Anti-lock brake system (ABS) shell deflection feeding equipment

By designing the ABS case slanting feeding equipment, using the combination of feeding components, press rollers and floating blocks, the problem of difficult to center and stabilize the board in the prior art during feeding is solved, and the efficient and stable feeding of the board and the effect of improving utilization is achieved.

CN222875289UActive Publication Date: 2025-05-16JINGZHOU ZHIXIANG MASCH TECH CO LTD
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Patent Information

Application Number
CN202421859037.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-01
Publication Date
2025-05-16
Estimated Expiration
2034-08-01

AI Technical Summary

Technical Problem

The existing slanting feeder is difficult to center the sheet to feed the material stably, resulting in the sheet being easily shaken during the feeding process, which is not conducive to improving the maximum utilization rate of the sheet.

Method used

An ABS housing slanting feeding device is designed, including a base, feeding assembly, pressing roller and floating block. The feeding assembly forms feeding channels through the first and second feeding structures, the pressing rollers move between the channel inlet and outlet, and the floating block can adjust the channel inlet width to position the plate.

Benefits of technology

The central and stable conveying of the plate during the feeding process is achieved, avoiding the shaking and jumping of the plate, and improving the utilization rate of the plate.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides ABS machine shell deflection feeding equipment. The ABS machine shell deflection feeding equipment comprises a base; the feeding assembly is arranged on the base in a sliding mode, the feeding assembly comprises a first feeding structure and a second feeding structure which are sequentially connected, a feeding channel is formed between the first feeding structure and the second feeding structure, and an inlet and an outlet of the feeding channel are formed in the first feeding structure and the second feeding structure respectively; the pressing roller is movably arranged between an inlet and an outlet of the feeding channel, a gap is formed between the pressing roller and the first feeding structure, and the gap is increased or decreased along with movement of the pressing roller; the two floating blocks are oppositely arranged at the inlet of the feeding channel, and at least one of the two floating blocks can move at the inlet of the feeding channel relative to the first feeding structure so as to adjust the width of the inlet of the feeding channel. The deflection feeder solves the technical problem that a traditional deflection feeder is not easy to stably feed materials in the middle.
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Description

Technical Field

[0001] The utility model relates to the technical field of ABS casing feeding processing, in particular to an ABS casing sway feeding device. Background Art

[0002] ABS casing processing is usually divided into feeding, shearing, stamping and other processes; and because the sheet is usually stored in the form of coils, the coil needs to be flattened into sheets for processing during stamping, and at this time, uncoiling, leveling, and fixed-length feeding are required. Therefore, a sway feeder is used in the stamping process for swing feeding, which on the one hand meets the requirements of flattening and continuous feeding of the sheet, and on the other hand can improve the utilization rate of the sheet. However, the existing sway feeder cannot feed the sheet in a centered and stable manner, which not only makes it easy for the sheet to shake during the feeding process, but also is not conducive to improving the maximum utilization rate of the sheet; at the same time, the sheet will also jump due to the stamping force during stamping, causing the sheet at the feeder to move with it, and there is still the problem of the sheet running off the track during the feeding process. Utility Model Content

[0003] In view of the deficiencies in the prior art, the utility model provides an ABS housing sway feeding device to solve the technical problem in the related art that the traditional sway feeding machine is not easy to feed in a centered and stable manner.

[0004] The utility model provides an ABS casing sway feeding device, comprising:

[0005] Pedestal;

[0006] A feeding assembly is slidably disposed on the base, the feeding assembly comprises a first feeding structure and a second feeding structure connected in sequence, a feeding channel is formed therebetween, and an inlet and outlet of the feeding channel are respectively formed at the first feeding structure and the second feeding structure;

[0007] A pressure roller, movably disposed between the inlet and outlet of the feeding channel, a gap is formed between the pressure roller and the first feeding structure, and the gap increases or decreases with the movement of the pressure roller;

[0008] Two floating blocks are arranged opposite to each other at the inlet of the feeding channel, and at least one of the two floating blocks can move relative to the first feeding structure at the inlet of the feeding channel to adjust the inlet width of the feeding channel.

[0009] Furthermore, the pressure roller is driven by a driving assembly arranged on the first feeding structure, and the driving assembly includes a first bracket, a second bracket and a third bracket which are rotatably connected in sequence, the first bracket is fixed to the first feeding structure, and a first cylinder is arranged between the first bracket and the second bracket, a second cylinder is arranged between the second bracket and the third bracket, and the third bracket is used to connect the pressure roller.

[0010] Furthermore, the second bracket is arranged to be inclined, and its upper and lower ends are respectively facing the third bracket and the first bracket.

[0011] Furthermore, the first bracket, the second bracket and the third bracket are each provided with a plurality of mounting ears for rotationally connecting to the corresponding first cylinder or the second cylinder.

[0012] Furthermore, a screw rod is rotatably provided at the inlet of the feeding channel, and at least one of the two floating blocks is penetrated by the screw rod.

[0013] Furthermore, guide wheels are rotatably provided on the opposite end surfaces of the two floating blocks, and the guide wheels extend into the opening of the feeding channel.

[0014] Furthermore, the floating block is connected to the guide wheel via a locking assembly, which includes a first locking portion and a second locking portion that are detachably connected, and a mounting seat located between the first locking portion and the second locking portion, the first locking portion or the second locking portion is detachably fixed to the floating block, and the guide wheel is rotatably disposed on the mounting seat.

[0015] Furthermore, the first locking portion and the second locking portion are respectively provided with matching convex strips and slots, and when the convex strips are inserted into the slots, the first locking portion and the second locking portion clamp the mounting seat therebetween.

[0016] Further, the convex strip and the slot are provided with a plurality of first fixing holes; and / or

[0017] The mounting seat is provided with a plurality of second fixing holes.

[0018] Further, the first feeding structure comprises a first frame and a plurality of first feeding rollers arranged in an arc shape on the first frame; and / or

[0019] The second feeding structure includes a second frame and a plurality of second feeding rollers arranged at intervals on the second frame.

[0020] Compared with the prior art, the utility model has the following beneficial effects: the first feeding structure and the second feeding structure are connected in sequence to form a feeding channel through which the plates can be conveyed in sequence, and the plates can be conveyed to the punching machine at a uniform and stable speed with the cooperation of the two; furthermore, a pressure roller movably arranged between the inlet and outlet of the feeding channel can change the spacing between it and the first feeding structure, thereby pressing down the plate during the punching process of the plate, and fixing the plate at the first feeding structure to prevent it from jumping; and releasing the plate after the punching is completed for continued feeding; at the same time, the floating block arranged at the inlet of the feeding channel can be moved relative to the first feeding structure, thereby positioning the plate at this location by changing the width of the inlet of the feeding channel, so that the plate can continue to move along the floating block, forming a positioning and deviation correction treatment for the plate to prevent it from shaking, and then with the cooperation of the pressure roller and the floating block, the plate is conveyed stably and centered at the feeding channel. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] Figure 1 This is a structural schematic diagram of an ABS housing sway feeding device in one embodiment of the utility model;

[0022] Figure 2 It is a schematic structural diagram of a pressure roller and a floating block in an embodiment of the utility model;

[0023] Figure 3 It is an exploded view of a floating block and a locking assembly in one embodiment of the utility model.

[0024] Description of Figure Numbers:

[0025] 1. Base; 2. First frame; 3. First feed roller; 4. Second frame; 5. Second feed roller; 6. Pressure roller; 7. Floating block; 8. First bracket; 9. Second bracket; 10. Third bracket; 11. First cylinder; 12. Second cylinder; 13. Mounting ear; 14. Screw; 15. Guide wheel; 16. First locking part; 17. Second locking part; 18. Mounting seat; 19. Raised strip; 20. Slot; 21. First fixing hole; 22. Second fixing hole.

[0026] The realization of the purpose, functional features and advantages of the utility model will be further explained in conjunction with embodiments and with reference to the accompanying drawings. DETAILED DESCRIPTION

[0027] In order to make the purpose, technical solution and beneficial effects of the utility model more clear, the technical solution of the utility model is further described below in conjunction with the drawings and embodiments. It should be understood that the specific embodiments described here are only used to explain the utility model and are not used to limit the utility model.

[0028] In the embodiment of the present utility model, Figure 1As shown, the ABS housing deflection feeding device includes: a base 1, a feeding assembly, a pressure roller 6 and two floating blocks 7; the feeding assembly is slidably arranged on the base 1, and the feeding assembly includes a first feeding structure and a second feeding structure connected in sequence, and a feeding channel is constructed therebetween, and the inlet and outlet of the feeding channel are respectively formed at the first feeding structure and the second feeding structure; the pressure roller 6 is movably arranged between the inlet and outlet of the feeding channel, and a gap is formed between the pressure roller 6 and the first feeding structure, and the gap increases or decreases with the movement of the pressure roller 6; the two floating blocks 7 are relatively arranged at the inlet of the feeding channel, and at least one of the two floating blocks 7 can move at the inlet of the feeding channel relative to the first feeding structure to adjust the inlet width of the feeding channel.

[0029] Specifically, in an embodiment of the utility model, the feeding assembly includes a first feeding structure and a second feeding structure which are connected in sequence, so that a feeding channel can be constructed therebetween, that is, the distal ends of the first feeding structure and the second feeding structure are respectively the inlet and outlet of the feeding channel for conveying the plate; at the same time, a guide rail is installed on the base 1, and the first feeding structure and the second feeding structure slide back and forth on the above-mentioned guide rail, so that the plate is pulled and then fed in a swinging manner to improve the utilization rate of the plate.

[0030] In the embodiment of the utility model, a pressing roller 6 is movably provided between the inlet and outlet of the feeding channel, and the pressing roller 6 can move relative to the first feeding structure, so as to be close to or away from the first feeding structure; and a gap is formed between the pressing roller 6 and the first feeding structure, and the gap can increase or decrease with the movement of the pressing roller 6; when the gap gradually increases, the sheet can be conveyed; on the contrary, when the above-mentioned gap gradually decreases, the pressing roller 6 can press the sheet against the first feeding structure to hinder its conveying, and when the sheet is punched during the process, it can effectively prevent the sheet from jumping due to the impact of the punching force, thereby ensuring the continuous and stable feeding of the sheet. Of course, since the pressing roller 6 needs to press the sheet against the first feeding structure, in order to avoid the possibility of the sheet still being fed at this time, the start and stop of the first feeding structure and / or the second feeding structure can be associated with the pressing roller 6, that is: when the sheet is pressed, the above-mentioned feeding structure stops feeding; on the contrary, after the sheet is released, the feeding structure starts and continues feeding.

[0031] In the embodiment of the utility model, two floating blocks 7 are arranged at the opening of the feeding channel, and the two floating blocks 7 are arranged opposite to each other, and the plate can pass therebetween; in addition, at least one of the two floating blocks 7 can be moved relative to the first feeding structure, so that the opening width of the feeding channel can be adjusted, so that the edge of the plate can always slide and fit on the surface of the floating block 7, and the floating block 7 can play a role in positioning and correcting deviation, so as to avoid the plate from shaking during the feeding process. Of course, the above-mentioned two floating blocks 7 can also be arranged at the connection of the two feeding structures and / or at the outlet of the feeding channel. Since the position of the plate has been corrected at the opening of the feeding channel, the above-mentioned arrangement can be omitted; or in order to improve the positioning accuracy of the device, the floating blocks 7 can also be arranged as described above, and no limitation is made here.

[0032] This embodiment can improve the shaking and jumping of the plate during the feeding process by setting the pressure roller 6 and the floating block 7 in the feeding channel, so that the plate can be fed stably in the center, thereby improving the utilization rate of the plate with the cooperation of the swinging feeding assembly.

[0033] like Figure 2 As shown, in one embodiment, the pressing roller 6 is driven by a driving assembly arranged at the first feeding structure, and the driving assembly includes a first bracket 8, a second bracket 9 and a third bracket 10 which are connected in rotation in sequence, the first bracket 8 is fixed to the first feeding structure, and a first cylinder 11 is arranged between the first bracket 8 and the second bracket 9, a second cylinder 12 is arranged between the second bracket 9 and the third bracket 10, and the third bracket 10 is used to connect the pressing roller 6. Specifically, in order to drive the pressing roller 6 to move so as to change the size of the gap, the present embodiment sets a driving assembly at the first feeding structure, and defines the driving assembly as including a first bracket 8, a second bracket 9 and a third bracket 10 which are connected in rotation in sequence, a first cylinder 11 which connects the first bracket 8 and the second bracket 9, and a third cylinder which connects the second bracket 9 and the third bracket 10; in this way, the first bracket 8 is fixed at the first feeding structure, and the pressing roller 6 is installed at the third bracket 10, and the two cylinders are started and stopped alternately to control the rotation of each bracket, so that the pressing roller 6 can be close to or away from the first feeding structure.

[0034] Specifically, the two ends of the first cylinder 11 are hinged to the first bracket 8 and the second bracket 9, that is, the cylinder body of the first cylinder 11 is hinged to the first bracket 8, and the piston part is hinged to the second bracket 9. The second bracket 9 can rotate around the hinge point between the first bracket 8 and the first bracket 8 through the extension and retraction of the first cylinder 11; similarly, the two ends of the second cylinder 12 are hinged to the second bracket 9 and the third bracket 10, that is, the cylinder body of the second cylinder 12 is hinged to the second bracket 9, and the piston part is hinged to the third bracket 10. The third bracket 10 can rotate around the hinge point between the second bracket 9 and the second bracket 9 through the extension and retraction of the second cylinder 12. Therefore, by starting and stopping the two cylinders, the pressure roller 6 can move closer to or away from the first feeding structure, and then the gap formed between the two can be changed. Of course, in order to improve the stability of the two ends of the pressure roller 6, such as Figure 1 As shown, in this embodiment, driving components are provided at both ends of the pressure roller 6, and the two driving components can move synchronously to balance the force on the pressure roller 6.

[0035] Preferably, Figure 2 As shown, the second bracket 9 is arranged at an angle, and its upper and lower ends are respectively facing the third bracket 10 and the first bracket 8; it is constructed into a Z-shaped structure, so that the first bracket 8 is arranged close to the inlet of the feeding channel, and the third bracket 10 extends between the inlet and outlet of the feeding channel to position the pressure roller 6 there.

[0036] Preferably, Figure 2 As shown, the first bracket 8 , the second bracket 9 and the third bracket 10 are all provided with a plurality of mounting ears 13 for rotationally connecting to the corresponding first cylinder 11 or the second cylinder 12 .

[0037] like Figure 2 As shown, in one embodiment, a screw rod 14 is rotatably provided at the inlet of the feeding channel, and at least one of the two floating blocks 7 is penetrated by the screw rod 14. Specifically, in order to enable the floating block 7 to move relative to the first feeding structure, the present embodiment provides a screw rod 14 rotatably provided at the inlet of the feeding channel, and the floating block 7 is penetrated by the screw rod 14, and the floating block 7 can be driven to move at the inlet of the feeding channel by the rotation of the screw rod 14, so that the inlet width of the feeding channel can be changed under the cooperation of the two floating blocks 7. In this embodiment, since the first bracket 8 extends to the opening of the feeding channel, a fixed seat can be installed at the first bracket 8 for easy installation, and the screw rod 14 and the motor driving the screw rod 14 to rotate are both installed at the above-mentioned fixed seat; at the same time, in order to enable the two floating blocks 7 to move synchronously, the two screw rods 14 are both penetrated by the screw rod 14, and the screw rod 14 adopts a bidirectional screw rod 14, which can enable the two floating blocks 7 to move toward or away from each other, so as to adjust the distance between the two according to the width of the plate, so that the plate can always contact the surface of the floating block 7.

[0038] Furthermore, if Figure 3As shown, in one embodiment, the opposite end surfaces of the two floating blocks 7 are both rotatably provided with guide wheels 15, and the guide wheels 15 extend into the opening of the feeding channel. Specifically, in order to prevent the floating plate from being worn out by the plate during long-term transportation, this embodiment provides a guide wheel 15 rotatably provided on the opposite end surfaces of the two floating blocks 7, and the guide wheel 15 extends into the opening of the feeding channel, so that the plate can contact the guide wheel 15. Changing the contact mode can effectively protect the floating plate. At the same time, the rotating guide wheel 15 can make the plate be transported more smoothly in the channel.

[0039] like Figure 3 As shown, in one embodiment, the floating block 7 and the guide wheel 15 are connected by a locking assembly, and the locking assembly includes a detachably connected first locking portion 16 and a second locking portion 17, and a mounting seat 18 located between the first locking portion 16 and the second locking portion 17. The first locking portion 16 or the second locking portion 17 is detachably fixed to the floating block 7, and the guide wheel 15 is rotatably arranged on the mounting seat 18. Specifically, in order to facilitate the installation and maintenance of the guide wheel 15, the present embodiment provides a locking assembly at the floating block 7, and utilizes the locking assembly to detachably connect the guide wheel 15 to the floating block 7; the locking assembly in the present embodiment is defined to include a detachably connected first locking portion 16 and a second locking portion 17, and a mounting seat 18 located between the two locking portions, and the mounting seat 18 is used to install the guide wheel 15, and the two detachable locking portions are used to detachably fix the mounting seat 18 therebetween.

[0040] Preferably, Figure 3 As shown, the first locking portion 16 and the second locking portion 17 are respectively provided with matching convex strips 19 and slots 20. When the convex strips 19 are inserted into the slots 20, the first locking portion 16 and the second locking portion 17 clamp the mounting seat 18 therebetween.

[0041] Preferably, Figure 3 As shown, the convex strip 19 and the card slot 20 are provided with a plurality of first fixing holes 21, and screwing the screws in the first fixing holes 21 can improve the structural stability of the two locking parts; at the same time, corresponding mounting holes can be provided at the floating block 7, and the screws can also be screwed in, so as to facilitate the installation and fixing of the locking assembly at the floating block 7; in other embodiments, the mounting seat 18 is provided with a plurality of second fixing holes 22, and the mounting seat 18 can be fixed to the corresponding locking parts by screws, so as to improve the connection strength of the three.

[0042] like Figure 1 As shown, in one embodiment, the first feeding structure includes a first frame 2 and a plurality of first feeding rollers 3 arranged in an arc shape on the first frame 2; the second feeding structure includes a second frame 4 and a plurality of second feeding rollers 5 arranged in an interval on the second frame 4.

[0043] Finally, it should be noted that the above embodiments are only used to illustrate the technical solution of the utility model rather than to limit it. Although the utility model has been described in detail with reference to the preferred embodiments, ordinary technicians in the field should understand that the technical solution of the utility model can be modified or replaced by equivalents without departing from the purpose and scope of the technical solution of the utility model, which should be included in the scope of the claims of the utility model.

Claims

1. An ABS housing sway feeding device, characterized in that: include: Pedestal; A feeding assembly is slidably disposed on the base, the feeding assembly comprises a first feeding structure and a second feeding structure connected in sequence, a feeding channel is formed therebetween, and an inlet and outlet of the feeding channel are respectively formed at the first feeding structure and the second feeding structure; A pressure roller, movably disposed between the inlet and outlet of the feeding channel, a gap is formed between the pressure roller and the first feeding structure, and the gap increases or decreases with the movement of the pressure roller; Two floating blocks are arranged opposite to each other at the inlet of the feeding channel, and at least one of the two floating blocks can move relative to the first feeding structure at the inlet of the feeding channel to adjust the inlet width of the feeding channel.

2. The ABS housing sway feeding device according to claim 1, characterized in that: The pressure roller is driven by a driving assembly arranged on the first feeding structure, and the driving assembly includes a first bracket, a second bracket and a third bracket which are rotatably connected in sequence, the first bracket is fixed to the first feeding structure, and a first cylinder is arranged between the first bracket and the second bracket, a second cylinder is arranged between the second bracket and the third bracket, and the third bracket is used to connect the pressure roller.

3. The ABS housing sway feeding device as claimed in claim 2, characterized in that: The second bracket is arranged in an inclined manner, and its upper and lower ends are respectively directed toward the third bracket and the first bracket.

4. An ABS housing sway feeding device as claimed in claim 2 or 3, characterized in that: The first bracket, the second bracket and the third bracket are all provided with a plurality of mounting ears for rotationally connecting to the corresponding first cylinder or the second cylinder.

5. The ABS housing sway feeding device according to claim 1, characterized in that: A screw rod is rotatably provided at the inlet of the feeding channel, and at least one of the two floating blocks is penetrated by the screw rod.

6. An ABS housing sway feeding device as claimed in claim 1 or 5, characterized in that: The opposite end surfaces of the two floating blocks are rotatably provided with guide wheels, and the guide wheels extend into the opening of the feeding channel.

7. The ABS housing sway feeding device as claimed in claim 6, characterized in that: The floating block is connected to the guide wheel via a locking assembly, which includes a first locking portion and a second locking portion that are detachably connected, and a mounting seat located between the first locking portion and the second locking portion, the first locking portion or the second locking portion is detachably fixed to the floating block, and the guide wheel is rotatably disposed on the mounting seat.

8. The ABS housing sway feeding device as claimed in claim 7, characterized in that: The first locking portion and the second locking portion are respectively provided with matching convex strips and clamping grooves. When the convex strips are inserted into the clamping grooves, the first locking portion and the second locking portion clamp the mounting seat therebetween.

9. The ABS housing sway feeding device as claimed in claim 8, characterized in that: The convex strip and the slot are provided with a plurality of first fixing holes; and / or The mounting seat is provided with a plurality of second fixing holes.

10. The ABS housing sway feeding device according to claim 1, characterized in that: The first feeding structure comprises a first frame and a plurality of first feeding rollers arranged in an arc shape on the first frame; and / or The second feeding structure includes a second frame and a plurality of second feeding rollers arranged at intervals on the second frame.