A device for uniform adjustment of an exhaust gas treatment machine
By designing an exhaust gas dispersion and segmentation mechanism, combined with centrifugal force generation and trigger control, the problem of concentrated exhaust gas emission and difficulty in decomposition was solved, achieving uniform dispersion and segmented emission of exhaust gas, and improving the exhaust gas treatment effect.
Patent Information
- Application Number
- CN202211489114.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-11-25
- Publication Date
- 2025-11-28
- Estimated Expiration
- 2042-11-25
AI Technical Summary
Existing exhaust gas treatment machines often fail to effectively decompose concentrated exhaust gases during operation, resulting in poor treatment performance.
Design a uniformly distributable exhaust gas treatment machine. Through an exhaust gas dispersion mechanism and a segmentation mechanism, combined with centrifugal force generation, trigger control and exhaust volume control, the exhaust gas can be dispersed, segmented and intermittently discharged.
It achieves uniform dispersion and segmented emission of exhaust gas, improves exhaust gas decomposition efficiency, and enhances exhaust gas treatment effect.
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Figure CN116116187B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to tail gas treatment device technical field, especially to a kind of even deployment device of tail gas treatment machine. BACKGROUND
[0002] Many harmful tail gas is generated in the process of industrial production, which is discharged into the air and can easily cause harm to human body. Therefore, people will install tail gas treatment machine on industrial production equipment. The tail gas treatment machine is mainly used to reduce harmful ingredients in tail gas. However, the existing tail gas treatment machine still has the following problems when in use: the existing tail gas treatment machine has only one air inlet and one air outlet when in use, and the treated tail gas is concentratedly discharged through one air outlet, which is not easy to be decomposed after being discharged into the air. Therefore, it is necessary to design a tail gas treatment device.
[0003] We design a kind of even deployment device of tail gas treatment machine for dispersing tail gas, so as to overcome the effect that the existing tail gas treatment machine concentrates tail gas and is not easy to decompose. SUMMARY
[0004] In view of the shortcomings of the prior art, the present application provides a kind of even deployment device of tail gas treatment machine for dispersing tail gas, to overcome the shortcomings that the existing tail gas treatment machine concentrates tail gas and is not easy to decompose.
[0005] To achieve the above purpose, the present application is realized by the following scheme: a kind of even deployment device of tail gas treatment machine, comprising tail gas treatment machine and mounting bracket, tail gas treatment machine front side is connected with mounting bracket, further comprising tail gas dispersing mechanism and tail gas section mechanism, mounting bracket and tail gas treatment machine between being equipped with the tail gas dispersing mechanism for dispersing tail gas, tail gas dispersing mechanism is equipped with the tail gas section mechanism for section discharge tail gas in.
[0006] As an improvement of the above scheme, the tail gas dispersing mechanism includes a gas storage tank, a gas guide pipe, a connecting plate frame and an exhaust frame. The gas storage tank is connected to the upper side of the mounting bracket. Two connecting plate frames are connected to the lower side of the mounting bracket. A gas guide pipe is in communication between the bottom of the gas storage tank and the two connecting plate frames. Two exhaust frames are rotatably connected to the outer sides of the two connecting plate frames.
[0007] As an improvement of the above scheme, the tail gas section mechanism includes a fixed frame, a gas cylinder and a push frame. The fixed frame is connected in the gas storage tank. The gas cylinder is installed on the inner side of the fixed frame. The push frame is connected to the extension rod of the gas cylinder. The push frame is slidingly connected to the inner bottom of the gas storage tank.
[0008] As improved, the centrifugal force generating mechanism for accelerating the dispersion of the exhaust gas is further included, which comprises the motor frame and the double-shaft motor, two motor frames are connected to the front side of the exhaust gas treatment machine, the double-shaft motor is installed between the two motor frames, the output shaft on the left side of the double-shaft motor is connected with the left exhaust gas frame, and the output shaft on the right side of the double-shaft motor is connected with the right exhaust gas frame.
[0009] As improved, the trigger control mechanism for automatically starting the cylinder is further included, which comprises the mounting plate frame, the wedge-shaped block, the first support frame, the first sliding rod, the first spring, the rotating shaft, the one-way gear, the switch, the first jacking rod, the rack and the pressing block, the mounting plate frame is connected to the front side of the right connecting plate frame, the wedge-shaped block is connected to the left front side of the left exhaust gas frame, the mounting plate frame is connected to the upper and lower sides of the front side of the mounting plate frame, the first sliding rod is slidably connected between the two first support frames on the upper side, the first sliding rod is slidably connected between the two first support frames on the lower side, the pressing block is connected between the right sides of the two first sliding rods, the first spring is connected between the left upper side of the pressing block and the right upper side of the first support frame, the first spring is connected between the left lower side of the pressing block and the right lower side of the first support frame, the first spring is wound around the right side of the first sliding rod, the rack is connected between the left sides of the two first sliding rods, the rotating shaft is rotatably connected to the lower side of the front side of the mounting plate frame, the one-way gear is connected to the rotating shaft, the rack is engaged with the one-way gear after moving, the first jacking rod is connected to the front side of the rotating shaft, the switch is installed to the left side of the front side of the mounting plate frame, and the switch and the cylinder are electrically connected.
[0010] As improved, the exhaust amount control mechanism for controlling the exhaust amount is further included, which comprises the handle and the control valve, the control valve is rotatably connected to the upper side of the gas guide pipe, the handle is connected to the front side of the control valve, the handle penetrates through the front side of the gas guide pipe, and the handle is rotatably connected with the gas guide pipe.
[0011] As improved, the spacing mechanism for spacing the exhaust gas is further included, which comprises the second support frame, the blocking frame, the second sliding rod, the second spring, the second jacking rod and the annular jacking block, the second support frame is connected to the left and right sides of the mounting support frame, the second sliding rod is connected to the second support frame, the blocking frame is slidably connected between the eight second sliding rods on the left side, the blocking frame is slidably connected between the eight second sliding rods on the right side, the blocking frame on the left side is slidably connected with the left exhaust gas frame, the blocking frame on the right side is slidably connected with the right exhaust gas frame, the second spring is connected between the four second support frames on the left side and the blocking frame on the left side, the second spring is connected between the four second support frames on the right side and the blocking frame on the right side, the second spring is wound around the second sliding rod, the annular jacking block is connected to the outer side of the two exhaust gas frames, and the second jacking rod is connected to the inner side of the two blocking frames.
[0012] As the improvement of the above scheme, three trapezoidal blocks are connected to each of the two annular top blocks.
[0013] The advantages of the present application are as follows: 1. The tail gas is dispersed and discharged through the exhaust racks after being treated by the tail gas treatment machine and flowing from the gas storage tank and the gas guide pipe into the connecting plate frame, and then being dispersed and discharged through the exhaust racks, so that the dispersion and discharge effect is achieved, and the tail gas is decomposed;
[0014] 2. The wedge-shaped block is driven to rotate by the rotation of the exhaust rack, so that the pressing block and the rack are moved to the left, the one-way gear and the rotating shaft are rotated, and then the first jacking rod is rotated, and when the first jacking rod is in contact with the switch, the gas cylinder is started, so that the automatic segmentation effect is achieved;
[0015] 3. The annular top block is driven to rotate by the rotation of the exhaust rack, and when the protruding part of the annular top block is in contact with the second jacking rod, the annular top block drives the second jacking rod to move outward, so that the baffle frame moves outward to open the exhaust rack, so that the interval discharge effect is achieved. BRIEF DESCRIPTION OF DRAWINGS
[0016] Figure 1 It is a perspective structural schematic diagram of the present application.
[0017] Figure 2 It is a sectional perspective structural schematic diagram of the present application.
[0018] Figure 3 It is a first partial perspective structural schematic diagram of the tail gas dispersion mechanism of the present application.
[0019] Figure 4 It is a second partial perspective structural schematic diagram of the tail gas dispersion mechanism of the present application.
[0020] Figure 5 It is a first partial perspective structural schematic diagram of the tail gas segmentation mechanism of the present application.
[0021] Figure 6 It is a second partial perspective structural schematic diagram of the tail gas segmentation mechanism of the present application.
[0022] Figure 7 It is a perspective structural schematic diagram of the centrifugal force generating mechanism of the present application.
[0023] Figure 8 It is a first partial perspective structural schematic diagram of the trigger control mechanism of the present application.
[0024] Figure 9 It is a second partial perspective structural schematic diagram of the trigger control mechanism of the present application.
[0025] Figure 10 It is a third partial perspective structural schematic diagram of the trigger control mechanism of the present application.
[0026] Figure 11 Figure 1 is a first partial perspective view of the exhaust volume control mechanism of the present application.
[0027] Figure 12 Figure 2 is a second partial perspective view of the exhaust volume control mechanism of the present application.
[0028] Figure 13 Figure 3 is a first partial perspective view of the spacing mechanism of the present application.
[0029] Figure 14 Figure 4 is a second partial perspective view of the spacing mechanism of the present application.
[0030] Figure 15 Figure 5 is a third partial perspective view of the spacing mechanism of the present application.
[0031] Figure 1 is a first partial perspective view of the exhaust volume control mechanism of the present application. DETAILED DESCRIPTION
[0032] The present application will be further described below in conjunction with the accompanying drawings and specific embodiments:
[0033] Embodiment 1
[0034] A device capable of uniformly adjusting an exhaust treatment machine, now referring to Figure 1 and Figure 2 , comprising an exhaust treatment machine 1, a mounting bracket 2, an exhaust dispersing mechanism 3, and an exhaust segmenting mechanism 4, the mounting bracket 2 is welded to the front side of the exhaust treatment machine 1, the exhaust dispersing mechanism 3 is arranged between the mounting bracket 2 and the exhaust treatment machine 1, and the exhaust segmenting mechanism 4 is arranged in the exhaust dispersing mechanism 3.
[0035] now referring to Figures 1-4The tail gas dispersion mechanism 3 comprises a gas storage tank 31, a gas guide pipe 32, a connecting plate frame 33 and an exhaust frame 34. The gas storage tank 31 is connected to the upper side of the mounting bracket 2. Two connecting plate frames 33 are welded to the lower side of the mounting bracket 2 and located at the left and right sides of the tail gas treatment machine 1. The gas guide pipe 32 is in communication between the bottom of the gas storage tank 31 and the two connecting plate frames 33. The exhaust frame 34 is rotatably connected to the outer side of each of the two connecting plate frames 33.
[0036] Referring to Figure 2 , Figure 5 and Figure 6 , the tail gas dispersion mechanism 4 comprises a fixing frame 41, a gas cylinder 42 and a pushing frame 43. The fixing frame 41 is connected in the gas storage tank 31. The gas cylinder 42 is fixedly connected to the inner side of the fixing frame 41 by bolts. The pushing frame 43 is connected to the telescopic rod of the gas cylinder 42 and slidably connected to the inner bottom of the gas storage tank 31.
[0037] When people need to distribute the tail gas treated by the tail gas treatment machine 1, the device for uniformly distributing tail gas of the tail gas treatment machine can be used. First, the device for uniformly distributing tail gas of the tail gas treatment machine is connected to the smoke outlet, so that the tail gas flows into the tail gas treatment machine 1 through the smoke outlet, the treated tail gas flows into the gas storage tank 31 through the tail gas treatment machine 1, and then the tail gas flows into the exhaust frame 34 through the gas guide pipe 32 and the connecting plate frame 33, and is dispersed into the air by the exhaust frame 34, so as to achieve the effect of uniform emission. When people need to segmentally emit the tail gas in the gas guide pipe 32, the gas cylinder 42 is started, the telescopic rod of the gas cylinder 42 is elongated forward to drive the pushing frame 43 to move forward. When the pushing frame 43 moves forward to block the gas guide pipe 32, the gas cylinder 42 is closed, so that the remaining tail gas in the gas guide pipe 32 is discharged through the connecting plate frame 33 and the exhaust frame 34, so as to achieve the effect of segmented distribution. When the tail gas in the gas guide pipe 32 is emitted, the gas cylinder 42 is started again, so that the telescopic rod of the gas cylinder 42 is shortened backward to drive the pushing frame 43 to move backward. When the pushing frame 43 moves backward to the appropriate position, the gas cylinder 42 is closed. When the tail gas does not need to be treated, the device for uniformly distributing tail gas of the tail gas treatment machine is moved away from the smoke outlet, and then the device for uniformly distributing tail gas of the tail gas treatment machine is placed.
[0038] Embodiment 2
[0039] On the basis of embodiment 1, referring to Figure 2 and Figure 7 , the centrifugal force generating mechanism 5 is further included. The centrifugal force generating mechanism 5 comprises a motor frame 51 and a double-shaft motor 52. Two motor frames 51 are welded to the front side of the tail gas treatment machine 1. The double-shaft motor 52 is fixedly connected between the two motor frames 51 by bolts. The output shaft on the left side of the double-shaft motor 52 is connected to the left exhaust frame 34. The output shaft on the right side of the double-shaft motor 52 is connected to the right exhaust frame 34.
[0040] Referring now Figure 1 , Figure 2 , Figure 8 , Figure 9 and Figure 10 , the trigger control mechanism 6 includes a mounting plate frame 61, a wedge block 62, a first support frame 63, a first sliding rod 64, a first spring 65, a rotating shaft 66, a one-way gear 67, a switch 68, a first top rod 69, a rack 610 and a pressing block 611. The mounting plate frame 61 is welded to the front of the right connecting plate frame 33. The wedge block 62 is welded to the left front side of the right exhaust frame 34. Two first support frames 63 are welded to the upper and lower front sides of the mounting plate frame 61. The first support frame 63 has four. The first sliding rod 64 is slidingly connected between the upper two first support frames 63. The first sliding rod 64 is slidingly connected between the lower two first support frames 63. The pressing block 611 is welded between the right parts of the two first sliding rods 64. The pressing block 611 is in contact with the wedge block 62. The first spring 65 is connected between the left upper side of the pressing block 611 and the upper right first support frame 63. The first spring 65 is connected between the left lower side of the pressing block 611 and the lower right first support frame 63. The first spring 65 has two. The first spring 65 is wound around the right side of the first sliding rod 64. The rack 610 is connected between the left parts of the two first sliding rods 64. The rotating shaft 66 is rotationally connected to the front lower side of the mounting plate frame 61. The one-way gear 67 is connected to the rotating shaft 66 through a one-way clutch. The rack 610 is engaged with the one-way gear 67 after moving. The first top rod 69 is connected to the front side of the rotating shaft 66. The first top rod 69 is located in front of the one-way gear 67. The switch 68 is installed on the left front side of the mounting plate frame 61. The switch 68 is electrically connected to the cylinder 42. The first top rod 69 is in contact with the switch 68 after rotating.
[0041] Referring now Figure 1 , Figure 2 , Figure 11 and Figure 12 , the exhaust volume control mechanism 7 includes a rotating handle 71 and a control valve 72. Two control valves 72 are rotationally connected to the upper side of the air guide pipe 32. The rotating handle 71 is welded to the front of the two control valves 72. The rotating handle 71 passes through the front of the air guide pipe 32. The rotating handle 71 is rotationally connected to the air guide pipe 32.
[0042] Referring now Figure 1 , Figure 2 , Figure 13 , Figure 14 and Figure 15Further comprise spacing mechanism 8, spacing mechanism 8 includes second support frame 81, stop frame 82, second slide bar 83, second spring 84, second top rod 85 and annular top block 86, mounting bracket 2 left and right sides are connected with four second support frame 81, second support frame 81 has eight, two second slide bar 83 are welded on second support frame 81, second slide bar 83 has sixteen, eight second slide bar 83 between the left side is connected with stop frame 82, eight second slide bar 83 between the right side is connected with stop frame 82, the left side stop frame 82 and left side exhaust frame 34 are connected in sliding mode, the right side stop frame 82 and right side exhaust frame 34 are connected in sliding mode, four second support frame 81 between the left side and left side stop frame 82 are connected with two second spring 84, four second support frame 81 between the right side and right side stop frame 82 are connected with two second spring 84, second spring 84 has sixteen, second spring 84 is wound on second slide bar 83, two exhaust frame 34 outside are connected with annular top block 86, two annular top block 86 are connected with three trapezoidal blocks, trapezoidal blocks have six, two stop frame 82 inside are connected with three second top rod 85, the left side second top rod 85 and left side annular top block 86 contact, the right side second top rod 85 and right side annular top block 86 contact.
[0043] When people need to speed up exhaust emission, people can start double shaft motor 52, the output shaft of double shaft motor 52 rotates and drives exhaust frame 34 to rotate, centrifugal force is generated by the rotation of exhaust frame 34, so that the exhaust is dispersed under the action of centrifugal force, so as to realize the effect of accelerating dispersion, when people do not need to speed up exhaust emission, people can close double shaft motor 52.
[0044] The right exhaust frame 34 rotates the wedge block 62 to move the pressing block 611 to the left, so that the first sliding rod 64 and the rack 610 move to the left, and the first spring 65 is compressed. When the rack 610 moves to the left and engages with the one-way gear 67, the one-way gear 67 and the rotating shaft 66 rotate, so that the first top rod 69 rotates counterclockwise. When the wedge block 62 rotates away from the pressing block 611, the first spring 65 resets to move the pressing block 611 to the right, so that the first sliding rod 64 and the rack 610 move to the right, and the one-way gear 67 idles. When the wedge block 62 rotates to contact the pressing block 611 again, the pressing block 611 moves to the left according to the above steps, and so on. When the first top rod 69 rotates for the fourth time, the first top rod 69 contacts the switch 68, so that the air cylinder 42 is started for two seconds and then closed, so that the telescopic rod of the air cylinder 42 extends forward to drive the push frame 43 to move forward. At the same time, the exhaust frame 34 continues to rotate the wedge block 62, so that the first top rod 69 continues to rotate after contacting the switch 68. When the first top rod 69 rotates for the fifth time, the first top rod 69 contacts the switch 68 again, so that the air cylinder 42 is started for two seconds and then closed, so that the telescopic rod of the air cylinder 42 shortens to drive the push frame 43 to move backward. In this way, the effect of automatic segmented adjustment is realized.
[0045] When people need exhaust gas to be dispersed through the left exhaust frame 34, people can manually rotate the left handle 71, so that the left control valve 72 rotates. When the left control valve 72 opens the left side of the air guide pipe 32, the exhaust gas flows to the left side through the air guide pipe 32 because the right control valve 72 closes the right side of the air guide pipe 32. When people need exhaust gas to be dispersed through the right exhaust frame 34, people can manually rotate the left handle 71 in the opposite direction, so that the left control valve 72 rotates in the opposite direction. When the left control valve 72 rotates to the left to close the left side of the air guide pipe 32, people can manually rotate the right handle 71, so that the right control valve 72 rotates. When the right control valve 72 opens the right side of the air guide pipe 32, the exhaust gas flows to the right side through the air guide pipe 32. In this way, the effect of flow splitting is realized. When people do not need exhaust gas to flow out, people manually rotate the right handle 71 in the opposite direction, so that the right control valve 72 rotates in the opposite direction. When the right control valve 72 closes the right side of the air guide pipe 32, people can stop rotating the right handle 71 in the opposite direction.
[0046] The exhaust frame 34 rotates to drive the annular top block 86 to rotate. When the trapezoidal block on the annular top block 86 rotates to contact the second top rod 85, the annular top block 86 drives the second top rod 85 to move outward, so that the baffle 82 moves outward, the second spring 84 is stretched, and then the exhaust frame 34 is opened, so that the exhaust gas is dispersed through the rotating exhaust frame 34. When the trapezoidal block on the annular top block 86 rotates away from the second top rod 85, the second spring 84 is reset to drive the baffle 82 to move inward, so that the second top rod 85 moves inward, so that the baffle 82 closes the exhaust frame 34, thereby achieving the effect of interval discharge.
[0047] For those skilled in the art, various corresponding changes and modifications can be made to the technical solutions and concepts described above, and all these changes and modifications shall belong to the protection scope of the claims of the present application.
Claims
1. A device for uniformly distributing exhaust gas treatment, comprising an exhaust gas treatment unit (1) and a mounting bracket (2), wherein the mounting bracket (2) is connected to the front side of the exhaust gas treatment unit (1), characterized in that, It also includes a tail gas dispersion mechanism (3) and a tail gas segmentation mechanism (4). The tail gas dispersion mechanism (3) for dispersing tail gas is provided between the mounting bracket (2) and the tail gas treatment machine (1). The tail gas dispersion mechanism (3) is provided with a tail gas segmentation mechanism (4) for segmenting tail gas discharge. The exhaust gas dispersion mechanism (3) includes an air storage box (31), an air guide pipe (32), a connecting plate frame (33) and an exhaust frame (34). The air storage box (31) is connected to the upper side of the mounting bracket (2), and two connecting plate frames (33) are connected to the lower side of the mounting bracket (2). The air guide pipe (32) is connected between the bottom front side of the air storage box (31) and the two connecting plate frames (33). The exhaust frame (34) is rotatably connected to the outer side of the two connecting plate frames (33). The exhaust gas segmentation mechanism (4) includes a fixed frame (41), a cylinder (42) and a pusher (43). The fixed frame (41) is connected inside the gas storage box (31). The cylinder (42) is installed inside the fixed frame (41). The pusher (43) is connected to the telescopic rod of the cylinder (42). The pusher (43) is slidably connected to the bottom of the gas storage box (31). It also includes a trigger control mechanism (6) for automatically starting the cylinder (42). The trigger control mechanism (6) includes a mounting plate frame (61), a wedge block (62), a first support frame (63), a first slide rod (64), a first spring (65), a rotating shaft (66), a one-way gear (67), a switch (68), a first push rod (69), a rack (610), and a pressure block (611). The mounting plate frame (61) is connected to the front of the connecting plate frame (33) on the right side. The wedge block (62) is connected to the front left side of the exhaust frame (34) on the right side. Two first support frames (63) are connected to the upper and lower sides of the front of the mounting plate frame (61). The first slide rod (64) is slidably connected between the two upper first support frames (63) and between the two lower first support frames (63). A pressure block (611) is connected between the right sides of the first slide rod (64). A first spring (65) is connected between the upper left side of the pressure block (611) and the first support frame (63) on the upper right side. A first spring (65) is connected between the lower left side of the pressure block (611) and the first support frame (63) on the lower right side. The first spring (65) is wrapped around the right side of the first slide rod (64). A rack (610) is connected between the left sides of the two first slide rods (64). A rotating shaft (66) is rotatably connected to the lower front side of the mounting plate frame (61). A one-way gear (67) is connected to the rotating shaft (66). After the rack (610) moves, it meshes with the one-way gear (67). A first push rod (69) is connected to the front side of the rotating shaft (66). A switch (68) is installed on the left front side of the mounting plate frame (61). The switch (68) is electrically connected to the cylinder (42).
2. The device for uniformly distributing exhaust gas according to claim 1, characterized in that, It also includes a centrifugal force generating mechanism (5) to accelerate the dispersion of exhaust gas. The centrifugal force generating mechanism (5) includes a motor frame (51) and a dual-shaft motor (52). Two motor frames (51) are connected to the front side of the exhaust gas treatment machine (1). A dual-shaft motor (52) is installed between the two motor frames (51). The output shaft on the left side of the dual-shaft motor (52) is connected to the exhaust frame (34) on the left side, and the output shaft on the right side of the dual-shaft motor (52) is connected to the exhaust frame (34) on the right side.
3. The device for uniformly distributing exhaust gas according to claim 2, characterized in that, It also includes an exhaust volume control mechanism (7) for controlling exhaust gas emissions. The exhaust volume control mechanism (7) includes a handle (71) and a control valve (72). Two control valves (72) are rotatably connected to the upper side of the air duct (32). The front of each control valve (72) is connected to a handle (71). The handle (71) passes through the front of the air duct (32) and is rotatably connected to the air duct (32).
4. The device for uniformly distributing exhaust gas according to claim 3, characterized in that, It also includes an interval mechanism (8) for intermittently discharging exhaust gases. The interval mechanism (8) includes a second support frame (81), a baffle (82), a second slide rod (83), a second spring (84), a second top rod (85), and an annular top block (86). The mounting bracket (2) is connected to four second support frames (81) on both the left and right sides. Each second support frame (81) is connected to two second slide rods (83). The baffles (82) are slidably connected between the eight second slide rods (83) on the left side and between the eight second slide rods (83) on the right side. (82) is slidably connected to the left exhaust bracket (34), and the right baffle (82) is slidably connected to the right exhaust bracket (34). The four second support brackets (81) on the left are connected to the left baffle (82) with two second springs (84). The four second support brackets (81) on the right are connected to the right baffle (82) with two second springs (84). The second springs (84) are wrapped around the second slide rod (83). The outer side of the two exhaust brackets (34) is connected to an annular top block (86). The inner side of the two baffles (82) is connected to three second top rods (85).
5. The apparatus for uniformly distributing exhaust gas according to claim 4, characterized in that, Each of the two annular top blocks (86) is connected to three trapezoidal blocks.
Citation Information
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