Tapping part detection equipment
By designing a testing device for tapped parts to perform torque testing and cleaning, the problem of installing unqualified parts due to the lack of testing in existing technologies has been solved, thereby improving product quality and reliability.
Patent Information
- Application Number
- CN202422661275.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-31
- Publication Date
- 2025-11-18
- Estimated Expiration
- 2034-10-31
AI Technical Summary
In the existing technology, the torque test is not performed on the tapping parts before shipment, resulting in the installation of unqualified parts on the product, which affects the product quality and reliability.
Design a tapping parts inspection device, including a loading platform, an inspection module, a transfer module, a dust removal module, and an unloading platform. The inspection module performs torque testing to screen out unqualified products, and the dust removal module cleans the dust attached to the screw holes. After sorting, the parts are unloaded separately.
This allows for torque testing and cleaning of tapped parts before shipment, preventing the installation of substandard parts, improving product quality and reliability, and preventing structural loosening and contamination.
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Figure CN223556570U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to tapping equipment technical field especially, it is a tapping part detection equipment. BACKGROUND
[0002] The main role of tapping part is to process thread on the part, so as to be connected with other parts or assembly through thread, thereby realizing fixed, support, transmission or sealing function, and is widely used in mechanical, automobile, electronic, aerospace and other fields, such as bolt installation of automobile engine, fixed connection of mechanical equipment, etc., in prior art, tapping part is not detected before delivery, and unqualified tapping part is not screened out, so that unqualified tapping part is installed on the product, which affects the quality and reliability of the whole product. SUMMARY
[0003] The utility model discloses a tapping part detection equipment which overcomes the defects in the prior art.
[0004] The utility model discloses a tapping part detection equipment which overcomes the defects in the prior art.
[0005] A tapping part detection equipment, comprising: a feeding table, a detection module, a material moving module, a dust removal module and a discharging table, the feeding table is arranged on one side of the detection module, an upper feeding pipeline is arranged between the feeding table and the detection module, the dust removal module is arranged on the other side of the detection module, the discharging table is arranged on the side of the dust removal module away from the detection module, the material moving module is arranged on one side of the detection module, the dust removal module and the discharging table, and the material moving module is used to sequentially convey the tapping parts on the detection module to the dust removal module and the discharging table.
[0006] In one embodiment, the detection module comprises a first fixing assembly, a detection assembly and a dust collection assembly, the first fixing assembly is arranged above the detection assembly, and the dust collection assembly is connected with the first fixing assembly.
[0007] In one embodiment, the first fixing assembly comprises a positioning piece, a first clamping piece, a supporting plate, a sensing piece, a first connecting plate and a second connecting plate, the positioning piece is connected with the upper feeding pipeline, the positioning piece is arranged above the first clamping piece, the supporting plate is arranged below the first clamping piece, the supporting plate is provided with a test hole, the first connecting plate and the second connecting plate are arranged on the two sides of the supporting plate respectively, the sensing piece is arranged on the side of the supporting plate close to the first clamping piece, and the sensing piece is arranged on the first connecting plate and the second connecting plate.
[0008] In one of the embodiments, the detection assembly comprises a torsion sensor and a first driving member, the torsion sensor is in sliding connection with the first driving member, and the torsion sensor is arranged in alignment with the test hole.
[0009] In one of the embodiments, the dust suction assembly comprises a ventilation pipe, a dust suction pipe and a containing box, the ventilation pipe is arranged opposite to the dust suction pipe, the containing box is arranged below the dust suction pipe, the ventilation pipe is connected with the first connecting plate, and the dust suction pipe is connected with the second connecting plate.
[0010] In one of the embodiments, the material moving module comprises a material moving clamp jaw, a first driving assembly, a second driving assembly and a third driving assembly, the material moving clamp jaw is connected with the first driving assembly, the first driving assembly is slidingly arranged on the second driving assembly, and the second driving assembly is slidingly arranged on the third driving assembly.
[0011] In one of the embodiments, the dust removal module comprises a second fixing assembly and a blowing assembly, the second fixing assembly is arranged above the blowing assembly.
[0012] In one of the embodiments, the second fixing assembly comprises a fixing plate, a protective cover and a second clamping member, the second clamping member is arranged on the fixing plate, the protective cover is arranged above the second clamping member, the protective cover is connected with the fixing plate, and a through hole is formed in the fixing plate.
[0013] In one of the embodiments, the blowing assembly comprises a blowing nozzle, a second driving member and a water tank, the water tank is arranged below the fixing plate, the water tank is provided with a through slot, the through slot is arranged opposite to the through hole, the blowing nozzle is arranged in the through hole and the through slot, and one side of the blowing nozzle is connected with the second driving member.
[0014] In one of the embodiments, the lower material table is provided with a first discharging port and a second discharging port, the first discharging port is used for passing qualified tapping parts, and the second discharging port is used for passing unqualified tapping parts.
[0015] Compared with the prior art, the utility model has at least the following advantages:
[0016] The utility model discloses a tapping part detection equipment is through setting up the feeding pipeline between the feeding table and detection module, makes tapping part vibration feeding in the feeding table enters the feeding pipeline and removes to the detection module again, carries out the torsional strength detection to tapping part through detection module, can judge the quality of tapping part whether meets the shipment standard, and the tapping part of torsional strength test removes to the dust removal module in the removal module, and the dust attached on the screw hole of tapping part is cleaned to the dust removal module, can avoid tapping part loose on the product, thereby avoid the stability and security of whole structure to be influenced, and the dust adhered in the screw hole of tapping part is cleaned, also avoided the pollution to the feeding table, and the tapping assembly is cleaned through the removal module and removes to the feeding table in the classification, makes the pass and the unqualified product separate feeding, and thus, can carry out torsional strength test before tapping part shipment, and selects the unqualified tapping part, avoids the unqualified tapping part and installs on the product, improves the quality and reliability of product. BRIEF DESCRIPTION OF DRAWINGS
[0017] In order to more clearly illustrate the technical scheme of the embodiment of the utility model, the following will be needed to use the drawing in the embodiment briefly introduced.
[0018] Figure 1 It is the structural schematic diagram of a tapping part detection equipment in the embodiment of the utility model;
[0019] Figure 2 It is the structural schematic diagram of detection module in Figure 1 ;
[0020] Figure 3 It is the structural schematic diagram of removal module in Figure 1 ;
[0021] Figure 4 It is the structural schematic diagram of dust removal module in Figure 1 ;
[0022] Figure 5 It is the structural schematic diagram of feeding table in Figure 1 ;
[0023] BRIEF DESCRIPTION OF DRAWINGS:100, loading table; 200, detection module; 300, material moving module; 400, dust removal module; 500, unloading table; 210, first fixing assembly; 220, detection assembly; 230, dust suction assembly; 211, positioning piece; 212, first clamping piece; 213, support plate; 214, sensing piece; 215, first connecting plate; 216, second connecting plate; 221, torsion sensor; 213a, test hole; 222, first driving piece; 231, air pipe; 232, dust suction pipe; 233, containing box; 310, material moving clamp jaw; 320, first driving assembly; 330, second driving assembly; 340, third driving assembly; 410, second fixing assembly; 420, air blowing assembly; 411, fixing plate; 411a, through hole; 412, protective cover; 413, second clamping piece; 421, air blowing nozzle; 422, second driving piece; 423, water tank; 510, first unloading port; 520, second unloading port; DETAILED DESCRIPTION
[0024] In order to facilitate the understanding of the present application, the present application will be described more fully below with reference to the relevant drawings.
[0025] Please refer to Figures 1 to 5 A tapping part detection equipment 10, comprising: a loading table 100, a detection module 200, a material moving module 300, a dust removal module 400 and an unloading table 500, the loading table 100 is arranged on one side of the detection module 200, an upper feeding pipeline is arranged between the loading table 100 and the detection module 200, the dust removal module 400 is arranged on the other side of the detection module 200, the unloading table 500 is arranged on the side of the dust removal module 400 away from the detection module 200, the material moving module 300 is arranged on one side of the detection module 200, the dust removal module 400 and the unloading table 500, and the material moving module 300 is used for sequentially conveying the tapping parts on the detection module 200 to the dust removal module 400 and the unloading table 500.
[0026] It should be noted that by setting the feeding pipe between the feeding table 100 and the detection module 200, the tapping parts are vibrated in the feeding table 100 to enter the feeding pipe and then are moved to the detection module 200, and the detection module 200 detects the torsion of the tapping parts, so as to determine whether the quality of the tapping parts meets the delivery standard. The tapping parts subjected to the torsion test are moved to the dust removal module 400 through the moving module, the dust removal module 400 cleans the dust attached to the screw holes of the tapping parts, so as to avoid loosening of the tapping parts on the product, thereby avoiding affecting the stability and safety of the whole structure. The dust attached to the screw holes of the tapping parts is cleaned, which also avoids pollution to the discharging table 500. The cleaned tapping assembly is moved to the discharging table 500 through the moving module to be classified, so that the qualified products and unqualified products are discharged separately. In this way, the torsion test can be performed before the tapping parts are delivered, the unqualified tapping parts are screened out, the unqualified tapping parts are avoided to be installed on the product, and the quality and reliability of the product are improved.
[0027] Please refer again to Figure 2 In an embodiment, the detection module 200 includes a first fixing assembly 210, a detection assembly 220, and a dust collection assembly 230. The first fixing assembly 210 is arranged above the detection assembly 220, and the dust collection assembly 230 is connected with the first fixing assembly 210.
[0028] It should be noted that the tapping parts are fixed by the first fixing assembly 210, which facilitates the detection assembly 220 to detect the torsion of the tapping parts in the first fixing assembly 210. If the tapping parts fail to pass the torsion test, in order to avoid generation of dust during the test, the dust generated during the test is adsorbed by the dust collection assembly 230, so as to avoid affecting the test of the following tapping parts.
[0029] Please refer again to Figure 2 In an embodiment, the first fixing assembly 210 includes a positioning member 211, a first clamping member 212, a support plate 213, a sensing member 214, a first connecting plate 215, and a second connecting plate 216. The positioning member 211 is connected with the feeding pipe, and the positioning member 211 is arranged above the first clamping member 212. The support plate 213 is arranged below the first clamping member 212, and the support plate 213 is provided with a test hole 213a. The first connecting plate 215 and the second connecting plate 216 are arranged on the two sides of the support plate 213, respectively. The sensing member 214 is arranged on one side of the support plate 213 close to the first clamping member 212, and the sensing member 214 is arranged on the first connecting plate 215 and the second connecting plate 216.
[0030] It should be noted that by setting the driving cylinder on one side of the positioning piece 211, the position of the feeding pipeline and the clamping piece can be adjusted, so as to accurately transfer the tapping part to the first clamping piece 212. The inductive piece 214 is arranged on the side of the supporting plate 213 close to the first clamping piece 212. When the tapping part is transferred to the first clamping piece 212, the tapping part can be inducted by the inductive piece 214, so that the first clamping piece 212 clamps the tapping part. The first connecting plate 215 and the second connecting plate 216 are arranged on both sides of the supporting plate 213, and the inductive piece 214 is arranged on the first connecting plate 215 and the second connecting plate 216, thereby fixing the inductive piece 214 and avoiding displacement of the inductive piece 214.
[0031] Please refer again to Figure 2 In an embodiment, the detection assembly 220 includes a torsion sensor 221 and a first driving piece 222. The torsion sensor 221 is in sliding connection with the first driving piece 222, and the torsion sensor 221 is arranged in alignment with the test hole 213a.
[0032] It should be noted that when the tapping part is clamped stably by the first clamping piece 212, the torsion sensor 221 is driven to rise by the first driving piece 222. Since the torsion sensor 221 is arranged in alignment with the test hole 213a of the supporting plate 213, the torsion sensor 221 can pass through the test hole 213a and be connected with the screw hole of the tapping part. Then the torsion sensor 221 is rotated until it stops. The test value displayed on the display screen connected with the torsion sensor 221 is the tightening torque of the tapping part, so as to determine whether the tapping part meets the production requirements.
[0033] Please refer again to Figure 2 In an embodiment, the dust collection assembly 230 includes a ventilation pipe 231, a dust collection pipe 232, and a containing box 233. The ventilation pipe 231 is arranged opposite to the dust collection pipe 232, and the containing box 233 is arranged below the dust collection pipe 232. The ventilation pipe 231 is connected with the first connecting plate 215, and the dust collection pipe 232 is connected with the second connecting plate 216.
[0034] It should be noted that the dust collection assembly 230 is fixed on the first fixing assembly 210 by connecting the ventilation pipe 231 with the first connecting plate 215 and connecting the dust collection pipe 232 with the second connecting plate 216. The debris generated during the torsion test of the tapping part is blown into the dust collection pipe 232 through the ventilation pipe 231, and the containing box 233 for containing debris is arranged below the dust collection pipe 232, so as to avoid the debris from scattering in the test equipment and affecting the test result.
[0035] Please refer again to Figure 3In an embodiment, the material moving module 300 comprises a material moving clamp jaw 310, a first driving assembly 320, a second driving assembly 330 and a third driving assembly 340. The material moving clamp jaw 310 is connected with the first driving assembly 320. The first driving assembly 320 is slidingly arranged on the second driving assembly 330. The second driving assembly 330 is slidingly arranged on the third driving assembly 340.
[0036] It should be noted that, by connecting the material moving clamp jaw 310 with the first driving assembly 320, the first driving assembly 320 can drive the material moving clamp jaw 310 to clamp or release the tapping part. By slidingly arranging the first driving assembly 320 on the second driving assembly 330, the second driving assembly 330 can drive the material moving clamp jaw 310 to extend into the detection module 200 or the dust removal module 400. By slidingly arranging the second driving assembly 330 on the third driving assembly 340, the tapping part clamped by the material moving clamp jaw 310 can be moved to the dust removal module 400 and the unloading table 500. The material moving module 300 is provided with two material moving clamp jaws 310. The initial position is that one of the material moving clamp jaws 310 faces the detection module 200, and the other material moving clamp jaw 310 faces the dust removal module 400. The material moving clamp jaw 310 facing the detection module 200 is used to move the tapping part on the detection module 200 to the dust removal module 400. The material moving clamp jaw 310 facing the dust removal module 400 is used to move the tapping part on the dust removal module 400 to the unloading table 500.
[0037] Please refer again to Figure 4 In an embodiment, the dust removal module 400 comprises a second fixing assembly 410 and a blowing assembly 420. The second fixing assembly 410 is arranged above the blowing assembly 420. When the moving module moves the tapping part from the detection module 200 to the dust removal module 400, the second fixing assembly 410 clamps and fixes the tapping part. The blowing assembly 420 below the second fixing assembly 410 blows air to the screw hole of the tapping part, thereby cleaning the dust attached to the screw hole of the tapping part.
[0038] Please refer again to Figure 4 In an embodiment, the second fixing assembly 410 comprises a fixing plate 411, a protective cover 412 and a second clamping piece 413. The second clamping piece 413 is arranged on the fixing plate 411. The protective cover 412 is arranged above the second clamping piece 413. The protective cover 412 is connected with the fixing plate 411. The fixing plate 411 is provided with a through hole 411a. By arranging the protective cover 412 above the second clamping piece 413, dust scattering caused by the blowing assembly 420 cleaning the tapping part is avoided. The protective cover 412 is fixedly connected with the fixing plate 411, so that the structure of the second fixing assembly 410 is more compact.
[0039] Please refer again to Figure 4In an embodiment, the air blowing assembly 420 comprises an air blowing nozzle 421, a second driving member 422 and a water tank 423. The water tank 423 is arranged below the fixed plate 411. The water tank 423 is provided with a through slot. The through slot is arranged opposite to the through hole 411a. The air blowing nozzle 421 is arranged through the through hole 411a and the through slot. One side of the air blowing nozzle 421 is connected with the second driving member 422. The air blowing nozzle 421 can clean the tapping parts through the through hole 411a and the through slot. The second driving member 422 can adjust the position of the air blowing nozzle 421. The cleaning effect of the tapping parts can be improved. Water is injected into the water tank 423. Since the air blowing nozzle 421 is arranged through the through slot of the water tank 423, the water tank 423 can cool the air blowing nozzle 421. The temperature of the air blowing nozzle 421 does not increase continuously. The service life of the air blowing nozzle 421 is prolonged.
[0040] Please refer to Figure 5 In an embodiment, the discharging table 500 is provided with a first discharging port 510 and a second discharging port 520. The first discharging port 510 is used to pass the qualified tapping parts. The second discharging port 520 is used to pass the unqualified tapping parts. When the tapping parts are qualified products, the transfer module puts the tapping parts into the first discharging port 510. When the tapping parts are unqualified products, the transfer module puts the tapping parts into the second discharging port 520.
[0041] The above embodiments only express several embodiments of the present application. The description is more specific and detailed, but it cannot be understood as the limitation of the scope of the present application. It should be pointed out that for ordinary skilled in the art, without departing from the concept of the present application, some modifications and improvements can be made. These all belong to the protection scope of the present application. Therefore, the protection scope of the present application should be subject to the appended claims.
Claims
1. A tapped part inspection apparatus, characterized by, The utility model provides a tapping piece detection device, which comprises an upper feeding table, a detection module, a material moving module, a dust removal module and a lower feeding table. The detection module comprises a first fixing assembly, a detection assembly and a dust suction assembly.
2. A tapped part inspection apparatus according to claim 1, wherein The first fixing assembly comprises a positioning piece, a first clamping piece, a supporting plate, a sensing piece, a first connecting plate and a second connecting plate.
3. A tapped part inspection apparatus according to claim 2, wherein The detection assembly comprises a torsion sensor and a first driving piece.
4. A tapped part inspection apparatus according to claim 3, wherein The dust suction assembly comprises a ventilation pipe, a dust suction pipe and a containing box.
5. A tapped part inspection apparatus according to claim 3, wherein The material moving module comprises a material moving clamp jaw, a first driving assembly, a second driving assembly and a third driving assembly.
6. A tapped part inspection apparatus according to claim 1, wherein The dust removal module comprises a second fixing assembly and a gas blowing assembly.
7. A tapped part inspection apparatus according to claim 1, wherein The second fixing assembly comprises a fixing plate, a protective cover and a second clamping piece.
8. A tapped part inspection apparatus according to claim 7, wherein The gas blowing assembly comprises a gas blowing nozzle, a second driving piece and a water tank.
9. A tapped part inspection apparatus according to claim 8, wherein The lower feeding table is provided with a first lower feeding opening and a second lower feeding opening.
10. The tapped part inspection apparatus of claim 1, wherein The first lower feeding opening is used for passing qualified tapping pieces. The second lower feeding opening is used for passing unqualified tapping pieces.