JP5363542B2 - Support device for exhaust parts - Google Patents

Support device for exhaust parts Download PDF

Info

Publication number
JP5363542B2
JP5363542B2 JP2011185372A JP2011185372A JP5363542B2 JP 5363542 B2 JP5363542 B2 JP 5363542B2 JP 2011185372 A JP2011185372 A JP 2011185372A JP 2011185372 A JP2011185372 A JP 2011185372A JP 5363542 B2 JP5363542 B2 JP 5363542B2
Authority
JP
Japan
Prior art keywords
hole
mount rubber
heat shield
cover
rubber
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
JP2011185372A
Other languages
Japanese (ja)
Other versions
JP2013047017A (en
Inventor
一真 西脇
清隆 大塩
淳 武藤
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Honda Motor Co Ltd
Original Assignee
Honda Motor Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Honda Motor Co Ltd filed Critical Honda Motor Co Ltd
Priority to JP2011185372A priority Critical patent/JP5363542B2/en
Publication of JP2013047017A publication Critical patent/JP2013047017A/en
Application granted granted Critical
Publication of JP5363542B2 publication Critical patent/JP5363542B2/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Images

Abstract

<P>PROBLEM TO BE SOLVED: To prevent a variation in vibration isolation performance caused by the heat degradation of mount rubber used for a supporting device for supporting exhaust components to a vehicle by thermally-insulating the mount rubber from high heat with a thermally-insulating cover. <P>SOLUTION: First and second through-holes 1, 2 are formed at the mount rubber R in the longitudinal direction thereof. Furthermore, the rubber-made thermally-insulating cover C covers the mount rubber from one end of the first through-hole 1 side in the longitudinal direction via the first through-hole 1 to immediately before the second through-hole 2. In addition, an upper supporting rod 45 at a vehicle side is inserted into both a cover hole 20 of the thermally-insulating cover C and the first through-hole 1. Moreover, a lower supporting rod 46 at an exhaust component side is inserted into only the second through-hole 2. <P>COPYRIGHT: (C)2013,JPO&amp;INPIT

Description

本発明は、車両用などのエンジンの排気系における、排気管や消音器などの排気部品を車体に支持する、排気部品の支持装置に関する。   The present invention relates to an exhaust part support device that supports exhaust parts such as exhaust pipes and silencers in a vehicle body in an exhaust system of an engine for a vehicle or the like.

従来、自動車の排気部品を車体に支持する支持装置は、たとえば、後記特許文献1に開示されている。この特許文献1のものは、EPDM製のマウントラバーに、第1貫通孔(10、50)と第2貫通孔(20、60)を形成し、第1貫通孔(10、50)に、車体側の支持部を、第2貫通孔(20、60)に排気部品側の支持部をそれぞれ挿入し、自動車のエンジンの作動によって排気部品側から伝達される振動や車体側から伝達される振動を吸収するようにされている。   Conventionally, a support device for supporting an exhaust part of an automobile on a vehicle body is disclosed in, for example, Patent Document 1 described later. In this patent document 1, a first through hole (10, 50) and a second through hole (20, 60) are formed in a mount rubber made of EPDM, and a vehicle body is formed in the first through hole (10, 50). The support part on the side is inserted into the second through hole (20, 60), and the vibration part transmitted from the exhaust part side or the vibration transmitted from the vehicle body side due to the operation of the engine of the automobile. It is designed to absorb.

特許第2585805号公報Japanese Patent No. 2585805

ところで、自動車のエンジンに接続される排気系の、排気管や消音器などの排気部品は、排気系を流れる排気ガスからの排気熱を受けて高温になるため、上記特許文献1に示されるような排気部品の支持装置にも耐熱性が求められる。   By the way, exhaust parts such as an exhaust pipe and a silencer connected to an automobile engine receive high heat from exhaust gas flowing through the exhaust system, so that the temperature is high. Heat resistance is also required for a support device for an exhaust part.

特に、EPDMなどのゴム材料で形成されるマウントラバーは、高熱環境下で長時間使用すると、熱劣化してその防振特性が変化することがある為、そうした高熱から遮熱されることが望まれる。   In particular, a mount rubber formed of a rubber material such as EPDM is desired to be shielded from such high heat because it may deteriorate due to thermal deterioration when used for a long time in a high heat environment. .

本発明はかかる実情に鑑みてなされたもので、従来のマウントラバーをそのまま使用でき、簡単な構造でマウントラバーを高熱から遮熱できるようにした、新規な排気部品の支持装置を提供することを課題とする。   The present invention has been made in view of such circumstances, and provides a novel exhaust component support device that can use a conventional mount rubber as it is and can shield the mount rubber from high heat with a simple structure. Let it be an issue.

前記課題を解決するため、請求項1記載の発明は、長手方向に第1の貫通孔と第2の貫通孔を有するマウントラバーと、第1の貫通孔に挿入される上方の車体側支持部と、第2の貫通孔に挿入される下方の排気部品側支持部と、を備える排気部品の支持装置であって、
マウントラバーは、第1の貫通孔側の長手方向の一端から該第1の貫通孔を通り、第2の貫通孔に至る手前までを、マウントラバーとは別体のラバー製遮熱カバーにより被覆され、その遮熱カバーは、第1の貫通孔に対応する位置にカバー孔が形成され、車体側支持部は、カバー孔と第1の貫通孔の双方に挿入され、また排気部品側支持部は、第2の貫通孔にのみ挿入されるようにしたことを特徴としている。
In order to solve the above-mentioned problem, the invention according to claim 1 is a mount rubber having a first through hole and a second through hole in the longitudinal direction, and an upper vehicle body side support portion inserted into the first through hole. And a lower exhaust component side support portion inserted into the second through hole, and an exhaust component support device comprising:
The mount rubber covers from the one end in the longitudinal direction on the first through-hole side to the front through the first through-hole to the second through-hole with a rubber heat insulating cover separate from the mount rubber. The heat shield cover is formed with a cover hole at a position corresponding to the first through hole, the vehicle body side support portion is inserted into both the cover hole and the first through hole, and the exhaust component side support portion. Is characterized by being inserted only into the second through hole.

前記課題を解決するため、請求項2記載の発明は、前記請求項1のものにおいて、前記ラバー製遮熱カバーと前記マウントラバーとの間に空間を形成したことを特徴としている。   In order to solve the above-mentioned problem, the invention according to claim 2 is characterized in that, in the invention according to claim 1, a space is formed between the rubber heat shield cover and the mount rubber.

前記課題を解決するため、請求項3記載の発明は、前記請求項1、または2のものにおいて、前記ラバー製遮熱カバーは帽子状に形成されていて、前記第1の貫通孔側の長手方向の一端から該第1の貫通孔を通り、前記第2の貫通孔に至る手前までの前記マウントラバーの全域を被覆しており、その開口側の端面に、排気部品側支持部との接触を回避するための迂回凹部を形成したことを特徴としている。   In order to solve the above-mentioned problem, the invention according to claim 3 is the invention according to claim 1 or 2, wherein the rubber heat shield cover is formed in a hat shape, and the length of the first through hole side is long. Covers the entire area of the mount rubber from one end in the direction through the first through hole to the front before reaching the second through hole, and the end surface on the opening side is in contact with the exhaust component side support portion It is characterized in that a bypass recess for avoiding the above is formed.

請求項各項記載の発明によれば、周囲環境がより高温になるマウントラバーの上方部分が、遮熱カバーによってその高温から遮熱される為、マウントラバーの熱劣化による防振特性の変化を防止できる。また、ラバー製の遮熱カバーは、マウントラバーとは別体に形成されて、マウントラバー全体を被覆するのではなく、第1の貫通孔側の長手方向の一端から該第1の貫通孔を通り、第2の貫通孔に至る手前までを被覆するので、マウントラバーへの装着が容易であり、また、従来のマウントラバーをそのまま使用できる。さらに、車体側支持部が遮熱カバーに挿入され、排気部品側支持部は遮熱カバーに挿入されないので、排気部品側からの振動が遮熱カバーに直接伝達されず、遮熱カバーの強度、耐久性に影響を及ぼさない。   According to the invention described in each claim, since the upper part of the mount rubber where the surrounding environment becomes higher temperature is shielded from the high temperature by the heat shield cover, the change in the vibration isolation characteristics due to the thermal deterioration of the mount rubber is prevented. it can. The heat insulating cover made of rubber is formed separately from the mount rubber, and does not cover the entire mount rubber, but instead covers the first through hole from one end in the longitudinal direction on the first through hole side. As described above, since it covers up to the second through hole, it can be easily mounted on the mount rubber, and a conventional mount rubber can be used as it is. Furthermore, since the vehicle body side support part is inserted into the heat shield cover and the exhaust part side support part is not inserted into the heat shield cover, vibration from the exhaust part side is not directly transmitted to the heat shield cover, the strength of the heat shield cover, Does not affect durability.

特に、請求項2記載の発明によれば、遮熱カバーとマウントラバーとの間に空間を設けたので、遮熱カバーとマウントラバーとの密着部分が少なくなり、遮熱カバーからマウントラバーへの熱伝導が小さくなる。これにより、遮熱カバーによる遮熱効果が一層向上する。また、密着部分が少ないので、遮熱カバーがマウントラバーの防振特性に影響を及ぼすこともない。   In particular, according to the second aspect of the present invention, since the space is provided between the heat shield cover and the mount rubber, the contact portion between the heat shield cover and the mount rubber is reduced, and the heat shield cover to the mount rubber is reduced. Heat conduction is reduced. Thereby, the heat insulation effect by a heat insulation cover improves further. Moreover, since there are few contact | adherence parts, a thermal insulation cover does not affect the vibration proof characteristic of a mount rubber.

特に、請求項3記載の発明によれば、遮熱カバーは、帽子状に形成されていて、第1の貫通孔側の長手方向の一端から該第1の貫通孔を通り、第2の貫通孔に至る手前までのマウントラバーの全域を被覆しているので、マウントラバーの高熱からの遮熱効果を一層高めることができ、また、遮熱カバーのマウントラバーへの装着が一層容易になり、さらに、遮熱カバーの開口側の端面に、排気部品側支持部との接触を回避するための迂回凹部を形成したので、排気部品側支持部からの振動が遮熱カバーに伝達するのをより確実に防止することができる。   In particular, according to the third aspect of the present invention, the heat shield cover is formed in a cap shape, passes through the first through hole from one end in the longitudinal direction on the first through hole side, and passes through the second through hole. Since the entire area of the mount rubber up to the hole is covered, the heat insulation effect from the high heat of the mount rubber can be further enhanced, and the installation of the heat insulation cover to the mount rubber becomes easier. Furthermore, since a bypass recess for avoiding contact with the exhaust component side support portion is formed on the end surface on the opening side of the heat shield cover, vibration from the exhaust component side support portion is more effectively transmitted to the heat shield cover. It can be surely prevented.

本発明の排気部品の支持装置を備えた自動車の排気系を示す図The figure which shows the exhaust system of the motor vehicle provided with the support apparatus of the exhaust component of this invention 図1の2−2線に沿う部分拡大図Partial enlarged view along line 2-2 in FIG. 図2の3−3線に沿う拡大図Enlarged view along line 3-3 in FIG. 図3の4−4線に沿う断面図Sectional view along line 4-4 in FIG. 図4の5−5線に沿う拡大断面図Enlarged sectional view taken along line 5-5 in FIG. 図4の6−6線に沿う拡大断面図4 is an enlarged sectional view taken along line 6-6 in FIG. 図4の7−7線に沿う拡大断面図Enlarged sectional view taken along line 7-7 in FIG. マウントラバーと遮熱カバーの組立前の状態を示す断面図Sectional view showing the state before assembly of the mount rubber and heat shield cover

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.

以下の説明において、前後、左右および上下は、排気系Exが搭載される自動車の前進方向を基準にしていう。   In the following description, front and rear, left and right, and top and bottom are referred to based on the forward direction of the automobile on which the exhaust system Ex is mounted.

図1において、自動車用エンジンEの排気系Exにおける排気管Peには、その上流側から下流側に順に、触媒CA、一次消音器M1および二次消音器M2が接続されており、自動車の車体に搭載されるエンジンEから排出される排気ガスは、触媒CAを通ってHC、CO、NOxなどの有害成分が浄化されたのち、一次消音器M1に入り、ここで排気音が、一次的に消音されたのち二次消音器M2に至り、ここで二次的に消音されて、外気に放出される。   In FIG. 1, a catalyst CA, a primary silencer M1, and a secondary silencer M2 are connected in order from the upstream side to the downstream side of the exhaust pipe Pe in the exhaust system Ex of the automobile engine E. Exhaust gas discharged from the engine E mounted on the engine passes through the catalyst CA, and after purifying harmful components such as HC, CO, NOx, etc., enters the primary silencer M1, where the exhaust sound is primarily After being silenced, it reaches the secondary silencer M2, where it is secondarily silenced and released to the outside air.

つぎに、図2〜8を参照して、排気部品としての一次消音器M1の車体Bへの支持装置Sの構成について詳述する。   Next, the configuration of the support device S for the vehicle body B of the primary silencer M1 as an exhaust part will be described in detail with reference to FIGS.

一次消音器M1は、その前後の複数箇所が、本発明に係る支持装置Sにより車体Bに支持され、その支持装置Sは、車体Bに固定される車体側支持部45と、一次消音器M1に固定される排気部品側支持部46と、それら両支持部45,46間に組み付けられるマウントラバーRとより構成される。   The primary muffler M1 is supported at a plurality of locations before and after the vehicle body B by the support device S according to the present invention. The support device S includes a vehicle body side support portion 45 fixed to the vehicle body B, and the primary muffler M1. The exhaust component side support portion 46 fixed to the mounting portion and the mount rubber R assembled between the support portions 45 and 46 are configured.

マウントラバーRは、EPDM(エチレンプロピレンゴム)により形成され、全体形状がほぼ楕円板状であり、その縦方向(長手方向、長径方向)が、自動車の上下方向に、その横方向(短径方向)が自動車の前後方向に、その厚さ方向が自動車の左右方向に向くように配置される。   The mount rubber R is made of EPDM (ethylene propylene rubber) and has an almost elliptical plate shape. The longitudinal direction (longitudinal direction and major axis direction) is the vertical direction of the automobile, and the lateral direction (minor axis direction). ) In the front-rear direction of the automobile, and the thickness direction thereof is arranged in the left-right direction of the automobile.

楕円板状のマウントラバーRの縦方向(長手方向)の中央上部には、その平坦な厚さ方向の両面3,4を貫通する第1の貫通孔1が形成され、また、その縦方向(長手方向)の中央下部には、その平坦な厚さ方向の両面3,4を貫通する第2の貫通孔2が形成され、第1の貫通孔1の軸線1Lと第2の貫通孔2の軸線2Lは、相互に平行(図4、5参照)でマウントラバーRの厚さ方向に略水平に延びている。マウントラバーRの横方向(前後方向)の両側面5,6の、上下方向の中間部には、外方に向けて膨出する、一対の膨出部9,10が対称的に形成されており、それらの膨出部9,10は、後述するように、マウントラバーRに装着される遮熱カバーCとの間に空間を形成するためのものである。   A first through hole 1 is formed in the upper center of the vertical direction (longitudinal direction) of the elliptical plate-shaped mount rubber R, and penetrates both surfaces 3 and 4 in the flat thickness direction. A second through hole 2 penetrating both flat surfaces 3 and 4 in the flat thickness direction is formed at the center lower portion in the longitudinal direction). The axis 1L of the first through hole 1 and the second through hole 2 The axes 2L are parallel to each other (see FIGS. 4 and 5) and extend substantially horizontally in the thickness direction of the mount rubber R. A pair of bulging portions 9 and 10 bulging outward are symmetrically formed in the middle portion in the vertical direction of both side surfaces 5 and 6 in the lateral direction (front-rear direction) of the mount rubber R. The bulges 9 and 10 are for forming a space between the heat insulating cover C attached to the mount rubber R, as will be described later.

また、マウントラバーRの上、下面7,8は、第1、第2の貫通孔1,2の周方向に沿う円弧面に形成され、また中央部には、H字状の通孔11が厚さ方向に形成されている。   The upper and lower surfaces 7 and 8 of the mount rubber R are formed as circular arc surfaces along the circumferential direction of the first and second through holes 1 and 2, and an H-shaped through hole 11 is formed in the center. It is formed in the thickness direction.

遮熱カバーCは、マウントラバーRと同じくEPDM(エチレンプロピレンゴム)により形成され、マウントラバーRに、その上方から装着できるように、帽子形状に構成される。遮熱カバーCの長手方向(上下方向)の断面形状は逆U字状で、その横断面が横方向(前後方向)に長い長方形状に形成され、マウントラバーRよりも長手方向(上下方向)の長さが短く形成されており、具体的には、図4,5に示すように、マウントラバーRの第1の貫通孔1側の長手方向(上下方向)の一端(上端)から、第1の貫通孔1を通り、第2の貫通孔2に至る手前までを被覆できる、長手方向(上下方向)の長さを有しており、遮熱カバーCの表裏両面(マウントラバーRの厚さ方向の面3,4に対面する面)の上部には、マウントラバーRの第1の貫通孔1に対応する位置に、それぞれカバー孔20が形成され、これらのカバー孔20の中心20cは、その遮熱カバーCをマウントラバーRに装着したとき、第1の貫通孔1の軸線1Lと一致するようにされる。また、遮熱カバーCの上面23は、カバー孔20の周方向に沿う円弧面に形成され、また、その開口側の端面24は平坦に形成されて、その表裏両面の中央部に、前記第2の貫通孔2を回避するように円弧状の迂回凹部25(図8参照)がそれぞれ形成されている。   The heat insulating cover C is formed of EPDM (ethylene propylene rubber) like the mount rubber R, and is configured in a hat shape so that it can be mounted on the mount rubber R from above. The cross-sectional shape of the heat shield cover C in the longitudinal direction (vertical direction) is an inverted U-shape, and the transverse cross section is formed in a rectangular shape that is long in the lateral direction (front-rear direction), and is longer than the mount rubber R (vertical direction). Specifically, as shown in FIGS. 4 and 5, from the one end (upper end) in the longitudinal direction (vertical direction) of the mount rubber R on the first through hole 1 side, It has a length in the longitudinal direction (vertical direction) that can cover up to the second through hole 2 through one through hole 1, and both sides of the heat shield cover C (thickness of the mount rubber R) Cover holes 20 are formed at positions corresponding to the first through-holes 1 of the mount rubber R, and the centers 20c of these cover holes 20 are When the heat shield cover C is mounted on the mount rubber R, the first through hole 1 It is to coincide with the axis 1L. Further, the upper surface 23 of the heat shield cover C is formed as an arc surface along the circumferential direction of the cover hole 20, and the end surface 24 on the opening side thereof is formed flat, and the first and second surfaces are formed at the center portions of the front and back surfaces. Arc-shaped detour recesses 25 (see FIG. 8) are formed so as to avoid the two through holes 2.

図4〜8に示すように、遮熱カバーCの表裏両面21,22には、カバー孔20を囲むようにU字状の凹入部28,29がそれぞれ形成されると共にその両側に上下方向に直状に延びる凸条30,31;32,33がそれぞれ形成され、さらに、円弧状上面23の内面左右には、一対の凸部34,35がそれぞれ一体に形成され、さらにまた、遮熱カバーCの左右側面の内面には、前記マウントラバーRの膨出部9,10に対応する位置に凹部36,37が形成されており、遮熱カバーCをマウントラバーRに装着したとき、前記凹入部28,29、凸条30,31;32,33および凸部34,35はマウントラバーRの外面に着座し、さらに前記凹部36,37は、マウントラバーRの膨出部9,10に係合して、マウントラバーRと、遮熱カバーCとの間に空間(中空層)が安定して形成される。   As shown in FIGS. 4 to 8, U-shaped recessed portions 28 and 29 are respectively formed on the front and back surfaces 21 and 22 of the heat shield cover C so as to surround the cover hole 20, and vertically on both sides thereof. Convex ridges 30, 31; 32, 33 extending in a straight shape are formed, respectively, and a pair of convex portions 34, 35 are integrally formed on the left and right inner surfaces of the arcuate upper surface 23, respectively, and further, a heat shield cover Concave portions 36 and 37 are formed on the inner surfaces of the left and right side surfaces of C at positions corresponding to the bulging portions 9 and 10 of the mount rubber R. When the heat shield cover C is attached to the mount rubber R, the concave portions 36 and 37 are formed. The insertion portions 28, 29, the ridges 30, 31; 32, 33 and the projections 34, 35 are seated on the outer surface of the mount rubber R, and the recesses 36, 37 are engaged with the bulging portions 9, 10 of the mount rubber R. Combined with Mount Rubber R, Space (hollow layer) is formed stably between the heat cover C.

図8に示すように、遮熱カバーCは、マウントラバーRに、その長手方向(上下方向)から装着される。そして、その装着状態では、図4、5に示すように、遮熱カバーCは、マウントラバーRの長手方向(上下方向)の一端(上端)から、第1の貫通孔1を通り、第2の貫通孔2に至る手前までの全域を被覆する。そして、遮熱カバーCの開口側の端面24は、第2の貫通孔2の手前のところまで達し、その端面24に形成した迂回凹部25は、第2の貫通孔2に挿入される排気部品側支持部46との接触を回避する。   As shown in FIG. 8, the heat shield cover C is attached to the mount rubber R from the longitudinal direction (vertical direction). In the mounted state, as shown in FIGS. 4 and 5, the heat shield cover C passes through the first through hole 1 from the one end (upper end) in the longitudinal direction (vertical direction) of the mount rubber R and passes through the second through hole 1. The entire region up to the front of the through hole 2 is covered. The end face 24 on the opening side of the heat shield cover C reaches a position just before the second through hole 2, and the bypass recess 25 formed in the end face 24 is an exhaust part inserted into the second through hole 2. Contact with the side support 46 is avoided.

図5,7に示すように、互いに一致した第1の貫通孔1とカバー孔20には、それらに跨がってEPDM製のブッシュ40が挿嵌され、そのブッシュ40の両端に形成されるフランジ部40fは、遮熱カバーCに形成したカバー孔20周りの環状凹部20gに収められ、遮熱カバーCを挟んでマウントラバーRに密着される。   As shown in FIGS. 5 and 7, the first through hole 1 and the cover hole 20 that are coincident with each other are fitted with EPDM bushes 40 across the first through hole 1 and the cover hole 20, and are formed at both ends of the bush 40. The flange portion 40f is housed in an annular recess 20g around the cover hole 20 formed in the heat shield cover C, and is in close contact with the mount rubber R with the heat shield cover C interposed therebetween.

図2,3に示すように、前記マウントラバーRは、自動車の車体Bに固定される、車体側支持部である上部支持ロッド45と、一次消音器M1に固定される、排気部品側支持部である下部支持ロッド46との間に組み付けられ、上部支持ロッド45、マウントラバーRおよび下部支持ロッド46とで、本発明にかかる、前記支持装置Sが構成される。   As shown in FIGS. 2 and 3, the mount rubber R includes an upper support rod 45 which is a vehicle body side support portion fixed to a vehicle body B of an automobile, and an exhaust component side support portion fixed to the primary silencer M1. The upper support rod 45, the mount rubber R, and the lower support rod 46 are assembled with the lower support rod 46, and the support device S according to the present invention is configured.

上部支持ロッド45の略水平な、ポペット状の自由端部45eは、遮熱カバーCの一側より、遮熱カバーCのカバー孔20と第1の貫通孔1の双方にブッシュ40を介して挿入され、また、遮熱カバーCの他側より、排気部品側支持ロッド46の略水平なポペット状の自由端部46eが、第2の貫通孔2にのみ挿入される。   The generally horizontal poppet-shaped free end 45e of the upper support rod 45 is inserted into the cover hole 20 of the heat shield cover C and the first through hole 1 from one side of the heat shield cover C via the bush 40. Further, a substantially horizontal poppet-like free end 46 e of the exhaust part side support rod 46 is inserted only into the second through hole 2 from the other side of the heat shield cover C.

排気部品である一次消音器M1は、排気ガスからの排気熱を受けて高温になるが、遮熱カバーCにより、その高熱を有効に遮熱することができ、マウントラバーRにその熱が伝達するのを抑制して、マウントラバーRの熱劣化による防振特性の変化を防止すること可能になる。   The primary silencer M1, which is an exhaust component, is heated to high temperatures in response to exhaust heat from the exhaust gas, but the high heat can be effectively shielded by the heat shield cover C, and the heat is transmitted to the mount rubber R. Thus, it is possible to prevent the mount rubber R from changing its vibration isolation characteristics due to thermal deterioration.

特に、一次消音器M1からの熱は、上方へ移動するので、マウントラバーRは、上方部程雰囲気温度が高くなるが、遮熱カバーCは、帽子形状に形成されてマウントラバーRの上方側、すなわち、マウントラバーRの上下方向の一端から第1の貫通孔1を通り第2の貫通孔2に至る手前までを被覆しているので、そのマウントラバーRへの装着を容易にし、しかも簡単な構造でマウントラバーRの上方部の全域を確実に遮熱して、マウントラバーRの熱劣化による防振特性の変化を有効に防止することができる。   In particular, since the heat from the primary silencer M1 moves upward, the mount rubber R has a higher ambient temperature in the upper part, but the heat shield cover C is formed in a hat shape and is located above the mount rubber R. That is, since the portion from the vertical end of the mount rubber R to the front through the first through hole 1 to the second through hole 2 is covered, the mounting to the mount rubber R is easy and simple. With the simple structure, the entire upper portion of the mount rubber R can be reliably shielded from heat, and changes in the vibration isolation characteristics due to thermal deterioration of the mount rubber R can be effectively prevented.

また、車体側支持部である上部支持ロッド45のみが遮熱カバーCに挿入され、排気部品側支持部である下部支持ロッド46は遮熱カバーCに挿入されないので、排気部品である一次消音器M1からの振動が遮熱カバーCに直接伝達されることがなく、遮熱カバーCの強度、耐久性に影響を及ぼすことがない。   Further, since only the upper support rod 45 that is the vehicle body side support portion is inserted into the heat shield cover C, and the lower support rod 46 that is the exhaust component side support portion is not inserted into the heat shield cover C, the primary silencer that is an exhaust component. The vibration from M1 is not directly transmitted to the heat shield cover C, and the strength and durability of the heat shield cover C are not affected.

さらに、遮熱カバーCとマウントラバーRとの間には、空間(中空層)を積極的に設けたので、遮熱カバーCとマウントラバーRとの密着部分が少なくなり、遮熱カバーCからマウントラバーRへの熱伝導は小さくなり、遮熱カバーCによる遮熱効果が一層向上し、また、遮熱カバーCがマウントラバーRの防振特性に影響を及ぼすこともない。   In addition, since a space (hollow layer) is positively provided between the heat shield cover C and the mount rubber R, there is less contact between the heat shield cover C and the mount rubber R, and the heat shield cover C The heat conduction to the mount rubber R is reduced, the heat shield effect by the heat shield cover C is further improved, and the heat shield cover C does not affect the vibration isolation characteristics of the mount rubber R.

さらにまた、遮熱カバーの開口側の端面に、排気部品側支持部との接触を回避するための迂回凹部25を形成したので、排気部品側支持部からの振動が遮熱カバーに伝達するのをより確実に防止することができる。   Furthermore, since the bypass recess 25 for avoiding contact with the exhaust component side support portion is formed on the end surface on the opening side of the heat shield cover, vibration from the exhaust component side support portion is transmitted to the heat shield cover. Can be prevented more reliably.

なお、前記実施例において、マウントラバーR、ブッシュ40および遮熱カバーCは、全てEPDM(エチレンプロピレンゴム)により形成されているが、ブッシュ40および遮熱カバーCについては、マウントラバーRを形成するEPDMよりも若干硬度が高いEPDMで形成されている。   In the above embodiment, the mount rubber R, the bush 40 and the heat shield cover C are all formed of EPDM (ethylene propylene rubber). However, the mount rubber R is formed for the bush 40 and the heat shield cover C. It is formed of EPDM having a slightly higher hardness than EPDM.

EPDM(エチレンプロピレンゴム)をマウントラバーRの材料として用いる場合、マウントラバーRの温度が130°程度まで上昇すると、熱劣化によりマウントラバーRの防振特性に変化を生じるので、マウントラバーRを130°以上に上昇させないようにすることが望まれるが、EPDM自体は130°以上に上昇しても、燃えたり、煙を出したりしないので、EPDMを遮熱カバーCの材料として用いる場合は、遮熱カバー(EPDM)Cの温度が130°以上に上昇しても問題はない。したがって、マウントラバーRと同じ材料(EPDM)をマウントラバーRよりもさらに高温になる遮熱カバーに使用している。   When EPDM (ethylene propylene rubber) is used as the material for the mount rubber R, if the temperature of the mount rubber R rises to about 130 °, the vibration-proof characteristics of the mount rubber R change due to thermal degradation. It is desirable to prevent the temperature from rising more than °. However, EPDM itself does not burn or emit smoke even if it rises above 130 °. There is no problem even if the temperature of the thermal cover (EPDM) C rises to 130 ° or more. Therefore, the same material (EPDM) as that of the mount rubber R is used for the heat shield cover that becomes higher in temperature than the mount rubber R.

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、本発明を一次消音器M1を車体に支持する場合について実施しているが、これを排気管、他の消音器などの排気部品の車体への支持に実施できることは勿論であり、また、遮熱カバーの材料はEPDMに限らず、EPDMと同等以上の耐熱性があれば、フッ素ゴムなどの他の耐熱性ゴムでもよい。   For example, in the above-described embodiment, the present invention is applied to the case where the primary silencer M1 is supported on the vehicle body. However, this can of course be implemented to support exhaust parts such as exhaust pipes and other silencers on the vehicle body. In addition, the material of the heat insulating cover is not limited to EPDM, and may be other heat resistant rubber such as fluoro rubber as long as it has heat resistance equal to or higher than that of EPDM.

1・・・・・・・・・第1の貫通孔
2・・・・・・・・・第2の貫通孔
20・・・・・・・・・カバー孔
24・・・・・・・・・開口側の端面
25・・・・・・・・・迂回凹部
45・・・・・・・・・車体側支持部(上部支持ロッド)
46・・・・・・・・・排気部品側支持部(下部支持ロッド)
C・・・・・・・・・遮熱カバー
R・・・・・・・・・マウントラバー
DESCRIPTION OF SYMBOLS 1 ...... 1st through-hole 2 ... 2nd through-hole 20 ...... Cover hole 24 ... ··· Open side 25 ··························································· Body support side
46 ... Exhaust part side support (lower support rod)
C ····· Heat shield R ····· Mount rubber

Claims (3)

長手方向に第1の貫通孔(1)と第2の貫通孔(2)を有するマウントラバー(R)と、
第1の貫通孔(1)に挿入される上方の車体側支持部(45)と、
第2の貫通孔(2)に挿入される下方の排気部品側支持部(46)と、
を備える排気部品の支持装置であって、
マウントラバー(R)は、第1の貫通孔(1)側の長手方向の一端から該第1の貫通孔(1)を通り、第2の貫通孔(2)に至る手前までを、マウントラバー(R)とは別体のラバー製遮熱カバー(C)により被覆され、その遮熱カバー(C)は、第1の貫通孔(1)に対応する位置にカバー孔(20)が形成され、
車体側支持部(45)は、カバー孔(20)と第1の貫通孔(1)の双方に挿入され、排気部品側支持部(46)は、第2の貫通孔(2)にのみ挿入されるようにしたことを特徴とする、排気部品の支持装置。
A mount rubber (R) having a first through hole (1) and a second through hole (2) in the longitudinal direction;
An upper vehicle body support (45) inserted into the first through hole (1);
A lower exhaust component side support (46) inserted into the second through hole (2);
An exhaust part supporting apparatus comprising:
The mount rubber (R) is a mount rubber extending from one end in the longitudinal direction on the first through hole (1) side to the front through the first through hole (1) to the second through hole (2). (R) is covered with a separate rubber heat shield cover (C), and the heat shield cover (C) has a cover hole (20) formed at a position corresponding to the first through hole (1). ,
The vehicle body side support part (45) is inserted into both the cover hole (20) and the first through hole (1), and the exhaust part side support part (46) is inserted only into the second through hole (2). A device for supporting an exhaust part, wherein
前記ラバー製遮熱カバー(C)と前記マウントラバー(R)との間に空間を形成したことを特徴とする、前記請求項1記載の排気部品の支持装置。   The exhaust part supporting device according to claim 1, wherein a space is formed between the rubber heat shield cover (C) and the mount rubber (R). 前記ラバー製遮熱カバー(C)は帽子状に形成されていて、前記第1の貫通孔(1)側の長手方向の一端から該第1の貫通孔(1)を通り、前記第2の貫通孔(2)に至る手前までの前記マウントラバー(R)の全域を被覆しており、その開口側の端面(24)に、前記排気部品側支持部(46)との接触を回避するための迂回凹部(25)を形成したことを特徴とする、前記請求項1、または2記載の排気部品の支持装置。   The rubber heat shield cover (C) is formed in a hat shape and passes through the first through hole (1) from one end in the longitudinal direction on the first through hole (1) side, and the second To cover the entire area of the mount rubber (R) before reaching the through hole (2), and to prevent the end surface (24) on the opening side from coming into contact with the exhaust part side support portion (46). The exhaust part supporting device according to claim 1, wherein a bypass recess (25) is formed.
JP2011185372A 2011-08-27 2011-08-27 Support device for exhaust parts Expired - Fee Related JP5363542B2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP2011185372A JP5363542B2 (en) 2011-08-27 2011-08-27 Support device for exhaust parts

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP2011185372A JP5363542B2 (en) 2011-08-27 2011-08-27 Support device for exhaust parts

Publications (2)

Publication Number Publication Date
JP2013047017A JP2013047017A (en) 2013-03-07
JP5363542B2 true JP5363542B2 (en) 2013-12-11

Family

ID=48010321

Family Applications (1)

Application Number Title Priority Date Filing Date
JP2011185372A Expired - Fee Related JP5363542B2 (en) 2011-08-27 2011-08-27 Support device for exhaust parts

Country Status (1)

Country Link
JP (1) JP5363542B2 (en)

Families Citing this family (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE102013113613A1 (en) * 2013-12-06 2015-06-11 Dr. Ing. H.C. F. Porsche Aktiengesellschaft Exhaust system for a motor vehicle
JP6196559B2 (en) * 2014-01-22 2017-09-13 株式会社Subaru Exhaust system support structure
US9650939B2 (en) 2014-09-05 2017-05-16 Tenneco Automotive Operating Company Inc. Socket isolator mounting apparatus
US10718253B2 (en) 2018-08-14 2020-07-21 The Pullman Company Exhaust system isolator mount with anti-rotation feature

Family Cites Families (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS6284616U (en) * 1985-11-18 1987-05-29
JP2585805B2 (en) * 1989-08-01 1997-02-26 東海ゴム工業 株式会社 Exhaust system member support device
JP2579845Y2 (en) * 1992-10-30 1998-09-03 愛知機械工業株式会社 Muffler mount structure
JP3321881B2 (en) * 1993-02-27 2002-09-09 スズキ株式会社 Automotive exhaust pipe mounting device

Also Published As

Publication number Publication date
JP2013047017A (en) 2013-03-07

Similar Documents

Publication Publication Date Title
AU2005200494B2 (en) Exhaust system support structure
JP5363542B2 (en) Support device for exhaust parts
CN109958519B (en) Exhaust system component support structure
JP2006070705A (en) Exhaust system of vehicular engine
JP5827595B2 (en) Muffler device for saddle riding type vehicle
JP2004003444A (en) Exhaust manifold assembly structure
EP1921287B1 (en) Vehicle
JP4576239B2 (en) Engine muffler
JP3985491B2 (en) Exhaust system structure
JP6280209B2 (en) Heat insulation structure of exhaust confluence pipe
KR101076139B1 (en) Apparatus for Mounting Exhaust System of Vehicle
JP7302589B2 (en) Mounting structure for electronic equipment
US8985272B1 (en) Exhaust muffler for vehicle
JP5623265B2 (en) Exhaust pipe connection structure
JP2007285151A (en) Connection structure of exhaust pipe
JP6879548B2 (en) Cover member
JP2018040256A (en) Vibration absorption structure of piping
JP2005233167A (en) Submuffler for automobile
JP6296126B2 (en) Engine exhaust silencer
JP2002235537A (en) Exhaust muffler device for vehicle
JP2016176423A (en) Heat insulator
JP2007112302A (en) Supporting bracket for fixing exhaust pipe
KR20120136862A (en) 2-way bellows for exhaust system having resonance chamber
JP2022165363A (en) Exhaust emission control device
JP5145199B2 (en) Cover for exhaust parts

Legal Events

Date Code Title Description
TRDD Decision of grant or rejection written
A01 Written decision to grant a patent or to grant a registration (utility model)

Free format text: JAPANESE INTERMEDIATE CODE: A01

Effective date: 20130814

A977 Report on retrieval

Free format text: JAPANESE INTERMEDIATE CODE: A971007

Effective date: 20130815

A61 First payment of annual fees (during grant procedure)

Free format text: JAPANESE INTERMEDIATE CODE: A61

Effective date: 20130905

R150 Certificate of patent or registration of utility model

Ref document number: 5363542

Country of ref document: JP

Free format text: JAPANESE INTERMEDIATE CODE: R150

Free format text: JAPANESE INTERMEDIATE CODE: R150

R250 Receipt of annual fees

Free format text: JAPANESE INTERMEDIATE CODE: R250

LAPS Cancellation because of no payment of annual fees