Muffler for engine
11655741 ยท 2023-05-23
Assignee
Inventors
- Tsukasa Minato (Saitama, JP)
- Masayuki Hara (Saitama, JP)
- Noriyoshi Sasaki (Saitama, JP)
- Nobuhiro Saitou (Saitama, JP)
Cpc classification
F01N13/1888
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01N2450/22
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01N2490/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01N1/026
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01N13/1838
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01N2260/18
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01N2260/12
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01N13/1805
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F01N1/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01N13/18
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A muffler for an engine includes a muffler body, at least one partition wall, and at least one reinforcing plate. The muffler body has an inner space formed by a shell. The partition wall includes a flange portion which is in tight contact with an inner surface of the shell, and the partition wall divides the inner space of the muffler body into a plurality of chambers. The reinforcing plate is welded on an outer surface of the shell at a position facing the flange portion of the partition wall.
Claims
1. A muffler for an engine, comprising: a shell that defines a muffler body having a flat profile and an inner space divided into a plurality of chambers by a partition wall with a flange portion in tight contact with an inner surface of the shell; a reinforcing plate in rectangular shape at a position on an outer surface of the shell facing the flange portion of the partition wall; a pair of spot welds on opposing sides of a longitudinal axis of the reinforcing plate welding the reinforcing plate to the shell; and a plug weld positioned between the pair of spot welds welding the reinforcing plate, the flange portion, and the shell.
2. The muffler for the engine according to claim 1, wherein the muffler body is a press muffler, and the pair of spot welds is a plurality of pairs of spot welds, wherein the plurality of the pairs of spot welds are spaced along a longitudinal direction of the reinforcing plate, so as to cover multiple positions facing the flange portion of the partition wall, on the outer surface of the shell being the press muffler.
3. The muffler for the engine according to claim 1, wherein the pair of spot welds is a plurality of pairs of spot welds that are positioned along the longitudinal axis of the reinforcing plate to join the shell at a plurality of places by spot welding.
4. The muffler for the engine according to claim 3, wherein the reinforcing plate is joined to the flange of the partition wall at a plurality of places with a respective plug weld between each of the plurality of the pairs of spot welds.
5. The muffler for the engine according to claim 1, wherein the shell is formed of two opposing pieces joined together.
6. The muffler for the engine according to claim 1, further comprising: grooves formed in the outer surface of the shell, a respective groove located proximate each longitudinal edge of the reinforcing plate.
7. The muffler for the engine according to claim 1, further comprising: a pair of grooves formed in the outer surface of the shell, the pair of grooves located such that the flange portion of the partition wall is positioned between grooves of the pair of grooves.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION
(8) Embodiments will be described below with reference to the drawings.
(9)
(10) As shown in
(11) As shown in
(12) Further, as shown in
(13) As shown in
(14) Furthermore, as shown in
(15) The bonding procedure by welding the three-layer bonding structure of the flange portion 15b of the baffle plate 15, the shell 11/12, and the reinforcing plate 50, shown in
(16) Then, the rectangular-shaped reinforcing plate 50 is piled and attached on the outer surface 11b/12b of the shell 11/12, between the recessed grooves 11c, 12c in each pair, in a state where the respective long holes 11d/12d of the shell 11/12 and the respective long holes 51 of the reinforcing plate 50 are aligned. Then, both sides of the widthwise center of the reinforcing plate 50 with the formed long holes 51 are respectively joined by spot welding to the shell 11/12 (this welded portion is indicated by reference numeral S) at equal intervals at a plurality of places (in this embodiment, one side five places, a total of 10 places) along the longitudinal direction, in advance.
(17) Next, the rectangular-shaped reinforcing plate 50 is joined to the flange portion 15b of the baffle plate 15 across the shell 11/12 via the respective long holes 51, 11d/12d by plug welding (this welded portion is indicated by reference numeral P in the drawing) at equal intervals at a plurality of places (five places in this embodiment). Thus, the three-layer bonding structure of the flange portion 15b of the baffle plate 15, the shell 11/12, and the reinforcing plate 50 is formed as shown in
(18) In the muffler body 10 of the muffler 1 for the engine, having such a configuration, when the inner pressure load M of the mechanical load caused by gas pressure or thermal load or vibration input acts on the shells 11 and 12 being a press muffler, the tension N is applied to the baffle plate 15 by the reaction, as shown in
(19) Further, the jointed portion of the shell 11/12 and the flange portion 15b of the baffle plate 15, serving as a node of the vibration mode of the muffler body 10, is held by a rectangular-shaped reinforcing plate 50 having a width wider than the flange portion 15b not only the point portion of the welded portion P. Therefore, it is possible to reduce the muffler radiated sound because the vibration amplitude of the shells 11/12 is reduced. That is, as compared with the things to achieve the damping effect due to two-layering or the stiffness increase due to the thickness increase of the shell 11/12, it is possible to reduce radiated sound efficiently through vibration amplitude suppressing effect in the shell 11/12 caused by the reinforcing plate 50, without increasing weight.
(20) Furthermore, as shown in
(21) In the above embodiment, the number of baffle plates (partition wall) is two. However, the number of the baffle plates and the number of the chambers partitioned by the baffle plates are not limited to this, and the number of the reinforcing plates is not limited to two. Furthermore, although the shell and the reinforcing plate are welded in advance by spot welding, they may be welded by TIG welding or MIG welding or the like.
(22) Thus, the present invention can include various embodiments and the like not described herein. Therefore, the technical scope of the present invention is defined only by the matters specifying the invention regarding the following claims that are reasonable from the above description.