Notching equipment for air inlet pipe

By introducing a precise positioning and detection structure into the intake pipe grooving equipment, the problems of grooving size fluctuation and non-grooving at the intake pipe opening are solved, achieving more efficient grooving processing.

CN223733616UActive Publication Date: 2025-12-30ANHUI ZHONGDING RUBBER PLASTIC PROD CO LTD
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Patent Information

Application Number
CN202520143482.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-21
Publication Date
2025-12-30
Estimated Expiration
2035-01-21

AI Technical Summary

Technical Problem

Existing intake pipe grooving equipment is prone to fluctuations in the grooving size of the intake pipe opening and cases where the grooving is not done during processing, which cannot meet processing requirements.

Method used

A device comprising a processing table, a grooving mechanism, a detection structure, and a limiting structure is designed. The device uses components such as a first positioning component, a second positioning component, a grooving structure, and an infrared detector to precisely position, limit, and detect the air intake pipe, ensuring the accuracy of the grooving.

Benefits of technology

This effectively avoids fluctuations in the groove size of the air inlet and situations where the groove is not filled, thus improving the performance of the grooving equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses notching equipment for an air inlet pipe, which relates to the technical field of air inlet pipe notching and comprises a processing table and a notching mechanism. The notching mechanism comprises a first positioning assembly, a notching structure, a detection structure, a second positioning assembly and a limiting structure, and a notching seat, a notching air cylinder and a notching piece are used for notching the air inlet pipe; the air inlet pipe is positioned and fixed through a first positioning air cylinder, a first positioning piece, a supporting positioning block, a supporting air cylinder, a fixing piece, a positioning plate, a second positioning air cylinder, a fixing block and a second positioning piece, and therefore the situation that the notching size of a pipe opening of the air inlet pipe fluctuates in the notching machining process of the air inlet pipe is avoided; the limiting frame and the infrared limiting device conduct limiting detection on the air inlet pipe, the supporting piece and the infrared detector conduct notching detection on the air inlet pipe, and therefore the situation that a pipe opening of the air inlet pipe is not notched is avoided, and the using effect of notching equipment is improved.
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Description

Technical Field

[0001] This utility model belongs to the field of air intake pipe grooving technology, specifically a grooving device for air intake pipes. Background Technology

[0002] The intake pipe is an important component in many vehicles such as automobiles, airplanes, and rockets. Its main function is to introduce air or oxygen into the engine or combustion chamber to provide sufficient fuel for combustion. A grooving device is a mechanical device used to cut or stamp grooves or slots in materials. The intake pipe needs to be grooved during the processing, so a grooving device for the intake pipe is needed.

[0003] Existing grooving equipment for air intake pipes has certain drawbacks. When using existing grooving equipment for air intake pipes, the air intake pipe is usually placed directly on the processing table for grooving. However, during the processing, there are often significant fluctuations in the grooving size of the air intake pipe opening, as well as situations where the air intake pipe opening is not grooved, which cannot meet people's needs. Utility Model Content

[0004] The present invention aims to solve the technical problems existing in the prior art; to this end, the present invention proposes a grooving device for an air intake pipe.

[0005] A grooving device for an air intake pipe includes: a processing table and a grooving mechanism disposed on the processing table for grooving the air intake pipe; the grooving mechanism includes a first positioning component detachably mounted on the upper end of the processing table, a grooving structure disposed on one side of the first positioning component for grooving the air intake pipe, and a detection structure disposed on one side of the first positioning component for detecting whether the air intake pipe has been grooved; the grooving mechanism further includes a second positioning component disposed on the grooving structure for secondary fixation of the air intake pipe, and a limiting structure disposed on one side of the air intake pipe for auxiliary limiting, the limiting structure being able to detect the air intake pipe, thereby ensuring that the air intake pipe is placed in the grooving position.

[0006] As a further embodiment of this utility model: the grooving structure includes several sets of grooving seats that are detachably mounted on the upper end of the processing table and inserted into the air intake pipe, several sets of grooving cylinders arranged in a circular array on the outside of the grooving seats, and grooving parts that are detachably mounted on the output shaft of the grooving cylinders and perform grooving processing on the air intake pipe. The grooving parts form grooving holes in the air intake pipe. The outer surface of the grooving seats is provided with several sets of through slots that match the grooving parts. The upper end of the grooving seats is provided with an insertion slot for placing the grooving parts.

[0007] As a further embodiment of this utility model: the first positioning component includes a support frame vertically mounted on the upper end of the processing table, a first positioning cylinder detachably mounted on the upper end of the support frame, a first positioning element detachably mounted on the output shaft of the first positioning cylinder and positioning the air intake pipe, and a support positioning block detachably mounted on the punching seat and auxiliaryly positioning the air intake pipe. The first positioning element includes a positioning post detachably connected to the output shaft of the first positioning cylinder and a guide rod vertically and symmetrically arranged on the upper end face of the positioning post. The support frame is provided with a guide hole matching the guide rod, and the positioning post and the support positioning block are both provided with a first positioning groove matching the air intake pipe.

[0008] As a further embodiment of this utility model: the second positioning component includes a support cylinder symmetrically arranged on both sides of another set of punching seats, a fixing component detachably mounted on the support cylinder, and a positioning plate detachably arranged between the two sets of fixing components. The positioning plate has a through hole that matches the air inlet pipe. The support cylinder adjusts the height of the positioning plate through the fixing component. The positioning plate has a connecting groove that matches the second positioning cylinder.

[0009] As a further embodiment of this utility model: the second positioning component further includes a second positioning cylinder symmetrically and detachably installed on the lower end face of the positioning plate, a fixing block detachably installed on the output shaft of the second positioning cylinder, and a second positioning component detachably connected to the fixing block and fixing the air intake pipe. The second positioning component is disposed above the punching seat, and the inner side of the second positioning component is provided with a second positioning groove that fits against the outer surface of the air intake pipe.

[0010] As a further embodiment of this utility model: the detection structure includes several sets of support members vertically mounted on the upper end of the processing table and providing auxiliary support for the air inlet pipe, and an infrared detector detachably mounted on one side of the support member. The upper end face of the support member is provided with a groove that matches the slotted air inlet pipe. The infrared detector can emit infrared rays and allow the infrared rays to pass through the slotted hole on the air inlet pipe, thereby ensuring the successful slotting of the air inlet pipe.

[0011] As a further embodiment of this utility model: the limiting structure includes a limiting frame disposed on one side of the support member and an infrared limiter detachably mounted on the support member and the limiting frame respectively. The upper end face of the limiting frame is provided with a limiting groove for placing the air intake pipe. The infrared detector is detachably mounted on one side of the limiting groove and detects the air intake pipe. The infrared limiter emits infrared rays and makes the infrared rays irradiate the air intake pipe, thereby ensuring the placement position of the air intake pipe.

[0012] Compared with the prior art, the beneficial effects of this utility model are:

[0013] (1) This utility model uses a processing table and a grooving mechanism, a grooving seat, a grooving cylinder and a grooving component to perform grooving processing on the air inlet pipe. The first positioning cylinder, the first positioning component, the support positioning block, the support cylinder, the fixing component, the positioning plate, the second positioning cylinder, the fixing block and the second positioning component position and fix the air inlet pipe, thereby avoiding the situation where the grooving size of the air inlet pipe opening fluctuates during the grooving process. The limit frame and the infrared limiter perform limit detection on the air inlet pipe, and the support component and the infrared detector perform grooving detection on the air inlet pipe, thereby avoiding the situation where the air inlet pipe opening is not grooved, thereby improving the use effect of the grooving equipment. Attached Figure Description

[0014] Figure 1 This is a schematic diagram of the overall design of this utility model.

[0015] Figure 2 This is a partial structural diagram of the processing table and the grooving mechanism in this utility model.

[0016] Figure 3 This is a partial structural diagram of the punching groove structure and the detection structure in this utility model.

[0017] In the diagram: 1. Processing table; 2. Slotting structure; 3. Detection structure; 4. Limiting structure; 5. Slotting seat; 6. Slotting cylinder; 7. Slotting component; 8. Support frame; 9. First positioning cylinder; 10. First positioning component; 11. Support positioning block; 12. Support cylinder; 13. Fixing component; 14. Positioning plate; 15. Second positioning cylinder; 16. Fixing block; 17. Second positioning component; 18. Support component; 19. Infrared detector; 20. Limiting frame; 21. Infrared limiter. Detailed Implementation

[0018] The technical solution of this utility model will be clearly and completely described below with reference to the embodiments. Obviously, the described embodiments are only some embodiments of this utility model, and not all embodiments. Based on the embodiments of this utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of this utility model.

[0019] Example 1

[0020] Please see Figure 1 - Figure 3This application provides a grooving device for an air intake pipe, including: a processing table 1 and a grooving mechanism disposed on the processing table 1 for grooving the air intake pipe; the grooving mechanism includes a first positioning component detachably mounted on the upper end of the processing table 1, a grooving structure 2 disposed on one side of the first positioning component for grooving the air intake pipe, and a detection structure 3 disposed on one side of the first positioning component for detecting whether the air intake pipe has been grooved; the grooving mechanism also includes a second positioning component disposed on the grooving structure 2 for secondary fixation of the air intake pipe, and a limiting structure 4 disposed on one side of the air intake pipe for auxiliary limiting, the limiting structure 4 can detect the air intake pipe, thereby ensuring that the air intake pipe is placed in the grooving position.

[0021] In this embodiment, the grooving structure 2 includes several sets of grooving seats 5 that are detachably installed on the upper end of the processing table 1 and inserted into the air intake pipe, several sets of grooving cylinders 6 arranged in a circular array on the outside of the grooving seats 5, and grooving parts 7 that are detachably installed on the output shaft of the grooving cylinders 6 and perform grooving processing on the air intake pipe. The grooving parts 7 process the air intake pipe to form grooving holes. Several sets of through slots matching the grooving parts 7 are opened on the outer surface of the grooving seats 5. The upper end of the grooving seats 5 is provided with an insertion slot for placing the grooving parts 7.

[0022] In this embodiment, the first positioning component includes a support frame 8 vertically mounted on the upper end of the processing table 1, a first positioning cylinder 9 detachably mounted on the upper end of the support frame 8, a first positioning element 10 detachably mounted on the output shaft of the first positioning cylinder 9 and positioning the air intake pipe, and a support positioning block 11 detachably mounted on the punching seat 5 and auxiliaryly positioning the air intake pipe. The first positioning element 10 includes a positioning post detachably connected to the output shaft of the first positioning cylinder 9 and a guide rod vertically and symmetrically arranged on the upper end face of the positioning post. The support frame 8 is provided with a guide hole that matches the guide rod. The positioning post and the support positioning block 11 are both provided with a first positioning groove that matches the air intake pipe.

[0023] In this embodiment, the second positioning component includes a support cylinder 12 symmetrically arranged on both sides of another set of punching bases 5, a fixing member 13 detachably mounted on the support cylinder 12, and a positioning plate 14 detachably arranged between the two sets of fixing members 13. The positioning plate 14 has a through hole that matches the air inlet pipe. The support cylinder 12 adjusts the height of the positioning plate 14 through the fixing member 13. The positioning plate 14 has a connecting groove that matches the second positioning cylinder 15.

[0024] In this embodiment, the second positioning component also includes a second positioning cylinder 15 symmetrically and detachably installed on the lower end face of the positioning plate 14, a fixing block 16 detachably installed on the output shaft of the second positioning cylinder 15, and a second positioning component 17 detachably connected to the fixing block 16 and fixing the air intake pipe. The second positioning component 17 is disposed above the punching seat 5, and the inner side of the second positioning component 17 is provided with a second positioning groove that fits against the outer surface of the air intake pipe.

[0025] In summary, one end of the air intake pipe is inserted into the slotted seat 5, and the air intake pipe is connected to the outer surface of the support positioning block 11. The first positioning cylinder 9 is activated, which moves the first positioning component 10 to position the air intake pipe. The slotting cylinder 6 is activated, which moves the slotting component 7. The slotting component 7 passes through the through slot and performs slotting processing on the air intake pipe. After processing, the other end of the air intake pipe is placed into another set of slotted seats 5. The support cylinder 12 is activated, which moves the fixing component 13 up and down. The fixing component 13 moves the positioning plate 14 up and down, moving the positioning plate 14 to the work station area where the air intake pipe is to be positioned. The second positioning cylinder 15 is activated, which moves the fixing block 16. The fixing block 16 moves the second positioning component 17 to position and fix the air intake pipe. The slotting cylinder 6 is activated, which moves the slotting component 7 to perform slotting processing on the air intake pipe.

[0026] Example 2

[0027] Reference Figure 2 - Figure 3 This is the second embodiment of the present invention. In this embodiment, the detection structure 3 includes several sets of support members 18 that are vertically installed on the upper end of the processing table 1 and provide auxiliary support for the air intake pipe, and an infrared detector 19 that is detachably installed on one side of the support member 18. The upper end surface of the support member 18 is provided with a groove that matches the slotted air intake pipe. The infrared detector 19 can emit infrared rays and make the infrared rays pass through the slotted hole on the air intake pipe, thereby ensuring the successful slotting of the air intake pipe.

[0028] In this embodiment, the limiting structure 4 includes a limiting frame 20 disposed on one side of the support member 18 and an infrared limiter 21 detachably mounted on the support member 18 and the limiting frame 20 respectively. The upper end face of the limiting frame 20 is provided with a limiting groove for placing the air intake pipe. The infrared detector 19 is detachably mounted on one side of the limiting groove and detects the air intake pipe. The infrared limiter 21 emits infrared rays and makes the infrared rays irradiate the air intake pipe, thereby ensuring the placement position of the air intake pipe.

[0029] In summary, after the grooving process is completed, the air intake pipe is placed into the support 18 and the limit frame 20. The infrared limiter 21 is activated so that infrared light shines on the air intake pipe. The infrared detector 19 is activated so that infrared light passes through the grooving hole on the air intake pipe, thereby ensuring that the grooving of the air intake pipe is successful.

[0030] Example 3

[0031] Reference Figure 1 - Figure 3 This embodiment is obtained by combining Embodiment 1 and Embodiment 2.

[0032] The first positioning cylinder 9, the first positioning component 10, the supporting positioning block 11, the supporting cylinder 12, the fixing component 13, the positioning plate 14, the second positioning cylinder 15, the fixing block 16, and the second positioning component 17 position and fix the air intake pipe. The grooving seat 5, the grooving cylinder 6, and the grooving component 7 perform grooving processing on the air intake pipe. The limit frame 20 and the infrared limiter 21 perform limit detection on the air intake pipe. The supporting component 18 and the infrared detector 19 perform grooving detection on the air intake pipe.

[0033] The above embodiments are only used to illustrate the technical methods of this utility model and are not intended to limit it. Although this utility model has been described in detail with reference to preferred embodiments, those skilled in the art should understand that modifications or equivalent substitutions can be made to the technical methods of this utility model without departing from the spirit and scope of the technical methods of this utility model.

Claims

1. A notching apparatus for an air intake duct, characterized by, The utility model relates to a processing platform (1) and the processing platform (1) are provided with and carry out the slotting of the air inlet pipe and process the slotting mechanism of air inlet pipe, The slotting mechanism includes the first positioning assembly of detachable installation on the upper end of processing platform (1), the slotting structure (2) of air inlet pipe is carried out to the one side of first positioning assembly and can be slotting and the detection structure (3) of air inlet pipe slotting is set up to the one side of first positioning assembly and is used for detecting, The slotting mechanism further includes the second positioning assembly of setting up on the slotting structure (2) and carrying out the secondary fixation of air inlet pipe and the limiting structure (4) of setting up on the one side of air inlet pipe and assisting the limiting, The slotting structure (2) includes several groups of the slotting seat (5) of detachable installation on the upper end of processing platform (1) and is inserted with air inlet pipe, several groups of the slotting cylinder (6) of circular array setting up on the outside of slotting seat (5) and the slotting piece (7) of detachable installation on the output shaft of slotting cylinder (6) and carrying out the slotting of air inlet pipe.

2. A notching apparatus for an air intake duct according to claim 1, wherein The first positioning assembly includes the support frame (8) of vertical installation on the upper end of processing platform (1), the first positioning cylinder (9) of detachable installation on the upper end of support frame (8), the first positioning piece (10) of detachable installation on the output shaft of first positioning cylinder (9) and carrying out the positioning of air inlet pipe and the support positioning block (11) of detachable installation on the slotting seat (5) and carrying out the auxiliary positioning of air inlet pipe.

3. A notching apparatus for an air intake duct according to claim 2, wherein The second positioning assembly includes the support cylinder (12) of symmetrical setting up on the both sides of another group of slotting seat (5), the fixing piece (13) of detachable installation on support cylinder (12) and the positioning plate (14) of detachable setting up between two groups of fixing piece (13), the positioning plate (14) is opened with the through -hole that matches with air inlet pipe.

4. A notching apparatus for an air intake duct according to claim 3, wherein The second positioning assembly further includes the second positioning cylinder (15) of symmetrical detachable installation on the lower end surface of positioning plate (14), the fixed block (16) of detachable installation on the output shaft of second positioning cylinder (15) and the second positioning piece (17) of detachable connection with fixed block (16) and carrying out the fixation of air inlet pipe, the second positioning piece (17) sets up above slotting seat (5).

5. A notching apparatus for an air intake duct according to claim 4, wherein The detection structure (3) includes several groups of the support piece (18) of vertical installation on the upper end of processing platform (1) and carrying out the auxiliary support of air inlet pipe and the infrared detector (19) of detachable installation on the one side surface of support piece (18), the upper end surface of support piece (18) is provided with the recess that matches with the slotting air inlet pipe.

6. A notching apparatus for an air intake duct according to claim 4, wherein The limiting structure (4) includes the limiting frame (20) of setting up on the one side of support piece (18) and the infrared limiter (21) of detachable installation on support piece (18) and limiting frame (20) respectively.

7. A notching apparatus for an air intake duct according to claim 6, wherein ​