A stent spring assembly machine
By designing a bracket spring assembly machine, which uses a vibratory feeder and pusher assembly for automated material transfer and assembly, the problems of excessive manual operation, low production efficiency, and swaying and deviation in the existing technology are solved, and efficient and stable spring and bracket assembly is achieved.
Patent Information
- Application Number
- CN202210188534.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-02-28
- Publication Date
- 2026-02-17
- Estimated Expiration
- 2042-02-28
AI Technical Summary
The existing technology for assembling springs and brackets suffers from problems such as excessive manual operation, low production efficiency, and easy shaking or displacement, resulting in high production costs and poor assembly results.
A support spring assembly machine was designed, including a frame, a feeding assembly, a transmission assembly, and an assembly mechanism. It uses a vibratory feeder and a pusher assembly for automated material transmission and assembly, utilizes a matching notch and a pusher for stable guidance, and combines a limiter and a shock absorber to improve assembly accuracy and efficiency.
It realizes the automated assembly of springs and brackets, reduces the difficulty of manual operation, improves production efficiency, reduces shaking and offset, and improves assembly effect and output quality.
Smart Images

Figure CN114473458B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of automation assembly, in particular to a bracket spring assembly machine. BACKGROUND
[0002] In the assembly device, the spring and the matching bracket are tried to be assembled, and in the processing of the spring and the bracket in the prior art, there are many manual operation processes, such as fitting of the screw, arrangement and sub-packaging, turning of the pre-assembled component, and the like. The excessive manual operation makes the spring assembly process inefficient, and because the size of the spring is small, the manual operation is difficult, resulting in high production cost. Referring to the single-way valve spring auxiliary assembly device described in the patent document CN202023271501.3, the following problems exist in the prior art: in the installation process, the phenomenon of shaking or deviation is easy to occur, which affects the assembly effect of the spring and the bracket. SUMMARY
[0003] To solve the above problems, the present application provides a bracket spring assembly machine, which is reasonable in design and can effectively solve the problem of low production efficiency in the spring assembly process, and effectively solve the problem of shaking or deviation in the installation process, which affects the assembly effect of the spring and the bracket.
[0004] The above-mentioned object of the present application is achieved by the following technical scheme:
[0005] A bracket spring assembly machine, comprising a rack body, a feeding assembly, a transmission assembly and an assembly mechanism, the feeding assembly, the transmission assembly and the assembly mechanism are sequentially connected and installed on the rack body, a hopper is further installed on one side of the rack body and located below the output end of the assembly mechanism, a mounting bracket is further provided on the rack body, a fitting workbench is movably provided on the mounting bracket, and the fitting workbench is connected with the transmission assembly and the assembly mechanism; a fitting gap is provided on the fitting workbench, the assembly mechanism comprises a disc assembly, a sensing device and a pusher assembly provided on the rack body and located on both sides of the disc assembly, the disc assembly comprises a disc body, a driving cylinder, a discharge channel and a pusher, the discharge channel penetrates through the rack body, the disc body comprises a fitting disc and a mounting disc arranged side by side, the shaft center lines of the fitting disc and the mounting disc coincide with each other, the driving cylinder is located on one side of the fitting disc and connected with the fitting disc and the mounting disc, at least two mounting grooves are provided on the circumferential edge of the mounting disc, the pusher and the discharge channel are located on both sides of the disc body, and the output end of the pusher faces the mounting grooves, and the fitting gap is connected with the mounting grooves.
[0006] Further, in the technical scheme above, the feeding assembly comprises a spring vibration disc and a bracket vibration disc, and the spring vibration disc and the bracket vibration disc are arranged side by side and connected with the transmission assembly at the output end.
[0007] Further, in the technical scheme above, the transmission assembly comprises a limiting device, a bracket slide and a spring slide, two ends of the bracket slide are connected with the bracket vibration disc and the matching gap respectively, two ends of the spring slide are connected with the spring vibration disc and the matching gap respectively, the central axes of the bracket slide and the spring slide are perpendicular to each other, and the limiting device is installed above the bracket slide.
[0008] Further, in the technical scheme above, the pusher assembly comprises a spring separation cylinder and a bracket pusher, and the spring separation cylinder and the bracket pusher are located on both sides of the disc body and have output ends facing the mounting groove.
[0009] Further, in the technical scheme above, the matching gap is arranged on the matching disc, and the width of the matching gap is greater than the width of the mounting groove.
[0010] Further, in the technical scheme above, the spring vibration disc and the bracket vibration disc are one of an electromagnetic vibration platform or an electrode vibration platform.
[0011] Further, in the technical scheme above, the rack body is provided with a shockproof device.
[0012] The beneficial effects of the present application are:
[0013] 1. The feeding assembly and the transmission assembly are connected with each other to transmit the material body, the assembly mechanism on one side of the feeding assembly is used to assemble the spring and the bracket, the work area is effectively divided, the material body is automatically introduced for assembly operation, the introduction component is refined to effectively reduce the production of defective parts caused by shaking, deviation and other problems, and the assembly output efficiency is improved.
[0014] 2. The matching gap matching disc assembly and the pusher assembly are used for assembly processing, and the material body is stably guided after assembly, preferably, the pusher is used on the other side of the disc body to push the assembled material body to fall, and the assembly disc is beneficial to batch assembly operation. BRIEF DESCRIPTION OF DRAWINGS
[0015] In order to more clearly illustrate the embodiments of the present application, the drawings used in the embodiments or prior art description will be briefly described below.
[0016] Figure 1 is a structural schematic diagram of the present application.
[0017] Figure 2 is a front view of the present application.
[0018] Figure 3 is a top view of the present application.
[0019] Figure 4 is Figure 3 a partial schematic view of A.
[0020] Figures 1 to 4 The numbers in the figure identify the corresponding component names as follows:
[0021] Rack body-1; mounting bracket-11; feeding assembly-2; spring vibration tray-21; bracket vibration tray-22; transmission assembly-3; stopper-31; bracket slide-32; spring slide-33; assembly mechanism-4; tray-5; disc assembly-6; disc body-61; driving cylinder-62; discharge channel-63; pusher-64; fitting disc-65; mounting disc-66; mounting groove-67; pusher assembly-7; spring separation cylinder-71; bracket pusher-72. DETAILED DESCRIPTION
[0022] The technical solutions of the present application will be described clearly and completely below in conjunction with the drawings. In the description of the present application, it should be noted that:
[0023] The term "connection" should be understood broadly, which can be mechanical connection, electrical connection, direct connection, indirect connection through intermediate medium, or internal connection of two elements.
[0024] The terms "front", "back", "side", "top" and "bottom" and other orientation or position relationships are based on the orientation or position relationships shown in the drawings, which are only for the convenience of describing the present application.
[0025] For those skilled in the art, the technical solutions of various embodiments can be combined with each other, but it must be based on the realization of ordinary skilled in the art, when the combination of technical solutions appears contradictory or unachievable, it should be considered that the combination of technical solutions does not exist, nor within the scope of protection claimed by the present application.
[0026] The present application will be further described below in conjunction with specific embodiments, but it should be noted that the present embodiment is implemented on the premise of the technical solutions of the present application, and gives detailed implementation mode and specific operation process, but the protection scope of the present application is not limited to the following embodiments.
[0027] As Figures 1 to 4 shown, the best embodiment of the present embodiment is:
[0028] A support spring assembly machine, comprising a rack body 1, a feeding assembly 2, a transmission assembly 3 and an assembly mechanism 4, the feeding assembly 2, the transmission assembly 3 and the assembly mechanism 4 are sequentially connected and installed on the rack body 1, a hopper 5 is further installed on one side of the rack body 1 and located below the output end of the assembly mechanism 4, a mounting bracket 11 is further arranged on the rack body 1, a matching workbench is movably arranged on the mounting bracket 11, and the matching workbench is connected with the transmission assembly 3 and the assembly mechanism 4.
[0029] In the embodiment, the feeding assembly 2 and the transmission assembly 3 are connected with each other to transmit the material, the assembly mechanism 4 located on one side of the feeding assembly 2 is used to assemble the spring and the support, the working area is effectively divided, the material assembly operation is automatically introduced, the defective production caused by shaking and deviation is effectively reduced by refining the introduction component, and the assembly output efficiency is improved.
[0030] Specifically, the matching workbench is provided with a matching gap, the assembly mechanism 4 comprises a disc assembly 6, a sensing device and a pusher assembly 7 arranged on the rack body 1 and located on both sides of the disc assembly 6, the disc assembly 6 comprises a disc body 61, a driving cylinder 62, a discharging channel 63 and a pusher 64, the discharging channel 63 penetrates through the rack body 1, the disc body 61 comprises a matching disc 65 and a mounting disc 66 arranged side by side, the shaft center lines of the matching disc 65 and the mounting disc 66 coincide with each other, the driving cylinder 62 is located on one side of the matching disc 65 and connected with the matching disc 65 and the mounting disc 66, at least two mounting grooves 67 are arranged on the circumferential edge of the mounting disc 66, the pusher 64 and the discharging channel 63 are located on both sides of the disc body 61, the output end of the pusher 64 faces the mounting grooves 67, and the matching gap is connected with the mounting grooves 67.
[0031] In the embodiment, the matching gap cooperates with the disc assembly 6 and the pusher assembly 7 to stably guide the material after assembly, preferably, the pusher 64 is arranged on the other side of the disc body 61 to push the material after assembly, and the disc body 61 is beneficial to batch assembly operation.
[0032] As shown in Figure 1 and 3 The feeding assembly 2 comprises a spring vibration disc 21 and a support vibration disc 22, the spring vibration disc 21 and the support vibration disc 22 are arranged side by side and the output ends are connected with the transmission assembly 3.
[0033] In the embodiment, the feeding assembly 2 uses a component type vibration disc to guide transmission, and synchronously guides the final assembly work.
[0034] As shown in Figure 1 and4 As shown in the figure, the transmission assembly 3 includes a stopper 31, a bracket slide 32, and a spring slide 33. The two ends of the bracket slide 32 are connected with the bracket vibration disc 22 and the matching notch, respectively. The two ends of the spring slide 33 are connected with the spring vibration disc 21 and the matching notch, respectively. The central axes of the bracket slide 32 and the spring slide 33 are perpendicular to each other. The stopper 31 is installed above the bracket slide 32.
[0035] In this embodiment, the stopper 31 is used to limit the bracket material in the bracket slide 32, so as to prevent the material from sliding out and the like.
[0036] As shown in the figure, Figure 1 and 4 The pusher assembly 7 includes a spring separation cylinder 71 and a bracket pusher 72. The spring separation cylinder 71 and the bracket pusher 72 are located on both sides of the disc body 61 and the output end faces the mounting groove 67.
[0037] In this embodiment, the spring separation cylinder 71 is used to pre-position the spring and separate it from the slide. The bracket pusher 72 is used to radially push the bracket to complete the assembly work.
[0038] As shown in the figure, Figure 1 and 4 The matching notch on the matching disc 65 is provided with a matching groove. The width of the matching groove is greater than the width of the mounting groove 67. The rack body 1 is provided with a shockproof device.
[0039] In this embodiment, the shockproof device is used to improve the operation stability of the rack body 1 and reduce the material offset during the material assembly work.
[0040] The preferred embodiments of the present application are described above, which do not limit the patent scope of the present application. Any equivalent structural changes made according to the content of the present application and the drawings, or directly / indirectly applied to other related technical fields are included in the patent protection scope of the present application.
Claims
1. A stent spring assembly machine characterized by: The utility model relates to a kind of automatic assembly machine, including rack body (1), feeding assembly (2), transmission assembly (3) and assembly mechanism (4), feeding assembly (2), transmission assembly (3) and assembly mechanism (4) are sequentially matched and are connected and installed on rack body (1), one side of rack body (1) is also installed with tray (5) and tray (5) is located below the output of assembly mechanism (4), installation support (11) is also provided on rack body (1), engagement workbench is movably provided on installation support (11), engagement workbench is connected with transmission assembly (3) and assembly mechanism (4); The engagement workbench is provided with an engagement gap, and the assembly mechanism (4) includes a disc assembly (6), a sensing device, and a pusher assembly (7) disposed on the rack body (1) and located on both sides of the disc assembly (6). The disc assembly (6) includes a disc body (61), a drive cylinder (62), a discharge channel (63), and a pusher (64). The discharge channel (63) penetrates the rack body (1). The disc body (61) includes an engagement disc (65) and a mounting disc (66) arranged side by side. The shaft center lines of the engagement disc (65) and the mounting disc (66) coincide with each other. The drive cylinder (62) is located on one side of the engagement disc (65) and connected with the engagement disc (65) and the mounting disc (66). At least two mounting grooves (67) are provided on the circumferential edge of the mounting disc (66). The pusher (64) and the discharge channel (63) are located on both sides of the disc body (61), and the output end of the pusher (64) faces the mounting grooves (67). The engagement gap is connected with the mounting grooves (67).
2. The stent spring assembly machine of claim 1, wherein: The feeding assembly (2) includes a spring vibration disc (21) and a support vibration disc (22). The spring vibration disc (21) and the support vibration disc (22) are arranged side by side, and the output ends are connected with the transmission assembly (3).
3. The stent spring assembly machine of claim 2, wherein: The transmission assembly (3) includes a stopper (31), a support slide (32), and a spring slide (33). The two ends of the support slide (32) are respectively connected with the support vibration disc (22) and the engagement gap. The two ends of the spring slide (33) are respectively connected with the spring vibration disc (21) and the engagement gap. The central axes of the support slide (32) and the spring slide (33) are perpendicular to each other. The stopper (31) is installed above the support slide (32).
4. The stent spring assembly machine of claim 3, wherein: The pusher assembly (7) includes a spring separation cylinder (71) and a support pusher (72). The spring separation cylinder (71) and the support pusher (72) are located on both sides of the disc body (61), and the output ends face the mounting grooves (67).
5. The stent spring assembly machine of claim 4, wherein: The engagement disc (65) is provided with a matching groove, and the width of the matching groove is greater than the width of the mounting grooves (67).
6. The stent spring assembly machine of claim 5, wherein: The spring vibration disc (21) and the support vibration disc (22) are one of electromagnetic vibration platforms or electrode vibration platforms.
7. The stent spring assembly machine of claim 1, wherein: The rack body (1) is provided with a shockproof device.
Citation Information
Patent Citations
Auxiliary assembling device for one-way valve spring
CN214162024U
Support spring assembling machine
CN217045338U