JP4054993B2 - Needle feed sewing machine - Google Patents

Needle feed sewing machine Download PDF

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Publication number
JP4054993B2
JP4054993B2 JP2003118163A JP2003118163A JP4054993B2 JP 4054993 B2 JP4054993 B2 JP 4054993B2 JP 2003118163 A JP2003118163 A JP 2003118163A JP 2003118163 A JP2003118163 A JP 2003118163A JP 4054993 B2 JP4054993 B2 JP 4054993B2
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Japan
Prior art keywords
shaft
feed
needle
sewing machine
needle bar
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Expired - Fee Related
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JP2003118163A
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Japanese (ja)
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JP2004321366A (en
Inventor
尚文 池田
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Brother Industries Ltd
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Brother Industries Ltd
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Application filed by Brother Industries Ltd filed Critical Brother Industries Ltd
Priority to JP2003118163A priority Critical patent/JP4054993B2/en
Priority to CNB2004100304499A priority patent/CN100535221C/en
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Description

【0001】
【発明の属する技術分野】
本発明は、縫針と送り歯の協働により加工布を布送り可能な針送りミシンに関する。
【0002】
【従来の技術】
一般に、ジーンズなどの比較的厚手の加工布を縫製する場合における加工布の布送り不良を確実に防止するため、加工布に縫針を刺した状態で、縫針を送り歯と同期して揺動させて、送り歯による布送りを助勢するように構成した針送りミシンが知られている。
【0003】
例えば、本願出願人は、以下のような針送りミシンを提案済みである(例えば、特許文献1参照)。この針送りミシンは、ミシンアーム内に回転可能に支持された上軸と、布送り方向に前後揺動自在に支持された針棒台と、この針棒台に上下動自在に支持された針棒と、ミシンベッド内に回転可能に支持された下軸とを備え、上軸の右端に支持されたプーリと下軸の右端に支持されたプーリとがタイミングベルトで連結されて、上軸を回転駆動するミシンモータの回転駆動力がタイミングベルトを介して下軸に伝達されるように構成されている。
【0004】
さらに、この針送りミシンは、下軸に連動連結された水平送り軸と、下軸と水平送り軸に連動連結された送り歯と、水平送り軸に連結されて針棒台を布送り方向に揺動させる針棒揺動軸とを備えており、水平送り軸と針棒揺動軸はタイミングベルトの左側に配設された揺動レバー部材及びリンク部材を介して連動連結されている。送り歯による布送り時には、下軸に連動して水平送り軸が揺動するが、このときに、水平送り軸に連結された針棒揺動軸もリンク部材を介して揺動することになり、針棒台が布送り方向に揺動するため、縫針と送り歯の協働により加工布が布送りされる。
【0005】
【特許文献1】
特許第2682346号公報(第3−5頁、図1)
【0006】
【発明が解決しようとする課題】
前記特許文献1に記載の針送りミシンにおいては、水平送り軸と針棒揺動軸を連動連結する揺動レバー部材がタイミングベルトの左側に配設されているため、その分ミシンの脚柱部の左右方向の幅が大きくなってしまい、ミシンが大型化する。さらに、針棒に装着された縫針と脚柱部との間のスペースが狭くなるため、フトコロが狭くなり作業性が悪くなる。
【0007】
本発明の目的は、水平送り軸と針棒揺動軸とを連結する揺動レバー部材を針送りミシン内の空いたスペースに配設して針送りミシンのサイズを小型化すること、フトコロを広くして作業性を向上させること等である。
【0008】
【課題を解決するための手段】
請求項1の針送りミシンは、ミシンアーム内に回転可能に支持された上軸と、布送り方向に揺動自在に支持された針棒台と、この針棒台に上下動自在に支持され前記上軸に連動して上下動する針棒と、ミシンベッド内に回転可能に支持された下軸と、前記上軸に支持された回転体と前記下軸に支持された回転体とに亙って張架されこれら2つの回転体を連結する回転伝達用連結体と、前記下軸に連動連結された水平送り軸と、前記下軸と水平送り軸に連動連結されて四送り運動する送り歯と、前記水平送り軸に連結されて針棒台を布送り方向に揺動させる針棒揺動軸と、前記水平送り軸と前記針棒揺動軸とを連動連結する連動機構とを備えた針送りミシンにおいて、前記連動機構は、前記針棒揺動軸に連結され布送り方向に揺動可能な揺動レバー部材と、この揺動レバー部材と前記水平送り軸とを連動連結する連結リンク部材とを有し、前記揺動レバー部材が、前記回転伝達用連結体の内側に配設されたものである。
【0009】
この針送りミシンによる布送り時には、2つの回転体及び回転伝達用連結体を介して上軸から回転駆動力が伝達される下軸に連動して水平送り軸が揺動し、送り歯により加工布が布送り方向に送られる。同時に、その水平送り軸の揺動運動が連結リンク部材を介して揺動レバー部材に伝達されて、揺動レバー部材が布送り方向に揺動して、針棒揺動軸も揺動して針棒が布送り方向に揺動するため、針棒に装着された縫針により送り歯による布送りが助勢される。ここで、揺動レバー部材が、針送りミシン内の空いたスペースである、回転伝達用連結体の内側のスペースに配設されている。
【0010】
請求項2の針送りミシンは、請求項1の発明において、前記回転伝達用連結体は、タイミングベルトであるものである。従って、このタイミングベルトの内側に揺動レバー部材が配設される。
【0011】
請求項3の針送りミシンは、請求項1又は請求項2の発明において、前記連結リンク部材が、前記回転伝達用連結体に対してミシンヘッド側に位置するものである。従って、連結リンク部材がミシンヘッド側から揺動レバー部材に連結される。
【0012】
請求項4の針送りミシンは、請求項1又は請求項2の発明において、前記連結リンク部材が、前記回転伝達用連結体に対してミシンヘッドと反対側に位置するものである。従って、連結リンク部材がミシンヘッドと反対側から揺動レバー部材に連結される。
【0013】
【発明の実施の形態】
本発明の実施の形態について説明する。本実施の形態は、本縫い針送りミシンに本発明を適用した一例である。
【0014】
図1に示すように、本縫い針送りミシンMは、ミシンベッド10と、このミシンベッド10の右端部から上方に延びる脚柱部11と、この脚柱部11の上端部からミシンベッド10に対向するように左方に延び左端部のミシンヘッド13を有するミシンアーム12とからなっている。そして、ミシンアーム12には、左右方向に延びる上軸15がミシンアーム12内に回転自在に支持され、針棒上下動機構20や天秤上下動機構が設けられている。
【0015】
天秤上下動機構は、通常のミシンと同様の構成を有するためその説明を省略し、針棒上下動機構20について簡単に説明する。まず、下端部に縫針Nを取付けた針棒21は、上下方向に延びる針棒台22に上下動可能に支持され、この針棒台22はその上端部において、ミシンヘッド13内に固着された支軸23により前後揺動可能に支持されている。一方、上軸15の右端部にはハンドプーリ37(図2、図3参照)が設けられ、上軸15の左端部には針棒クランク24が固着され、この針棒クランク24に連結ロッド25の上端部が回動可能に枢着され、連結ロッド25の下端部は針棒抱き26を介して針棒21の高さ方向中央部に連結されている。従って、上軸15の回転により針棒クランク24が回転するので、連結ロッド25及び針棒抱き26を介して針棒21が上下往復駆動される。さらに、ミシンアーム12には、後述の水平送り軸32と連結されて針棒台22を布送り方向に揺動させる針棒揺動軸42が上軸15に平行に配設されている。この針棒揺動軸42の左端部には針棒揺動腕44の基端部が固着され、この針棒揺動腕44の先端部は、前記針棒台22の下端部に形成した上下方向向きの係合溝22aに摺動可能に係合している。
【0016】
前記ミシンベッド10内には、左右方向に延びる下軸16が回転自在に支持され、下軸16の右端部に固着され下軸16と一体的に回転するタイミングプーリ(回転体に相当する)27と上軸15の右端部に固着され上軸15と一体的に回転するタイミングプーリ(回転体に相当する)28とに亙って、タイミングベルト(回転伝達用連結体に相当する)29が張架されている。従って、ミシンモータ(図示略)の回転駆動により上軸15が回転駆動されると、同時にタイミングベルト29を介して下軸16も回転駆動される。
【0017】
下軸16には円板状の偏心輪34が固着され、この偏心輪34には水平送り連杆30の後端部が回転可能に外嵌され、水平送り連杆30の前端部には角駒(図示略)が回転可能に取付けられ、その角駒は切換器(図示略)の溝に摺動可能にはめられている。尚、これら角駒や切換器は周知のものでありその説明は省略する。前記角駒には水平送りリンク31の下端部も固着され、水平送りリンク31の上端部は、左右方向に延びる水平送り軸32に固着された水平送り腕33に回動可能に連結されている。従って、下軸16の回転駆動により、偏心輪34を介して水平送り連杆30の前端部が前後方向に揺動するので、水平送りリンク31と水平送り腕33を介して水平送り軸32が揺動する。ここで、下軸16の左端部において、図示外の送り歯の上下動の為の送り歯上下動機構が連結され、また水平送り軸32の左端部において、送り歯を前後動させる送り歯前後動機構が連結されている。
【0018】
次に、水平送り軸32と針棒揺動軸42とを連動連結する連動機構35について説明する。図1〜図3に示すように、この連動機構35は、針棒21を送り歯の前後動と調時させて前後方向に揺動させるものであり、針棒揺動軸42の右端部に連結され布送り方向(前後方向)に揺動可能な揺動レバー部材43と、この揺動レバー部材43と水平送り軸32とを連動連結する連結リンク部材39とを有する。
【0019】
上下の延びる揺動レバー部材43の上端部は、針棒揺動軸42の右端部に固着されている。さらに、揺動レバー部材43の下端部には、連結リンク部材39の後端部が左側から回動可能に連結されている。ところで、水平送り軸32の右端部には針棒揺動クランク36が固着され、この針棒揺動クランク36の右端部の水平送り軸32の軸心から偏心した位置に、前後方向に延びる連結リンク部材39が回動可能に枢支されている。
【0020】
従って、下軸に連動して水平送り軸32が揺動すると、それに同期して水平送り軸32の軸心より偏心した位置に連結された連結リンク部材39と揺動レバー部材43が揺動し、さらに、揺動レバー部材43の揺動運動が針棒揺動軸42を介して針棒揺動腕44に伝達されて、針棒台22が揺動して針棒21が前後に往復揺動する。
【0021】
ところで、このように針棒21が前後に揺動する際の、揺動レバー部材43の揺動角度は僅かな角度(例えば、約2度)である。従って、揺動レバー部材43を脚柱部11内に配置する為には前後方向に大きなスペースを必要としない。そこで、図1〜図3に示すように、この針送りミシンMにおいては、揺動レバー部材43は、2つのタイミングプーリ27,28に亙って張架されたタイミングベルト29の内側に配設されており、脚柱部11内の空いたスペースが有効利用されている。そして、常に、揺動レバー部材43とタイミングベルト29とは前後方向に離間した関係にある。また、揺動レバー部材43に連結された連結リンク部材39は、タイミングベルト29の左側(ミシンヘッド13側)に位置している。
【0022】
以上説明した針送りミシンMの作用及び効果について説明する。
布送り時には、下軸16と水平送り軸32に連動連結された送り歯が四送り運動するが、その際に、下軸16に連動する水平送り軸32の揺動運動に同期して水平送り軸32の軸心より偏心した位置に連結された連結リンク部材39と揺動レバー部材43が揺動する。すると、揺動レバー部材43の揺動運動が針棒揺動軸42を介して針棒揺動腕44に伝達されて、針棒台22が揺動して針棒21が前後に往復揺動され、送り歯の四送り運動と縫針Nの前後揺動により加工布が前後方向に布送りされる。
【0023】
ここで、揺動レバー部材43は、2つのタイミングプーリ27,28に亙って張架されたタイミングベルト29の内側に配設されており、脚柱部11内の空いたスペースが有効利用されているため、脚柱部11の左右の幅が小さくなり、針送りミシンMのサイズを小型化できる。また、縫針Nと脚柱部11の左側面と間のスペース(いわゆる「フトコロ」)を広くとれるため、作業性が向上する。
【0024】
尚、揺動レバー部材43をタイミングベルト29の内側に配設することにより、脚柱部11の左右方向(上軸15や下軸16の軸心方向)における幅が小さくなった分、フトコロを広くするようにしてもよいが、フトコロを広くせずに脚柱部11を針棒21側に寄せて、針送りミシンMの左右方向の長さを短くすれば、上軸15や下軸16の長さを短くでき、針送りミシンMの小型化及び軽量化を図ることもできる。さらに、フトコロを少し広くするとともに、針送りミシンMの左右方向の長さを少し短くすることも勿論可能である。
【0025】
次に、前記実施形態に種々の変更を加えた変更形態について説明する。但し、前記実施形態と同様の構成を有するものについては同じ符号を付して適宜その説明を省略する。
【0026】
1]図4に示すように、脚柱部11Aにおいて、タイミングベルト29の内側に配設された揺動レバー部材43の下端部に右側から連結リンク部材39を連結して、連結リンク部材39がタイミングベルト29の右側(ミシンヘッド13と反対側)に位置するようにしてもよい。この場合でも、脚柱部11Aの左右の幅が小さくなるため、針送りミシンMのサイズを小型化することができる。また、前記実施形態よりもさらに、ミシンヘッド13側の縫針Nと脚柱部11Aとの間のスペースを広くとれるため、フトコロが広くなって作業性がより向上する。
【0027】
2]上軸15の回転を下軸16に伝達する回転伝達連結体としては、前記実施形態のタイミングベルト29に限られるものではなく、チェーン等、他のループ状に形成されたものを使用してもよい。
【0028】
【発明の効果】
請求項1の発明によれば、揺動レバー部材が回転伝達用連結体の内側のスペースに配設されており、針送りミシン内のスペースを有効利用して針送りミシンのサイズを小さくすることができる。また、揺動レバー部材を脚柱部内に配設した場合には、脚柱部の幅を小さくして、針棒に装着された縫針と脚柱部との間のスペース、つまりフトコロを広くして作業性を向上させたり、あるいは、針送りミシン全体の大きさを小型化することの少なくとも一方が可能になる。
【0029】
請求項2の発明によれば、揺動レバー部材がタイミングベルトの内側に配設されるため、タイミングベルトの内側の空いたスペースを有効に利用して針送りミシンのサイズを小さくできる。
【0030】
請求項3の発明によれば、連結リンク部材が、回転伝達用連結体に対してミシンヘッド側に位置するため、連結リンク部材を、回転伝達用連結体の内側に配設された揺動レバー部材にミシンヘッド側から連結することができる。
【0031】
請求項4の発明によれば、連結リンク部材が、回転伝達用連結体に対してミシンヘッドと反対側に位置するため、連結リンク部材を、回転伝達用連結体の内側に配設された揺動レバー部材にミシンヘッドと反対側から連結することができる。
【図面の簡単な説明】
【図1】本発明の実施形態に係る針送りミシンの内部機構の概略斜視図である。
【図2】脚柱部の内部機構の要部正面図である。
【図3】脚柱部の内部機構の要部側面図である。
【図4】変更形態の針送りミシンの内部機構の概略斜視図である。
【符号の説明】
M 針送りミシン
10 ミシンベッド
11 脚柱部
12 ミシンアーム
13 ミシンヘッド
15 上軸
16 下軸
21 針棒
22 針棒台
27,28 タイミングプーリ
29 タイミングベルト
32 水平送り軸
35 連動機構
39 連結レバー部材
42 針棒揺動軸
43 揺動レバー部材
[0001]
BACKGROUND OF THE INVENTION
The present invention relates to a needle feed sewing machine capable of feeding a work cloth by cooperation of a sewing needle and a feed dog.
[0002]
[Prior art]
In general, in order to reliably prevent defective work feed of a work cloth when sewing a relatively thick work cloth such as jeans, the sewing needle is swung in synchronization with the feed dog while the work needle is inserted into the work cloth. A needle feed sewing machine configured to assist cloth feed by a feed dog is known.
[0003]
For example, the applicant of the present application has already proposed the following needle feed sewing machine (see, for example, Patent Document 1). The needle feed sewing machine includes an upper shaft that is rotatably supported in a sewing machine arm, a needle bar base that is supported to swing back and forth in the cloth feed direction, and a needle that is supported by the needle bar base so as to be movable up and down. And a pulley supported on the right end of the upper shaft and a pulley supported on the right end of the lower shaft are connected by a timing belt to connect the upper shaft to the lower shaft rotatably supported in the sewing machine bed. The rotational driving force of the rotationally driven sewing machine motor is transmitted to the lower shaft via the timing belt.
[0004]
The needle feed sewing machine further includes a horizontal feed shaft linked to the lower shaft, a feed dog linked to the lower shaft and the horizontal feed shaft, and a needle bar base connected to the horizontal feed shaft in the cloth feed direction. The horizontal feed shaft and the needle bar swing shaft are interlocked and connected via a swing lever member and a link member disposed on the left side of the timing belt. During cloth feed by the feed dog, the horizontal feed shaft swings in conjunction with the lower shaft. At this time, the needle bar swing shaft connected to the horizontal feed shaft also swings via the link member. Since the needle bar base swings in the cloth feeding direction, the work cloth is fed by the cooperation of the sewing needle and the feed dog.
[0005]
[Patent Document 1]
Japanese Patent No. 2682346 (page 3-5, FIG. 1)
[0006]
[Problems to be solved by the invention]
In the needle feed sewing machine described in Patent Document 1, the swing lever member that interlocks and connects the horizontal feed shaft and the needle bar swing shaft is disposed on the left side of the timing belt. The width in the left-right direction of the sewing machine becomes large, and the sewing machine becomes large. Furthermore, since the space between the sewing needle mounted on the needle bar and the pedestal portion is narrowed, the roller is narrowed and workability is deteriorated.
[0007]
An object of the present invention is to reduce the size of the needle feed sewing machine by disposing a swing lever member that connects the horizontal feed shaft and the needle bar swing shaft in an empty space in the needle feed sewing machine. For example, widening and improving workability.
[0008]
[Means for Solving the Problems]
The needle feed sewing machine according to claim 1 is supported by an upper shaft that is rotatably supported in the sewing machine arm, a needle bar base that is swingably supported in the cloth feed direction, and a needle bar base that is movable up and down. A needle bar that moves up and down in conjunction with the upper shaft, a lower shaft that is rotatably supported in a sewing machine bed, a rotating body that is supported by the upper shaft, and a rotating body that is supported by the lower shaft. A rotation transmission connecting body that is stretched and connects these two rotating bodies, a horizontal feed shaft that is linked to the lower shaft, and a feed that is linked to the lower shaft and the horizontal feed shaft to perform a four-feed motion. A tooth bar, a needle bar swinging shaft connected to the horizontal feed shaft to swing the needle bar base in the cloth feed direction, and an interlocking mechanism for interlockingly connecting the horizontal feed shaft and the needle bar swinging shaft. In the needle feed sewing machine, the interlocking mechanism is connected to the needle bar swinging shaft and swingable in the cloth feed direction. And a connecting link member for interlockingly connecting the swing lever member and the horizontal feed shaft, and the swing lever member is disposed inside the rotation transmission connecting body. .
[0009]
At the time of cloth feed by this needle feed sewing machine, the horizontal feed shaft swings in conjunction with the lower shaft to which the rotational driving force is transmitted from the upper shaft via the two rotary bodies and the rotation transmission coupling body, and is processed by the feed dog. The cloth is fed in the cloth feeding direction. At the same time, the swing motion of the horizontal feed shaft is transmitted to the swing lever member via the connecting link member, the swing lever member swings in the cloth feed direction, and the needle bar swing shaft also swings. Since the needle bar swings in the cloth feed direction, the cloth feed by the feed dog is assisted by the sewing needle attached to the needle bar. Here, the swing lever member is disposed in a space inside the rotation transmission coupling body, which is an empty space in the needle feed sewing machine.
[0010]
According to a second aspect of the present invention, in the needle feed sewing machine according to the first aspect of the invention, the rotation transmission coupling body is a timing belt. Therefore, a swing lever member is disposed inside the timing belt.
[0011]
A needle feed sewing machine according to a third aspect is the needle feeding sewing machine according to the first or second aspect, wherein the connecting link member is located on a sewing head side with respect to the rotation transmission connecting body. Therefore, the connecting link member is connected to the swing lever member from the sewing head side.
[0012]
According to a fourth aspect of the present invention, there is provided the needle feed sewing machine according to the first or second aspect, wherein the connecting link member is located on the opposite side of the sewing head with respect to the rotation transmission connecting body. Accordingly, the connecting link member is connected to the swing lever member from the side opposite to the sewing head.
[0013]
DETAILED DESCRIPTION OF THE INVENTION
Embodiments of the present invention will be described. This embodiment is an example in which the present invention is applied to a lockstitch needle feed sewing machine.
[0014]
As shown in FIG. 1, the lock stitch feed sewing machine M includes a sewing machine bed 10, a leg column 11 that extends upward from the right end of the sewing bed 10, and an upper end of the leg column 11 to the sewing machine bed 10. The sewing machine arm 12 includes a sewing machine arm 12 that extends to the left so as to face each other and has a sewing head 13 at the left end. In the sewing machine arm 12, an upper shaft 15 extending in the left-right direction is rotatably supported in the sewing machine arm 12, and a needle bar vertical movement mechanism 20 and a balance vertical movement mechanism are provided.
[0015]
Since the balance vertical movement mechanism has the same configuration as that of a normal sewing machine, the description thereof will be omitted, and the needle bar vertical movement mechanism 20 will be briefly described. First, a needle bar 21 having a sewing needle N attached to the lower end is supported by a needle bar base 22 extending in the vertical direction so as to be movable up and down. The needle bar base 22 is fixed in the sewing machine head 13 at the upper end. The support shaft 23 is supported so as to be able to swing back and forth. On the other hand, a hand pulley 37 (see FIGS. 2 and 3) is provided at the right end portion of the upper shaft 15, and a needle bar crank 24 is fixed to the left end portion of the upper shaft 15, and the connecting rod 25 is connected to the needle bar crank 24. An upper end portion is pivotally attached, and a lower end portion of the connecting rod 25 is connected to a center portion in the height direction of the needle bar 21 via a needle bar holder 26. Accordingly, since the needle bar crank 24 is rotated by the rotation of the upper shaft 15, the needle bar 21 is reciprocated up and down via the connecting rod 25 and the needle bar holder 26. Further, the sewing machine arm 12 is provided with a needle bar swinging shaft 42 which is connected to a horizontal feed shaft 32 which will be described later and swings the needle bar base 22 in the cloth feeding direction in parallel to the upper shaft 15. A proximal end portion of a needle bar swinging arm 44 is fixed to the left end portion of the needle bar swinging shaft 42, and a tip end portion of the needle bar swinging arm 44 is an upper and lower formed on the lower end portion of the needle bar base 22. It is slidably engaged with the engaging groove 22a in the direction.
[0016]
A timing pulley (corresponding to a rotating body) 27 that rotatably supports a lower shaft 16 extending in the left-right direction is fixed to the right end of the lower shaft 16 and rotates integrally with the lower shaft 16 in the sewing machine bed 10. And a timing pulley (corresponding to a rotation transmission connecting member) 29 is stretched over a timing pulley (corresponding to a rotating member) 28 fixed to the right end of the upper shaft 15 and rotating integrally with the upper shaft 15. It is built. Therefore, when the upper shaft 15 is rotationally driven by a rotational drive of a sewing machine motor (not shown), the lower shaft 16 is also rotationally driven via the timing belt 29 at the same time.
[0017]
A disc-shaped eccentric ring 34 is fixed to the lower shaft 16, and the rear end portion of the horizontal feed linkage 30 is rotatably fitted on the eccentric ring 34, and the front end portion of the horizontal feed linkage 30 has a corner. A piece (not shown) is rotatably attached, and the square piece is slidably fitted in a groove of a switcher (not shown). Note that these square pieces and switching units are well known and will not be described. A lower end portion of the horizontal feed link 31 is also fixed to the square piece, and an upper end portion of the horizontal feed link 31 is rotatably connected to a horizontal feed arm 33 fixed to a horizontal feed shaft 32 extending in the left-right direction. . Accordingly, since the front end of the horizontal feed linkage 30 swings in the front-rear direction via the eccentric ring 34 due to the rotational drive of the lower shaft 16, the horizontal feed shaft 32 is moved via the horizontal feed link 31 and the horizontal feed arm 33. Swing. Here, at the left end portion of the lower shaft 16, a feed dog vertical movement mechanism for moving the feed dog up and down (not shown) is connected, and at the left end portion of the horizontal feed shaft 32, the feed dog front and rear moves the feed dog back and forth. The moving mechanism is connected.
[0018]
Next, an interlocking mechanism 35 that interlocks and connects the horizontal feed shaft 32 and the needle bar swing shaft 42 will be described. As shown in FIGS. 1 to 3, the interlock mechanism 35 is configured to cause the needle bar 21 to swing in the front-rear direction by timing the feed dog forward and backward, and is attached to the right end portion of the needle bar swinging shaft 42. A swing lever member 43 that is connected and swingable in the cloth feed direction (front-rear direction), and a connecting link member 39 that interlocks and connects the swing lever member 43 and the horizontal feed shaft 32 are provided.
[0019]
The upper end portion of the vertically extending swing lever member 43 is fixed to the right end portion of the needle bar swing shaft 42. Furthermore, the rear end portion of the connecting link member 39 is connected to the lower end portion of the swing lever member 43 so as to be rotatable from the left side. By the way, a needle bar swinging crank 36 is fixed to the right end portion of the horizontal feed shaft 32 and is connected to the right end portion of the needle bar swinging crank 36 at a position eccentric from the axis of the horizontal feed shaft 32 and extending in the front-rear direction. The link member 39 is pivotally supported so as to be rotatable.
[0020]
Therefore, when the horizontal feed shaft 32 swings in conjunction with the lower shaft, the connecting link member 39 and the swing lever member 43 connected to a position eccentric from the axis of the horizontal feed shaft 32 swings in synchronization therewith. Further, the swinging motion of the swing lever member 43 is transmitted to the needle bar swing arm 44 via the needle bar swing shaft 42, the needle bar base 22 swings, and the needle bar 21 swings back and forth. Move.
[0021]
By the way, the swing angle of the swing lever member 43 when the needle bar 21 swings back and forth in this way is a slight angle (for example, about 2 degrees). Therefore, a large space is not required in the front-rear direction in order to arrange the swing lever member 43 in the pedestal 11. Therefore, as shown in FIGS. 1 to 3, in this needle feed sewing machine M, the swing lever member 43 is disposed inside the timing belt 29 stretched over the two timing pulleys 27 and 28. The vacant space in the pedestal 11 is effectively used. In addition, the swing lever member 43 and the timing belt 29 are always separated from each other in the front-rear direction. The connecting link member 39 connected to the swing lever member 43 is located on the left side (sewing head 13 side) of the timing belt 29.
[0022]
The operation and effect of the needle feed sewing machine M described above will be described.
At the time of cloth feeding, the feed dog linked to the lower shaft 16 and the horizontal feed shaft 32 performs four feed movements. At this time, the horizontal feed is synchronized with the swinging movement of the horizontal feed shaft 32 linked to the lower shaft 16. The connecting link member 39 and the swing lever member 43 that are connected to a position eccentric from the axis of the shaft 32 swing. Then, the swing motion of the swing lever member 43 is transmitted to the needle bar swing arm 44 through the needle bar swing shaft 42, the needle bar base 22 swings, and the needle bar 21 swings back and forth. Then, the work cloth is fed in the front-rear direction by the four-feed movement of the feed dog and the sewing needle N swinging back and forth.
[0023]
Here, the swing lever member 43 is disposed inside the timing belt 29 that is stretched over the two timing pulleys 27 and 28, and an empty space in the pedestal 11 is effectively used. Therefore, the left and right widths of the pedestal 11 are reduced, and the size of the needle feed sewing machine M can be reduced. In addition, since the space between the sewing needle N and the left side surface of the pedestal 11 (so-called “ft roller”) can be widened, workability is improved.
[0024]
By disposing the swing lever member 43 on the inner side of the timing belt 29, the width of the leg post 11 in the left-right direction (the axial direction of the upper shaft 15 and the lower shaft 16) is reduced. However, if the length of the needle feed sewing machine M in the left-right direction is shortened by moving the pedestal 11 toward the needle bar 21 without widening the bottom roller, the upper shaft 15 and the lower shaft 16 may be increased. The needle feed sewing machine M can be reduced in size and weight. Furthermore, it is of course possible to slightly widen the roller and slightly shorten the length of the needle feed sewing machine M in the left-right direction.
[0025]
Next, modified embodiments in which various modifications are made to the embodiment will be described. However, the same reference numerals are given to those having the same configuration as in the above embodiment, and the description thereof is omitted as appropriate.
[0026]
1] As shown in FIG. 4, in the pedestal 11A, the connecting link member 39 is connected to the lower end of the swing lever member 43 disposed inside the timing belt 29 from the right side. The timing belt 29 may be positioned on the right side (opposite the sewing head 13). Even in this case, since the left and right widths of the pillar portion 11A are reduced, the size of the needle feed sewing machine M can be reduced. In addition, since the space between the sewing needle N on the sewing machine head 13 side and the pedestal 11A can be made wider than in the above-described embodiment, the foot roller becomes wider and the workability is further improved.
[0027]
2] The rotation transmission coupling body for transmitting the rotation of the upper shaft 15 to the lower shaft 16 is not limited to the timing belt 29 of the above embodiment, but a chain or other member formed in a loop shape is used. May be.
[0028]
【The invention's effect】
According to the first aspect of the present invention, the swing lever member is disposed in the space inside the rotation transmission coupling body, and the size of the needle feed sewing machine is reduced by effectively utilizing the space in the needle feed sewing machine. Can do. In addition, when the swing lever member is disposed in the pedestal portion, the width of the pedestal portion is reduced to widen the space between the sewing needle attached to the needle bar and the pedestal portion, that is, the roller. Thus, it is possible to improve workability and / or to reduce the size of the entire needle feed sewing machine.
[0029]
According to the second aspect of the present invention, since the swing lever member is disposed inside the timing belt, it is possible to reduce the size of the needle feed sewing machine by effectively utilizing the empty space inside the timing belt.
[0030]
According to the invention of claim 3, since the connecting link member is located on the sewing head side with respect to the rotation transmission connecting member, the connecting link member is disposed on the inside of the rotation transmitting connecting member. The member can be connected from the sewing head side.
[0031]
According to the fourth aspect of the present invention, since the connecting link member is located on the opposite side of the sewing machine head with respect to the rotation transmission connecting body, the connecting link member is disposed on the inner side of the rotation transmission connecting body. The moving lever member can be connected from the side opposite to the sewing head.
[Brief description of the drawings]
FIG. 1 is a schematic perspective view of an internal mechanism of a needle feed sewing machine according to an embodiment of the present invention.
FIG. 2 is a front view of an essential part of an internal mechanism of a pedestal portion.
FIG. 3 is a side view of an essential part of an internal mechanism of a pedestal part.
FIG. 4 is a schematic perspective view of an internal mechanism of a modified needle feed sewing machine.
[Explanation of symbols]
M Needle feed sewing machine 10 Sewing machine bed 11 Leg column 12 Sewing arm 13 Sewing head 15 Upper shaft 16 Lower shaft 21 Needle bar 22 Needle bar bases 27 and 28 Timing pulley 29 Timing belt 32 Horizontal feed shaft 35 Interlocking mechanism 39 Connecting lever member 42 Needle bar swing shaft 43 Swing lever member

Claims (4)

ミシンアーム内に回転可能に支持された上軸と、布送り方向に揺動自在に支持された針棒台と、この針棒台に上下動自在に支持され前記上軸に連動して上下動する針棒と、ミシンベッド内に回転可能に支持された下軸と、前記上軸に支持された回転体と前記下軸に支持された回転体とに亙って張架されこれら2つの回転体を連結する回転伝達用連結体と、前記下軸に連動連結された水平送り軸と、前記下軸と水平送り軸に連動連結されて四送り運動する送り歯と、前記水平送り軸に連結されて針棒台を布送り方向に揺動させる針棒揺動軸と、前記水平送り軸と前記針棒揺動軸とを連動連結する連動機構とを備えた針送りミシンにおいて、
前記連動機構は、
前記針棒揺動軸に連結され布送り方向に揺動可能な揺動レバー部材と、
この揺動レバー部材と前記水平送り軸とを連動連結する連結リンク部材とを有し、
前記揺動レバー部材が、前記回転伝達用連結体の内側に配設されたことを特徴とする針送りミシン。
An upper shaft that is rotatably supported in the sewing machine arm, a needle bar base that is swingably supported in the cloth feed direction, and a vertical movement that is supported by the needle bar base so as to move up and down and interlocks with the upper shaft. A needle bar, a lower shaft rotatably supported in the sewing machine bed, a rotating body supported by the upper shaft, and a rotating body supported by the lower shaft. A rotation transmission coupling body that couples the body, a horizontal feed shaft that is linked to the lower shaft, a feed dog that is linked and linked to the lower shaft and the horizontal feed shaft, and a feed dog that is linked to the horizontal feed shaft. In a needle feed sewing machine comprising a needle bar swing shaft for swinging the needle bar base in the cloth feed direction, and an interlocking mechanism for interlockingly connecting the horizontal feed shaft and the needle bar swing shaft,
The interlocking mechanism is
A swing lever member connected to the needle bar swing shaft and swingable in the cloth feed direction;
A connecting link member for interlockingly connecting the swing lever member and the horizontal feed shaft;
The needle feed sewing machine, wherein the swing lever member is disposed inside the rotation transmission coupling body.
前記回転伝達用連結体は、タイミングベルトであることを特徴とする請求項1に記載の針送りミシン。The needle feed sewing machine according to claim 1, wherein the rotation transmission coupling body is a timing belt. 前記連結リンク部材が、前記回転伝達用連結体に対してミシンヘッド側に位置することを特徴とする請求項1又は2に記載の針送りミシン。3. The needle feed sewing machine according to claim 1, wherein the connecting link member is positioned on a sewing head side with respect to the rotation transmission connecting body. 前記連結リンク部材が、前記回転伝達用連結体に対してミシンヘッドと反対側に位置することを特徴とする請求項1又は2に記載の針送りミシン。3. The needle feed sewing machine according to claim 1, wherein the connection link member is located on a side opposite to a sewing head with respect to the rotation transmission connection body.
JP2003118163A 2003-04-23 2003-04-23 Needle feed sewing machine Expired - Fee Related JP4054993B2 (en)

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CN101037833B (en) * 2006-03-17 2011-07-06 兄弟工业株式会社 Feeding device for pattern sewing machine
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JP2019170707A (en) * 2018-03-28 2019-10-10 ペガサスミシン製造株式会社 Needle bar drive mechanism for sewing machine
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