Suspension mounting mechanism of metal piece carrier
By designing the suspension installation mechanism of the metal parts vehicle, the combination of slide rails, support plates and spinning cylinders is used to solve the problem of stable clamping and convenient loading and unloading of the vehicle, improving the processing accuracy and protecting the surface of the workpiece, and achieving stable positioning and elastic pressing of the vehicle.
Patent Information
- Application Number
- CN202422167662.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-04
- Publication Date
- 2025-08-08
- Estimated Expiration
- 2034-09-04
AI Technical Summary
In the prior art, the installation components of metal parts carriers are not convenient for mounting and disassembly, the clamping stability is poor, and the hard pressing leads to low machining accuracy and easily damage the surface of the workpiece.
A suspension installation mechanism for a metal vehicle is designed, including a support seat, a slide rail, a strip support plate, a telescopic spring and a spinning cylinder. The sliding part of the spinning cylinder realizes stable clamping of the vehicle through the coordination of the slide rail and the spring. The rotating part of the spinning cylinder realizes clamping and disassembly of the vehicle in different states, and elastically pressing the workpiece through the extrusion head.
It realizes stable clamping and convenient loading and unloading of the vehicle, improves processing accuracy, and avoids damage to the workpiece surface.
Smart Images

Figure CN223198465U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of automated processing, in particular to a suspension installation mechanism for a metal component carrier. Background Art
[0002] Electronic cigarettes have the same smoke, taste and feel as cigarettes. They are electronic products that imitate cigarettes. They convert nicotine and other substances into vapor through means such as atomization to simulate cigarette smoke. During processing, the shell needs to be installed on a carrier, and then the carrier is installed on an external conveying mechanism for transportation through special installation components.
[0003] The mounting assembly of the prior art is not convenient for mounting and dismounting the carrier, and the stability of the clamping carrier is poor. Moreover, the use of hard pressing not only results in poor machining accuracy, but also easily causes damage to the surface of the workpiece to be machined. Utility Model Content
[0004] The main purpose of the present utility model is to provide a suspension and mounting mechanism for a metal carrier, which can not only achieve stable clamping of the carrier and facilitate the clamping and disassembly of the carrier, but also elastically press the workpiece to be processed on each carrier from the opposite direction, thereby improving the processing accuracy without damaging the surface of the workpiece to be processed.
[0005] To achieve the above-mentioned purpose, the technical solution adopted by the present invention is: a suspension mounting mechanism for a metal part carrier, comprising: a support seat with a bottom base plate and a vertical support plate, a horizontally arranged carrier plate being installed on the upper surface of the bottom base plate and located at the rear side of the vertical support plate, at least two slide rails extending forward and backward being slidably installed on the upper surface of the carrier plate, the carrier comprising a vertically arranged base plate and a plurality of carrier blocks installed on the rear side surface of the base plate, a workpiece to be processed is sleeved on the outer side of the carrier block, a avoidance through hole for the workpiece to be processed to pass through is provided on the vertical support plate of the support seat, a front end of the slide rail passes through the avoidance through hole and is installed with a pad, and a hanging groove for the pad to be embedded is provided on the lower surface of the base plate of the carrier;
[0006] The cam is secured to the rear of the platform and is adapted to move forward and backward with the platform, with the cam being secured to the platform when the platform is in motion and the cam is in a position to move relative to the platform.
[0007] The further improved scheme in the above technical scheme is as follows:
[0008] 1. In the above solution, a reinforcing plate is provided on the upper surface of the bottom substrate and on both sides of the avoidance through hole. The reinforcing plates are arranged in a right triangle shape and are connected to the rear side surfaces of the bottom substrate and the vertical support plate respectively.
[0009] 2. In the above scheme, the front end of the telescopic spring is connected to a first pin installed on the reinforcing plate, and the rear end of the telescopic spring is connected to a second pin installed on the end surface of the two ends of the strip support plate. The first pin and the second pin, which are parallel to each other, each have one end connected to the telescopic spring, and the other end of each is installed on the reinforcing plate or the strip support plate.
[0010] 3. In the above solution, the extrusion head is a rubber extrusion head, a silicone extrusion head or a polyurethane extrusion head.
[0011] 4. In the above solution, the base plate of the carrier and the vertical support plate of the support seat are connected by at least two groups of guide columns and guide grooves.
[0012] 5. In the above solution, the two guide grooves are respectively opened at the diagonal positions of the carrier substrate.
[0013] Due to the application of the above technical solution, the utility model has the following advantages compared with the prior art:
[0014] The utility model discloses a suspension mounting mechanism for a metal part carrier, wherein a vertical support plate of the support seat is provided with a avoidance through hole for the workpiece to be processed to pass through, the front end of the slide rail passes through the avoidance through hole and is installed with a pad, and a hanging groove for the pad to be embedded is provided on the lower surface of the base plate of the carrier, a strip support plate extending left and right is installed on the rear end of the slide rail and can move back and forth with the slide rail, a plurality of mounting seats corresponding to the carrying blocks on the carrier are installed on the upper surface of the strip support plate, an extrusion head matching the workpiece to be processed is installed on the front end of the mounting seat, a telescopic spring is installed on the end surface of each end of the strip support plate, the front end of the telescopic spring connected to the strip support plate at the rear end is connected to the support seat, and at least one is installed on the vertical support plate. The spinning cylinder, the main body of which is installed on the rear surface of the vertical support plate, the rotating part of the spinning cylinder is located on the front side of the vertical support plate and when the spinning cylinder is in a non-pressing state, the rotating part of the spinning cylinder is located parallel to the outside of the base plate of the carrier. When the spinning cylinder is in a pressing state, its rotating part is in pressing contact with the front surface of the base plate of the carrier and the extrusion head is in pressing contact with the workpiece to be processed on the carrier, which can not only achieve stable clamping of the carrier and facilitate the clamping and disassembly of the carrier, but also elastically press the workpiece to be processed on each carrier from the opposite direction, thereby ensuring the stability and consistency of the position accuracy of each workpiece to be processed during the processing, improving the processing accuracy without damaging the surface of the workpiece to be processed. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 This is a structural diagram of the suspension installation mechanism of the metal parts carrier of the present utility model;
[0016] Figure 2 For attachment Figure 1 A magnified schematic diagram of point A in the middle;
[0017] Figure 3 A schematic diagram of the suspension installation mechanism of the metal component carrier of the present invention from another perspective;
[0018] Figure 4 For attachment Figure 3 A magnified schematic diagram of point B in the middle;
[0019] Figure 5 It is a partial structural diagram of the suspension installation mechanism of the metal part carrier of the present invention.
[0020] In the above drawings: 100, workpiece to be processed; 1, substrate; 2, carrier block; 31, pad; 32, hanging groove; 4, spinning cylinder; 41, main body; 42, rotating part; 51, guide column; 52, guide groove; 6, strip support plate; 7, mounting seat; 8, extrusion head; 9, telescopic spring; 91, first pin; 92, second pin; 11, support seat; 111, bottom substrate; 112, vertical support plate; 113, reinforcement plate; 12, carrier plate; 131, slide rail; 132, slider; 133, stop block; 14, avoidance through hole. DETAILED DESCRIPTION
[0021] The present invention can be further understood through the specific embodiments given below, but they are not intended to limit the present invention.
[0022] Embodiment 1: A suspension installation mechanism for a metal carrier, comprising: a support seat 11 having a bottom base plate 111 and a vertical support plate 112, a horizontally arranged carrier plate 12 being installed on the upper surface of the bottom base plate 111 and located at the rear side of the vertical support plate 112, at least two slide rails 131 extending forward and backward being slidably installed on the upper surface of the carrier plate 12, the carrier comprising a vertically arranged base plate 1 and a plurality of carrier blocks 2 installed on the rear side surface of the base plate 1, a workpiece 100 to be processed is sleeved on the outer side of the carrier block 2, a avoidance through hole 14 for the workpiece 100 to be processed to pass through is provided on the vertical support plate 112 of the support seat 11, a front end of the slide rail 131 passes through the avoidance through hole 14 and is installed with a pad 31, and a hanging groove 32 for the pad 31 to be embedded in is provided on the lower surface of the base plate 1 of the carrier;
[0023] A strip support plate 6 extending left and right is installed on the rear end of the slide rail 131 and can move forward and backward with the slide rail 131. The upper surface of the strip support plate 6 is installed with a plurality of mounting seats 7 corresponding to the carrier block 2 on the carrier. The front end of the mounting seat 7 is installed with an extrusion head 8 that cooperates with the workpiece 100 to be processed. A telescopic spring 9 is installed on the end surface of each end of the strip support plate 6. The front end of the telescopic spring 9 connected to the rear end of the strip support plate 6 is connected to the support seat 11. The vertical support plate 1 At least one spinning cylinder 4 is mounted on 12, with a main body 41 mounted on the rear surface of the vertical support plate 112. The rotating portion 42 of the spinning cylinder 4 is located on the front side of the vertical support plate 112 and when the spinning cylinder 4 is in a non-pressing state, the rotating portion 42 of the spinning cylinder 4 is located parallel to the outside of the base plate 1 of the carrier. When the spinning cylinder 4 is in a pressing state, the rotating portion 42 is in press-holding contact with the front surface of the base plate 1 of the carrier and the extrusion head 8 is in press-holding contact with the workpiece 100 to be processed on the carrier.
[0024] When in use, first install each workpiece to be processed on the carrier, and then use the carrier to clamp and position each workpiece to be processed;
[0025] Then, when the spinning cylinder is in a non-pressing state, the carrier is mounted on the pad at the front end of the slide rail and the pad is matched with the mounting slot to achieve preliminary positioning of the entire carrier. At the same time, the carrier is pushed to move along the length direction of the slide rail toward the direction close to the strip support plate until the outer surface of each workpiece to be processed contacts the corresponding extrusion head. Then the carrier is pushed to continue moving until the surface of the side loaded with the workpiece to be processed is in contact with the vertical support plate of the support seat. During this process, the extrusion head installed on the strip support plate applies an elastic pressure opposite to the moving direction of the carrier to each corresponding workpiece to be processed under the action of the telescopic spring.
[0026] A reinforcing plate 113 is provided on the upper surface of the bottom substrate 111 and on both sides of the avoidance through hole 14 . The reinforcing plates 113 , which are arranged in a right triangle shape, are connected to the rear surfaces of the bottom substrate 111 and the vertical support plate 112 , respectively.
[0027] The front end of the telescopic spring 9 is connected to a first pin 91 mounted on the reinforcing plate 113, and the rear end of the telescopic spring 9 is connected to a second pin 92 mounted on the end surface of the two ends of the strip support plate 6. The first pin 91 and the second pin 92 are parallel to each other, each having one end connected to the telescopic spring 9, and the other end of each is mounted on the reinforcing plate 113.
[0028] The extrusion head 8 is a polyurethane extrusion head.
[0029] The base plate 1 of the carrier and the vertical support plate 112 of the support base 11 are connected by at least two sets of guide columns 51 and guide grooves 52 .
[0030] The two guide grooves 52 are respectively formed at opposite corners of the carrier substrate 1 .
[0031] Each of the slide rails 131 is mounted on the upper surface of the carrier plate 12 via at least two sliders 132 .
[0032] The hanging slots 32 are located between adjacent carrier blocks 2 .
[0033] Embodiment 2: A suspension installation mechanism for a metal carrier, comprising: a support seat 11 having a bottom base plate 111 and a vertical support plate 112, a horizontally arranged carrier plate 12 being installed on the upper surface of the bottom base plate 111 and located at the rear side of the vertical support plate 112, at least two slide rails 131 extending forward and backward being slidably installed on the upper surface of the carrier plate 12, the carrier comprising a vertically arranged base plate 1 and a plurality of carrier blocks 2 installed on the rear side surface of the base plate 1, a workpiece 100 to be processed is sleeved on the outer side of the carrier block 2, a avoidance through hole 14 for the workpiece 100 to be processed to pass through is provided on the vertical support plate 112 of the support seat 11, a front end of the slide rail 131 passes through the avoidance through hole 14 and is installed with a pad 31, and a hanging groove 32 for the pad 31 to be embedded in the lower surface of the base plate 1 of the carrier is provided;
[0034] A strip support plate 6 extending left and right is installed on the rear end of the slide rail 131 and can move forward and backward with the slide rail 131. The upper surface of the strip support plate 6 is installed with a plurality of mounting seats 7 corresponding to the carrier block 2 on the carrier. The front end of the mounting seat 7 is installed with an extrusion head 8 that cooperates with the workpiece 100 to be processed. A telescopic spring 9 is installed on the end surface of each end of the strip support plate 6. The front end of the telescopic spring 9 connected to the rear end of the strip support plate 6 is connected to the support seat 11. The vertical support plate 1 At least one spinning cylinder 4 is mounted on 12, with a main body 41 mounted on the rear surface of the vertical support plate 112. The rotating portion 42 of the spinning cylinder 4 is located on the front side of the vertical support plate 112 and when the spinning cylinder 4 is in a non-pressing state, the rotating portion 42 of the spinning cylinder 4 is located parallel to the outside of the base plate 1 of the carrier. When the spinning cylinder 4 is in a pressing state, the rotating portion 42 is in press-holding contact with the front surface of the base plate 1 of the carrier and the extrusion head 8 is in press-holding contact with the workpiece 100 to be processed on the carrier.
[0035] Switching the spinning cylinder to the pressing state allows its rotating part to retract toward its main body while rotating 90°, thereby pressing the carrier's substrate from the other side, achieving stable pressing of the carrier. Each workpiece to be processed on the carrier is located on the inner side of the vertical support plate of its substrate facing the support seat and is subjected to the elastic pressing force from the corresponding extrusion head, which can effectively avoid external interference and improve stability, and can also ensure the stability and consistency of the position accuracy of each workpiece to be processed during the processing, thereby improving the processing accuracy without damaging the surface of the workpiece to be processed.
[0036] When disassembly is required, it is only necessary to switch the spinning cylinder to the non-pressing state. The rotating part of the spinning cylinder will extend away from its main body while rotating 90°, thereby away from the base plate of the carrier, making it easy to remove the carrier from the pad. This not only facilitates the hanging and disassembly of the carrier loaded with the workpiece to be processed, but also can achieve stable clamping of the fixture to ensure the stability of the position and clamping state of each workpiece during the processing process.
[0037] A reinforcing plate 113 is provided on the upper surface of the bottom substrate 111 and on both sides of the avoidance through hole 14 . The reinforcing plates 113 , which are arranged in a right triangle shape, are connected to the rear surfaces of the bottom substrate 111 and the vertical support plate 112 , respectively.
[0038] The front end of the telescopic spring 9 is connected to a first pin 91 mounted on the reinforcing plate 113, and the rear end of the telescopic spring 9 is connected to a second pin 92 mounted on the end faces of the two ends of the strip support plate 6. The first pin 91 and the second pin 92, which are parallel to each other, have one end each connected to the telescopic spring 9, and the other end each is mounted on the strip support plate 6.
[0039] The extrusion head 8 is a silicone extrusion head.
[0040] A stop block 133 is installed at the rear end of the slide rail 131 . The lower surface of the stop block 133 is lower than the upper surface of the carrier plate 12 .
[0041] The two spaced-apart spinning cylinders 4 are respectively installed at the two corners of the upper portion of the vertical support plate 112 .
[0042] When in the non-pressing state, the rotating parts 42 of the spinning cylinder 4 are located parallel to both sides above the substrate 1 of the carrier.
[0043] The hanging groove 32 is a triangular groove, and the upper portion of the pad 31 is configured as a triangle that matches the triangular groove.
[0044] The working principle of this utility model is as follows:
[0045] When in use, first install each workpiece to be processed on the carrier, and then use the carrier to clamp and position each workpiece to be processed;
[0046] Then, when the spinning cylinder is in a non-pressing state, the carrier is hung on the pad at the front end of the slide rail and the pad is matched with the hanging slot to achieve the initial positioning of the carrier as a whole. At the same time, the carrier is pushed to move along the length direction of the slide rail toward the direction close to the strip support plate until the outer surface of each workpiece to be processed contacts the corresponding extrusion head. Then, the carrier is pushed to continue moving until the surface of the side loaded with the workpiece to be processed is in contact with the vertical support plate of the support seat. During this process, the extrusion head installed on the strip support plate applies an elastic pressure opposite to the moving direction of the carrier to each corresponding workpiece to be processed under the action of the telescopic spring;
[0047] Then, the spinning cylinder is switched to the pressing state, so that its rotating part contracts toward its main body while rotating 90 degrees, thereby pressing the substrate of the carrier from the other side of the carrier, thereby achieving stable pressing of the carrier and each workpiece to be processed on the carrier is located on the inner side of the vertical support plate of its substrate facing the support seat and is subjected to the elastic pressing force from the corresponding extrusion head, which can effectively avoid external interference and improve stability, and can also ensure the stability and consistency of the position accuracy of each workpiece to be processed during the processing process, thereby improving the processing accuracy without damaging the surface of the workpiece to be processed;
[0048] When disassembly is required, it is only necessary to switch the spinning cylinder to the non-pressing state. The rotating part of the spinning cylinder will extend away from its main body while rotating 90°, thereby away from the base plate of the carrier, making it easy to remove the carrier from the pad. This not only facilitates the hanging and disassembly of the carrier loaded with the workpiece to be processed, but also can achieve stable clamping of the fixture to ensure the stability of the position and clamping state of each workpiece during the processing process.
[0049] The suspension mounting mechanism of the metal parts carrier of the utility model can not only realize stable clamping of the carrier and facilitate the clamping and disassembly of the carrier, but also elastically press the workpiece to be processed on each carrier from the opposite direction, thereby ensuring the stability and consistency of the position accuracy of each workpiece to be processed during the processing, improving the processing accuracy without damaging the surface of the workpiece to be processed.
[0050] The above embodiments are intended only to illustrate the technical concepts and features of the present invention. Their purpose is to enable those familiar with the art to understand the contents of the present invention and implement them accordingly. They are not intended to limit the scope of protection of the present invention. Any equivalent changes or modifications based on the spirit of the present invention are intended to be included in the scope of protection of the present invention.
Claims
1. A suspension mounting mechanism for a metal component carrier, comprising: A support seat (11) having a bottom substrate (111) and a vertical support plate (112), a horizontally arranged carrier plate (12) being installed on the upper surface of the bottom substrate (111) and located at the rear side of the vertical support plate (112), at least two slide rails (131) extending forward and backward being slidably installed on the upper surface of the carrier plate (12), the carrier comprising a vertically arranged base plate (1) and a plurality of carrier blocks (2) installed on the rear side surface of the base plate (1), the outer side of the carrier block (2) being sheathed with a workpiece (100) to be processed, characterized in that: a position-avoiding through hole (14) for the workpiece (100) to be processed is provided on the vertical support plate (112) of the support seat (11), a front end of the slide rail (131) passes through the position-avoiding through hole (14) and is installed with a pad block (31), and a hanging groove (32) for the pad block (31) to be embedded is provided on the lower surface of the base plate (1) of the carrier; A strip support plate (6) extending left and right is installed at the rear end of the slide rail (131) and can move forward and backward with the slide rail (131), the upper surface of the strip support plate (6) is installed with a plurality of mounting seats (7) corresponding to the carrier block (2) on the carrier, the front end of the mounting seat (7) is installed with an extrusion head (8) that cooperates with the workpiece (100) to be processed, and a telescopic spring (9) is installed on the end surface of each end of the strip support plate (6), the front end of the telescopic spring (9) connected to the strip support plate (6) at the rear end is connected to the support seat (11), and the vertical support plate (11) is connected to the vertical support plate (11). 2) is provided with at least one spinning cylinder (4), the main body (41) being installed on the rear surface of the vertical support plate (112), the rotating portion (42) of the spinning cylinder (4) being located on the front side of the vertical support plate (112), and when the spinning cylinder (4) is in a non-pressing state, the rotating portion (42) of the spinning cylinder (4) is located parallel to the outside of the base plate (1) of the carrier, and when the spinning cylinder (4) is in a pressing state, the rotating portion (42) thereof is in pressing contact with the front surface of the base plate (1) of the carrier, and the extrusion head (8) is in pressing contact with the workpiece (100) to be processed on the carrier.
2. The metal component carrier suspension and mounting mechanism according to claim 1, characterized in that: A reinforcing plate (113) is provided on the upper surface of the bottom substrate (111) and on both sides of the avoidance through hole (14). The reinforcing plates (113) are arranged in the shape of a right triangle and are connected to the rear side surfaces of the bottom substrate (111) and the vertical support plate (112), respectively.
3. The metal component carrier suspension installation mechanism according to claim 2, characterized in that: The front end of the telescopic spring (9) is connected to a first pin (91) mounted on the reinforcing plate (113), and the rear end of the telescopic spring (9) is connected to a second pin (92) mounted on the end surfaces of both ends of the strip support plate (6). The first pin (91) and the second pin (92) are parallel to each other, and one end of each is connected to the telescopic spring (9), and the other end of each is mounted on the reinforcing plate (113) or the strip support plate (6).
4. The metal component carrier suspension mounting mechanism according to claim 1, characterized in that: The extrusion head (8) is a rubber extrusion head, a silicone extrusion head or a polyurethane extrusion head.
5. The metal component carrier suspension installation mechanism according to claim 1, characterized in that: The base plate (1) of the carrier and the vertical support plate (112) of the support seat (11) are connected in a cooperative manner via at least two groups of guide columns (51) and guide grooves (52).
6. The metal component carrier suspension installation mechanism according to claim 5, characterized in that: The two guide grooves (52) are respectively opened at the diagonal positions of the carrier substrate (1).
Citation Information
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