Auxiliary feeding and polishing device for carbon fiber roller
By designing a carbon fiber roller auxiliary loading and grinding device, the automatic transfer and loading of carbon fiber rollers is realized by using the cooperation of the driving mechanism and the motor assembly, the problem of cumbersome and time-consuming loading in the prior art is solved, and the operation efficiency is improved.
Patent Information
- Application Number
- CN202510324012.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-19
- Publication Date
- 2025-06-06
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The loading operation of the carbon fiber roller is not convenient enough. In the prior art, it is necessary to operate the moving carbon fiber rollers multiple times, which is cumbersome and time-consuming.
A carbon fiber roller auxiliary feeding and grinding device is designed, including a base, grinding mechanism, a cushion block, a cutting seat, a transfer assembly, a cutting mechanism, a motor assembly and a driving mechanism. The transfer assembly is driven to rotate by the lowering of the driving mechanism, and the carbon fiber roller is transported to the discharge mechanism, and the discharge mechanism is driven to rotate back and forth through the motor assembly, so that the carbon fiber roller automatically falls on the bracket block.
The preparation for grinding of the carbon fiber roller from the feeding seat to the cushion is achieved through a single operation, without the need for multiple operations to move the carbon fiber roller, improving operation efficiency and convenience.
Smart Images

Figure CN120095643A_ABST
Abstract
Description
Technical Field
[0001] The invention belongs to the technical field of grinding, and in particular relates to a carbon fiber roller-assisted feeding and grinding device. Background Art
[0002] Carbon fiber roller refers to a roller made of carbon fiber composite material. The carbon fiber roller made by the molding process is a blank. The outer circle of the carbon fiber roller needs to be polished in the later surface treatment. The process is divided into rough grinding and fine grinding. Rough grinding is mainly to efficiently remove most of the excess on various processing surfaces and provide a benchmark for semi-finishing. At present, the rough grinding process of carbon fiber rollers uses a grinding machine with an axis positioning fixture for grinding. The staff needs to manually carry and load the material repeatedly and use the positioning fixture to position the axis. The operation is cumbersome, time-consuming and labor-intensive.
[0003] To this end, relevant technical personnel have designed a grinding device as shown in CN112720106A. Although the device can save manpower and improve loading efficiency, in actual operation, it is necessary to first operate the unloading mechanism to transfer the carbon fiber roller, and then operate the rolling mechanism to make the carbon fiber roller fall into the required position. This operation is still not complicated and convenient enough. Summary of the invention
[0004] In view of the deficiencies in the prior art, the purpose of the present invention is to provide a carbon fiber roller auxiliary feeding and grinding device to solve the technical problem of inconvenient carbon fiber roller feeding operation mentioned in the above background technology.
[0005] In order to achieve the above-mentioned invention object, the technical solution adopted by the present invention includes: A carbon fiber roller auxiliary feeding and grinding device, comprising a base, a grinding mechanism, a support block, a feeding seat, a transfer assembly, a feeding mechanism, a motor assembly and a driving mechanism; The grinding mechanism is arranged on the base, and the support block is arranged in the grinding; The unloading seat is vertically arranged on the base, and the transfer assembly and the unloading mechanism are rotatably arranged on the base respectively. The rotation of the transfer assembly can move the single carbon fiber roller at the end of the unloading seat into the unloading mechanism, and the rotation of the unloading mechanism can place the carbon fiber roller thereon on the supporting block; The motor assembly is arranged on the base and can make the unloading mechanism reciprocate, and the motor assembly is controlled by a touch switch; the driving mechanism is arranged on the base in a liftable manner, and the descent of the driving mechanism can drive the rotation of the transfer assembly in one direction and press the touch switch of the motor.
[0006] Furthermore, the transfer assembly includes a transfer fixed seat, a transfer connecting rod, a transfer groove wheel and a ratchet; the rotating fixed seat is fixed on the base, the transfer connecting rod is rotatably connected to the transfer fixed seat, the transfer groove wheel and the ratchet are coaxially fixed on the transfer connecting rod respectively, and the descent of the driving mechanism can drive the ratchet wheel to rotate unidirectionally.
[0007] Furthermore, the unloading mechanism includes a reciprocating rotating component and an elastic clamping claw component; the reciprocating rotating component is rotatably arranged on the base, and the motor component can drive the reciprocating rotating component to reciprocate; the elastic clamping claw component is arranged on the reciprocating rotating component, and the rotation of the transfer groove wheel can loosen the elastic clamping claw component.
[0008] Further, the reciprocating rotating assembly comprises a rotating fixed seat, a driven gear, a rotating roller, a driven sleeve, a pushing rod, a sliding block and a connecting rod; the rotating fixed seat is fixed on the base, the driven gear is rotatably connected to the rotating fixed seat, and the motor assembly can drive the driven gear to rotate; the rotating fixed seat is provided with a rotating groove, the rotating roller is coaxially with the driven gear and is located in the rotating groove; the driven sleeve is coaxially rotatably connected in the rotating groove and sleeved on the rotating roller; the rotating roller is circumferentially provided with a wavy first slide groove connected end to end, the driven sleeve is obliquely provided with a long strip hole, the rotating groove is provided with a linear slide groove, the sliding block is slidably connected in the linear slide groove, one end of the pushing rod is fixed on the sliding block, and the other end passes through the long strip hole and abuts the first slide groove, and the rotation of the rotating roller can drive the driven sleeve to reciprocate through the pushing rod; the connecting rod is fixed on the driven sleeve, and the elastic clamping claw assembly is arranged on the connecting rod.
[0009] Furthermore, the elastic clamp assembly includes a base plate, a side plate, a clamp, a clamp spring and a connecting rope; the base plate is fixed on the connecting rod, the side plate is fixed on the base plate, the clamp is rotatably disposed on the base plate and opposite to the side plate, the clamp is connected to the base plate through the clamp spring, and the rotation of the transfer groove wheel can drive the clamp to rotate away from the side plate; one end of the connecting rope is connected to the clamp, and the other end is connected to the unloading seat, and the connecting rope is in a relaxed state in the initial state.
[0010] Furthermore, the motor assembly includes a driving motor and a driving gear; the driving motor is fixed on the base, and the driving gear is coaxially fixed on the output shaft of the driving motor and meshes with the driven gear.
[0011] Furthermore, the driving mechanism includes a lifting and lowering fixed seat, a lifting component, a pawl, a return spring, a limit fixed seat and a spring leaf; the lifting and lowering fixed seat is fixed on the base, the lifting component is slidably connected to the lifting and lowering fixed seat, and is connected to the base through the return spring; the limit fixed seat is fixed on the base, the spring leaf is fixed on the limit base, the pawl is slidably provided on the lifting and lowering component, the spring leaf can limit the sliding of the pawl, and the descent of the pawl can drive the transfer groove wheel to rotate unidirectionally.
[0012] Furthermore, the lifting assembly includes a lifting connecting plate and a sliding sleeve; the lifting connecting plate is slidably connected to the lifting fixed seat, the sliding sleeve is fixed on the lifting connecting plate, and is sleeved with the ratchet.
[0013] Furthermore, the grinding mechanism includes a first bearing seat, a cylindrical grinding wheel, a second bearing seat, a guide cylinder and a grinding motor; the first bearing seat and the second bearing seat are respectively arranged on the base relative to each other, and the cylindrical grinding wheel is rotatably arranged on the first bearing seat; the guide cylinder is rotatably arranged on the second bearing seat, and the grinding motor is arranged on the second bearing seat and can drive the guide cylinder to rotate.
[0014] Furthermore, a sliding plate and a pushing rod are provided; the second bearing seat is slidably arranged on the base through the sliding plate, one end of the pushing rod is connected to the sliding plate, and the other end is passed through the base.
[0015] Compared with the prior art, the advantages of the present invention include: In the present application, the driving mechanism is pressed to make it descend and then the transfer assembly is rotated, so that a carbon fiber roller on the unloading seat is transferred to the unloading mechanism, and as the pressing mechanism continues to descend, the touch switch of the motor assembly is finally squeezed, so that the motor assembly drives the unloading mechanism to rotate back and forth. When the unloading mechanism rotates to a specific position in the process of rotating toward the support block, the carbon fiber roller slides down from the unloading mechanism to the support block, and the unloading mechanism rotates in the opposite direction and resets as the motor continues to run. At this time, the driving mechanism is released and lifted, and the driving mechanism is reset without driving the transfer assembly to rotate. Thus, the carbon fiber roller is moved from the unloading seat to the support block for preparation for grinding through a single operation, without multiple operations to move the carbon fiber roller. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] In order to more clearly illustrate the embodiments of the present application or the technical solutions in the prior art, the drawings required for use in the embodiments or the description of the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments recorded in the present application. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying creative work.
[0017] Figure 1 It is an overall schematic diagram of a carbon fiber roller-assisted feeding and grinding device in the present invention; Figure 2 for Figure 1 A schematic diagram of the carbon fiber roller-assisted feeding and grinding device from another angle shown; Figure 3 An exploded view of the reciprocating rotating assembly of the present invention; Figure 4 This is a schematic diagram of the reciprocating rotating assembly of the present invention without the rotating fixed seat.
[0018] Reference numerals: Base 1, grinding mechanism 2, first bearing seat 21, cylindrical grinding wheel 22, second bearing seat 23, guide cylinder 24, grinding motor 25, sliding plate 26, push rod 27, support block 3, unloading seat 4, transfer assembly 5, transfer fixed seat 51, transfer connecting rod 52, transfer groove wheel 53, ratchet 54, unloading mechanism 6, reciprocating rotating assembly 61, rotating fixed seat 611, rotating groove 6111, linear slide 6112, driven gear 612, rotating roller 613, first slide 6131, Follower sleeve 614, long hole 6141, push rod 615, sliding block 616, connecting rod 617, elastic clamping claw assembly 62, bottom plate 621, side plate 622, clamping plate 623, clamping claw spring 624, connecting rope 625, motor assembly 7, driving motor 71, touch switch 711, driving gear 72, driving mechanism 8, lifting and lowering fixed seat 81, lifting assembly 82, lifting connecting plate 821, sliding sleeve 822, ratchet 83, return spring 84, limit fixing seat 85, and spring leaf 86. DETAILED DESCRIPTION
[0019] In view of the deficiencies in the prior art, the inventor of this case has proposed the technical solution of the present invention after long-term research and extensive practice. The following will further explain the technical solution, its implementation process and principle, etc. in conjunction with the drawings in the embodiments of this application and specific implementation cases.
[0020] It should be noted that the embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain the present invention, and cannot be understood as limiting the present invention. The described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments in the present invention, the present invention covers any substitution, modification, equivalent method and scheme made on the spirit, principle and scope of the present invention defined by the claims. All other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.
[0021] In the description of the present application, "first", "second", "third" and similar words do not indicate any order, quantity or importance, but are only used to distinguish different components. Similarly, "one" or "an" and other similar words do not indicate a quantity limitation, but indicate the existence of at least one. "Include" or "comprise" and other similar words mean that the elements or objects appearing before "include" or "comprises" include the elements or objects listed after "include" or "comprises" and their equivalents, and do not exclude other elements or objects. "Connect" or "connected" and other similar words are not limited to physical or mechanical connections, but may include electrical connections, whether direct or indirect.
[0022] In the description of the present application, the terms "center", "upper", "lower", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inside", "outside" and the like indicate positions or positional relationships based on the positions or positional relationships shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation on the present application. In addition, when positional terms such as both sides, outside, up and down are used, it should be understood that they are only used to facilitate understanding and description, considering that the structure may be facing other positions.
[0023] In the description of this application, unless otherwise clearly specified and limited, the technical or scientific terms used should have the usual meanings understood by persons with general skills in the field to which this application belongs. Terms such as "install", "connect", and "connect" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, a conflicting connection, or an integrated connection. For ordinary technicians in this field, the specific meanings of the above terms in this application can be understood according to specific circumstances.
[0024] The embodiment of the present invention is intended to introduce and illustrate the structural composition of the carbon fiber roller assisted feeding and grinding device and the matching relationship between the various components. Unless otherwise specified, the size, material and manufacturing process of each component in the carbon fiber roller assisted feeding and grinding device in the embodiment of the present invention can be selected according to the specific situation and are not specifically limited or explained here.
[0025] Further, in order to make the public have a better understanding of the present invention, some specific details are described in detail in the following detailed description of the present invention. For those skilled in the art, the present invention can be fully understood without the description of these details.
[0026] Please also read Figure 1-Figure 4 , this embodiment provides a carbon fiber roller auxiliary feeding and grinding device, including a base 1, a grinding mechanism 2, a support block 3, a feeding seat 4, a transfer assembly 5, a feeding mechanism 6, a motor assembly 7 and a driving mechanism 8; The grinding mechanism 2 is arranged on the base 1, and the support block 3 is arranged inside the grinding mechanism; it should be understood that the support block 3 has a certain flexibility and is preferably made of rubber.
[0027] The unloading seat 4 is erected on the base 1, and the transfer assembly 5 and the unloading mechanism 6 are rotatably arranged on the base 1 respectively. The rotation of the transfer assembly 5 can move the single carbon fiber roller at the end of the unloading seat 4 into the unloading mechanism 6, and the rotation of the unloading mechanism 6 can place the carbon fiber roller on it on the support block 3; specifically, the unloading seat 4 is composed of two fixed plates, one high and one low, and a flat plate connecting the two fixed plates, so that the lower end of the unloading seat 4 faces the transfer assembly 5, and the carbon fiber rollers are arranged in sequence from low to high on the unloading seat 4. The unloading mechanism 6 is elastic and can clamp the carbon fiber roller. The rotation of the transfer assembly 5 can separate the elastic clamping claws of the unloading mechanism 6, and re-approach and clamp the carbon fiber roller after it falls in. After the unloading mechanism 6 rotates to a certain extent, its clamping claws separate, so that the carbon fiber roller falls on the support block 3.
[0028] The motor assembly 7 is arranged on the base 1 and can make the unloading mechanism 6 reciprocate. The motor assembly 7 is controlled by the touch switch 711. The driving mechanism 8 is arranged on the base 1 so as to be able to rise and fall. The descent of the driving mechanism 8 can drive the rotation of the transfer assembly 5 in one direction and press the touch switch 711 of the motor. Specifically, the descent of the driving mechanism 8 first drives the rotation of the transfer assembly 5 and then presses the touch switch 711 of the motor assembly 7, while the elevation of the driving mechanism 8 does not drive the rotation of the transfer assembly 5.
[0029] In the present application, the driving mechanism 8 is pressed to make it descend and then the transfer assembly 5 is rotated, so that a carbon fiber roller on the unloading seat 4 is transferred to the unloading mechanism 6, and as the pressing mechanism continues to descend, the touch switch 711 of the motor assembly 7 is finally squeezed, so that the motor assembly 7 drives the unloading mechanism 6 to rotate back and forth. When the unloading mechanism 6 rotates to a specific position during the process of rotating toward the support block 3, the carbon fiber roller slides down from the unloading mechanism 6 to the support block 3, and the unloading mechanism 6 rotates in the opposite direction and resets as the motor continues to run. At this time, the driving mechanism 8 is released and the driving mechanism 8 is lifted, and the driving mechanism 8 is reset without driving the transfer assembly 5 to rotate. Thus, the carbon fiber roller is moved from the unloading seat 4 to the support block 3 for preparation for grinding through a single operation, without multiple operations to move the carbon fiber roller.
[0030] In other schemes, the transfer assembly 5 includes a transfer fixed seat 51, a transfer connecting rod 52, a transfer groove wheel 53 and a ratchet 54; the rotating fixed seat 611 is fixed on the base 1, the transfer connecting rod 52 is rotatably connected to the transfer fixed seat 51, the transfer groove wheel 53 and the ratchet 54 are respectively coaxially fixed on the transfer connecting rod 52, and the descent of the driving mechanism 8 can drive the ratchet 54 to rotate unidirectionally.
[0031] Specifically, the rotation of the transfer groove wheel 53 can move the carbon fiber roller on the unloading seat 4 from the unloading seat 4 to the unloading mechanism 6, and due to the structural characteristics of the internal groove of the transfer groove wheel 53, its side releases the elastic clamping claw of the unloading mechanism 6 during the rotation process, and after rotating a certain angle, it moves away from the elastic clamping claw of the unloading mechanism 6, so that the carbon fiber roller falls into the clamping claw of the unloading mechanism 6 and is clamped. Preferably, each descent of the driving mechanism 8 can cause the ratchet wheel 54 to rotate 90°, that is, the transfer groove wheel 53 rotates 90°.
[0032] In other schemes, the unloading mechanism 6 includes a reciprocating rotating assembly 61 and an elastic clamping claw assembly 62; the reciprocating rotating assembly 61 is rotatably arranged on the base 1, and the motor assembly 7 can drive the reciprocating rotating assembly 61 to reciprocate; the elastic clamping claw assembly 62 is arranged on the reciprocating rotating assembly 61, and the rotation of the transfer groove wheel 53 can loosen the elastic clamping claw assembly 62. Specifically, in the initial state of the elastic clamping claw assembly 62, the rotation of the transfer groove wheel 53 can make the elastic clamping claw assembly 62 loosen and then gather together, thereby clamping the carbon fiber roller. When the elastic clamping claw assembly 62 rotates toward the support block 3 with the rotation of the reciprocating rotating assembly 61, the elastic clamping claw assembly 62 can be loosened again so that the carbon fiber roller falls onto the support block 3.
[0033] In other embodiments, the reciprocating rotating assembly 61 includes a rotating fixed seat 611, a driven gear 612, a rotating roller 613, a driven sleeve 614, a push rod 61527, a sliding block 616 and a connecting rod 617; the rotating fixed seat 611 is fixed on the base 1, the driven gear 612 is rotatably connected to the rotating fixed seat 611, and the motor assembly 7 can drive the driven gear 612 to rotate; a rotating groove 6111 is provided on the rotating fixed seat 611, and the rotating roller 613 is coaxially connected to the driven gear 612 and located in the rotating groove 6111; the driven sleeve 614 is coaxially rotatably connected to the rotating groove 6111 and is sleeved on the rotating roller 613; a wavy first slide groove 6131 connected end to end is circumferentially provided on the rotating roller 613, a long hole 6141 is obliquely provided on the driven sleeve 614, a linear slide groove 6112 is provided in the rotating groove 6111, and the sliding block 616 is slidably connected in the linear slide groove 6112. One end of the pushing rod 61527 is fixed on the sliding block 616, and the other end passes through the long hole 6141 and abuts against the first slide groove 6131. The rotation of the rotating roller 613 can drive the driven sleeve 614 to reciprocate through the pushing rod 61527; the connecting rod 617 is fixed on the driven sleeve 614, and the elastic clamping claw assembly 62 is provided on the connecting rod 617.
[0034] Specifically, the first slide groove 6131 includes an oblique groove and a flat groove, and the oblique groove and the long hole 6141 are in opposite directions, and their projection on the bottom surface can form an X shape; the rotation of the rotating roller 613 drives the push rod 61527 to slide in the wavy first slide groove 6131, and then drives the push rod 61527 to slide back and forth in a straight line. Since the long hole 6141 is oblique, the push rod 61527 that slides back and forth in a straight line drives the driven sleeve 614 to rotate back and forth, thereby driving the connecting rod 617 to rotate back and forth. It should be understood that when the push rod 61527 is in the flat groove of the first slide groove 6131, the rotation of the rotating roller 613 cannot drive the push rod 61527 to slide, so the operator is given operating time to stop the rotation of the motor assembly 7. It should also be understood that when the rotating roller 613 remains stationary, it gives the driven sleeve 614 a tendency to catch, which gives the push rod 61527 a tendency to slide forward or backward. However, because the push rod 61527 abuts against the side of the first slide groove 6131 and the first slide groove 6131 remains stationary, the push rod 61527 cannot move, that is, the driven sleeve 614 cannot rotate.
[0035] In other schemes, the elastic clamping claw assembly 62 includes a bottom plate 621, a side plate 622, a clamping plate 623, a clamping claw spring 624 and a connecting rope 625; the bottom plate 621 is fixed on the connecting rod 617, the side plate 622 is fixed on the bottom plate 621, the clamping plate 623 is rotatably arranged on the bottom plate 621 and is opposite to the side plate 622, the clamping plate 623 is connected to the bottom plate 621 through the clamping claw spring 624, and the rotation of the transfer groove wheel 53 can drive the clamping plate 623 to rotate in a direction away from the side plate 622; one end of the connecting rope 625 is connected to the clamping plate 623, and the other end is connected to the unloading seat 4, and the connecting rope 625 is in a relaxed state in the initial state. It should be understood that the initial state is the state when the reciprocating rotating assembly 61 does not rotate toward the support block 3, and the clamping plate 623 is a telescopic plate, which will shrink inwards during the process of being driven by the transfer groove wheel 53 and rotated, and will be reset by elasticity after the transfer groove wheel 53 leaves. When the reciprocating rotating assembly 61 rotates to a specific angle toward the support block 3 , the connecting rope 625 will be tightened, thereby driving the clamping plate 623 to rotate away from the side plate 622 , so that the carbon fiber roller slides from the side plate 622 to the support block 3 .
[0036] In other embodiments, the motor assembly 7 includes a driving motor 71 and a driving gear 72; the driving motor 71 is fixed on the base 1, and the driving gear 72 is coaxially fixed on the output shaft of the driving motor 71 and meshes with the driven gear 612. It should be understood that when the driving motor 71 stops working, the driving motor 71 can hold its output shaft tightly.
[0037] In other schemes, the driving mechanism 8 includes a lifting fixed seat 81, a lifting assembly 82, a pawl 83, a reset spring 84, a limit fixed seat 85 and a spring 86; the lifting fixed seat 81 is fixed on the base 1, the lifting assembly 82 is slidably connected to the lifting fixed seat 81 and connected to the base 1 through the reset spring 84; the limit fixed seat 85 is fixed on the base 1, the spring 86 is fixed on the limit base 1, the pawl 83 is slidably arranged on the lifting assembly 82, the spring 86 can limit the sliding of the pawl 83, and the descent of the pawl 83 can unidirectionally drive the transfer groove wheel 53 to rotate. It should be understood that the pawl 83 slides in the horizontal direction, the lifting assembly 82 rises and falls in the vertical direction, and the descent of the lifting assembly 82 can squeeze the touch switch 711, and the touch switch 711 is preferably arranged on the boss and electrically connected to the driving motor 71.
[0038] In other embodiments, the lifting assembly 82 includes a lifting connecting plate 821 and a sliding sleeve 822; the lifting connecting plate 821 is slidably connected to the lifting fixing seat 81, and the sliding sleeve 822 is fixed on the lifting connecting plate 821 and sleeved with a ratchet 83. That is, the ratchet 83 is slidably connected in the sliding sleeve 822.
[0039] In other schemes, the grinding mechanism 2 includes a first bearing seat 21, a cylindrical grinding wheel 22, a second bearing seat 23, a guide cylinder 24 and a grinding motor 25; the first bearing seat 21 and the second bearing seat 23 are respectively arranged on the base 1, the cylindrical grinding wheel 22 is rotatably arranged on the first bearing seat 21; the guide cylinder 24 is rotatably arranged on the second bearing seat 23, and the grinding motor 25 is arranged on the second bearing seat 23 and can drive the guide cylinder 24 to rotate. It should be understood that the support block 3 is arranged between the first bearing seat 21 and the second bearing seat 23.
[0040] In other embodiments, a sliding plate 26 and a push rod 61527 are further provided; the second bearing seat 23 is slidably provided on the base 1 through the sliding plate 26, and one end of the push rod 61527 is connected to the sliding plate 26, and the other end is passed through the base 1. That is, through this structure, the guide cylinder 24 can be driven to move toward the cylindrical grinding wheel 22, and the push rod 61527 is preferably provided with a threaded rod, which is rotatably connected to the sliding plate 26.
[0041] The carbon fiber roller auxiliary feeding and grinding device can transport the carbon fiber roller to a desired position through a single-step operation.
[0042] It should be understood that the above embodiments are only for illustrating the technical concept and features of the present invention, and their purpose is to enable people familiar with this technology to understand the content of the present invention and implement it accordingly. It cannot be determined that the specific implementation of the present invention is limited to these descriptions. For ordinary technicians in the technical field to which the present invention belongs, some simple deductions or substitutions can be made without departing from the concept of the present invention. All equivalent changes or modifications made according to the spirit of the present invention should be covered within the protection scope of the present invention.
Claims
1. A carbon fiber roller-assisted feeding and grinding device, characterized in that: It includes a base, a grinding mechanism, a support block, a material unloading seat, a transfer assembly, a material unloading mechanism, a motor assembly and a driving mechanism; The grinding mechanism is arranged on the base, and the support block is arranged in the grinding; The unloading seat is vertically arranged on the base, and the transfer assembly and the unloading mechanism are rotatably arranged on the base respectively. The rotation of the transfer assembly can move the single carbon fiber roller at the end of the unloading seat into the unloading mechanism, and the rotation of the unloading mechanism can place the carbon fiber roller thereon on the supporting block; The motor assembly is arranged on the base and can make the unloading mechanism reciprocate, and the motor assembly is controlled by a touch switch; the driving mechanism is arranged on the base in a liftable manner, and the descent of the driving mechanism can drive the rotation of the transfer assembly in one direction and press the touch switch of the motor.
2. The carbon fiber roller auxiliary feeding and grinding device according to claim 1, characterized in that: The transfer assembly includes a transfer fixed seat, a transfer connecting rod, a transfer groove wheel and a ratchet; the rotating fixed seat is fixed on the base, the transfer connecting rod is rotatably connected to the transfer fixed seat, the transfer groove wheel and the ratchet are coaxially fixed on the transfer connecting rod respectively, and the descent of the driving mechanism can drive the ratchet wheel to rotate unidirectionally.
3. The carbon fiber roller auxiliary feeding and grinding device according to claim 2, characterized in that: The unloading mechanism includes a reciprocating rotating component and an elastic clamping claw component; the reciprocating rotating component is rotatably arranged on the base, and the motor component can drive the reciprocating rotating component to reciprocate; the elastic clamping claw component is arranged on the reciprocating rotating component, and the rotation of the transfer groove wheel can loosen the elastic clamping claw component.
4. The carbon fiber roller auxiliary feeding and grinding device according to claim 3, characterized in that: The reciprocating rotating assembly comprises a rotating fixed seat, a driven gear, a rotating roller, a driven sleeve, a pushing rod, a sliding block and a connecting rod; the rotating fixed seat is fixed on the base, the driven gear is rotatably connected to the rotating fixed seat, and the motor assembly can drive the driven gear to rotate; the rotating fixed seat is provided with a rotating groove, the rotating roller is coaxially with the driven gear and is located in the rotating groove; the driven sleeve is coaxially rotatably connected in the rotating groove and sleeved on the rotating roller; the rotating roller is circumferentially provided with a wavy first slide groove connected end to end, the driven sleeve is obliquely provided with a long strip hole, the rotating groove is provided with a linear slide groove, the sliding block is slidably connected in the linear slide groove, one end of the pushing rod is fixed on the sliding block, and the other end passes through the long strip hole and abuts the first slide groove, and the rotation of the rotating roller can drive the driven sleeve to reciprocate through the pushing rod; the connecting rod is fixed on the driven sleeve, and the elastic clamping claw assembly is arranged on the connecting rod.
5. The carbon fiber roller auxiliary feeding and grinding device according to claim 4, characterized in that: The elastic clamp assembly includes a base plate, a side plate, a clamp, a clamp spring and a connecting rope; the base plate is fixed on the connecting rod, the side plate is fixed on the base plate, the clamp is rotatably arranged on the base plate and opposite to the side plate, the clamp is connected to the base plate through the clamp spring, and the rotation of the transfer groove wheel can drive the clamp to rotate away from the side plate; one end of the connecting rope is connected to the clamp, and the other end is connected to the unloading seat, and the connecting rope is in a relaxed state in the initial state.
6. The carbon fiber roller auxiliary feeding and grinding device according to claim 5, characterized in that: The motor assembly comprises a driving motor and a driving gear; the driving motor is fixed on the base, and the driving gear is coaxially fixed on the output shaft of the driving motor and meshes with the driven gear.
7. The carbon fiber roller auxiliary feeding and grinding device according to claim 6, characterized in that: The driving mechanism includes a lifting and lowering fixed seat, a lifting component, a pawl, a return spring, a limit fixed seat and a spring leaf; the lifting and lowering fixed seat is fixed on the base, the lifting component is slidably connected to the lifting and lowering fixed seat, and is connected to the base through the return spring; the limit fixed seat is fixed on the base, the spring leaf is fixed on the limit base, the pawl is slidably provided on the lifting and lowering component, the spring leaf can limit the sliding of the pawl, and the descent of the pawl can drive the transfer groove wheel to rotate unidirectionally.
8. The carbon fiber roller auxiliary feeding and grinding device according to claim 7, characterized in that: The lifting assembly comprises a lifting connecting plate and a sliding sleeve; the lifting connecting plate is slidably connected to the lifting fixing seat, the sliding sleeve is fixed on the lifting connecting plate and sleeved with the ratchet.
9. The carbon fiber roller auxiliary feeding and grinding device according to claim 1, characterized in that: The grinding mechanism includes a first bearing seat, a cylindrical grinding wheel, a second bearing seat, a guide cylinder and a grinding motor; the first bearing seat and the second bearing seat are respectively arranged on the base relative to each other, and the cylindrical grinding wheel is rotatably arranged on the first bearing seat; the guide cylinder is rotatably arranged on the second bearing seat, and the grinding motor is arranged on the second bearing seat and can drive the guide cylinder to rotate.
10. The carbon fiber roller auxiliary feeding and grinding device according to claim 9, characterized in that: A sliding plate and a pushing rod are also provided; the second bearing seat is slidably arranged on the base through the sliding plate, one end of the pushing rod is connected to the sliding plate, and the other end is passed through the base.
Citation Information
Patent Citations
Automatic feeding and grinding device for carbon fiber roller
CN112720106A