆動突起
23 防御マガジン
24 キー挿通孔
25 駆動ピン孔
26 防御ピン孔
27 防御ピン
28 駆動ピン
29 バネ
30 環状凹部
31 固定ビス
32 扉
33 取付孔
34 外周段差面
35 外周ねじ部
36 六角ナット
37 後端角軸部
38 施錠板
39 六角ボルト
40 バネ支持部材
41 拡径空洞部
42 割溝部
43 摘み板
44 延長板部
45 逃げ空間
DESCRIPTION OF SYMBOLS 1 Fixed body 1a Extension part 2 of fixed body 3 Cylindrical cavity part 3 Stator 4 Bearing hole 5 Bottom pin hole 6 Rotor 7 Locking shaft part 8 Magazine part 9 Tumbler pin hole 10 Tumbler pin 11 Bottom pin 12 Spring 13 Inward step part 14 Rotor part Front end portion 15 Annular key hole 16 Positioning groove 17 Passive groove 18 Key 19 Tubular portion 19a Tubular portion extending portion 20 Positioning projection 21 Operation step portion 22 Drive projection 23 Defense magazine 24 Key insertion hole 25 Drive pin hole 26 Defense pin hole 27 Protective pin 28 Drive pin 29 Spring 30 Annular recess 31 Fixing screw 32 Door 33 Mounting hole 34 Outer peripheral step surface 35 Outer peripheral threaded portion 36 Hexagon nut 37 Rear end angular shaft portion 38 Locking plate 39 Hexagon bolt 40 Spring support member 41 Expanded cavity Part 42 Split groove part 43 Knob plate 44 Extension plate part 45 Escape space

Claims (2)

固定本体1の円筒状空洞部2の底側にステーター3を配置し、前記ステーター3の中心部に軸受孔4を軸方向に形成し、前記ステーター3の前面より複数個のボトムピン孔5を同一円周上に配置して軸方向に形成し、前記円筒状空洞部2にローター6を回転可能に収容し、前記ローター6の後方部の施錠軸部7を前記軸受孔4に嵌挿し、前記ローター6の中間部のマガジン部8に複数個のタンブラーピン孔9を軸方向に形成し、相連通する前記タンブラーピン孔9と前記ボトムピン孔5に、キーコードに対応して長さを個別設定されたタンブラーピン10とバネ12で前進付勢されたボトムピン11を収容し、前記固定本体1の内向き段差部13の背面に前記タンブラーピン10の前端を当接させ、前記内向き段差部13の内周面と前記ローター6の前端部14の外周面との間に環状キー孔15を形成し、前記内向き段差部13の内周面に前記環状キー孔15に開口する位置決め溝16を軸方向に形成し、前記ロータ6の前端部14の外周面に受動溝17を軸方向に形成し、キー18の筒状部19の先端部外周面に、前記位置決め溝16に嵌められる位置決め突起20と前記タンブラーピン14の前端を押す操作段部21を形成し、前記筒状部19の先端部内周面に前記受動溝17に嵌められる駆動突起22を設け、前記各操作段部21に個別設定された深さに対応して、全ての前記タンブラーピン10と前記ボトムピン11の当接点を前記ステーター3と前記マガジン部8とのシャーライン上に移動させるようにした軸方向ピンタンブラー錠において、
前記固定本体1に前記ローター6の前端部14の前方向に超えた延長部1aを形成し、前記キー18の筒状部19に固定本体1の前記延長部1aに対応して延伸部19aを形成し、前記延長部1aの円筒状空洞部2aに防御マガジン23を回転可能に配置し、前記防御マガジン23の中心部に円形状のキー挿通孔24を軸方向に形成し、前記タンブラーピン10の前端が当接する前記内向き段差部13を前記防御マガジン23の基端部分に形成し、前記位置決め溝16を前記防御マガジン23の内周面に形成し、前記延長部1aに複数個の駆動ピン孔25を半径方向に形成し、前記防御マガジン23に前記駆動ピン孔25に対応させて防御ピン孔26を半径方向に形成し、前記駆動ピン孔25と前記防御ピン孔26に、キーコードに対応して長さを個別設定された防御ピン27とバネ29で求心方向に付勢された駆動ピン28を収容し、前記複数本のタンブラーピン10を前記複数本の防御ピン27の真後ろの位置に配置し、キー18の前記延伸部19aの外周面に前記防御ピン孔26に対面させて環状凹部30を形成し、前記キー18の最終挿入位置において前記位置決め突起20を前記位置決め溝16より突出させる一方、前記駆動突起22を前記受動溝18に係合させ、前記環状凹部30に個別設定された深さに対応して、全ての前記防御ピン27と前記駆動ピン28の当接点を前記防御マガジン23と固定本体1の前記延長部1aとのシャーライン上に移動させるようにしたことを特徴とする防御機構付き軸方向ピンタンブラー錠。
A stator 3 is arranged on the bottom side of the cylindrical cavity 2 of the fixed body 1, a bearing hole 4 is formed in the axial direction in the center of the stator 3, and a plurality of bottom pin holes 5 are made identical from the front surface of the stator 3. It is arranged on the circumference and formed in the axial direction, and the rotor 6 is rotatably accommodated in the cylindrical cavity 2, the locking shaft portion 7 at the rear of the rotor 6 is fitted into the bearing hole 4, A plurality of tumbler pin holes 9 are formed in the magazine portion 8 in the middle of the rotor 6 in the axial direction, and the lengths of the tumbler pin holes 9 and the bottom pin holes 5 that communicate with each other are individually set according to the key code. The tumbler pin 10 and the bottom pin 11 urged forward by the spring 12 are accommodated, the front end of the tumbler pin 10 is brought into contact with the back surface of the inwardly stepped portion 13 of the fixed body 1, and the inwardly stepped portion 13. Inner surface and the low -6, an annular key hole 15 is formed between the front end portion 14 and the outer peripheral surface of the front end portion 14, and a positioning groove 16 opening in the annular key hole 15 is formed in the inner peripheral surface of the inward stepped portion 13 in the axial direction. A passive groove 17 is formed in the axial direction on the outer peripheral surface of the front end portion 14 of the rotor 6, and the positioning protrusion 20 and the tumbler pin 14 are fitted on the outer peripheral surface of the cylindrical portion 19 of the key 18 in the positioning groove 16. An operation step portion 21 that pushes the front end of the cylindrical portion 19 is formed, and a driving protrusion 22 that is fitted into the passive groove 17 is provided on the inner peripheral surface of the distal end portion of the cylindrical portion 19, and the depth is set individually for each operation step portion 21. Correspondingly, in the axial pin tumbler lock in which the contact points of all the tumbler pins 10 and the bottom pins 11 are moved on the shear line of the stator 3 and the magazine portion 8,
An extension portion 1 a that extends in the forward direction of the front end portion 14 of the rotor 6 is formed on the fixed body 1, and an extension portion 19 a corresponding to the extension portion 1 a of the fixed body 1 is formed on the cylindrical portion 19 of the key 18. The defense magazine 23 is rotatably arranged in the cylindrical hollow portion 2a of the extension portion 1a, and a circular key insertion hole 24 is formed in the center of the defense magazine 23 in the axial direction. The tumbler pin 10 The inwardly stepped portion 13 with which the front end of the protective magazine 23 abuts is formed in the proximal end portion of the defense magazine 23, the positioning groove 16 is formed on the inner peripheral surface of the defense magazine 23, and a plurality of drives are provided on the extension portion 1 a. A pin hole 25 is formed in the radial direction, a defense pin hole 26 is formed in the defense magazine 23 corresponding to the drive pin hole 25 in the radial direction, and a key code is formed in the drive pin hole 25 and the defense pin hole 26. In response to The accommodating a biased drive pin 28 in the centripetal direction in defense pin 27 and the spring 29 is individually set, place the tumbler pins 10 of the plurality of the positions right behind said plurality of protection pin 27 is, An annular recess 30 is formed on the outer peripheral surface of the extended portion 19a of the key 18 so as to face the defense pin hole 26, and the positioning projection 20 protrudes from the positioning groove 16 at the final insertion position of the key 18, while the The drive protrusions 22 are engaged with the passive grooves 18, and the contact points of all the defense pins 27 and the drive pins 28 are fixed to the defense magazine 23 corresponding to the depths individually set in the annular recesses 30. An axial pin tumbler lock with a protective mechanism, which is moved on a shear line with the extension 1a of the main body 1.
固定本体1の円筒状空洞部2の底側にステーター3を配置し、前記ステーター3の中心部に軸受孔4を軸方向に形成し、前記ステーター3の前面より複数個のボトムピン孔5を同一円周上に配置して軸方向に形成し、前記円筒状空洞部2にローター6を回転可能に収容し、前記ローター6の後方部の施錠軸部7を前記軸受孔4に嵌挿し、前記ローター6の中間部のマガジン部8に複数個のタンブラーピン孔9を軸方向に形成し、相連通する前記タンブラーピン孔9と前記ボトムピン孔5に、キーコードに対応して長さを個別設定されたタンブラーピン10とバネ12で前進付勢されたボトムピン11を収容し、前記固定本体1の内向き段差部13の背面に前記タンブラーピン10の前端を当接させ、前記内向き段差部13の内周面と前記ローター6の前端部14の外周面との間に環状キー孔15を形成し、前記内向き段差部13の内周面に前記環状キー孔15に開口する位置決め溝16を軸方向に形成し、前記ロータ6の前端部14の外周面に受動溝17を軸方向に形成し、キー18の筒状部19の先端部外周面に、前記位置決め溝16に嵌められる位置決め突起20と前記タンブラーピン14の前端を押す操作段部21を形成し、前記筒状部19の先端部内周面に前記受動溝17に嵌められる駆動突起22を設け、前記各操作段部21に個別設定された深さに対応して、全ての前記タンブラーピン10と前記ボトムピン11の当接点を前記ステーター3と前記マガジン部8とのシャーライン上に移動させるようにした軸方向ピンタンブラー錠において、
前記固定本体1に前記ローター6の前端部14の前方向に超えた延長部1aを形成し、前記キー18の筒状部19に固定本体1の前記延長部1aに対応して延伸部19aを形成し、前記延長部1aの円筒状空洞部2aに防御マガジン23を回転可能に配置し、前記防御マガジン23の中心部に円形状のキー挿通孔24を軸方向に形成し、前記タンブラーピン10の前端が当接する前記内向き段差部13を前記防御マガジン23の基端部分に形成し、前記位置決め溝16を前記防御マガジン23の内周面に形成し、前記延長部1aに複数個の駆動ピン孔25を半径方向に形成し、前記防御マガジン23に前記駆動ピン孔25に対応させて防御ピン孔26を半径方向に形成し、前記駆動ピン孔25と前記防御ピン孔26に、キーコードに対応して長さを個別設定された防御ピン27とバネ29で求心方向に付勢された駆動ピン28を収容し、前記複数本のタンブラーピン10を前記複数本の防御ピン27の真後ろの位置に配置し、キー18の前記延伸部19aの外周面に前記防御ピン孔26に対面させて環状凹部30を形成し、前記キー18の最終挿入位置において、前記位置決め突起20を前記位置決め溝16に係合させる一方、前記駆動突起22を前記受動溝18に係合させ、前記環状凹部30に個別設定された深さに対応して、全ての前記防御ピン27と前記駆動ピン28の当接点を前記防御マガジン23と固定本体1の前記延長部1aとのシャーライン上に移動させるようにしたことを特徴とする防御機構付き軸方向ピンタンブラー錠。
A stator 3 is arranged on the bottom side of the cylindrical cavity 2 of the fixed body 1, a bearing hole 4 is formed in the axial direction in the center of the stator 3, and a plurality of bottom pin holes 5 are made identical from the front surface of the stator 3. It is arranged on the circumference and formed in the axial direction, and the rotor 6 is rotatably accommodated in the cylindrical cavity 2, the locking shaft portion 7 at the rear of the rotor 6 is fitted into the bearing hole 4, A plurality of tumbler pin holes 9 are formed in the magazine portion 8 in the middle of the rotor 6 in the axial direction, and the lengths of the tumbler pin holes 9 and the bottom pin holes 5 that communicate with each other are individually set according to the key code. The tumbler pin 10 and the bottom pin 11 urged forward by the spring 12 are accommodated, the front end of the tumbler pin 10 is brought into contact with the back surface of the inwardly stepped portion 13 of the fixed body 1, and the inwardly stepped portion 13. Inner surface and the low -6, an annular key hole 15 is formed between the front end portion 14 and the outer peripheral surface of the front end portion 14, and a positioning groove 16 opening in the annular key hole 15 is formed in the inner peripheral surface of the inward stepped portion 13 in the axial direction. A passive groove 17 is formed in the axial direction on the outer peripheral surface of the front end portion 14 of the rotor 6, and the positioning protrusion 20 and the tumbler pin 14 are fitted on the outer peripheral surface of the cylindrical portion 19 of the key 18 in the positioning groove 16. An operation step portion 21 that pushes the front end of the cylindrical portion 19 is formed, and a driving protrusion 22 that is fitted into the passive groove 17 is provided on the inner peripheral surface of the distal end portion of the cylindrical portion 19, and the depth is set individually for each operation step portion 21. Correspondingly, in the axial pin tumbler lock in which the contact points of all the tumbler pins 10 and the bottom pins 11 are moved on the shear line of the stator 3 and the magazine portion 8,
An extension portion 1 a that extends in the forward direction of the front end portion 14 of the rotor 6 is formed on the fixed body 1, and an extension portion 19 a corresponding to the extension portion 1 a of the fixed body 1 is formed on the cylindrical portion 19 of the key 18. The defense magazine 23 is rotatably arranged in the cylindrical hollow portion 2a of the extension portion 1a, and a circular key insertion hole 24 is formed in the center of the defense magazine 23 in the axial direction. The tumbler pin 10 The inwardly stepped portion 13 with which the front end of the protective magazine 23 abuts is formed in the proximal end portion of the defense magazine 23, the positioning groove 16 is formed on the inner peripheral surface of the defense magazine 23, and a plurality of drives are provided on the extension portion 1 a. A pin hole 25 is formed in the radial direction, a defense pin hole 26 is formed in the defense magazine 23 corresponding to the drive pin hole 25 in the radial direction, and a key code is formed in the drive pin hole 25 and the defense pin hole 26. In response to The accommodating a biased drive pin 28 in the centripetal direction in defense pin 27 and the spring 29 is individually set, place the tumbler pins 10 of the plurality of the positions right behind said plurality of protection pin 27 is, An annular recess 30 is formed on the outer peripheral surface of the extended portion 19a of the key 18 so as to face the defense pin hole 26, and the positioning protrusion 20 is engaged with the positioning groove 16 at the final insertion position of the key 18. The drive protrusions 22 are engaged with the passive grooves 18, and the contact points of all the defense pins 27 and the drive pins 28 corresponding to the depths individually set in the annular recesses 30 are defined in the defense magazine 23. An axial pin tumbler lock with a defense mechanism, wherein the axial pin tumbler lock is moved on a shear line with the extension 1a of the fixed body 1.
JP2007175867A 2007-07-04 2007-07-04 Axial pin tumbler lock with defense mechanism Expired - Fee Related JP4628403B2 (en)

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GB2497527B (en) * 2011-12-12 2013-10-30 Vance Lock Ind Co Ltd A tubular lock with at least one positioning assembly and multiple side positioning assemblies
US8393189B1 (en) 2011-12-14 2013-03-12 Sheng-Ting Lin Tubular lock and a key for the same

Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS4833791U (en) * 1971-08-30 1973-04-23
JPS5885057U (en) * 1982-05-31 1983-06-09 タキゲン製造株式会社 Axial pin tumbler lock

Patent Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS4833791U (en) * 1971-08-30 1973-04-23
JPS5885057U (en) * 1982-05-31 1983-06-09 タキゲン製造株式会社 Axial pin tumbler lock

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