Full-automatic stud welding ceramic ring feeding device

By setting up a conveying slide with adjustable spacing and angle on the porcelain ring feeding device for stud welding and equipped with conveying rollers, the problem of unadjustable models and angles in the existing devices is solved, improving feeding efficiency and adaptability, and preventing blockage.

CN223225190UActive Publication Date: 2025-08-15GUAN COUNTY XINSHENGDA CONSTR STEEL PROD CO LTD
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Patent Information

Application Number
CN202422573073.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-24
Publication Date
2025-08-15
Estimated Expiration
2034-10-24

AI Technical Summary

Technical Problem

In the existing fully automatic feeding device for stud welding porcelain rings, the conveying slide is fixed, and the width cannot be adjusted according to different models of the porcelain rings. The conveying slide is fixedly installed at the output end of the conveyor belt, so the conveying angle cannot be adjusted. At the same time, the lack of roller auxiliary conveying, resulting in low feeding efficiency.

Method used

A conveying slide with adjustable conveying spacing and inclination angle is designed, and a conveying roller is provided in the slide to assist the movement of the porcelain rings and ensure the normal feeding of different types of porcelain rings.

Benefits of technology

It improves the efficiency and practicality of the porcelain ring feeding device, prevents the slide from being blocked, and adapts to the needs of porcelain ring conveying of different models and heights.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a full-automatic ceramic ring feeding device for stud welding, which comprises an arraying machine body, a conveying belt, an adjusting mechanism and a conveying slideway, the conveying belt is horizontally and fixedly arranged at the discharge port end of the arraying machine body and is used for conveying arrayed ceramic rings, and the adjusting mechanism is arranged on the conveying slideway. An adjusting mechanism is further arranged at the position, located at a screening opening of the arraying machine body, of the conveying belt and used for arranging the front faces and the back faces of the ceramic rings, and the conveying sliding way is installed at a discharging opening of the conveying belt and used for feeding the arranged ceramic rings in a sliding mode. According to the ceramic ring feeding device for full-automatic stud welding, the conveying slide way capable of adjusting the conveying distance is arranged on the ceramic ring feeding device for full-automatic stud welding, so that ceramic rings of different models can be fed through the conveying slide way, and the feeding efficiency of the ceramic ring feeding device is improved; according to the ceramic ring feeding device, the conveying slideway capable of rotatably adjusting the inclination angle is arranged on the feeding device, so that the conveying inclination angle of the conveying slideway can be adjusted in time according to production requirements, and the practicability of the ceramic ring feeding device is improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of stud welding production, in particular to a full-automatic ceramic ring feeding device for stud welding. Background Art

[0002] Stud welding involves contacting one end of a stud with the surface of a plate (or pipe), applying electricity to strike an arc, and then applying pressure to the stud after the contact surface melts. Cylindrical head studs for arc stud welding are suitable for high-rise steel structures, industrial plants, highways, railways, bridges, towers, automotive, energy, and transportation infrastructure, airports, stations, power stations, pipeline supports, lifting machinery, and other steel structures.

[0003] In the fully automatic feeding process of existing stud welding ceramic rings, they need to be sorted by a sizing machine and then transported to a conveyor belt for transportation, so that the ceramic rings being transported are sorted by an adjustment mechanism set on the conveyor belt, so that the adjustment mechanism can sort the ceramic rings being fed in the forward and reverse directions. After the sorted ceramic rings enter the conveying slide, the conveying slide is fixed and cannot be adjusted in width according to different models of ceramic rings. Moreover, the conveying slide is generally fixedly installed at the output end of the conveyor belt and cannot be adjusted in angle according to transportation needs. At the same time, no rollers are set in the conveying slide to make the rollers assist in the movement and feeding of the ceramic rings, which affects the fully automatic feeding of the stud welding ceramic rings. Utility Model Content

[0004] In view of the above-mentioned defects or deficiencies in the prior art, it is desired to provide a fully automatic ceramic ring feeding device for stud welding, which is used to solve the existing fully automatic feeding device for ceramic rings for stud welding. After the sorted ceramic rings enter the conveying chute, the conveying chute is fixed and cannot be adjusted in width according to different models of ceramic rings. Moreover, the conveying chute is generally fixedly installed at the output end of the conveyor belt and cannot be adjusted in conveying angle according to conveying needs. At the same time, no roller is provided in the conveying chute to enable the roller to assist the movement and feeding of the ceramic rings, which affects the technical problem of fully automatic feeding of ceramic rings for stud welding.

[0005] According to the technical solution provided in the embodiment of the present application, a fully automatic ceramic ring feeding device for stud welding includes a queuing machine body, a conveyor belt, an adjustment mechanism and a conveying slide. The conveyor belt is horizontally fixedly installed at the discharge port end of the queuing machine body for conveying the queuing ceramic rings, and an adjustment mechanism is further provided on the conveyor belt at the screening port of the queuing machine body. The adjustment mechanism is used to arrange the front and back sides of the ceramic rings, and the conveying slide is installed at the discharge port of the conveyor belt for sliding and feeding the arranged ceramic rings.

[0006] The conveying slide includes two conveying side plates, a bottom plate and two connecting plates. The two conveying side plates are correspondingly installed on the top of the bottom plate by bolts, and the bottom plate is provided with adjustment holes so that the bolts can move along the adjustment holes to adjust the distance between the two conveying side plates so that the conveying slide can be used for feeding ceramic rings of different models. Two corresponding connecting plates are installed at one end of the bottom plate, and the other end of each connecting plate is screwed to the conveyor belt, and the connecting plate can rotate along the connection with the conveyor belt to adjust the inclination angle of the conveying slide.

[0007] Furthermore, the conveying side plate is in an L-shaped structure, and a plurality of mounting grooves are provided inside the conveying side plate, and a corresponding conveying roller is movably installed in each of the mounting grooves, and each of the conveying rollers is used for moving and conveying the ceramic ring.

[0008] Furthermore, a plurality of the mounting grooves are arranged in parallel and at intervals along the length direction of the conveying side plate.

[0009] Furthermore, a plurality of connecting ear plates are provided at the rear end of the conveying side plate, each of which is provided with a corresponding connecting hole, and each of the connecting holes is aligned with the adjustment hole provided on the base plate so that the bolt can pass through the connecting hole and the adjustment hole to fix the connecting ear plate to the base plate.

[0010] Furthermore, the connecting plate has an L-shaped structure and is composed of a first connecting plate and a second connecting plate. The first connecting plate is connected to the base plate by bolts, and the second connecting plate is vertically connected to the first connecting plate, and the second connecting plate is connected to the side of the conveyor belt by bolts.

[0011] Furthermore, the adjustment mechanism includes a sorting plate, which is a triangular structure and is movably installed on the inner side of the baffle on the side of the conveyor belt, and is used to sort the ceramic rings conveyed on the conveyor belt.

[0012] In summary, the beneficial effects of this application are:

[0013] 1. By arranging a conveying slide with adjustable conveying spacing on the fully automatic stud welding ceramic ring feeding device, the conveying slide can feed ceramic rings of different models, thereby improving the feeding efficiency of the ceramic ring feeding device;

[0014] Second, by arranging a conveying slideway with a rotatable and adjustable inclination angle on the feeding device, the conveying slideway can adjust the conveying inclination in time according to production needs, thereby improving the practicality of the ceramic ring feeding device;

[0015] 3. By arranging a plurality of conveying rollers on the conveying slide on the feeding device, the plurality of conveying rollers assist the ceramic rings in the conveying slide to move along the conveying slide, thereby preventing blockage in the conveying slide and improving the feeding efficiency of the ceramic ring feeding device. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Other features, objects and advantages of the present application will become more apparent upon reading the detailed description of non-limiting embodiments made with reference to the following drawings:

[0017] Figure 1 This is a front structural diagram of the utility model;

[0018] Figure 2 This is a rear view structural diagram of the utility model;

[0019] Figure 3 This is a schematic diagram of the exploded structure of the conveying slide of the utility model;

[0020] Figure 4 This is a schematic diagram of the conveying side plate structure of the utility model.

[0021] Numbers in the figure: aligner body 100, conveyor belt 200, adjustment mechanism 300, sorting plate 310, conveyor slide 400, conveyor side plate 410, mounting groove 411, conveyor roller 412, connecting ear plate 413, connecting hole 4131, bottom plate 420, adjustment hole 421, connecting plate 430, first connecting plate 431, second connecting plate 432. DETAILED DESCRIPTION

[0022] The present application will be further described in detail below with reference to the accompanying drawings and examples. It should be understood that the specific embodiments described herein are merely for the purpose of explaining the relevant utility model and are not intended to limit the utility model. It should also be noted that, for ease of description, only the portions relevant to the utility model are shown in the accompanying drawings.

[0023] It should be noted that, in the absence of conflict, the embodiments and features of the embodiments in this application can be combined with each other. The present application will be described in detail below with reference to the accompanying drawings and in combination with the embodiments.

[0024] A fully automatic stud welding ceramic ring feeding device, its structure is as follows Figures 1-4As shown, it includes a queuing machine body 100, a conveyor belt 200, an adjustment mechanism 300 and a conveying slide 400. The conveyor belt 200 is horizontally fixedly installed at the discharge port end of the queuing machine body 100, so that the porcelain rings after queuing inside the queuing machine body 100 enter the conveyor belt 200 and are transported by the conveyor belt 200 and move to the adjustment mechanism 300. An adjustment mechanism 300 is also provided at the screening port of the queuing machine body 100. The adjustment mechanism 300 is installed on the side baffle of the conveyor belt 200, which is used to sort the front and back sides of the porcelain rings so that the sorted porcelain rings move to the discharge port of the conveyor belt 200 with the front side facing upward. The conveying slide 400 is installed at the discharge port of the conveyor belt 200 so that the porcelain rings enter the conveying slide 400. 0 for sliding feeding; the conveying slide 400 includes two conveying side plates 410, a bottom plate 420 and two connecting plates 430, the two conveying side plates 410 are correspondingly mounted on the top of the bottom plate 420 by bolts, and the bottom plate 420 is provided with an adjustment hole 421 so that the bolt can move along the adjustment hole 421, thereby adjusting the distance between the two conveying side plates 410, so that the conveying slide 400 can be used for feeding different types of porcelain rings, and two corresponding connecting plates 430 are installed at the abutment between the bottom plate 420 and the conveyor belt 200, the other end of each connecting plate 430 is screwed to the conveyor belt 200, and the connecting plate 430 can rotate along the connection with the conveyor belt 200, thereby adjusting the inclination angle of the conveying slide 400.

[0025] In the process of conveying ceramic rings by the ceramic ring feeding device for full-automatic stud welding, the cleaned ceramic rings are poured into the arranging machine body 100, and are lifted by the lifting mechanism on the arranging machine body 100, so that several ceramic rings enter the conveyor belt 200 horizontally installed at the discharge end of the arranging machine body 100. Since the arrangement and front and back sides of the ceramic rings sorted by the arranging machine are inconsistent, the adjusting mechanism 300 provided on the conveyor belt 200 sorts the ceramic rings transported on the conveyor belt 200 so that the front side of the sorted ceramic rings face upwards and enter the conveying slide 400 from the discharge end of the conveyor belt 200, and the two conveying side plates 410 on the conveying slide 400 are mounted on the adjusting mechanism 420 on the bottom plate by bolts. The node hole 421 is used to adjust the distance between the two conveying side plates 410 so that the conveying slide 400 can convey porcelain rings of different models. At the same time, the bottom plate 420 on the conveying slide 400 is connected to the side of the conveyor belt 200 through the connecting plate 430, and the connecting plate 430 can rotate along the connection with the conveyor belt 200 to adjust the inclination angle of the conveying slide 400 so that the porcelain ring feeding device can be suitable for conveying porcelain rings of different heights. At the same time, a number of conveying rollers 412 are installed inside the conveying side plate 410 to enable the several conveying rollers 412 to assist the porcelain rings in moving in the conveying slide 400, thereby preventing blockage in the conveying slide 400 and improving the feeding efficiency of the porcelain ring feeding device.

[0026] As a preferred embodiment, please refer to Figure 3and Figure 4 The conveying side plate 410 has an L-shaped structure, and a plurality of mounting grooves 411 are provided inside the conveying side plate 410. The plurality of mounting grooves 411 are arranged in parallel and at intervals along the length direction of the conveying side plate 410. A corresponding conveying roller 412 is movably installed in each mounting groove 411. Each conveying roller 412 is used to assist the movement and transportation of the ceramic ring in the conveying slide 400.

[0027] As a preferred embodiment, please refer to Figure 3 and Figure 4 A plurality of connecting ear plates 413 are also provided at the rear end of the conveying side plate 410, and each connecting ear plate 413 is provided with a corresponding connecting hole 4131. Each connecting hole 4131 is aligned with the adjustment hole 421 provided on the base plate 420 so that the bolt can pass through the connecting hole 4131 and the adjustment hole 421 to fix the connecting ear plate 413 to the base plate 420.

[0028] As a preferred embodiment, please refer to Figure 2 and Figure 3 The connecting plate 430 is L-shaped and consists of a first connecting plate 431 and a second connecting plate 432. The first connecting plate 431 is connected to the bottom plate 420 by bolts, and the second connecting plate 432 is vertically connected to the first connecting plate 431, and the second connecting plate 432 is connected to the side of the conveyor belt 200 by bolts.

[0029] As a preferred embodiment, please refer to Figure 1 and Figure 2 The adjustment mechanism 300 includes a sorting plate 310, which is a triangular structure and is movably installed on the inner side of the baffle on the side of the conveyor belt 200, so that when the ceramic rings of different angles and directions conveyed on the conveyor belt 200 move to the sorting plate 310, the sorting plate 310 blocks the horizontal ceramic rings and pushes them into the whole machine body 100, while ceramic rings with inconsistent conveying directions are blocked by the triangular sorting plate 310 at the same time and pushed into the whole machine body 100, and ceramic rings with the correct conveying direction, when passing through the sorting plate 310, gently push the sorting plate 310 upward, thereby passing through the sorting plate 310 and entering the conveying slide 400 through the conveyor belt 200, and the adjustment mechanism 300 sorts the conveying direction of the ceramic rings conveyed on the conveyor belt 200, thereby improving the feeding efficiency of the ceramic ring feeding device.

[0030] The working principle of the utility model of a fully automatic ceramic ring feeding device for stud welding is:

[0031] In the process of conveying ceramic rings by the ceramic ring feeding device for full-automatic stud welding, the cleaned ceramic rings are poured into the whole machine body 100, and are lifted by the lifting mechanism on the whole machine body 100, so that several ceramic rings enter the conveyor belt 200 horizontally installed at the discharge end of the whole machine body 100. Since the arrangement and front and back sides of the ceramic rings sorted by the whole machine are inconsistent, the adjustment mechanism 300 provided on the conveyor belt 200 sorts the ceramic rings transported on the conveyor belt 200, so that the sorted ceramic rings face upward and enter the conveying slide 400 from the discharge end of the conveyor belt 200. The rear ends of the two conveying side plates 410 on the conveying slide 400 are equipped with several connecting ear plates 413, which are installed on the corresponding adjustment holes 421 on the bottom plate 420 by bolts. The distance between the two conveying side plates 410 is adjusted so that the conveying slide 400 can convey porcelain rings of different models. At the same time, the bottom plate 420 on the conveying slide 400 is connected to the side of the conveyor belt 200 through the connecting plate 430, and the connecting plate 430 can rotate along the connection with the conveyor belt 200 to adjust the inclination angle of the conveying slide 400 so that the porcelain ring feeding device can be suitable for conveying porcelain rings of different heights. At the same time, a plurality of mounting grooves 411 are provided inside the conveying side plate 410 along its length direction, and corresponding conveying rollers 412 are movably installed in each mounting groove 411, so that a plurality of conveying rollers 412 assist the porcelain rings to move in the conveying slide 400, thereby preventing blockage in the conveying slide 400, thereby improving the feeding efficiency of the porcelain ring feeding device.

[0032] The beneficial effects of the fully automatic ceramic ring feeding device for stud welding of the utility model are:

[0033] 1. By providing a conveying slide 400 with an adjustable conveying spacing on the fully automatic stud welding ceramic ring feeding device, the conveying slide 400 can feed ceramic rings of different models, thereby improving the feeding efficiency of the ceramic ring feeding device;

[0034] Second, by providing a conveying slide 400 with a rotatable and adjustable tilt angle on the feeding device, the conveying slide 400 can adjust the conveying inclination in time according to production needs, thereby improving the practicality of the ceramic ring feeding device;

[0035] 3. By setting a plurality of conveying rollers 412 on the conveying slide 400 on the feeding device, the plurality of conveying rollers 412 assist the ceramic rings in the conveying slide 400 to move along the conveying slide 400, thereby preventing blockage in the conveying slide 400 and improving the feeding efficiency of the ceramic ring feeding device.

[0036] The above description is merely an illustration of the preferred embodiments of this application and the technical principles employed. Furthermore, the scope of the utility model disclosed in this application is not limited to the technical solutions formed by the specific combination of the above-mentioned technical features. It also encompasses other technical solutions formed by any combination of the above-mentioned technical features or their equivalents without departing from the concept of the utility model. For example, a technical solution formed by replacing the above-mentioned features with (but not limited to) technical features with similar functions disclosed in this application.

Claims

1. A fully automatic ceramic ring feeding device for stud welding, comprising a queuing machine body (100), a conveyor belt (200), an adjustment mechanism (300) and a conveying slide (400), wherein the conveyor belt (200) is horizontally fixedly mounted on the discharge port end of the queuing machine body (100) for conveying the queuing ceramic rings, and an adjustment mechanism (300) is further provided on the conveyor belt (200) at the screening port of the queuing machine body (100), wherein the adjustment mechanism (300) is used for arranging the front and back sides of the ceramic rings, and the conveying slide (400) is mounted at the discharge port of the conveyor belt (200) for sliding and feeding the queuing ceramic rings, wherein the device is characterized in that: The conveying slide (400) includes two conveying side plates (410), a bottom plate (420) and two connecting plates (430). The two conveying side plates (410) are correspondingly mounted on the top of the bottom plate (420) by bolts, and an adjustment hole (421) is provided on the bottom plate (420) so that the bolt can move along the adjustment hole (421) to adjust the distance between the two conveying side plates (410) so that the conveying slide (400) can be used for feeding porcelain rings of different models. Two corresponding connecting plates (430) are installed at one end of the bottom plate (420), and the other end of each connecting plate (430) is screwed to the conveyor belt (200), and the connecting plate (430) can rotate along the connection with the conveyor belt (200) to adjust the inclination angle of the conveying slide (400).

2. The fully automatic ceramic ring feeding device for stud welding according to claim 1 is characterized in that: The conveying side plate (410) is in an L-shaped structure, and a plurality of mounting grooves (411) are provided inside the conveying side plate (410), and a corresponding conveying roller (412) is movably mounted in each mounting groove (411), and each conveying roller (412) is used for moving and conveying the ceramic ring.

3. The fully automatic ceramic ring feeding device for stud welding according to claim 2 is characterized in that: A plurality of the mounting grooves (411) are arranged in parallel and at intervals along the length direction of the conveying side plate (410).

4. The fully automatic ceramic ring feeding device for stud welding according to claim 1 is characterized in that: The rear end of the conveying side plate (410) is further provided with a plurality of connecting ear plates (413), each of which is provided with a corresponding connecting hole (4131), and each of the connecting holes (4131) is aligned with the adjusting hole (421) provided on the bottom plate (420), so that a bolt passes through the connecting hole (4131) and the adjusting hole (421) to fix the connecting ear plate (413) to the bottom plate (420).

5. The fully automatic ceramic ring feeding device for stud welding according to claim 1 is characterized in that: The connecting plate (430) is L-shaped and consists of a first connecting plate (431) and a second connecting plate (432). The first connecting plate (431) is connected to the bottom plate (420) by bolts, and the second connecting plate (432) is vertically connected to the first connecting plate (431). The second connecting plate (432) is connected to the side of the conveyor belt (200) by bolts.