JP5818162B2 - Gas introduction device - Google Patents

Gas introduction device Download PDF

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JP5818162B2
JP5818162B2 JP2012085457A JP2012085457A JP5818162B2 JP 5818162 B2 JP5818162 B2 JP 5818162B2 JP 2012085457 A JP2012085457 A JP 2012085457A JP 2012085457 A JP2012085457 A JP 2012085457A JP 5818162 B2 JP5818162 B2 JP 5818162B2
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diameter cylindrical
cylindrical portion
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gas
outside air
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JP2013213483A (en
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啓祐 中根
啓祐 中根
克巳 中村
克巳 中村
拓未 深谷
拓未 深谷
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Taiho Kogyo Co Ltd
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02TCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO TRANSPORTATION
    • Y02T10/00Road transport of goods or passengers
    • Y02T10/10Internal combustion engine [ICE] based vehicles
    • Y02T10/12Improving ICE efficiencies

Description

本発明はガス導入装置に関し、より詳しくは、EGRガスと外気とを混合させてから燃焼室へ導入する場合に好適なガス導入装置に関する。   The present invention relates to a gas introduction device, and more particularly to a gas introduction device suitable for mixing EGR gas and outside air and then introducing the mixture into a combustion chamber.

従来、EGR(排気ガス再循環装置)に用いるガス導入装置は公知であり、このようなガス導入装置としてEGRガスと外気とを濃度ムラなく混合させるための提案がなされている(例えば特許文献1、特許文献2)。   Conventionally, gas introduction devices used for EGR (exhaust gas recirculation device) are known, and as such a gas introduction device, proposals have been made for mixing EGR gas and outside air without concentration unevenness (for example, Patent Document 1). Patent Document 2).

特開2001−304050号公報JP 2001-304050 A 特開2011−64163号公報JP 2011-64163 A

ところで、上記特許文献1のガス導入装置においては、ハウジング内に円筒状の内部隔壁17が形成されており、この内部隔壁17の内方側を混合室とするとともに内部隔壁17の隣接外方側の空間部を外周通路として構成されている。そして、混合室内に外気を導入すると同時に上記外周通路と内部隔壁17の開口を介して混合室にEGRガスを導入することで、外気とEGRガスを混合させるようになっている。このように、特許文献1のガス導入装置においては、ハウジング内に内部隔壁17とその開口部等を形成する必要があるため、ハウジングの内部構成が複雑となる。そのため、特許文献1のガス導入装置においては、ハウジングおよび内部隔壁17等の製造作業が煩雑であるという問題があった。   By the way, in the gas introduction device of the above-mentioned patent document 1, a cylindrical internal partition wall 17 is formed in the housing. The inner side of the inner partition wall 17 serves as a mixing chamber and the outer side adjacent to the inner partition wall 17. The space portion is configured as an outer peripheral passage. The outside air and the EGR gas are mixed by introducing EGR gas into the mixing chamber through the outer peripheral passage and the opening of the internal partition wall 17 at the same time as the outside air is introduced into the mixing chamber. As described above, in the gas introduction device disclosed in Patent Document 1, since it is necessary to form the internal partition wall 17 and the opening thereof in the housing, the internal configuration of the housing becomes complicated. For this reason, the gas introduction device of Patent Document 1 has a problem that the manufacturing work of the housing and the internal partition wall 17 is complicated.

上述した事情に鑑み、本発明は、内部空間を有するハウジングと、上記ハウジング内に設けられて、該ハウジングの内部空間を内方側の混合室と外方側の外周通路とに区分する筒状の内部隔壁と、この内部隔壁に形成されて上記混合室と外周通路とを連通させる開口部と、上記混合室に外気を導入する外気導入管と、上記外周通路と上記開口部を介して混合室にガスを導入するガス導入管と、上記混合室内で混合された外気とガスとの混合ガスを排出するハウジングの出口とを備えたガス導入装置において、
上記ハウジングを、軸方向のフロント側に位置する筒状の第1部材と軸方向のリヤ側に位置する筒状の第2部材とから構成し、上記第1部材は、上記内部隔壁における軸方向のフロント側の部分を構成する第1小径筒状部と、この第1小径筒状部を囲繞してそこよりも軸方向のリヤ側まで伸びる大径筒状部とを備え、上記第2部材は、上記内部隔壁における軸方向のリヤ側の部分を構成する第2小径筒状部と、この第2小径筒状部の外周部に半径方向外方に向けて形成されたフランジ部と、上記第2小径筒状部とフランジ部から連続して軸方向のリヤ側へ延びる外方筒状部とを備え、上記第1部材の大径筒状部内に上記第2部材の第2小径筒状部を挿入して、第1部材の大径筒状部内で上記第1小径筒状部と第2小径筒状部とを軸方向に直列に位置させて、それら第1小径筒状部および第2小径筒状部によって上記内部隔壁を構成するとともに、上記第1小径筒状部および第2小径筒状部の外周部と上記大径筒状部の内周部との間に上記外周通路を構成し、
また、上記第1小径筒状部における軸方向のリヤ側の端部と第2小径筒状部における軸方向のフロント側の端部とにわたって軸方向の切欠き部を形成して、該切欠き部によって上記開口部を形成し、さらに、上記第2部材の外方筒状部によって上記外気導入管を構成するとともに、該外気導入管の軸心を上記内部隔壁の軸心に対して所定の角度θを持たせ、かつ上記開口部を該外気導入管の軸心の延長線上に形成したことを特徴とするものである。
In view of the circumstances described above, the present invention is a housing having an internal space, and a cylindrical shape that is provided in the housing and divides the internal space of the housing into an inner mixing chamber and an outer peripheral passage. An internal partition, an opening formed in the internal partition for communicating the mixing chamber and the outer peripheral passage, an outside air introduction pipe for introducing outside air into the mixing chamber, and the mixing through the outer peripheral passage and the opening. In a gas introduction device comprising a gas introduction pipe for introducing gas into a chamber and an outlet of a housing for discharging a mixed gas of outside air and gas mixed in the mixing chamber,
The housing is composed of a cylindrical first member positioned on the front side in the axial direction and a cylindrical second member positioned on the rear side in the axial direction, and the first member is an axial direction in the internal partition. A first small-diameter cylindrical portion that constitutes a front-side portion of the first small-diameter cylindrical portion, and a large-diameter cylindrical portion that surrounds the first small-diameter cylindrical portion and extends to the rear side in the axial direction from there. A second small-diameter cylindrical portion that constitutes a portion on the rear side in the axial direction of the internal partition, a flange portion that is formed radially outward on the outer peripheral portion of the second small-diameter cylindrical portion, A second small-diameter cylindrical portion and an outer cylindrical portion extending continuously from the flange portion toward the rear side in the axial direction, and the second small-diameter cylindrical shape of the second member in the large-diameter cylindrical portion of the first member. The first small-diameter cylindrical portion and the second small-diameter cylindrical portion in series in the axial direction within the large-diameter cylindrical portion of the first member. The internal partition is constituted by the first small-diameter cylindrical portion and the second small-diameter cylindrical portion, and the outer peripheral portion of the first small-diameter cylindrical portion and the second small-diameter cylindrical portion and the large-diameter cylindrical shape. The outer peripheral passage is configured between the inner peripheral portion of the portion ,
An axial notch is formed between the axial rear end of the first small diameter cylindrical portion and the axial front end of the second small diameter cylindrical portion. parts by forming the opening, is La, the outer tubular portion of the second member with forming the outside air introducing tube, the axis of the outer air introduction pipe with respect to the axis of the internal partition wall A predetermined angle θ is provided, and the opening is formed on an extension line of the axis of the outside air introduction tube .

このような構成によれば、ハウジングは、軸方向フロント側の第1部材とリヤ側の第2部材とによって構成されているので、ハウジングの製造の際には第1部材と第2部材を別個に製造し、その後に両部材を連結すればよい。したがって、従来のガス導入装置と比較してハウジングの製造が容易なガス導入装置を提供できる。
また、上記開口部を外気導入管の軸心の延長線上に形成しているので、後の実験結果で示すように外気とガスとを従来に比較して効率的に混合することができる。
According to such a configuration, since the housing is constituted by the first member on the front side in the axial direction and the second member on the rear side, the first member and the second member are separately provided when the housing is manufactured. What is necessary is just to manufacture both and to connect both members after that. Therefore, it is possible to provide a gas introduction device that is easier to manufacture the housing than the conventional gas introduction device.
Moreover, since the said opening part is formed on the extension line | wire of the axial center of an external air introduction pipe | tube, external air and gas can be mixed efficiently compared with the former as shown by a later experiment result.

本発明の一実施例を示す断面図。Sectional drawing which shows one Example of this invention. 図1のII−II線に沿う要部の断面図。Sectional drawing of the principal part which follows the II-II line | wire of FIG. 図2のIII―III線に沿う要部の断面図。Sectional drawing of the principal part which follows the III-III line | wire of FIG. 図1における要部の連結前の状態を示す断面図。Sectional drawing which shows the state before the connection of the principal part in FIG. 図1に示した実施例の出口における混合ガスの温度分布を示す図。The figure which shows the temperature distribution of the mixed gas in the exit of the Example shown in FIG. 従来品の出口における混合ガスの温度分布を示す図。 The figure which shows the temperature distribution of the mixed gas in the exit of a conventional product .

以下、図示実施例について本発明を説明すると、図1ないし図3において1は自動車に搭載されるEGR用のガス導入装置である。このガス導入装置1はEGRガスG1と新鮮な外気G2とをハウジング2内に受け入れて混合させるようになっており、ハウジング2内で混合されたEGRガスG1と外気G2との混合ガスG3は、ハウジング2の出口2Aから給送パイプ3を介して図示しない燃焼室へ給送されるようになっている。   Hereinafter, the present invention will be described with reference to the illustrated embodiments. In FIGS. 1 to 3, reference numeral 1 denotes a gas introduction device for EGR mounted on an automobile. The gas introduction device 1 is configured to receive and mix the EGR gas G1 and fresh outside air G2 into the housing 2, and the mixed gas G3 of the EGR gas G1 and outside air G2 mixed in the housing 2 is: The gas is fed from an outlet 2A of the housing 2 to a combustion chamber (not shown) via a feed pipe 3.

ガス導入装置1は、概略筒状のハウジング2と、このハウジング2の底部に穿設されてハウジング2内にEGRガスG1を導入するガス導入通路4と、このガス導入通路4を開閉する弁機構5と、ハウジング2の軸方向のリヤ側(図1における右側)に連設されてハウジング2内に外気を導入する外気導入管6と、ハウジング2の軸方向のフロント側(図1における左側)に形成された混合ガスG3の出口2Aとを備えている。   The gas introduction device 1 includes a substantially cylindrical housing 2, a gas introduction passage 4 that is formed in the bottom of the housing 2 and introduces the EGR gas G 1 into the housing 2, and a valve mechanism that opens and closes the gas introduction passage 4. 5, an outside air introduction pipe 6 that is connected to an axial rear side (right side in FIG. 1) of the housing 2 and introduces outside air into the housing 2, and an axial front side of the housing 2 (left side in FIG. 1). The outlet 2A of the mixed gas G3 formed in the above.

ハウジング2におけるフロント側の端部に近い位置からリヤ側の端部に近接する位置にわたって、薄肉の円筒状をした内部隔壁7が設けられている。ハウジング2における内部隔壁7の内方側の空間がEGRガスG1と外気G2とを混合させるための混合室11となっている。内部隔壁7からリヤ側へ連続させて外気導入管6が形成されており、該外気導入管6を介して混合室11内に新鮮な外気G2が導入されるようになっている。この外気導入管6の軸心C2は、円筒状の内部隔壁7の軸心C1を通る仮想の水平面に対して所定の角度θを有するように配置されている。この角度θはガス導入装置1の自動車への搭載位置に応じて適宜設定することができる。   A thin cylindrical inner partition wall 7 is provided from a position near the front end of the housing 2 to a position close to the rear end. A space on the inner side of the inner partition wall 7 in the housing 2 serves as a mixing chamber 11 for mixing the EGR gas G1 and the outside air G2. An outside air introduction pipe 6 is formed continuously from the inner partition wall 7 to the rear side, and fresh outside air G2 is introduced into the mixing chamber 11 through the outside air introduction pipe 6. The axial center C2 of the outside air introduction pipe 6 is arranged to have a predetermined angle θ with respect to a virtual horizontal plane passing through the axial center C1 of the cylindrical inner partition wall 7. This angle θ can be appropriately set according to the mounting position of the gas introducing device 1 on the automobile.

他方、内部隔壁7の隣接外方位置には、円周方向に連続する環状の外周通路10が形成されており、この外周通路10は上記ガス導入通路4の上方部分を構成している。
ガス導入通路4を開閉する弁機構5は、ハウジング2の段付大径孔に形成された環状の弁座12と、弁軸13の下端部に連結されて上記弁座12に接離する弁体14とを備えている。ハウジング2を貫通させた弁軸13の上端部には図示しないアクチュエータが連結されており、該アクチュエータによって所要時に弁軸13が昇降されると、弁体14が弁座12に接離してガス導入通路4が開閉されるようになっている。図1、図2に示したように、アクチュエータによって弁体14が弁座12から離座してガス導入通路4が開放された際には、ガス導入通路4に接続されたガス導入管15を介してEGRガスG1がガス導入通路4内に導入され、その上方部となる外周通路10内にも導入されるようになっている。
On the other hand, an annular outer peripheral passage 10 that is continuous in the circumferential direction is formed at an outer position adjacent to the inner partition wall 7, and this outer peripheral passage 10 constitutes an upper portion of the gas introduction passage 4.
The valve mechanism 5 that opens and closes the gas introduction passage 4 includes an annular valve seat 12 formed in a stepped large-diameter hole of the housing 2, and a valve that is connected to and separated from the valve seat 12 by being connected to the lower end portion of the valve shaft 13. And a body 14. An actuator (not shown) is connected to the upper end of the valve shaft 13 passing through the housing 2. When the valve shaft 13 is lifted and lowered by the actuator when necessary, the valve body 14 contacts and separates from the valve seat 12 to introduce gas. The passage 4 is opened and closed. As shown in FIGS. 1 and 2, when the valve body 14 is separated from the valve seat 12 by the actuator and the gas introduction passage 4 is opened, the gas introduction pipe 15 connected to the gas introduction passage 4 is connected. Thus, the EGR gas G1 is introduced into the gas introduction passage 4 and is also introduced into the outer peripheral passage 10 which is an upper portion thereof.

そして、本実施例においては、このように外周通路10内まで導入されたEGRガスG1を、主として内部隔壁7に形成された開口部としての切欠き部7Aを介して混合室11に導入させるようになっている。
より詳細には、上記内部隔壁7には、軸方向の略中央部から軸方向の前後所定範囲にわたって長孔状の切欠き部7Aが形成されている。この開口部としての切欠き部7Aを介して混合室11と外周通路10が連通している。切欠き部7Aが形成される軸方向の範囲は、実質的に上記内部隔壁7を設けた軸方向の範囲と同一であり、換言すると外周通路10が形成される軸方向の範囲にわたって開口部としての切欠き部7Aが形成されている。
In this embodiment, the EGR gas G1 thus introduced into the outer peripheral passage 10 is introduced into the mixing chamber 11 mainly through the notch 7A as an opening formed in the internal partition wall 7. It has become.
More specifically, the inner partition wall 7 is formed with a long hole-like notch 7A extending from a substantially central portion in the axial direction to a predetermined range in the axial direction. The mixing chamber 11 and the outer peripheral passage 10 communicate with each other through the notch 7A serving as the opening. The axial range in which the notch 7A is formed is substantially the same as the axial range in which the internal partition wall 7 is provided, in other words, as an opening over the axial range in which the outer peripheral passage 10 is formed. The notch 7A is formed.

上記切欠き部7Aは、外気導入管6の軸心C2の延長線が内部隔壁7と交差する位置に形成されている(図2参照)。本実施例においては、この内部隔壁7の切欠き部7Aを介して外周通路10内のEGRガスG1と混合室11内に導入された一部の外気G2とが相互に流通することで、混合室11内でEGRガスG1と新鮮な外気G2とを効率的に混合させるようになっている。
より詳細には、上記弁機構5によりガス導入通路4が開放されて外周通路10内までEGRガスG1が導入される際には、外気導入管6からも上記切欠き部7Aに向けて最大の流速で新鮮な外気G2が導入される。そのため、外気G2は混合室11内に導入されると同時に外気G2の一部が切欠き部7Aを貫通して外周通路10内まで迅速に侵入し、そこのEGRガスG1と混合される。そして、外周通路10内で混合された混合ガスG3は切欠き部7Aを介して混合室11内に導入される。
The cutout portion 7A is formed at a position where the extension line of the axis C2 of the outside air introduction pipe 6 intersects the internal partition wall 7 (see FIG. 2). In the present embodiment, the EGR gas G1 in the outer peripheral passage 10 and a part of the outside air G2 introduced into the mixing chamber 11 are circulated through the notch 7A of the inner partition wall 7 so that mixing is performed. The EGR gas G1 and fresh outside air G2 are efficiently mixed in the chamber 11.
More specifically, when the gas introduction passage 4 is opened by the valve mechanism 5 and the EGR gas G1 is introduced into the outer peripheral passage 10, the maximum air pressure from the outside air introduction pipe 6 toward the notch 7A is also maximized. Fresh outside air G2 is introduced at a flow rate. Therefore, the outside air G2 is introduced into the mixing chamber 11, and at the same time, a part of the outside air G2 passes through the notch 7A and quickly enters the outer peripheral passage 10 and is mixed with the EGR gas G1 there. And the mixed gas G3 mixed in the outer periphery channel | path 10 is introduce | transduced in the mixing chamber 11 through the notch part 7A.

このように、内部隔壁7の切欠き部7Aを介して外周通路10内のEGRガスG1と混合室11内に導入された外気G2とが相互に流通し合うことになり、それにより、混合室11内でEGRガスG1と外気G2とを効率的に混合させて混合ガスG3を形成することができる。そして、このように混合室11内で混合された混合ガスG3は、ハウジング2の出口2Aから給送パイプ3を介して下流側の燃焼室へ給送されるようになっている。   In this way, the EGR gas G1 in the outer peripheral passage 10 and the outside air G2 introduced into the mixing chamber 11 are circulated through the notch portion 7A of the inner partition wall 7, whereby the mixing chamber 11, the mixed gas G3 can be formed by efficiently mixing the EGR gas G1 and the outside air G2. The mixed gas G3 thus mixed in the mixing chamber 11 is fed from the outlet 2A of the housing 2 to the downstream combustion chamber via the feeding pipe 3.

ここで、本実施例のガス導入装置1により25℃の新鮮な外気G2と100℃のEGRガスG1とを混合させた混合ガスG3について、ハウジング2の出口2Aにおいて計測した混合ガスG3の温度分布を示したものが図5である。この図5から理解できるように、温度分布としては混合ガスG3は約31℃から約49℃の範囲内にあり、ハウジング2内への導入時のEGRガスG1が100℃であったことを考慮すると、外気G2とEGRガスG1とがガス導入装置1により効率的に混合されていることが理解できる。
一方、従来品のガス導入装置において、25℃の新鮮な外気と100℃のEGRガスとを混合させた混合ガスについて、ハウジングの出口で計測した混合ガスの温度分布を示したものが図6である。なお、従来品のガス導入装置は、例えば特開2011−179351号や特開2010−255581号に開示されているように、ハウジング内に下方側からEGRガスを導入するとともに、上方側からハウジング内に新鮮な外気を導入するようにしている。それにより、ハウジング内でEGRガスと外気とを混合させた後にハウジングの出口から混合ガスを下流側へ排出するようになっている。そして、図6から理解できるように、従来品のガス導入装置の場合には、出口での混合ガスの温度分布は約27℃から約83℃までの範囲にあり、出口の断面上における各部位によって温度差が大きい事が理解できる。この従来品との比較からも明らかなように、本実施例のガス導入装置1は、外気G2とEGRガスG1とを効率的に混合できることが明らかである。
Here, the temperature distribution of the mixed gas G3 measured at the outlet 2A of the housing 2 with respect to the mixed gas G3 obtained by mixing the fresh outside air G2 at 25 ° C. and the EGR gas G1 at 100 ° C. by the gas introduction device 1 of this embodiment. This is shown in FIG. As can be understood from FIG. 5, the temperature distribution is such that the mixed gas G3 is in the range of about 31 ° C. to about 49 ° C., and the EGR gas G1 when introduced into the housing 2 is 100 ° C. Then, it can be understood that the outside air G2 and the EGR gas G1 are efficiently mixed by the gas introduction device 1.
On the other hand, FIG. 6 shows the temperature distribution of the mixed gas measured at the outlet of the housing for the mixed gas obtained by mixing the fresh outside air of 25 ° C. and the EGR gas of 100 ° C. in the conventional gas introducing device. is there. In addition, as disclosed in, for example, Japanese Patent Application Laid-Open No. 2011-179351 and Japanese Patent Application Laid-Open No. 2010-255581, the conventional gas introduction device introduces EGR gas into the housing from the lower side, and from the upper side to the inside of the housing. Introducing fresh outside air. Thus, after the EGR gas and the outside air are mixed in the housing, the mixed gas is discharged from the outlet of the housing to the downstream side. As can be seen from FIG. 6, in the case of the conventional gas introduction device, the temperature distribution of the mixed gas at the outlet is in the range from about 27 ° C. to about 83 ° C., and each portion on the cross section of the outlet It can be understood that the temperature difference is large. As is clear from the comparison with the conventional product, it is clear that the gas introduction device 1 of this embodiment can efficiently mix the outside air G2 and the EGR gas G1.

次に、本実施例のガス導入装置1の特徴は、上記ハウジング2と外気導入管6とを形成するに当たって、それらを軸方向フロント側の第1部材21と軸方向リヤ側の第2部材22との2部材に分けて鋳造し、その後、それらを軸方向において一体に連結することである。
より詳細には、図3ないし図4に示すように、フロント側の第1部材21は、概略円筒状の本体部21Aと、この本体部21Aの下部の外周部に連設されたブロック状の基部21Bとを備えている。この基部21Bのフロント側(図面上の左方側)の端面と本体部21Aのフロント側の端面は同一平面上に位置しており、そこに上記給送パイプ3が連結されるようになっている(図1参照)。
Next, when the housing 2 and the outside air introduction pipe 6 are formed, the gas introduction device 1 of the present embodiment is characterized by the first member 21 on the axial front side and the second member 22 on the axial rear side. And then casting them in two parts, and then connecting them together in the axial direction.
More specifically, as shown in FIGS. 3 to 4, the first member 21 on the front side includes a substantially cylindrical main body 21 </ b> A and a block-shaped continuous connection with the outer periphery of the lower portion of the main body 21 </ b> A. And a base 21B. The front end surface (left side in the drawing) of the base portion 21B and the front end surface of the main body portion 21A are located on the same plane, and the feeding pipe 3 is connected to the end surface. (See FIG. 1).

基部21Bのリヤ側(図面上の右側)の端面21Cは、本体部21Aのリヤ側の端面21D(先端部)よりもリヤ側まで突出させてあり、その突出部分の上面によって他方の第2部材22を支持する支持部21Eが形成されている。
本体部21Aは、フロント側の端面に近い領域が肉厚の肉厚筒状部21Aaとなっており、そこよりもリヤ側の箇所は肉厚を薄くした大径筒状部21Abとなっており、さらに本体部21Aには上記肉厚筒状部21Aaのリヤ側端部からリヤ側へ伸びる第1小径筒状部21Acが形成されている。上記大径筒状部21Abは、第1小径筒状部21Acを囲繞してそこよりも所定寸法だけリヤ側へ延びている。第1小径筒状部21Acは円周方向全域にわたって円筒状に形成されており、その円周方向の所要箇所にリヤ側端部21Adまで開口する軸方向の切欠き部7Aが形成されている。また、この他に第1小径筒状部21Acには、円周方向の2箇所にリヤ側端部21Adに開口する弁軸13用の切欠き部21Aeが形成されている(図1、図3参照)。
An end surface 21C on the rear side (right side in the drawing) of the base portion 21B protrudes to the rear side from an end surface 21D (tip portion) on the rear side of the main body portion 21A, and the other second member is formed by the upper surface of the protruding portion. A support portion 21 </ b> E that supports 22 is formed.
The main body portion 21A has a thick cylindrical portion 21Aa where the area near the front end surface is thick, and the rear portion is a large-diameter cylindrical portion 21Ab with a thinner thickness. Further, the main body portion 21A is formed with a first small-diameter tubular portion 21Ac extending from the rear end portion of the thick tubular portion 21Aa to the rear side. The large-diameter cylindrical portion 21Ab surrounds the first small-diameter cylindrical portion 21Ac and extends to the rear side by a predetermined dimension from there. The first small-diameter cylindrical portion 21Ac is formed in a cylindrical shape over the entire circumferential direction, and an axial cutout portion 7A that opens to the rear end 21Ad is formed at a required location in the circumferential direction. In addition, the first small-diameter cylindrical portion 21Ac is formed with notches 21Ae for the valve shaft 13 that open to the rear end 21Ad at two locations in the circumferential direction (FIGS. 1 and 3). reference).

一方、本体部21Aの下部に連設された基部21Bには、底部から上記本体部21Aの大径筒状部21Abの内周面まで貫通する大径の段付孔21Baが形成されており、この段付孔21Baがガス導入通路4の下方部分を構成している。そして、この段付孔21Baに環状の弁座12が装着されるようになっている。また、基部21Bの底部に開口した段付孔21Baを囲繞して上記ガス導入管15が接続されるようになっている(図1参照)。
第1部材21は以上のように構成されており、このように構成された第1部材21はアルミ合金やFC200等の鋳鉄を材料として製造される。
On the other hand, a large diameter stepped hole 21Ba penetrating from the bottom portion to the inner peripheral surface of the large diameter cylindrical portion 21Ab of the main body portion 21A is formed in the base portion 21B provided continuously to the lower portion of the main body portion 21A. This stepped hole 21Ba constitutes the lower part of the gas introduction passage 4. An annular valve seat 12 is mounted in the stepped hole 21Ba. Further, the gas introduction pipe 15 is connected to surround the stepped hole 21Ba opened at the bottom of the base 21B (see FIG. 1).
The first member 21 is configured as described above, and the first member 21 configured as described above is manufactured using cast iron such as an aluminum alloy or FC200.

他方、リヤ側の第2部材22は、フロント側に位置する第2小径筒状部22Aと、この第2小径筒状部22Aのリヤ側端部の外周部から半径方向外方へ伸びるフランジ部22Bと、第2小径筒状部22Aおよびフランジ部22Bから連続してリヤ側へ延びる外方筒状部22Cとを備えている。この外方筒状部22Cは、第2小径筒状部22Aの軸心に対して所定角度(本実施例では18°)傾斜させて設けられている。
この第2小径筒状部22Aは上記第1部材21の第1小径筒状部21Acと同様に形成されている。つまり、第2小径筒状部22Aの外径、内径および肉厚は、第1部材21の第1小径筒状部21Acの外径、内径及び肉厚と同じ寸法に設定されている。また、この第2小径筒状部22Aには、上記他方の第1小径筒状部21Acの切欠き部7Aと対向する位置に、フロント側の端部22Aaで開口する切欠き部7Aが形成されている。さらに、この第2部材22の第2小径筒状部22Aにも弁軸13用の切欠き部22Abが2箇所形成されている(図1、図3参照)。
第2部材22の第2小径筒状部22Aの軸方向寸法L1は、相手材である第1部材21の大径筒状部21Abの軸方向寸法L2から第1小径筒状部21Acの軸方向寸法L3を減算した長さよりも少し短い寸法に設定されている。換言すると、L2の長さよりも、L1とL3を加算した長さが僅かに短くなるように、両第2小径筒状部22A、21Acの軸方向長さが設定されている。
第2部材22は以上のように構成されており、この第2部材22はアルミ合金やFC200等の鋳鉄を材料として製造される。
On the other hand, the second member 22 on the rear side includes a second small diameter cylindrical portion 22A located on the front side, and a flange portion extending radially outward from the outer peripheral portion of the rear side end portion of the second small diameter cylindrical portion 22A. 22B and an outer cylindrical portion 22C that continuously extends from the second small-diameter cylindrical portion 22A and the flange portion 22B to the rear side. The outer cylindrical portion 22C is provided to be inclined at a predetermined angle (18 ° in this embodiment) with respect to the axis of the second small-diameter cylindrical portion 22A.
The second small diameter cylindrical portion 22A is formed in the same manner as the first small diameter cylindrical portion 21Ac of the first member 21. That is, the outer diameter, inner diameter, and thickness of the second small diameter cylindrical portion 22A are set to the same dimensions as the outer diameter, inner diameter, and thickness of the first small diameter cylindrical portion 21Ac of the first member 21. The second small-diameter cylindrical portion 22A is formed with a notch 7A that opens at the front end 22Aa at a position facing the notch 7A of the other first small-diameter cylindrical portion 21Ac. ing. Further, two notches 22Ab for the valve shaft 13 are formed in the second small-diameter cylindrical portion 22A of the second member 22 (see FIGS. 1 and 3).
The axial dimension L1 of the second small-diameter cylindrical portion 22A of the second member 22 is from the axial dimension L2 of the large-diameter cylindrical portion 21Ab of the first member 21 that is the counterpart material to the axial direction of the first small-diameter cylindrical portion 21Ac. The dimension is set slightly shorter than the length obtained by subtracting the dimension L3. In other words, the axial lengths of the second small-diameter cylindrical portions 22A and 21Ac are set so that the length obtained by adding L1 and L3 is slightly shorter than the length of L2.
The second member 22 is configured as described above, and the second member 22 is manufactured using a cast iron such as an aluminum alloy or FC200.

そして、上述した構成を有する上記第1部材21と第2部材22とを別個に鋳造したら、その後に、それらを軸方向において連結するようになっている。つまり、第1部材21の大径筒状部21Ab内にリヤ側から第2部材22の第2小径筒状部22Aを挿入し、かつフランジ部22Bのフロント側の端面を大径筒状部21Abのリヤ側の端面21D(先端部)に当接させる(図1、図4参照)。また、それと同時にフランジ部22Bの下端部を第1部材21の支持部21Eに載置させる。これにより、第1部材21と第2部材22とは軸方向および円周方向において位置決めされるとともに、両部材21、22が一体に連結されたことになる。また、両部材21、22の軸心は同一軸線上に位置する。つまり、図1に示した状態となる。
この連結状態となれば、第1小径筒状部21Acのリヤ側の端部21Adと、第2小径筒状部22Aのフロント側の端部22Aaとは僅かに離隔して隙間gが生じ、その状態において第1小径筒状部21Ac、22Aとが軸方向に直列に配置される(図1、図3参照)。つまり、これら第1小径筒状部21Ac、22Aによって上述した内部隔壁7が構成されるとともに、同一軸線上に位置した両部材21、22の軸心が内部隔壁7の軸心C1となる。前述したように、この内部隔壁7の内方側に上記混合室11が形成される。また、第1小径筒状部21Acおよび第2小径筒状部22Aの外周面と第1部材21の大径筒状部21Abの内周面との間に上記外周通路10が形成される。さらに、第1小径筒状部21Acおよび第2小径筒状部22Aの各切欠き部7Aは上記隙間gを挟んで軸方向に直列に位置しており、これらの第1小径筒状部21Acおよび第2小径筒状部22Aの切欠き部7Aによって前述した内部隔壁7の開口部としての切欠き部7Aが構成される。
また、第2部材22の外方筒状部22Cによって上記外気導入管6が構成されている。この外気導入管6は内部隔壁7の軸心C1に対して所定角度θ(本実施例では18°)傾斜させて形成されている。そして、外方筒状部22Cからなる外気導入管6の軸心C2の延長線が内部隔壁7(第1小径筒状部21Ac、第2小径筒状部22A)と交差する位置に、上記切欠き部7Aが形成されている。
換言すると、内部隔壁7に形成された切欠き部7Aは、外気導入管6から新鮮な外気G2が混合室11内に導入される際に外気G2の流速が最大となる箇所に形成されている。
And if the said 1st member 21 and the 2nd member 22 which have the structure mentioned above are cast separately, they are connected in an axial direction after that. That is, the second small-diameter cylindrical portion 22A of the second member 22 is inserted into the large-diameter cylindrical portion 21Ab of the first member 21 from the rear side, and the front end face of the flange portion 22B is used as the large-diameter cylindrical portion 21Ab. It is made to contact | abut to end surface 21D (front-end | tip part) of the rear side (refer FIG. 1, FIG. 4). At the same time, the lower end portion of the flange portion 22B is placed on the support portion 21E of the first member 21. Thus, the first member 21 and the second member 22 are positioned in the axial direction and the circumferential direction, and both the members 21 and 22 are integrally connected. Moreover, the axial center of both the members 21 and 22 is located on the same axis line. That is, the state shown in FIG. 1 is obtained.
In this connected state, the end 21Ad on the rear side of the first small-diameter cylindrical portion 21Ac and the end 22Aa on the front side of the second small-diameter cylindrical portion 22A are slightly separated to form a gap g. In the state, the first small-diameter cylindrical portions 21Ac and 22A are arranged in series in the axial direction (see FIGS. 1 and 3). That is, the above-described inner partition wall 7 is configured by the first small-diameter cylindrical portions 21Ac and 22A, and the shaft center of both the members 21 and 22 positioned on the same axis is the axis C1 of the inner partition wall 7. As described above, the mixing chamber 11 is formed on the inner side of the inner partition wall 7. Further, the outer peripheral passage 10 is formed between the outer peripheral surfaces of the first small-diameter cylindrical portion 21Ac and the second small-diameter cylindrical portion 22A and the inner peripheral surface of the large-diameter cylindrical portion 21Ab of the first member 21. Further, the cutout portions 7A of the first small-diameter cylindrical portion 21Ac and the second small-diameter cylindrical portion 22A are positioned in series in the axial direction with the gap g interposed therebetween, and these first small-diameter cylindrical portion 21Ac and The notch 7A as the opening of the internal partition wall 7 described above is constituted by the notch 7A of the second small diameter cylindrical portion 22A.
Further, the outside air introduction pipe 6 is configured by the outer cylindrical portion 22 </ b> C of the second member 22. The outside air introduction pipe 6 is formed to be inclined at a predetermined angle θ (18 ° in this embodiment) with respect to the axis C1 of the internal partition wall 7. Then, at the position where the extension line of the axis C2 of the outside air introduction pipe 6 composed of the outer cylindrical portion 22C intersects the inner partition wall 7 (first small diameter cylindrical portion 21Ac, second small diameter cylindrical portion 22A), A notch 7A is formed.
In other words, the notch 7A formed in the internal partition wall 7 is formed at a location where the flow rate of the outside air G2 becomes maximum when fresh outside air G2 is introduced into the mixing chamber 11 from the outside air introduction pipe 6. .

以上のように、本実施例のガス導入装置1は、ハウジング2をフロント側の第1部材21とリヤ側の第2部材22とに分割し、それらを別個に鋳造してから軸方向において一体に連結させるようになっている。したがって、本実施例においては、内部が複雑な構成となっているハウジング2全体を一体物で鋳造する場合と比較して、鋳型の製作等の鋳造作業が簡略となり、ガス導入装置1の製造を容易に行うことができる。   As described above, in the gas introducing device 1 of the present embodiment, the housing 2 is divided into the first member 21 on the front side and the second member 22 on the rear side, which are separately cast and then integrated in the axial direction. It is supposed to be connected to. Therefore, in this embodiment, compared with the case where the entire housing 2 having a complicated structure is cast as a single body, the casting work such as the production of the mold is simplified, and the manufacture of the gas introduction device 1 is simplified. It can be done easily.

なお、上記図1〜図4に示した第1の実施例においては、円周方向全域において第1小径筒状部21Acと第2小径筒状部22Aとの間に軸方向の隙間gが形成されていたが(図3参照)、この隙間gを無くしてそれら第1小径筒状部21Acのリヤ側端部21Adと第2小径筒状部22Aのフロント側の端部22Aaを当接させても良い。
In the first embodiment shown in FIGS. 1 to 4, an axial gap g is formed between the first small-diameter cylindrical portion 21Ac and the second small-diameter cylindrical portion 22A in the entire circumferential direction. However, the gap g is eliminated and the rear end 21Ad of the first small-diameter cylindrical portion 21Ac and the front end 22Aa of the second small-diameter cylindrical portion 22A are brought into contact with each other. also not good.

1‥ガス導入装置 2‥ハウジング
2A‥出口 6‥外気導入管
7‥内部隔壁 7A‥切欠き部(開口部)
10‥外周通路 11‥混合室
15‥ガス導入管 21‥第1部材
21Ab‥大径筒状部 21Ac‥第1小径筒状部
22‥第2部材 22A‥第2小径筒状部
22B‥フランジ部 22C‥外方筒状部
G1‥EGRガス G2‥外気
G3‥混合ガス
DESCRIPTION OF SYMBOLS 1 ... Gas introduction device 2 ... Housing 2A ... Outlet 6 ... Outside air introduction pipe 7 ... Internal partition 7A ... Notch (opening)
DESCRIPTION OF SYMBOLS 10 ... Outer peripheral passage 11 ... Mixing chamber 15 ... Gas introduction pipe 21 ... 1st member 21Ab ... Large diameter cylindrical part 21Ac ... 1st small diameter cylindrical part 22 ... 2nd member 22A ... 2nd small diameter cylindrical part 22B ... Flange part 22C ... Outer cylindrical part
G1 EGR gas G2 Outside air G3 Gas mixture

Claims (4)

内部空間を有するハウジングと、上記ハウジング内に設けられて、該ハウジングの内部空間を内方側の混合室と外方側の外周通路とに区分する筒状の内部隔壁と、この内部隔壁に形成されて上記混合室と外周通路とを連通させる開口部と、上記混合室に外気を導入する外気導入管と、上記外周通路と上記開口部を介して混合室にガスを導入するガス導入管と、上記混合室内で混合された外気とガスとの混合ガスを排出するハウジングの出口とを備えたガス導入装置において、
上記ハウジングを、軸方向のフロント側に位置する筒状の第1部材と軸方向のリヤ側に位置する筒状の第2部材とから構成し、
上記第1部材は、上記内部隔壁における軸方向のフロント側の部分を構成する第1小径筒状部と、この第1小径筒状部を囲繞してそこよりも軸方向のリヤ側まで伸びる大径筒状部とを備え、
上記第2部材は、上記内部隔壁における軸方向のリヤ側の部分を構成する第2小径筒状部と、この第2小径筒状部の外周部に半径方向外方に向けて形成されたフランジ部と、上記第2小径筒状部とフランジ部から連続して軸方向のリヤ側へ延びる外方筒状部とを備え、
上記第1部材の大径筒状部内に上記第2部材の第2小径筒状部を挿入して、第1部材の大径筒状部内で上記第1小径筒状部と第2小径筒状部とを軸方向に直列に位置させて、それら第1小径筒状部および第2小径筒状部によって上記内部隔壁を構成するとともに、上記第1小径筒状部および第2小径筒状部の外周部と上記大径筒状部の内周部との間に上記外周通路を構成し、
また、上記第1小径筒状部における軸方向のリヤ側の端部と第2小径筒状部における軸方向のフロント側の端部とにわたって軸方向の切欠き部を形成して、該切欠き部によって上記開口部を形成し、
らに、上記第2部材の外方筒状部によって上記外気導入管を構成するとともに、該外気導入管の軸心を上記内部隔壁の軸心に対して所定の角度θを持たせ、かつ上記開口部を該外気導入管の軸心の延長線上に形成したことを特徴とするガス導入装置。
A housing having an internal space, a cylindrical internal partition wall provided in the housing and dividing the internal space of the housing into an inner mixing chamber and an outer peripheral passage, and formed in the internal partition wall An opening for communicating the mixing chamber and the outer peripheral passage; an outside air introduction pipe for introducing outside air into the mixing chamber; and a gas introduction pipe for introducing gas into the mixing chamber through the outer peripheral passage and the opening. In the gas introduction device provided with an outlet of the housing for discharging the mixed gas of the outside air and the gas mixed in the mixing chamber,
The housing is composed of a cylindrical first member positioned on the front side in the axial direction and a cylindrical second member positioned on the rear side in the axial direction.
The first member includes a first small-diameter cylindrical portion that constitutes a front-side portion in the axial direction of the inner partition wall, and a large portion that surrounds the first small-diameter cylindrical portion and extends to the rear side in the axial direction from there. A diameter cylindrical part,
The second member includes a second small-diameter cylindrical portion that forms a rear-side portion in the axial direction of the internal partition, and a flange that is formed radially outward on the outer peripheral portion of the second small-diameter cylindrical portion. And an outer cylindrical portion that extends from the second small-diameter cylindrical portion and the flange portion continuously to the rear side in the axial direction,
The second small diameter cylindrical portion of the second member is inserted into the large diameter cylindrical portion of the first member, and the first small diameter cylindrical portion and the second small diameter cylindrical shape are inserted in the large diameter cylindrical portion of the first member. And the first small-diameter cylindrical portion and the second small-diameter cylindrical portion constitute the internal partition wall, and the first small-diameter cylindrical portion and the second small-diameter cylindrical portion The outer peripheral passage is configured between the outer peripheral portion and the inner peripheral portion of the large-diameter cylindrical portion ,
An axial notch is formed between the axial rear end of the first small diameter cylindrical portion and the axial front end of the second small diameter cylindrical portion. The opening is formed by a portion,
Et al is, together with forming the outside air introducing pipe by the outer tubular portion of the second member, to have a predetermined angle θ to the axis of the outer air introduction pipe with respect to the axis of the internal partition wall, and A gas introduction apparatus, wherein the opening is formed on an extension line of an axis of the outside air introduction pipe .
上記第1部材の大径筒状部におけるリヤ側の端部と上記第2部材のフランジ部の端面とを当接させることにより、第1部材と第2部材とが軸方向において位置決めされることを特徴とする請求項1に記載のガス導入装置。 The first member and the second member are positioned in the axial direction by bringing the end on the rear side of the large-diameter cylindrical portion of the first member into contact with the end surface of the flange portion of the second member. The gas introduction device according to claim 1 . 上記第1部材には、上記大径筒状部を半径方向に貫通するガス導入通路が形成されており、このガス導入通路に弁機構の弁座が形成されていることを特徴とする請求項1または請求項2に記載のガス導入装置。 Claims above the first member, the and the gas introducing passage and the large-diameter cylindrical-shaped portion penetrating in the radial direction is formed, characterized in that the valve seat of the valve mechanism to the gas introduction passage is formed The gas introduction device according to claim 1 or 2 . 上記ガスは、EGRガスであることを特徴とする請求項1から請求項3のいずれかに記載のガス導入装置。
The gas introduction device according to any one of claims 1 to 3 , wherein the gas is an EGR gas.
JP2012085457A 2012-04-04 2012-04-04 Gas introduction device Expired - Fee Related JP5818162B2 (en)

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