JP2011169160A - Sub assembly of engine exhaust device - Google Patents

Sub assembly of engine exhaust device Download PDF

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JP2011169160A
JP2011169160A JP2010031031A JP2010031031A JP2011169160A JP 2011169160 A JP2011169160 A JP 2011169160A JP 2010031031 A JP2010031031 A JP 2010031031A JP 2010031031 A JP2010031031 A JP 2010031031A JP 2011169160 A JP2011169160 A JP 2011169160A
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inner cylinder
exhaust pipe
exhaust
engine
upstream
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JP5143156B2 (en
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Fumihiro Osawa
史寛 大澤
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Honda Motor Co Ltd
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Abstract

<P>PROBLEM TO BE SOLVED: To discharge condensed water of exhaust gas retained in a muffler to the outside, by easily evaporating the condensed water. <P>SOLUTION: A sub assembly (SA) of an exhaust device includes: the muffler (5); and upstream and downstream exhaust pipes (7, 8) respectively connected to both ends of the muffler (5). The upstream exhaust pipe (7) and the downstream exhaust pipe (8) are connected to an inner cylinder (16), while matching a circumferential relative position between a downstream end of the upstream exhaust pipe (7) and the inner cylinder (16), with a circumferential relative position between an upstream part of the downstream exhaust pipe (8) and the inner cylinder (16) so that a portion (16A) not having a through-hole (17) of the inner cylinder (16) of the muffler (5) is positioned on a lower side, when the sub assembly (SA) is attached to the exhaust device of the engine. <P>COPYRIGHT: (C)2011,JPO&INPIT

Description

本発明は、エンジンのエキゾーストマニホールドに一端が接続され、他端がテールパイプを介して大気に開放されるエンジンの排気装置に、その排気装置の一部を構成するように取付けられる、エンジンの排気装置のサブアッセンブリーに関する。   The present invention relates to an engine exhaust that is attached to an engine exhaust device that has one end connected to an exhaust manifold of the engine and the other end opened to the atmosphere via a tail pipe so as to constitute a part of the exhaust device. It relates to the sub-assembly of the device.

エンジンの排気装置に取付られる消音器として、後記特許文献1には、エンジンからの排気ガスが導入されると共に筒壁に複数の透孔が形成される内筒(3)と、内筒(3)の外側に設けられて内筒(3)との間に消音室(7)を形成する外筒(2)とを備え、内筒(3)の一端に上流側排気管(4)と他端に下流側排気管(4)とが連結される、エンジンの排気装置に取付けられる消音器が開示されている。   As a silencer attached to an engine exhaust device, Patent Document 1 described later discloses an inner cylinder (3) in which exhaust gas from an engine is introduced and a plurality of through holes are formed in a cylinder wall, and an inner cylinder (3 ) And an outer cylinder (2) that forms a silencing chamber (7) between the inner cylinder (3) and an upstream exhaust pipe (4) at one end of the inner cylinder (3). Disclosed is a silencer attached to the exhaust system of an engine, which is connected at its end to a downstream exhaust pipe (4).

ところで、エンジンの排気ガスには、燃料の燃焼によって生成された水分が水蒸気となって含まれ、触媒コンバータ、サブマフラ、メインマフラやこれらを連結する排気管など構成されるエンジンの排気装置が冷えると、排気ガス中に含まれる水蒸気が凝縮して凝縮水となり、特に、前記特許文献1に開示される消音器では、消音室(7)内で凝縮した凝縮水だけでなく、消音器(1)の上流側、下流側で凝縮した凝縮水も上流側排気管(4)、下流側排気管(4)から内筒(3)に流れ込んで、内筒(3)に形成される複数の透孔から消音室(7)内に滴下するため、消音室(7)内に凝縮水が多く貯留し易い。   By the way, the engine exhaust gas contains moisture generated by the combustion of the fuel as water vapor, and when the engine exhaust system composed of a catalytic converter, a sub-muffler, a main muffler and an exhaust pipe connecting them cools down, The water vapor contained in the exhaust gas is condensed into condensed water. In particular, in the silencer disclosed in Patent Document 1, not only the condensed water condensed in the silencer chamber (7) but also the silencer (1). The condensed water condensed on the upstream side and the downstream side also flows into the inner cylinder (3) from the upstream exhaust pipe (4) and the downstream exhaust pipe (4), and a plurality of through holes formed in the inner cylinder (3) Since it dripped in the sound deadening chamber (7), a lot of condensed water is easily stored in the sound deadening chamber (7).

そして、消音室(7)に凝縮水が貯留していると、外筒(2)の腐食や共鳴室として機能する消音室(7)の実質的な内部容積が減ることによる消音性能の低下などを招くという問題がある。   And if the condensate is stored in the silencer chamber (7), the outer cylinder (2) is corroded or the substantial internal volume of the silencer chamber (7) that functions as a resonance chamber is reduced, and so on. There is a problem of inviting.

そこで、後記特許文献2には、エンジンからの排気ガスが導入されると共に筒壁に複数の透孔が形成される内筒(1)と、内筒(1)の外側に設けられて内筒(1)との間に消音室(3)を形成する外筒(2)とを備え、内筒(1)の一端に上流側排気管と他端に下流側排気管とが連結される、エンジンの排気装置(300)に取付けられる消音器(100)であって、内筒(1)の下側に外筒(2)の底面に向けて下方に延びる排水管(5)を設けて、消音室(3)内に貯留する凝縮水を排水管(5)を通じて内筒(1)内に吸上げて、内筒(1)から消音器(100)の外に排出するものが開示されている。   Therefore, in Patent Document 2 described later, an inner cylinder (1) in which exhaust gas from the engine is introduced and a plurality of through holes are formed in the cylinder wall, and an inner cylinder provided outside the inner cylinder (1) are disclosed. An outer cylinder (2) that forms a silencing chamber (3) between (1) and an upstream exhaust pipe connected to one end of the inner cylinder (1) and a downstream exhaust pipe connected to the other end, A silencer (100) attached to an exhaust device (300) of an engine, wherein a drain pipe (5) extending downward toward the bottom surface of the outer cylinder (2) is provided below the inner cylinder (1), What is disclosed is that condensed water stored in the silencer chamber (3) is sucked into the inner cylinder (1) through the drain pipe (5) and discharged from the inner cylinder (1) to the outside of the silencer (100). Yes.

特開平8−82210号公報JP-A-8-82210 特開2007−270712号公報JP 2007-270712 A

ところが、前記特許文献2に開示のものでは、内筒(1)に、別途排水管(5)を溶接で取付ける必要があり、この分部品点数が増え、製造コストが増加し、また、車両の走行姿勢によっては、消音器(100)の前後方向の傾斜により、消音室(3)内に貯留する凝縮水を、排水管(5)により吸上げにくくなり、能率よく消音器(100)の外に排出するのが難しいという別の問題がある。   However, in the one disclosed in Patent Document 2, it is necessary to separately attach the drain pipe (5) to the inner cylinder (1) by welding, so that the number of parts increases, the manufacturing cost increases, and the vehicle Depending on the running posture, the silencer (100) tilts in the front-rear direction, making it difficult for the condensed water stored in the silencer chamber (3) to be sucked up by the drain pipe (5), and efficiently removing the silencer (100) from the silencer (100). Another problem is that it is difficult to discharge.

本発明は、かかる実情に鑑みてなされたものであり、部品点数の増加を抑えて製造コストの低減を図り、廉価に提供でき、また、消音器内に貯留する凝縮水を、能率よく消音器の外に排出できるようにした、新規なエンジンの排気装置のサブアッセンブリーを提供することを目的とする。   The present invention has been made in view of such circumstances, and can reduce the manufacturing cost by suppressing an increase in the number of parts, can be provided at a low cost, and can efficiently condense condensed water stored in the silencer. It is an object of the present invention to provide a novel engine exhaust system sub-assembly that can be discharged outside the engine.

上記目的を達成するために、請求項1の発明は、エンジンのエキゾーストマニホールドに一端が接続され、他端がテールパイプを介して大気に開放されるエンジンの排気装置に、その排気装置の一部を構成するように取付けられ、
エンジンからの排気ガスが導入されると共に筒壁に複数の透孔が形成される内筒と、内筒の外側に設けられて内筒との間に消音室を形成する外筒とからなる消音器と、内筒の一端に連結される上流側排気管と、内筒の他端に連結される下流側排気管とを備えた、エンジンの排気装置のサブアッセンブリーであって、
前記内筒の所定の中心角度範囲で、その軸方向に前記複数の透孔が形成され、一方、内筒の残余の中心角度範囲で筒壁に透孔を有さない部分が、内筒の全長に亘ってその軸線と平行に連続して形成されており、
上流側排気管の上流端と下流側排気管の下流端が、エンジンの排気装置に取付けられたときに、前記透孔を有さない部分の残余の中心角度範囲が、前記内筒の最下端を挟んでその両側を占める範囲となるように、上流側排気管の下流端と内筒との周方向の相対位置および下流側排気管の上流端と内筒との周方向の相対位置を合わせた状態で、上流側排気管と下流側排気管を内筒に連結することを特徴としている。
In order to achieve the above object, an invention according to claim 1 is directed to an engine exhaust system in which one end is connected to an engine exhaust manifold and the other end is opened to the atmosphere via a tail pipe. Installed to constitute
Silencer comprising an inner cylinder in which exhaust gas from the engine is introduced and a plurality of through holes are formed in the cylinder wall, and an outer cylinder that is provided outside the inner cylinder and forms a silencing chamber between the inner cylinder A sub-assembly of an exhaust system for an engine, comprising: a vessel, an upstream exhaust pipe connected to one end of the inner cylinder, and a downstream exhaust pipe connected to the other end of the inner cylinder,
The plurality of through-holes are formed in the axial direction in a predetermined center angle range of the inner cylinder, while a portion of the inner cylinder having no through-holes in the remaining central angle range of the inner cylinder It is formed continuously in parallel with its axis over the entire length,
When the upstream end of the upstream exhaust pipe and the downstream end of the downstream exhaust pipe are attached to the engine exhaust device, the remaining central angle range of the portion not having the through hole is the lowermost end of the inner cylinder. Align the relative position in the circumferential direction between the downstream end of the upstream exhaust pipe and the inner cylinder and the relative position in the circumferential direction between the upstream end of the downstream exhaust pipe and the inner cylinder so that they occupy both sides of the In this state, the upstream side exhaust pipe and the downstream side exhaust pipe are connected to the inner cylinder.

上記目的を達成するために、請求項2の発明は、前記請求項1のものにおいて、前記内筒の前記透孔を有さない部分の残余の中心角度範囲は、90°±10°であることを特徴としている。   In order to achieve the above object, according to a second aspect of the present invention, in the first aspect of the present invention, the remaining central angle range of the portion of the inner cylinder that does not have the through hole is 90 ° ± 10 °. It is characterized by that.

本請求項各項の発明によれば、サブアッセンブリーがエンジンの排気装置に取付けられたときに、透孔を有さない部分が、内筒の下方側に位置するので、その透孔を有さない部分が“雨樋”の機能を果たし、エンジンの起動時、停止時にかかわり無く、上流側排気管や下流側排気管から内筒内に流れ込む凝縮水は、消音室に滴下することなく、筒壁の透孔を有さない部分を流れて消音器外へ流れ出る。したがって、消音室内に貯留する凝縮水は、消音室内で凝縮した凝縮水のみとなり、消音室内に貯留する凝縮水の絶対量が大幅に減るため、エンジンの始動後に排気装置の温度が上がると、消音室内に貯留する凝縮水は、消音器の熱により容易に気化されて水蒸気となり、筒壁の複数の透孔から内筒内に入り、内筒内を流れる排気ガスと共に消音器の外に排出される。しかも、サブアッセンブリーが、エンジンの排気装置に取付けられたとき、前記透孔を有さない部分の残余の中心角度範囲が、前記内筒の最下端を挟んでその両側を占める範囲となるように、上流側排気管の下流端と内筒との周方向の相対位置および下流側排気管の上流端と内筒との周方向の相対位置を合わせた状態で、上流側排気管と下流側排気管を内筒に連結すればよく、部品点数の増加がなく構造が簡単であるので、製造コストが低減され、廉価に提供することができる。   According to the invention of each claim, when the subassembly is attached to the engine exhaust system, the portion not having the through hole is located on the lower side of the inner cylinder. The part that does not function as a “rain gutter”, regardless of whether the engine is started or stopped, the condensed water flowing into the inner cylinder from the upstream exhaust pipe or downstream exhaust pipe does not drip into the silencer chamber, It flows out of the silencer through the part of the wall that does not have through holes. Therefore, the condensed water stored in the muffler chamber is only condensed water condensed in the muffler chamber, and the absolute amount of condensed water stored in the muffler chamber is greatly reduced. The condensed water stored in the room is easily vaporized by the heat of the silencer to become water vapor, enters the inner cylinder through a plurality of through holes in the cylinder wall, and is discharged out of the silencer together with the exhaust gas flowing in the inner cylinder. The Moreover, when the subassembly is attached to the exhaust system of the engine, the remaining central angle range of the portion not having the through hole is a range that occupies both sides of the innermost end of the inner cylinder. The upstream exhaust pipe and the downstream exhaust gas in a state where the circumferential relative position between the downstream end of the upstream exhaust pipe and the inner cylinder and the relative position in the circumferential direction between the upstream end of the downstream exhaust pipe and the inner cylinder are matched. What is necessary is just to connect a pipe | tube to an inner cylinder, and since there is no increase in a number of parts and a structure is simple, manufacturing cost can be reduced and it can provide at low cost.

本発明サブアッセンブリーを備えたエンジンの排気装置の全体図General view of an exhaust system for an engine having a sub-assembly according to the present invention 図1の2矢視仮想線部分の拡大図Enlarged view of the phantom line portion in FIG. 図2の3矢視図3 arrow view of FIG. 図3の4−4線に沿う拡大断面図Enlarged cross-sectional view along line 4-4 in FIG. 図4の5−5線に沿う断面図Sectional view along line 5-5 in FIG. サブアッセンブリーの組立て順序を示す図Diagram showing the assembly order of sub-assemblies

以下、本発明の実施の形態を、添付図面に示した本発明の実施例に基づいて具体的に説明する。   DESCRIPTION OF THE PREFERRED EMBODIMENTS Embodiments of the present invention will be specifically described below based on examples of the present invention shown in the accompanying drawings.

この実施例は、本発明サブアッセンブリーを自動車用エンジンの排気装置に実施した場合であって、図1において、エンジンEのエキゾーストマニホールド1には、該エンジンEより排出される排気ガスを浄化、消音して大気に放出するための排気装置Exの一端が接続されている。この排気装置Exは自動車の車体の下部に支持され、車体の前後方向に延長されていてその他端はテールパイプ2を介して大気に開放されている。そして、本発明にかかるサブアッセンブリーSAは、その排気装置Exに、その排気装置Exの一部を構成するように取付けられる。   In this embodiment, the sub-assembly according to the present invention is applied to an exhaust system for an automobile engine. In FIG. 1, the exhaust manifold 1 of the engine E is purified and silenced in the exhaust manifold 1 of the engine E. Then, one end of the exhaust device Ex for discharging to the atmosphere is connected. The exhaust device Ex is supported at the lower part of the vehicle body of the automobile, extends in the front-rear direction of the vehicle body, and the other end is opened to the atmosphere via the tail pipe 2. The subassembly SA according to the present invention is attached to the exhaust device Ex so as to constitute a part of the exhaust device Ex.

前記排気装置Exは、エンジンEのエキゾーストマニホールド1に集合管3を介して接続される触媒コンバータ4、サブマフラー5およびメインマフラー6を備え、触媒コンバータ4の下流端とサブマフラー5の上流端とは、上流側排気管7により連通接続され、また、サブマフラー5の下流端とメインマフラー6の上流端とは、下流側排気管8により連通接続され、メインマフラー6の下流端にテールパイプ2が接続されている。そして、本発明にかかるサブアッセンブリーSAは、上流側排気管7、サブマフラー5および下流側排気管8により構成される。   The exhaust device Ex includes a catalytic converter 4, a sub-muffler 5, and a main muffler 6 connected to the exhaust manifold 1 of the engine E via a collecting pipe 3, and includes a downstream end of the catalytic converter 4 and an upstream end of the sub-muffler 5. Are connected in communication by an upstream exhaust pipe 7, and the downstream end of the sub muffler 5 and the upstream end of the main muffler 6 are connected in communication by a downstream exhaust pipe 8, and the tail pipe 2 is connected to the downstream end of the main muffler 6. Is connected. The subassembly SA according to the present invention includes the upstream exhaust pipe 7, the sub muffler 5, and the downstream exhaust pipe 8.

図2〜5に示すように、前記サブマフラー5は、その外殻となる外筒11と、その外筒11内の中心部に同心上に溶接される内筒16とより形成され、外筒11と内筒16との間に環状の消音室18が形成される。   As shown in FIGS. 2 to 5, the sub-muffler 5 is formed by an outer cylinder 11 serving as an outer shell and an inner cylinder 16 welded concentrically to a central portion in the outer cylinder 11. An annular silencing chamber 18 is formed between the inner cylinder 11 and the inner cylinder 16.

外筒11は、円筒状のシェル12と、その左右開口端に、かしめCa固定される、前、後部端板13,14とにより形成されている。シェル12は、ステンレス製の一枚の板材を円筒状に2重巻きして、その両端縁同士を重ね合わせた三重巻き部12aを、軸方向の複数箇所(9 箇所)でスポット溶接Wsして形成される。外筒11の前、後端板13,14の中心部には、外向きのフランジ部を有する前、後取付孔13a,14aが形成されており、その前、後取付孔13a,14aに内筒16の、前、後端が嵌合固定される。   The outer cylinder 11 is formed by a cylindrical shell 12 and front and rear end plates 13 and 14 which are caulked Ca fixed to the left and right opening ends thereof. The shell 12 is formed by winding a single plate made of stainless steel in a cylindrical shape, and spot-welding Ws a triple winding portion 12a in which both end edges are overlapped at a plurality of locations (9 locations) in the axial direction. It is formed. Front and rear mounting holes 13a and 14a are formed in the center of the rear end plates 13 and 14 at the front of the outer cylinder 11 and have an outward flange portion. The front and rear ends of the tube 16 are fitted and fixed.

内筒16は、ステンレス製の一枚の板材を円筒状に巻いてその板巻き合わせ部(突合せ部)16aをティグ溶接Wtして形成される。   The inner cylinder 16 is formed by winding a single plate made of stainless steel into a cylindrical shape and Tig welding Wt the plate winding portion (butting portion) 16a.

図4,5に詳しく示すように、内筒16の筒壁の軸方向の一部には、透孔を有さない部分16Aを除いてパンチング孔よりなる複数の透孔17が開口される。これらの透孔17は、内筒16の軸心Cに対して所定の中心角度範囲θ1、本実施例では、約270°(270°±10°)の範囲で形成され、透孔を有さない部分16Aは、内筒16の板巻き合わせ部(突合せ部)16aを中心に挟んでその両側に残余の中心角度範囲θ2、本実施例では、約90°(90°±10°)の範囲で形成される。透孔を有さない部分16Aは、内筒16の全長に亘ってその軸線と平行に連続して形成される。   As shown in detail in FIGS. 4 and 5, a plurality of through holes 17 made of punching holes are opened in a part in the axial direction of the cylindrical wall of the inner cylinder 16 except for a portion 16 </ b> A having no through holes. These through holes 17 are formed in a predetermined central angle range θ1 with respect to the axis C of the inner cylinder 16, that is, in the present embodiment, a range of about 270 ° (270 ° ± 10 °), and have through holes. The portion 16A that does not exist is sandwiched around the plate winding portion (butting portion) 16a of the inner cylinder 16, and the remaining central angle range θ2 on both sides thereof, in this embodiment, the range of about 90 ° (90 ° ± 10 °). Formed with. The portion 16 </ b> A having no through-hole is continuously formed in parallel with the axis thereof over the entire length of the inner cylinder 16.

内筒16と外筒11とは、それらの周方向の相対位置を定めて固定される。具体的には、シェル12の三重巻き部12aのスポット溶接Ws部に対して180°±10°ずらした位置に、内筒16の板巻き合わせ部(突合わせ部)16aが位置するように、前、後部端板13,14の前、後取付孔13a,14aに、内筒16の前、後両端が嵌合され、前部端板13と内筒16の前端および後部端板14と内筒16の後端がそれぞれそれらの周方向の一カ所でスポット溶接Wsにより仮止めされる。   The inner cylinder 16 and the outer cylinder 11 are fixed with their relative positions in the circumferential direction determined. Specifically, the plate winding portion (butting portion) 16a of the inner cylinder 16 is positioned at a position shifted by 180 ° ± 10 ° with respect to the spot weld Ws portion of the triple winding portion 12a of the shell 12, The front and rear ends of the inner cylinder 16 are fitted into the front and rear end plates 13 and 14 and the rear mounting holes 13a and 14a. The front end plate 13 and the front end of the inner cylinder 16 and the rear end plate 14 and the inner The rear ends of the cylinders 16 are temporarily fixed by spot welding Ws at one place in the circumferential direction.

そして、サブアッセンブリーSAが、エンジンEの排気装置Exの一部を構成するように、上流側排気管7の下流端と下流側排気管8の上流端がエンジンEの排気装置Exに取付けられたときに、前記透孔を有さない部分16の残余の中心角度θ2が、前記内筒16の最下端を挟んでその両側を占める範囲となるように(前記透孔を有さない部分16Aが内筒16の下方側に位置するように)、上流側排気管7の下流端と内筒16との周方向の相対位置および下流側排気管8の上流端と内筒16との周方向の相対位置を合わせた状態で、上流側排気管7と下流側排気管8を内筒16に全周溶接Wにより連結してサブアッセンブリーSAが構成される。   The downstream end of the upstream exhaust pipe 7 and the upstream end of the downstream exhaust pipe 8 are attached to the exhaust apparatus Ex of the engine E so that the subassembly SA constitutes a part of the exhaust apparatus Ex of the engine E. Sometimes, the remaining central angle θ2 of the portion 16 that does not have the through hole is in a range that occupies both sides of the lower end of the inner cylinder 16 (the portion 16A that does not have the through hole is The relative position in the circumferential direction between the downstream end of the upstream exhaust pipe 7 and the inner cylinder 16 and the circumferential direction between the upstream end of the downstream exhaust pipe 8 and the inner cylinder 16 (so as to be positioned below the inner cylinder 16). In a state where the relative positions are adjusted, the upstream exhaust pipe 7 and the downstream exhaust pipe 8 are connected to the inner cylinder 16 by the all-around welding W to form a subassembly SA.

つぎに、図6を参照して、上流側排気管7、サブマフラー5および下流側排気管8よりなるサブアッセンブリーSAの組立て順序について説明する。   Next, with reference to FIG. 6, the assembly order of the subassembly SA composed of the upstream exhaust pipe 7, the sub muffler 5, and the downstream exhaust pipe 8 will be described.

(1) 図6(A)(B)に示すように、円筒状のシェル12の前、後両端に前、後端板13,14をそれぞれかしめCa固定して外筒11を形成する。   (1) As shown in FIGS. 6A and 6B, the outer cylinder 11 is formed by caulking the front and rear end plates 13 and 14 to the front and rear ends of the cylindrical shell 12, respectively, and fixing them with Ca.

(2) つぎに、図6(C)(D)に示すように、外筒11のシェル12の三重巻き部12aのスポット溶接Ws部に対して180°±10°ずらした位置に、内筒16の板巻き合わせ部(突合わせ部)16aを位置させる。この状態で、内筒16の前、後両端を、外筒11の前、後端板13,14の支持孔13a,14aに嵌合し、それぞれそれらを周方向の一箇所でスポット溶接Wsにより仮止めして外筒11と内筒16との周方向の相対位置を固定する。これにより、三重巻き部12aのスポット溶接Ws部の反対側、すなわち180°±10°ずらした位置に、透孔を有さない部分16Aが常に位置するようになり、上流側排気管7の下流端および下流側排気管8の上流端と、内筒16との周方向の相対位置合わせをするときに、シェル12の三重巻き部12aのスポット溶接Ws部が目印となる。   (2) Next, as shown in FIGS. 6C and 6D, the inner cylinder is positioned 180 ° ± 10 ° away from the spot weld Ws portion of the triple winding portion 12a of the shell 12 of the outer cylinder 11. Sixteen plate winding portions (butting portions) 16a are positioned. In this state, both the front and rear ends of the inner cylinder 16 are fitted into the support holes 13a and 14a of the front and rear end plates 13 and 14 of the outer cylinder 11, and they are respectively spot welded Ws at one place in the circumferential direction. Temporarily fastening the outer cylinder 11 and the inner cylinder 16 relative positions in the circumferential direction is fixed. As a result, the portion 16A having no through hole is always located on the opposite side of the spot weld Ws portion of the triple winding portion 12a, that is, at a position shifted by 180 ° ± 10 °, and downstream of the upstream side exhaust pipe 7 When the relative alignment between the end and the upstream end of the downstream exhaust pipe 8 and the inner cylinder 16 is performed in the circumferential direction, the spot weld Ws portion of the triple winding portion 12a of the shell 12 serves as a mark.

(3) つぎに、図6(E)に示すように、上流側排気管7の下流端と内筒16との周方向の相対位置および下流側排気管8の上流端と内筒16との周方向の相対位置を前記したようにそれぞれ合わせた後、上流側排気管7の下流端および下流側排気管8の上流端を、内筒16の内側にそれぞれ嵌合させた状態で、上流側排気管7の下流端、内筒16および外筒11を全周同時溶接Wすると共に下流側排気管8の上流端、内筒16および外筒11を全周同時溶接Wする。   (3) Next, as shown in FIG. 6 (E), the relative position in the circumferential direction between the downstream end of the upstream exhaust pipe 7 and the inner cylinder 16 and the upstream end of the downstream exhaust pipe 8 and the inner cylinder 16. After the relative positions in the circumferential direction are adjusted as described above, the upstream end of the upstream exhaust pipe 7 and the upstream end of the downstream exhaust pipe 8 are fitted to the inside of the inner cylinder 16, respectively. The downstream end of the exhaust pipe 7, the inner cylinder 16 and the outer cylinder 11 are welded all around the circumference simultaneously, and the upstream end of the downstream exhaust pipe 8, the inner cylinder 16 and the outer cylinder 11 are welded all around the circumference simultaneously.

このとき、上流側排気管7の下流端および下流側排気管8の上流端と、内筒16との周方向の相対位置を合わせるのに、シェル12の三重巻き部12aのスポット溶接Ws部が目印となる。   At this time, in order to match the relative positions of the downstream end of the upstream side exhaust pipe 7 and the upstream end of the downstream side exhaust pipe 8 and the inner cylinder 16 in the circumferential direction, It becomes a landmark.

なお、上流側排気管7の下流端を内筒16の内側に、下流側排気管8の上流端を内筒16の内側にそれぞれ嵌合させた状態で、内筒16の板巻き合わせ部(突合わせ部)16aをそれぞれ外側から目視できるので、その板巻き合わせ部(突合わせ部)16aを直接目視して上流側排気管7の下流端と内筒16および下流側排気管8の上流端と内筒16との周方向の相対位置を合わせることもできる。この場合は、必ずしもシェル12の三重巻き部12aのスポット溶接Ws部の反対側に板巻き合わせ部(突合わせ部)16aを位置させる必要はないが、三重巻き部12aの方が外側から容易に目視できるので、これを目印に利用した方が作業性が良い。   In addition, with the downstream end of the upstream side exhaust pipe 7 fitted inside the inner cylinder 16 and the upstream end of the downstream side exhaust pipe 8 fitted inside the inner cylinder 16, the plate winding portion ( Since each of the butted parts) 16a can be visually observed from the outside, the downstream end of the upstream exhaust pipe 7 and the upstream end of the inner cylinder 16 and the downstream exhaust pipe 8 can be seen by directly viewing the plate winding part (butted part) 16a. The relative position in the circumferential direction between the inner cylinder 16 and the inner cylinder 16 can also be matched. In this case, it is not always necessary to position the plate winding portion (butting portion) 16a on the opposite side of the spot welding Ws portion of the triple winding portion 12a of the shell 12, but the triple winding portion 12a is easier from the outside. Since it is visible, it is better to use this as a mark.

以上のように、上流側排気管7、サブマフラー5および下流側排気管8よりなるサブアッセンブリーSAを予め組立てた後、このサブアッセンブリーSAをエンジンEの排気装置Exに取り付けた状態では、内筒16の透孔を有さない部分16Aは、内筒16の下方側に位置し、その透孔を有さない部分16Aの残余の中心角度範囲θ2が、前記内筒16の最下端を挟んでその両側を占める範囲となる。   As described above, after the subassembly SA including the upstream side exhaust pipe 7, the sub muffler 5 and the downstream side exhaust pipe 8 is assembled in advance, the sub cylinder SA is attached to the exhaust device Ex of the engine E in the inner cylinder. The portion 16A not having 16 through holes is located on the lower side of the inner cylinder 16, and the remaining central angle range θ2 of the portion 16A having no through holes sandwiches the lowermost end of the inner cylinder 16 It is the range that occupies both sides.

つぎに、この実施例の作用について説明する。   Next, the operation of this embodiment will be described.

いま、エンジンEが運転され、そこから排出した排気ガスは、排気装置Exへと導かれる。そして排気系Exを流れる排気ガスは、触媒コンバータ4を流れて、HC、CO、NOxなどの有害成分が浄化された後、サブマフラー5およびメインマフラー6を流れて排気音の消音が行われる。   Now, the engine E is operated, and the exhaust gas discharged from the engine E is guided to the exhaust device Ex. Then, the exhaust gas flowing through the exhaust system Ex flows through the catalytic converter 4 to remove harmful components such as HC, CO, and NOx, and then flows through the sub-muffler 5 and the main muffler 6 to mute the exhaust sound.

サブアッセンブリーSAでは、上流側排気管7よりサブマフラー5の内筒16内に導入された排気ガスは、複数の透孔17を通って消音室18に入り、消音された後、下流側排気管8へと流れる。   In the sub assembly SA, the exhaust gas introduced into the inner cylinder 16 of the sub muffler 5 from the upstream side exhaust pipe 7 enters the sound deadening chamber 18 through the plurality of through holes 17 and is silenced, and then the downstream side exhaust pipe. It flows to 8.

ところで、前述のように、サブアッセンブリーSAがエンジンEの排気装置Exに取付けられたときに、透孔を有さない部分16Aが、内筒16の下方側に位置するので、その透孔を有さない部分16が“雨樋”の機能を果たし、エンジンEの起動時、停止時にかかわり無く、上流側排気管7や下流側排気管8から内筒16内に流れ込む凝縮水は、消音室18に滴下することなく、内筒16の透孔を有さない部分16Aを流れて、そこからサブマフラー5の外へ流れ出る。したがって、消音室18内に貯留する凝縮水は、サブマフラー5内で凝縮した凝縮水のみとなり、消音室18内に貯留する凝縮水の絶対量が大幅に減るため、エンジンEの始動後に排気装置Exの温度が上がると、消音室18内に貯留する凝縮水は、サブマフラー5の熱により容易に気化されて水蒸気となり、筒壁の複数の透孔17から内筒16内に入り、内筒16内を流れる排気ガスと共にサブマフラー5の外に排出される。   By the way, as described above, when the subassembly SA is attached to the exhaust device Ex of the engine E, the portion 16A that does not have a through hole is located on the lower side of the inner cylinder 16, and therefore has the through hole. The portion 16 that does not perform the function of “rain gutter”, the condensed water flowing into the inner cylinder 16 from the upstream side exhaust pipe 7 or the downstream side exhaust pipe 8 regardless of whether the engine E is started or stopped, Without dripping into the inner cylinder 16, it flows through the portion 16 </ b> A of the inner cylinder 16 that does not have a through hole, and flows out of the sub muffler 5 from there. Therefore, the condensed water stored in the muffler chamber 18 is only condensed water condensed in the sub-muffler 5, and the absolute amount of condensed water stored in the muffler chamber 18 is greatly reduced. When the temperature of Ex rises, the condensed water stored in the muffler chamber 18 is easily vaporized by the heat of the sub-muffler 5 to become water vapor, and enters the inner cylinder 16 from the plurality of through holes 17 in the cylinder wall. The exhaust gas flowing in the exhaust gas 16 is discharged to the outside of the sub-muffler 5.

しかも、サブアッセンブリーSAが、エンジンEの排気装置Exに取付けられたとき、前記透孔を有さない部分16Aの残余の中心角度範囲θ2が、前記内筒16の最下端を挟んでその両側を占める範囲となるように、上流側排気管7の下流端と内筒16との周方向の相対位置および下流側排気管8の上流端と内筒16との周方向の相対位置を合わせた状態で、上流側排気管7と下流側排気管8を内筒16に連結すればよく、部品点数が増加することがない。   Moreover, when the subassembly SA is attached to the exhaust device Ex of the engine E, the remaining central angle range θ2 of the portion 16A that does not have the through hole is located on both sides of the lowermost end of the inner cylinder 16. A state where the relative position in the circumferential direction between the downstream end of the upstream side exhaust pipe 7 and the inner cylinder 16 and the relative position in the circumferential direction between the upstream end of the downstream side exhaust pipe 8 and the inner cylinder 16 are matched so as to occupy the range. Therefore, the upstream side exhaust pipe 7 and the downstream side exhaust pipe 8 may be connected to the inner cylinder 16, and the number of parts does not increase.

以上、本発明の実施例について説明したが、本発明はその実施例に限定されることなく、本発明の範囲内で種々の実施例が可能である。   As mentioned above, although the Example of this invention was described, this invention is not limited to the Example, A various Example is possible within the scope of the present invention.

たとえば、前記実施例では、本発明を自動車用エンジンの排気装置に実施した場合を説明したが、これを他のエンジンの排気装置にも実施できる。また、前記実施例では、外筒が、シェルと前、後端板とから構成されているが、前記特許文献1、2に開示されるもののように、シェルの両端を縮径させて外筒を構成するサブアッセンブリーにも本発明を実施することができる。   For example, in the above-described embodiment, the case where the present invention is applied to the exhaust system of an automobile engine has been described. However, the present invention can be applied to an exhaust system of another engine. Moreover, in the said Example, although the outer cylinder is comprised from the shell and the front and the rear-end plate, both ends of a shell are reduced in diameter like what is indicated by the said patent documents 1, 2, and an outer cylinder. The present invention can also be implemented in the sub-assembly that constitutes.

1・・・・・・・・・エキゾーストマニホールド
2・・・・・・・・・テールパイプ
5・・・・・・・・・消音器(サブマフラー)
7・・・・・・・・・上流側排気管
8・・・・・・・・・下流側排気管
11・・・・・・・・・外筒
16・・・・・・・・・内筒
16A・・・・・・・・透孔を有さない部分
17・・・・・・・・・透孔
18・・・・・・・・・消音室
E・・・・・・・・・エンジン
Ex・・・・・・・・・排気装置
θ1・・・・・・・・・所定の中心角度範囲
θ2・・・・・・・・・残余の中心角度範囲
1 .... Exhaust manifold 2 .... Tail pipe 5 .... Muffler (sub muffler)
7 ······································································································································· Inner cylinder 16A ............ Part 17 that does not have a through hole ............ A through hole 18 ......... A silencer chamber E ... ··· Engine Ex ·········· Exhaust device θ1 ··········· Predetermined center angle range θ2 ·························

Claims (2)

エンジン(E)のエキゾーストマニホールド(1)に一端が接続され、他端がテールパイプ(2)を介して大気に開放されるエンジンの排気装置(Ex)に、その排気装置(Ex)の一部を構成するように取付けられ、
エンジン(E)からの排気ガスが導入されると共に筒壁に複数の透孔(17)が形成される内筒(16)と、内筒(16)の外側に設けられて内筒(16)との間に消音室(18)を形成する外筒(11)とからなる消音器(5)と、内筒(16)の一端に連結される上流側排気管(7)と、内筒(16)の他端に連結される下流側排気管(8)とを備えた、エンジンの排気装置のサブアッセンブリーであって、
前記内筒(16)の所定の中心角度範囲(θ1)で、その軸方向に前記複数の透孔(17)が形成され、一方、内筒(16)の残余の中心角度範囲(θ2)で筒壁に透孔を有さない部分(16A)が、内筒(16)の全長に亘ってその軸線と平行に連続して形成されており、
上流側排気管(7)の上流端と下流側排気管(8)の下流端が、エンジン(E)の排気装置(Ex)に取付けられたときに、前記透孔を有さない部分(16A)の残余の中心角度範囲(θ2)が、前記内筒(16)の最下端を挟んでその両側を占める範囲となるように、上流側排気管(7)の下流端と内筒(16)との周方向の相対位置および下流側排気管(8)の上流端と内筒(16)との周方向の相対位置を合わせた状態で、上流側排気管(7)と下流側排気管(8)を内筒(16)に連結することを特徴とするエンジンの排気装置のサブアッセンブリー。
A part of the exhaust device (Ex) is connected to the exhaust device (Ex) of the engine, one end of which is connected to the exhaust manifold (1) of the engine (E) and the other end is opened to the atmosphere via the tail pipe (2). Installed to constitute
An inner cylinder (16) in which exhaust gas from the engine (E) is introduced and a plurality of through holes (17) are formed in the cylinder wall, and an inner cylinder (16) provided outside the inner cylinder (16) A silencer (5) comprising an outer cylinder (11) that forms a silencing chamber (18) there between, an upstream exhaust pipe (7) connected to one end of the inner cylinder (16), an inner cylinder ( 16) a sub-assembly of an exhaust system of an engine comprising a downstream exhaust pipe (8) connected to the other end of 16),
The plurality of through holes (17) are formed in the axial direction within a predetermined central angle range (θ1) of the inner cylinder (16), while the remaining central angle range (θ2) of the inner cylinder (16) is formed. A portion (16A) that does not have a through hole in the cylindrical wall is continuously formed in parallel with its axis over the entire length of the inner cylinder (16),
When the upstream end of the upstream exhaust pipe (7) and the downstream end of the downstream exhaust pipe (8) are attached to the exhaust device (Ex) of the engine (E), the portion (16A) that does not have the through hole ) And the downstream end of the upstream exhaust pipe (7) and the inner cylinder (16) so that the remaining central angle range (θ2) occupies both sides of the lower end of the inner cylinder (16). The upstream exhaust pipe (7) and the downstream exhaust pipe (in the state where the relative position in the circumferential direction between the upstream end of the downstream exhaust pipe (8) and the relative position in the circumferential direction of the inner cylinder (16) are matched. 8) A sub-assembly of an exhaust system for an engine, wherein 8) is connected to the inner cylinder (16).
前記内筒(16)の前記透孔を有さない部分(16A)の残余の中心角度範囲(θ2)は、90°±10°であることを特徴とする、前記請求項1記載のエンジンの排気装置のサブアッセンブリー。   2. The engine according to claim 1, wherein a remaining central angle range (θ2) of the portion (16 </ b> A) having no through-hole of the inner cylinder (16) is 90 ° ± 10 °. Sub-assembly of exhaust system.
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US20180106171A1 (en) * 2016-10-17 2018-04-19 Toyota Jidosha Kabushiki Kaisha Exhaust pipe structure
KR20180042123A (en) * 2016-10-17 2018-04-25 도요타 지도샤(주) Exhaust pipe structure
JP2018065408A (en) * 2016-10-17 2018-04-26 トヨタ自動車株式会社 Exhaust pipe structure
KR102021031B1 (en) * 2016-10-17 2019-09-11 도요타 지도샤(주) Exhaust pipe structure
US10422259B2 (en) * 2016-10-17 2019-09-24 Toyota Jidosha Kabushiki Kaisha Exhaust pipe structure

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