Polishing device for textile parts
The polishing device stabilizes textile components during polishing with adjustable features and debris collection, improving efficiency and quality while minimizing waste.
Patent Information
- Application Number
- CN202510699924.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-28
- Publication Date
- 2025-07-15
- Estimated Expiration
- Not applicable · inactive patent
Smart Images

Figure CN120307116A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of grinding, and specifically to a grinding device for textile parts. Background Art
[0002] Among the parts on textile machinery, there is a type of part used to guide the threads in textile. For this type of part, it is required that the chamfer has a smooth transition and no burrs, so as not to cut the textile threads.
[0003] The existing grinding devices cannot fully fix the parts during grinding, resulting in the parts shaking during grinding, affecting the grinding effect. At the same time, most grinding devices are fixed, with a relatively small grinding range and low work efficiency.
[0004] Therefore, it is necessary to propose a grinding device for textile parts to solve the above problems. Summary of the Invention
[0005] The purpose of the present invention is to provide a grinding device for textile parts to solve the problems existing in the prior art.
[0006] To achieve the above purpose, the present invention provides the following technical solutions:
[0007] A grinding device for textile parts includes a working base. Support legs are provided at the lower part of the working base. A placement assembly is provided on the working base. A working frame is provided on the side of the working base. An adjustment assembly is provided on the working frame. The adjustment assembly is connected to a working assembly, and the working assembly is arranged above the placement assembly.
[0008] In a grinding device for textile parts as described above, a connecting through pipe is provided inside the working base. The connecting through pipe is connected to a drawer, and the drawer is arranged inside the working base.
[0009] In a grinding device for textile parts as described above, a placement circular groove is provided on the working base. The side of the placement circular groove is connected to the connecting through pipe, and a placement assembly is provided inside the placement circular groove.
[0010] In a grinding device for textile parts as described above, the placement assembly includes a placement disc. A sliding groove is provided on the placement disc. Locking claws are provided inside the sliding groove. The lower part of the placement disc is connected to a placement motor, and the placement motor is arranged inside the working base.
[0011] In a grinding device for textile parts as described above, the side of the working frame is connected to the working base through a reinforcing support rod.
[0012] A grinding device for textile parts as described above, wherein the adjusting assembly includes an adjusting slide rail disposed on the side of the working frame. An adjusting slider is provided on the adjusting slide rail, and an adjusting seat is provided on the adjusting slider. The adjusting seat is connected to the working assembly. A connecting head is provided on the adjusting seat, and an adjusting telescopic oil cylinder is connected to the connecting head. The adjusting telescopic oil cylinder is connected to the side of the working frame through a mounting seat, and the mounting seat is disposed above the adjusting slide rail.
[0013] A grinding device for textile parts as described above, wherein the working assembly includes a working mounting plate connected to the adjusting seat. A lifting seat is provided on the working mounting plate, and a working motor is provided on the lifting seat. A multi-pulley is provided below the working motor. The multi-pulley is connected to a working pulley through a connecting belt. A transmission shaft is provided below the working pulley. A slot is provided on the working mounting plate, and the transmission shaft passes through the slot. A locking seat is sleeved on the transmission shaft, and the locking seat is disposed below the slot. A gearbox is sleeved on the transmission shaft, and the gearbox is disposed below the locking seat. A grinding head is provided at the bottom end of the transmission shaft.
[0014] The advantages of the present invention are as follows: 1. Through the design of the placing circular groove, connecting through pipe and drawer, automatic collection of debris during the grinding process is achieved. Due to the action of centrifugal force or gravity, the debris falls from the gap between the placing disc and the part into the placing circular groove, and enters the drawer through the connecting through pipe, avoiding the splashing and accumulation of debris in the working area. The collected debris can be reused, reducing waste of resources and conforming to the concept of sustainable development.
[0015] 2. The placing assembly includes a placing disc, a sliding groove and locking claws, which can adapt to parts of different sizes and ensure the stability of the parts during the grinding process through the locking claws.
[0016] 3. The adjusting assembly includes an adjusting slide rail, an adjusting slider, an adjusting seat and an adjusting telescopic oil cylinder. Driven by a hydraulic system, it can achieve adjustment with micron-level precision to meet the grinding requirements of different parts. Description of the Drawings
[0017] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the following will briefly introduce the drawings required for description in the embodiments. Obviously, the drawings in the following description are some embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.
[0018] Figure 1 is a schematic structural diagram of the present invention;
[0019] Figure 2 is a first three-dimensional view of the present invention;
[0020] Figure 3 is a second three-dimensional view of the present invention;
[0021] Figure 4 is the third three-dimensional view of the present invention;
[0022] Figure 5 is the fourth three-dimensional view of the present invention.
[0023] Reference numerals: 1, working base; 2, support leg; 3, placing component; 4, working frame; 5, adjusting component; 6, working component; 7, reinforcing strut; 11, connecting through pipe; 12, drawer; 13, placing circular groove; 31, placing disc; 32, sliding groove; 33, locking claw; 34, placing motor; 51, adjusting slide rail; 52, adjusting slider; 53, adjusting seat; 54, connecting head; 55, adjusting telescopic oil cylinder; 56, mounting seat; 61, working mounting plate; 62, lifting seat; 63, working motor; 64, multi-pulley; 65, connecting belt; 66, transmission shaft; 67, slotted hole; 68, locking seat; 69, gearbox; 610, grinding head. Detailed implementation manners
[0024] To make the objectives, technical solutions and advantages of the embodiments of the present invention clearer, the technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention. Apparently, the described embodiments are some but not all of the embodiments of the present invention. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.
[0025] Such as Figures 1 - 5As shown in the figure, a grinding device for textile parts includes a working base 1. Support legs 2 are provided at the lower part of the working base 1. A placing assembly 3 is provided on the working base 1. A working frame 4 is provided on the side of the working base 1. An adjusting assembly 5 is provided on the working frame 4. The adjusting assembly 5 is connected with a working assembly 6, and the working assembly 6 is arranged above the placing assembly 3. A connecting through pipe 11 is provided inside the working base 1, and the connecting through pipe 11 is connected with a drawer 12, and the drawer 12 is arranged inside the working base 1. A placing circular groove 13 is provided on the working base 1. The side of the placing circular groove 13 is connected with the connecting through pipe 11, and the placing assembly 3 is provided inside the placing circular groove 13. The side of the working frame 4 is connected with the working base 1 through a reinforcing strut 7. When using the present invention, it is necessary to connect all components according to their connection relationships, and all electrical components in the present invention are externally connected to a power source and a control switch to ensure the normal use of the present invention. Support legs 2 are provided at the bottom to ensure the stability of the device. A placing circular groove 13 is opened at the top for installing the placing assembly 3. The inner diameter of the circular groove is larger than the working outer diameter of the placing assembly 3, facilitating debris to fall into the lower channel. A connecting through pipe 11 is arranged inside, one end of which is communicated with the placing circular groove 13, and the other end is connected with the drawer 12 to form a debris collection channel. The placing assembly 3 is installed inside the placing circular groove 13 for fixing the textile parts to be ground. The parts remain stable during the grinding process to avoid shaking. The working frame 4 is vertically fixed on the side of the working base 1, and an adjusting assembly 5 is provided at the top. The side is connected with the working base 1 through a reinforcing strut 7 to enhance the structural stability. The adjusting assembly 5 is installed at the top of the working frame 4 and can adjust the height, angle or position of the working assembly 6 to meet the grinding requirements of different parts. The working assembly 6 is connected below the adjusting assembly 5 and is located directly above the placing assembly 3 for grinding the surface of the parts. At the same time, the inner diameter of the placing circular groove 13 is larger than the working outer diameter of the placing assembly 3, so that the grinding debris can enter the connecting through pipe 11 and smoothly enter the drawer 12. On the one hand, the debris can be collected and reused to reduce waste of resources. On the other hand, it can prevent the debris from splashing and hurting the staff and also prevent the debris from splashing and polluting the environment.
[0026] Specifically, as Figures 1 - 5As shown, the placing component 3 in this embodiment includes a placing disc 31. A chute 32 is provided on the placing disc 31, and a locking jaw 33 is arranged in the chute 32. The lower part of the placing disc 31 is connected with a placing motor 34, and the placing motor 34 is arranged inside the working base 1. Place the textile parts to be polished on the placing disc 31. Manually or electrically adjust the locking jaw 33 to move along the chute 32 to clamp the outer circle or end face of the part to prevent it from shaking. Start the placing motor 34 to drive the placing disc 31 to rotate. The parts rotate synchronously with the placing disc 31, and the working component 6 processes the parts. The debris generated by polishing falls into the placing circular groove 13 from the gap between the placing disc 31 and the parts due to centrifugal force or gravity, and enters the drawer 12 through the connecting pipe 11 to achieve debris collection. The design of the chute 32 and the locking jaw 33 can adapt to parts of different sizes, with uniform clamping force, avoiding part offset during the polishing process. The placing motor 34 drives the disc to rotate, ensuring uniform polishing of the part surface and improving the processing quality. The debris naturally falls through the gap between the disc and the parts, eliminating the need for frequent manual cleaning of the working area..
[0027] Specifically, as Figures 1 - 5As shown in the figure, the adjustment assembly 5 in this embodiment includes an adjustment slide rail 51, which is arranged on the side surface of the working frame 4. An adjustment slider 52 is provided on the adjustment slide rail 51, and an adjustment seat 53 is provided on the adjustment slider 52. The adjustment seat 53 is connected to the working assembly 6. A connection head 54 is provided on the adjustment seat 53, and an adjustment telescopic oil cylinder 55 is connected to the connection head 54. The adjustment telescopic oil cylinder 55 is connected to the side surface of the working frame 4 through a mounting seat 56, and the mounting seat 56 is arranged on the upper part of the adjustment slide rail 51. The adjustment slide rail 51 is installed on the side surface of the working frame 4 and is arranged vertically to provide a guiding function for the adjustment slider 52. The slide rail has high straightness and wear resistance to ensure the smooth movement of the adjustment slider 52 and reduce the jitter error. The adjustment slider 52 is slidably arranged on the adjustment slide rail 51, and a ball or chute 32 structure is provided inside to reduce the friction resistance. The adjustment seat 53 is fixed on the adjustment slider 52 and serves as an installation platform for the working assembly 6. The connection head 54 is arranged on the adjustment seat 53 and is connected to the piston rod of the adjustment telescopic oil cylinder 55 to achieve power transmission. The adjustment telescopic oil cylinder 55 is installed on the mounting seat 56 on the side surface of the working frame 4, and the mounting seat 56 is located on the upper part of the adjustment slide rail 51 to provide a fixed support for the oil cylinder. The oil cylinder is driven by a hydraulic system, and the telescopic movement of the piston rod drives the adjustment seat 53 to move along the slide rail to achieve the precise positioning of the working assembly 6. The mounting seat 56 is fixed on the side surface of the working frame 4 to support the adjustment telescopic oil cylinder 55. The piston rod of the adjustment telescopic oil cylinder 55 expands and contracts, and pushes the adjustment seat 53 to move up and down along the adjustment slide rail 51 through the connection head 54. The adjustment slider 52 slides synchronously on the slide rail to ensure the stable movement track of the adjustment seat 53. The adjustment seat 53 drives the working assembly 6 to move to a specified position to adapt to the grinding requirements of different heights or depths. By controlling the telescopic amount of the oil cylinder through the hydraulic system, micron-level precision adjustment can be achieved. During the grinding process, the position of the working assembly 6 can be adjusted in real time according to the surface state of the part to compensate for the processing error.
[0028] Further, as Figures 1 - 5As shown in the figure, the working component 6 in this embodiment includes a working mounting plate 61. The working mounting plate 61 is connected to the adjusting seat 53. A lifting seat 62 is provided on the working mounting plate 61. A working motor 63 is provided on the lifting seat 62. A multi-pulley 64 is provided below the working motor 63. The multi-pulley 64 is connected to a working pulley through a connecting belt 65. A transmission shaft 66 is provided below the working pulley. A slot hole 67 is provided on the working mounting plate 61. The transmission shaft 66 passes through the slot hole 67. A locking seat 68 is sleeved on the transmission shaft 66. The locking seat 68 is arranged below the slot hole 67. A gearbox 69 is sleeved on the transmission shaft 66. The gearbox 69 is arranged below the locking seat 68. A grinding head 610 is provided at the bottom end of the transmission shaft 66. The working mounting plate 61 serves as the base of the working component 6 and is fixedly connected to the adjusting seat 53 by bolts or welding to ensure overall stability. The lifting seat 62 is installed on the upper surface of the working mounting plate 61 to raise the installation height of the working motor 63 and reserve space for the transmission components below. The working motor 63 is fixed to the top of the lifting seat 62. The multi-pulley 64 is installed on the output shaft of the working motor 63 and is designed with a double-slot or triple-slot structure to drive multiple connecting belts 65. The working pulley is installed on the top of the transmission shaft 66 and is driven by the multi-pulley 64 through the connecting belt 65. The transmission shaft 66 penetrates through the slot hole 67 of the working mounting plate 61 to achieve up and down transmission. It is connected to the working pulley at the top, the grinding head 610 at the bottom, and the locking seat 68 and the gearbox 69 are sleeved in the middle. The slot hole 67 is opened on the working mounting plate 61 and extends in the vertical direction, allowing the transmission shaft 66 to move up and down under the drive of the adjusting component 5. The locking seat 68 is sleeved on the transmission shaft 66 and is located below the slot hole 67 and is locked to the working mounting plate 61 by bolts. The axial position of the transmission shaft 66 is fixed to prevent the transmission shaft 66 from jumping during the grinding process. The gearbox 69 is sleeved on the transmission shaft 66 and is located below the locking seat 68 and is used to adjust the rotation speed and torque of the grinding head 610. The grinding head 610 is installed at the bottom end of the transmission shaft 66 and is connected by a key connection or thread fastening. The working motor 63 drives the working pulley to rotate through the multi-pulley 64 and the connecting belt 65. The transmission shaft 66 transmits power to the gearbox 69, and after deceleration, it drives the grinding head 610 to rotate at a low speed and high torque. The adjusting component 5 drives the working mounting plate 61 to move along the adjusting slide rail 51, and the transmission shaft 66 moves horizontally synchronously in the slot hole 67 to adjust the contact pressure between the grinding head 610 and the part. The grinding head 610 contacts the surface of the part and removes materials through rotational friction. The debris falls into the placing circular groove 13 due to centrifugal force or gravity and enters the drawer 12 through the connecting pipe 11, facilitating the collection of the debris.
[0029] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit it; although the present invention has been described in detail with reference to the foregoing embodiments, those of ordinary skill in the art should understand that they can still modify the technical solutions described in the foregoing embodiments, or perform equivalent replacements for some of the technical features; and these modifications or replacements do not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of the present invention.
Claims
1. A grinding device for textile parts, characterized in that: It includes a working base (1). Support legs (2) are provided at the lower part of the working base (1). A placing component (3) is provided on the working base (1). A working frame (4) is provided on the side of the working base (1). An adjusting component (5) is provided on the working frame (4). The adjusting component (5) is connected to a working component (6), and the working component (6) is arranged above the placing component (3).
2. The grinding device for textile parts according to claim 1, characterized in that: A connecting through pipe (11) is provided inside the working base (1). The connecting through pipe (11) is connected to a drawer (12), and the drawer (12) is arranged inside the working base (1).
3. A grinding device for textile parts according to claim 2, characterized in that: A placing circular groove (13) is provided on the working base (1). The side of the placing circular groove (13) is connected to the connecting through pipe (11), and the placing component (3) is arranged inside the placing circular groove (13).
4. A grinding device for textile parts according to claim 1, characterized in that: The placing component (3) includes a placing disc (31). A sliding groove (32) is provided on the placing disc (31). A locking claw (33) is arranged inside the sliding groove (32). The lower part of the placing disc (31) is connected to a placing motor (34), and the placing motor (34) is arranged inside the working base (1).
5. A grinding device for textile parts according to claim 1, characterized in that: The side of the working frame (4) is connected to the working base (1) through a strengthening support rod (7).
6. A grinding device for textile parts according to claim 1, characterized in that: The adjusting component (5) includes an adjusting slide rail (51). The adjusting slide rail (51) is arranged on the side of the working frame (4). An adjusting slider (52) is arranged on the adjusting slide rail (51). An adjusting seat (53) is arranged on the adjusting slider (52). The adjusting seat (53) is connected to the working component (6). A connecting head (54) is arranged on the adjusting seat (53). The connecting head (54) is connected to an adjusting telescopic oil cylinder (55). The adjusting telescopic oil cylinder (55) is connected to the side of the working frame (4) through a mounting seat (56), and the mounting seat (56) is arranged above the adjusting slide rail (51).
7. A grinding device for textile parts according to claim 1, characterized in that: The working component (6) includes a working mounting plate (61). The working mounting plate (61) is connected to the adjusting seat (53). A lifting seat (62) is arranged on the working mounting plate (61). A working motor (63) is arranged on the lifting seat (62). A multi - pulley (64) is arranged below the working motor (63). The multi - pulley (64) is connected to a working pulley through a connecting belt (65). A transmission shaft (66) is arranged below the working pulley. A strip hole (67) is provided on the working mounting plate (61). The transmission shaft (66) passes through the strip hole (67). A locking seat (68) is sleeved on the transmission shaft (66), and the locking seat (68) is arranged below the strip hole (67). A gearbox (69) is sleeved on the transmission shaft (66), and the gearbox (69) is arranged below the locking seat (68). A grinding head (610) is arranged at the bottom end of the transmission shaft (66).