Automatic part conveying device for bearing machining

By designing a sliding and positioning conveyor structure, the problem that existing devices cannot change length was solved, thus achieving stable conveying and efficient transmission of bearing parts.

CN224030085UActive Publication Date: 2026-03-24JINGMEN HAISIDA PRECISION MACHINERY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-11
Publication Date
2026-03-24

AI Technical Summary

Technical Problem

Existing automated transmission devices for bearing processing parts cannot freely change their overall length according to on-site transmission needs, resulting in parts not being transported to the appropriate position in a timely manner, thus affecting transmission efficiency.

Method used

A device comprising a first conveyor frame, a second conveyor frame, a fixed slide rail, a sliding frame, and auxiliary components is designed. Through the elastic rebound and locking structure of the auxiliary components, the second conveyor frame can slide and be quickly positioned, increasing the overall length and forming a flow guiding structure to ensure stable transport of parts.

Benefits of technology

It enables the length of the transmission device to be freely changed according to transmission needs, improving the applicability and efficiency of parts transmission and ensuring that parts are stably transported to the appropriate position.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an automatic part conveying device for bearing machining, which belongs to the technical field of bearing machining and comprises a first conveying frame and further comprises a second conveying frame located on one side of the first conveying frame, a bottom frame is placed below the second conveying frame, fixed sliding rails are fixed at the tops of the front face and the back face of the first conveying frame, and the fixed sliding rails are fixed at the bottom of the first conveying frame. A sliding frame in sliding fit with the fixed sliding rail is fixed to the top of the left side of the second conveying frame, an auxiliary assembly used in cooperation with the second conveying frame is arranged on the bottom frame, the auxiliary assembly comprises first T-shaped rods symmetrically inserted into the two sides of the bottom frame in the front-back direction, and the top ends of the first T-shaped rods are fixed to the second conveying frame; and by arranging the auxiliary assembly, the position of the second conveying frame can be freely changed according to the conveying requirement, so that the overall length of the first conveying frame can be freely changed, the parts can be better conveyed, and the overall applicability of the device is improved.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to bearing processing technical field especially, it relates to a bearing processing is with part automation transmission device. BACKGROUND

[0002] Bearing is an important spare part in contemporary mechanical equipment, its main function is the support mechanical rotary body, reduces its friction coefficient in the movement process, and guarantees its rotation precision, needs to use part automation transmission device to the bearing spare part that needs to process or the bearing spare part that has processed is carried out automatic transmission in the process of processing bearing.

[0003] The existing bearing processing is with part automation transmission device more for conveying frame, utilizes its upper conveying belt and can automatically transmit bearing spare parts, but the existing bearing processing is with part automation transmission device more for fixed structure, cannot freely change its overall length according to the transmission needs of the scene, leads to not being able to timely deliver parts to the appropriate position, will directly influence the transmission efficiency of parts. UTILITY MODEL CONTENTS

[0004] In view of the problems existing in the prior art, the utility model provides a bearing processing is with part automation transmission device, solves the problem that the overall length of the transmission device cannot be freely changed according to the transmission needs of the scene, leading to not being able to timely deliver parts to the appropriate position.

[0005] The utility model is realized in this way, a bearing processing is with part automation transmission device, including first conveying frame, still include: the second conveying frame in first conveying frame one side, the bottom bracket is placed in the second conveying frame below, the top of first conveying frame front and back is fixed with fixed slide rail, the second conveying frame left side top is fixed with the slide rail sliding of fixed slide rail sliding cooperation, the auxiliary assembly that is used with second conveying frame cooperation is set up on the bottom bracket.

[0006] As the utility model is preferred, the auxiliary assembly includes the first T type rod symmetrically inserted on both sides of the chassis in the front-back direction and the top end of the first T type rod is fixed on the second conveying frame, the first spring is wound on each group of the first T type rod and the both ends of the first spring are fixed on the protruding end of the first T type rod and the chassis, the second conveying frame and the chassis are provided with clamping channels on the both sides close to each other, the reinforcing plates are clamped in the upper and lower clamping channels, the second T type rod is inserted in the side of each group of the reinforcing plates through the square sleeve and the bottom end of the second T type rod is inserted on the angle of the chassis, the second spring is wound on each group of the second T type rod and the both ends of the second spring are fixed on the protruding end of the second T type rod and the square sleeve, the fixed seat is fixed on the left side of the second conveying frame in the front-back direction, the plug block is fixed on the right side of the first conveying frame and is used in clamping with the fixed seat, the two groups of slide strips are fixed on the second conveying frame in the front-back direction, the flow guide frame is placed on the bottom of the chassis through the placing box and is used in cooperation with the plug block and the slide strip, the locking rods are symmetrically inserted on the flow guide frame, and the plug holes are formed in the slide strip and are used in cooperation with the locking rods.

[0007] As the utility model is preferred, the extension column is attached to the side of the top of each group of the fixed slide rail close to the second conveying frame, the screw rod is fixed on the bottom end of the extension column, the horizontal grooves are formed in each group of the fixed slide rail and are used in cooperation with the screw rod, and the screw holes are formed in each group of the sliding frame and are used in cooperation with the screw rod.

[0008] As the utility model is preferred, the fixed grooves are formed in the both sides of the front face of the chassis and are used in cooperation with the reinforcing plates, and the limiting sleeves are fixed on the both sides of the front face of the chassis and are used in cooperation with the second T type rod.

[0009] As the utility model is preferred, the plug rods are fixed on the both sides of the front face of the bottom of the flow guide frame, and the fixed holes are formed in the side of the plug block close to the second conveying frame and are used in cooperation with the plug rods.

[0010] As the utility model is preferred, the slide channels are formed in the bottom of the first conveying frame and are used in cooperation with the slide strips.

[0011] As the utility model is preferred, the top and the bottom of the back face of each group of the reinforcing plates are arc-shaped structures.

[0012] Compared with the prior art, the utility model has the beneficial effects as follows:

[0013] The utility model discloses a set up auxiliary assembly, the design of slide frame and fixed slide rail can slide limit to second conveying frame, and utilize the elastic resilience of first spring, can sustainably give second conveying frame a propelling force, in order to when top is separated from the contact of first conveying frame, can push second conveying frame and go up, and the plug -in block will be synchronous and is connected in fixed seat, make first conveying frame and second conveying frame can be fast and preliminarily positioned, and utilize the locking structure of reinforcing pad and card way's joint, and cooperate second spring and second T type rod form, can effectively support second conveying frame, make first conveying frame and second conveying frame can keep parallel state, utilize the overall use length of first conveying frame that second conveying frame can effectively increase when being fully unfolded at this time, and the design of flow guide frame and locking rod, and cooperate a plurality of jack plug, can form a flow guide structure fast, in order that second conveying frame can still be stable to the part on first conveying frame when not fully unfolding, and utilize the extrusion force of first spring elastic force formation, and cooperate the fastening force that extension column and screw rod exert to fixed slide rail, can be fast fixed to the position of slide frame and second conveying frame after moving, the position of second conveying frame is changed freely according to the transmission need, thereby can freely change the overall length of first conveying frame, improved the overall applicability of device. BRIEF DESCRIPTION OF DRAWINGS

[0014] Figure 1 It is the structure schematic diagram of the utility model;

[0015] Figure 2 It is the state diagram of the structure of the utility model not fully unfolding;

[0016] Figure 3 It is the structure partial view of the utility model;

[0017] Figure 4 It is the structure partial explosion drawing of the utility model;

[0018] Figure 5 It is the structure perspective view of the utility model plug -in block, flow guide frame, locking rod and insert rod.

[0019] In the drawing:

[0020] 1, first conveying frame;2, second conveying frame;3, fixed slide rail;4, base frame;5, slide frame;6, horizontal groove;7, first T type rod;8, first spring;9, card way;10, reinforcing pad;11, second T type rod;12, second spring;13, fixed slot;14, limit sleeve;15, slide bar;16, extension column;17, screw;18, plug -in block;19, fixed seat;20, flow guide frame;21, locking rod;22, insert rod;23, slide way. DETAILED DESCRIPTION

[0021] In order to further understand the utility model content, characteristics and effects of the utility model, the following examples are cited, and the detailed description is as follows in cooperation with the drawings.

[0022] The structure of the utility model is described in detail below in combination with the drawings.

[0023] As Figures 1 to 5 shown, the utility model embodiment provides a kind of part automation transmission device for bearing machining, including first conveying frame 1, further include: the second conveying frame 2 in first conveying frame 1 side, bottom bracket 4 is placed below second conveying frame 2, the top of the front and back of first conveying frame 1 is all fixed with fixed slide rail 3, fixed slide rail 3 mutually distant two sides are all fixed with support leg, and one group of support leg is provided with controller, the top of second conveying frame 2 left side is fixed with the sliding frame 5 of sliding cooperation with fixed slide rail 3, auxiliary assembly is provided on bottom bracket 4 and is used in cooperation with second conveying frame 2, by setting auxiliary assembly, it is convenient to change the position of second conveying frame 2 according to transmission needs, to change the overall length of first conveying frame 1 freely, to better transmit part, improve the overall applicability of device.

[0024] As the utility model is preferred, the auxiliary assembly comprises first T-shaped rods 7 symmetrically inserted into both sides of the chassis 4 in the front-rear direction and fixed at the top ends of the first T-shaped rods 7 on the second conveying frame 2, first springs 8 are wound on each group of the first T-shaped rods 7 and fixed at the two ends of the first springs 8 on the protruding ends of the first T-shaped rods 7 and the chassis 4, the two sides of the second conveying frame 2 and the chassis 4 close to each other are provided with clamping channels 9, reinforcing plates 10 are clamped in the upper and lower clamping channels 9, a second T-shaped rod 11 is inserted into the chassis 4 at the angle of the side of each group of the reinforcing plates 10 through a square sleeve, second springs 12 are wound on each group of the second T-shaped rods 11 and fixed at the two ends of the second springs 12 on the protruding ends of the second T-shaped rods 11 and the square sleeve, a fixing seat 19 is fixed on the left side of the second conveying frame 2 in the front-rear direction, an insertion block 18 used in clamping with the fixing seat 19 is fixed on the right side of the first conveying frame 1, two groups of sliding strips 15 are fixed on the second conveying frame 2 in the front-rear direction, a flow guide frame 20 used in cooperation with the insertion block 18 and the sliding strip 15 is placed on the bottom of the chassis 4 through a placing box, lock rods 21 are symmetrically inserted into the flow guide frame 20, a plurality of insertion holes used in cooperation with the lock rods 21 are formed in the sliding strips 15, the elastic rebound of the first springs 8 can be utilized to quickly move upward when the second conveying frame 2 is separated from the first conveying frame 1 at the top of the second conveying frame 2, the reinforcing plates 10, the clamping channels 9, the second springs 12 and the second T-shaped rods 11 can be utilized to quickly form an effective support structure for the second conveying frame 2, so that the overall use length of the first conveying frame 1 can be effectively increased by using the completely unfolded second conveying frame 2, and the flow guide frame 20, the lock rods 21 and the plurality of evenly arranged insertion holes can quickly form a flow guide structure, so that the second conveying frame 2 can still stably convey the parts on the first conveying frame 1 when the second conveying frame 2 is not completely unfolded.

[0025] As the utility model is preferred, the top of each group of the fixed sliding rails 3 close to one side of the second conveying frame 2 is attached with an extension column 16, the bottom end of the extension column 16 is fixed with a screw rod 17, a horizontal groove 6 used in cooperation with the screw rod 17 is formed in each group of the fixed sliding rails 3, and a screw hole used in cooperation with the screw rod 17 is formed in each group of the sliding frames 5, so that the sliding frames 5 can be quickly positioned by utilizing the fastening force, thereby quickly positioning the second conveying frame 2 after moving.

[0026] As the utility model is preferred, the two sides of the front of the chassis 4 are provided with fixed grooves 13 used in cooperation with the reinforcing plates 10, and the two sides of the front of the chassis 4 are fixed with limiting sleeves 14 used in cooperation with the second T-shaped rods 11, so that the reinforcing plates 10 can be positioned and stored when not in use, thereby effectively avoiding the loss of the reinforcing plates 10 and affecting the normal use of the device.

[0027] As the utility model is preferred, the two sides of the front bottom of the guide frame 20 are fixed with plug rods 22, the side close to the second conveying frame 2 of the plug block 18 is provided with a fixing hole for inserting the plug rod 22, the design of the plug rod 22 and the fixing hole can pre-insert and position the guide frame 20, so that one end of the guide frame 20 can stably contact the first conveying frame 1, avoiding hindering the normal movement of the parts.

[0028] As the utility model is preferred, the bottom of the first conveying frame 1 is provided with a slide 23 for cooperating with the slide strip 15, the design of the slide 23 can slide and place the slide strip 15, further improving the stability of the second conveying frame 2 when located at the bottom of the first conveying frame 1.

[0029] As the utility model is preferred, the top and bottom of the back of each reinforcing plate 10 are arc-shaped structures, facilitating the stable insertion of the reinforcing plate 10 and the fixing groove 13.

[0030] The working principle of the utility model is as follows:

[0031] Reference Figures 1 to 5 If the overall length of the first conveying frame 1 needs to be extended, the user rotates the extension column 16 at this time, thereby driving the screw rod 17 to rotate and move upwards on the sliding frame 5, releasing the fastening force on the sliding frame 5, at this time, the user pulls the second conveying frame 2 outward, until the second conveying frame 2 is moved to the appropriate position according to the transmission needs, at this time, the user makes the extension column 16 and the screw rod 17 rotate and reset, thereby positioning the sliding frame 5 by using the extrusion force on the fixed slide rail 3, and further limiting the position of the second conveying frame 2, at this time, the user inserts the plug rod 22 on the guide frame 20 into the plug block 18, and inserts the locking rod 21 thereon into the corresponding plug hole, quickly positioning the guide frame 20, at this time, the guide frame 20 acts as a connecting bridge between the first conveying frame 1 and the second conveying frame 2, so that the parts on the first conveying frame 1 can move to the second conveying frame 2 without hindrance, if the second conveying frame 2 needs to be completely connected with the first conveying frame 1, at this time, the second conveying frame 2 is completely moved to the right side of the first conveying frame 1 according to the above mode, at this time, the elastic rebound of the first spring 8 can push the second conveying frame 2 to quickly move upwards, and the plug block 18 is clamped in the fixed seat 19, so that the first conveying frame 1 and the second conveying frame 2 can be quickly clamped and preliminarily positioned, then the user takes out the reinforcing plate 10 from the fixing groove 13, and inserts the reinforcing plate 10 into the clamping groove 9, and the elastic rebound of the second spring 12 can make the second T-shaped rod 11 inserted into the angle on the base frame 4, that is, the ninety-degree angle between the top frame and the longitudinal reinforcing beam of the base frame 4, at this time, the reinforcing plate 10 can effectively support the second conveying frame 2, so that the first conveying frame 1 and the second conveying frame 2 can remain in a parallel state, at this time, the first conveying frame 1 which can independently extend its own length as needed can stably transmit the parts for bearing machining.

[0032] It should be noted that the relational terms herein, such as first and second, and the like, are used solely to distinguish one from another entity or action without necessarily requiring or implying any actual relationship or order between such entities or actions. Moreover, the terms "comprises", "comprising", or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but can include other elements not expressly listed or inherent to such process, method, article, or apparatus.

[0033] While the embodiments of the present application have been illustrated and described, it will be understood by those skilled in the art that various changes, modifications, substitutions, and alterations can be made therein without departing from the spirit and scope of the application, which is defined by the appended claims and their equivalents.

Claims

1. An automated transfer device for bearing machining parts, comprising a first transfer frame (1), characterized in that: Also includes: A second conveyor (2) is located on one side of the first conveyor (1). A base frame (4) is placed below the second conveyor (2). Fixed slide rails (3) are fixed on the top of the front and back of the first conveyor (1). A sliding frame (5) that slides with the fixed slide rails (3) is fixed on the top left side of the second conveyor (2). An auxiliary component that works with the second conveyor (2) is provided on the base frame (4).

2. The automated part transfer device for bearing processing as described in claim 1, characterized in that: The auxiliary components include first T-shaped rods (7) symmetrically inserted on both sides of the base frame (4) along the front-rear direction, with the top of the first T-shaped rods (7) fixed on the second conveyor frame (2). Each set of first T-shaped rods (7) is wound with a first spring (8), and the two ends of the first spring (8) are fixed to the protruding end of the first T-shaped rod (7) and the base frame (4). The second conveyor frame (2) and the base frame (4) are provided with slots (9) on their adjacent sides. Reinforcing plates (10) are engaged in the upper and lower sets of slots (9). On the front side of one side of each set of reinforcing plates (10), a second T-shaped rod (11) with its bottom end inserted at the included angle of the base frame (4) is inserted through a square sleeve. Each set of second T-shaped rods (11) is wound with a first spring (8). The second spring (12) is fixed at both ends on the protruding end and the square sleeve of the second T-shaped rod (11). A fixed seat (19) is symmetrically fixed on the left side of the second conveyor frame (2) along the front-back direction. A plug (18) for engaging with the fixed seat (19) is fixed on the right side of the first conveyor frame (1). Two sets of slide bars (15) are symmetrically fixed on the second conveyor frame (2) along the front-back direction. A guide frame (20) for cooperating with the plug (18) and slide bars (15) is placed at the bottom of the base frame (4) through a placement box. A locking rod (21) is symmetrically inserted on the guide frame (20). Multiple sets of insertion holes for inserting the locking rod (21) are opened on the slide bars (15).

3. The automated parts transfer device for bearing processing as described in claim 1, characterized in that: Each set of fixed slide rails (3) has an extension column (16) attached to the side of the top of the second conveyor frame (2). The bottom end of the extension column (16) is fixed with a screw (17). Each set of fixed slide rails (3) has a transverse groove (6) that cooperates with the screw (17). Each set of sliding frames (5) has a screw hole that cooperates with the screw (17).

4. The automated parts transfer device for bearing processing as described in claim 2, characterized in that: The base frame (4) has fixing slots (13) on both sides of its front side for inserting into the reinforcing plate (10), and limiting sleeves (14) are fixed on both sides of its front side for inserting into the second T-shaped rod (11).

5. The automated parts transfer device for bearing processing as described in claim 2, characterized in that: The guide frame (20) has two fixed rods (22) on both sides of its bottom front. The plug block (18) has a fixing hole on the side near the second conveyor frame (2) for inserting the rods (22).

6. The automated part transfer device for bearing processing as described in claim 2, characterized in that: The bottom of the first conveyor frame (1) is provided with a slide rail (23) that works in conjunction with the slide bar (15).

7. The automated part transfer device for bearing processing as described in claim 2, characterized in that: The top and bottom of the back of each set of reinforcing plates (10) are arc-shaped.