Decoration strip transfer device
By designing a decorative strip transport device including a conveying assembly and a guide plate, the problem of inconvenience in the carrier retrieval in the prior art is solved, and the efficient transport efficiency of the decorative strip transport device is achieved.
Patent Information
- Application Number
- CN202421550852.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-03
- Publication Date
- 2025-05-09
- Estimated Expiration
- 2034-07-03
AI Technical Summary
When the existing decorative strip transfer device sends the decorative strips to the next processing workshop for processing, it is not convenient to send the carrier rack where the decorative strips are placed back to the previous workshop and then place the decorative strips again, reducing the transport efficiency of the device.
A decorative strip transport device is designed, including a carrier rack, a rack, a first conveying assembly, a guide plate and a second conveying assembly. By driving the carrier from the second end to the first end and disengagement through the first conveying assembly, the guide plate moves the carrier downward and disengages in the height direction of the frame, and the second conveying assembly then drives the carrier from the first end to the second end and disengages, thereby realizing the return of the carrier.
This device can facilitate the delivery of the carrier rack back to the previous processing workshop and place the decorative strips again, improve the transport efficiency of the device, and solve the problem of inconvenience in the loading of the carrier rack in the prior art.
Smart Images

Figure CN222845903U_ABST
Abstract
Description
Technical Field
[0001] The utility model specifically relates to a decorative strip transfer device. Background Art
[0002] Car decorative strips not only have beautiful decorative effects, but also provide protection for vehicles, identify brands and other functions. In the production process of decorative strips, in order to facilitate the decorative strips from one processing workshop to another for different processing operations, a transfer device is required.
[0003] For example, the Chinese patent No. 201621402159.7 discloses a decorative strip transfer tool, a vehicle body, which has a rectangular frame, the rectangular frame includes a first frame side, a second frame side, a third frame side and a fourth frame side; a bracket, which includes a first column and a second column respectively arranged on the first frame side and the third frame side, a cross bar is arranged between the tops of the first column and the second column, a plurality of pairs of first branches are arranged on the first column, and a plurality of pairs of second branches are arranged on the second column, and the surfaces of the first branches and the second branches are covered with a surface layer made of flexible material; a plurality of protective mechanisms are arranged on the outer sides of the first frame side, the second frame side, the third frame side and the fourth frame side, and the protective mechanisms include frame side blind holes, compression springs are arranged in the frame side blind holes, and rubber balls are arranged at the ends of the compression springs, and the diameter of the rubber balls is smaller than the inner diameter of the frame side blind holes.
[0004] The existing decorative strip transfer device generally adopts a cart method. When the cart sends the decorative strip to the next processing workshop for processing, it is inconvenient to send the carrier frame on which the decorative strip is placed back to the previous workshop to place the decorative strip again, which reduces the transfer efficiency of the device. Therefore, in order to solve the above technical problems, a decorative strip transfer device is proposed. Utility Model Content
[0005] In view of the deficiencies in the prior art, the utility model proposes a decorative strip transfer device, which is convenient for returning a carrier frame on which decorative strips are placed to a previous workshop for placing decorative strips again, thereby improving the transfer efficiency of the device.
[0006] A decorative strip transfer device comprises a carrier frame, wherein the carrier frame is used to place the decorative strip, and further comprises:
[0007] a frame including opposing first and second ends;
[0008] A first conveying assembly is arranged on the frame, the carrier can be placed on the first conveying assembly, and starting the first conveying assembly can drive the carrier to move from the second end to the first end and separate from the first conveying assembly;
[0009] a guide plate, obliquely disposed at the first end, the guide plate being used to receive the carrier frame detached from the first conveying assembly and enabling the carrier frame to move downward along the height direction of the frame and detach from the guide plate; and
[0010] The second conveying assembly is arranged on the frame and can receive the carrier frame dropped from the guide plate. Starting the second conveying assembly can drive the carrier frame to move from the first end to the second end and detach from the second conveying assembly.
[0011] The beneficial effects of the above-mentioned decorative strip transfer device are:
[0012] The previous processing workshop places the carrier with the decorative strips on the first conveying assembly from the second end, and starts the first conveying assembly to drive the carrier to move from the second end to the first end. At this time, the next processing workshop can remove the decorative strips from the carrier at the first end for processing, and the carrier continues to move away from the first conveying assembly and falls on the guide plate, and moves downward to the second conveying assembly under the guidance of the guide plate, and then the second conveying assembly drives the carrier to move from the first end to the second end and separate from the second conveying assembly, so as to facilitate the carrier to be sent back to the previous processing workshop to place the decorative strips again, thereby improving the transfer efficiency of the device.
[0013] In one embodiment, the first transmission assembly includes two groups of first rotating shafts and a first motor; the two groups of first rotating shafts are relatively rotatably arranged on the frame, both ends of the two groups of first rotating shafts are provided with first sprockets, the two groups of first sprockets at the same end are connected by first chains, the carrier can be placed on the top surface of the two groups of first chains, the first motor is arranged on the frame, and the output end is connected to one of the groups of first rotating shafts. The two groups of first chains can be moved by starting the first motor to rotate the first rotating shaft, and the movement of the two groups of first chains can drive the carrier to move, and it is convenient to drive the carrier to move from the second end to the first end and separate from the two groups of first chains.
[0014] In one embodiment, the second transmission assembly includes two sets of second rotating shafts and a second motor; the two sets of second rotating shafts are relatively rotatably arranged on the frame and are located below the guide plate, and second sprockets are arranged at both ends of the two sets of second rotating shafts, and the two sets of second sprockets at the same end are connected by a second chain, and the carrier can be placed on the top surface of the two sets of second chains, and the second motor is arranged on the frame, and the output end is connected to one of the sets of second rotating shafts. By starting the second motor to rotate the second rotating shaft in the opposite direction relative to the first rotating shaft, the two sets of second chains can be moved in the opposite direction relative to the two sets of first chains, and the reverse movement of the two sets of second chains can drive the carrier to move in the opposite direction, and it is convenient to drive the carrier to move from the first end to the second end and separate from the two sets of second chains.
[0015] In one embodiment, the first end is provided with a mounting plate, and the guide plate is connected to the mounting plate via a plurality of buffers. By providing a plurality of buffers, when the carrier falls on the guide plate, the plurality of buffers can buffer the impact force generated by the carrier falling on the guide plate, thereby preventing the carrier from being damaged and improving the safety of the device.
[0016] In one embodiment, the frame further includes a lifting assembly, and a lifting frame is obliquely arranged at the second end, the lifting assembly is arranged on the lifting frame, the lifting assembly can receive the supporting frame detached from the second conveying assembly, and starting the lifting assembly can drive the supporting frame to move upward along the height direction of the frame.
[0017] In one embodiment, the lifting assembly includes two groups of third rotating shafts and a third motor; the two groups of the third rotating shafts are relatively rotatably arranged on the lifting frame, and one group of the third rotating shafts is located below the second transmission assembly, and the other group of the third rotating shafts is located above the first transmission assembly. Both ends of the two groups of the third rotating shafts are provided with third sprockets, and the two groups of the third sprockets at the same end are connected by a third chain. Both ends of the support frame are provided with limit rods, and the support frame can be placed on the two groups of the third chains, and the two groups of the limit rods can be located in the gap between adjacent links. By starting the third motor to drive the third rotating shaft to rotate, the two groups of the third chains can be moved upward. When the limit rod falls into the gap between adjacent links of the third chain, the third chain can drive the support frame to move upward, and it is convenient to drive the support frame to move upward.
[0018] In one embodiment, the lifting assembly further comprises a guide frame and a tension spring; the guide frame is tilted, the bottom end of the guide frame is rotatably arranged at the second end portion and is located above the first transmission assembly, the top end of the guide frame is mounted on the lifting frame, and the second end portion is provided with a mounting rod, the mounting rod is located below the guide frame, and is connected to the guide frame through the tension spring. When the carrier moves upward, the carrier first abuts against the bottom of the guide frame to rotate the guide frame and tension the tension spring, and as the carrier continues to move upward, the guide frame abuts against the side of the carrier frame so that the carrier is always located on the two sets of third chains, so as to ensure that the two sets of third chains drive the carrier to move upward, thereby improving the stability of driving the carrier to move upward, and when the carrier moves upward and is misaligned with the guide frame, the reaction force of the tension spring resets the guide frame, and at this time, the carrier can be removed from the two sets of third chains and placed on the guide frame, and the carrier slides to the first transmission assembly through the guiding action of the guide frame, so that it is convenient to place the carrier on the first transmission assembly again, which is convenient and labor-saving to use. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] In order to more clearly illustrate the specific implementation of the utility model, the following will briefly introduce the drawings required for use in the specific implementation. In all the drawings, each element or part is not necessarily drawn according to the actual scale.
[0020] Figure 1 A three-dimensional structural schematic diagram of a decorative strip transfer device provided in one embodiment of the utility model;
[0021] Figure 2 for Figure 1 An exploded view of a decorative strip transfer device after being cut away;
[0022] Figure 3 for Figure 1 A right side view of a guide plate in a decorative strip transfer device shown;
[0023] Figure 4 for Figure 1 A right side view of a guide frame in a decorative strip transfer device is shown.
[0024] Reference numerals:
[0025] 10. Carrying frame;
[0026] 20, rack; 201, first end; 2011, mounting plate; 2012, buffer; 202, second end; 2021, mounting rod; 203, lifting frame;
[0027] 30. first transmission assembly; 301. first motor; 302. first sprocket; 303. first rotating shaft; 304. first chain;
[0028] 40. Guide plate;
[0029] 50, second transmission assembly; 501, second rotating shaft; 502, second sprocket; 503, second chain; 504, second motor;
[0030] 60. Lifting assembly; 601. Third rotating shaft; 602. Third sprocket; 603. Third chain; 604. Third motor; 605. Guide frame; 606. Tension spring. DETAILED DESCRIPTION
[0031] The following embodiments of the technical solution of the utility model are described in detail in conjunction with the accompanying drawings. The following embodiments are only used to more clearly illustrate the technical solution of the utility model, and are therefore only used as examples, and cannot be used to limit the protection scope of the utility model.
[0032] See also Figure 1 , Figure 2In one embodiment, a decorative strip transfer device includes a carrier frame 10 for placing decorative strips, a frame 20, a first conveying assembly 30, a guide plate 40 and a second conveying assembly 50.
[0033] The frame 20 includes a first end 201 and a second end 202. The first conveying assembly 30 is disposed on the frame 20. The carrier 10 can be placed on the first conveying assembly 30. Starting the first conveying assembly 30 can drive the carrier 10 to move from the second end 202 to the first end 201 and detach from the first conveying assembly 30.
[0034] Specifically, the first transmission component 30 includes two groups of first rotating shafts 303 and a first motor 301; the two groups of first rotating shafts 303 are relatively rotatably arranged on the frame 20, and first sprockets 302 are arranged at both ends of the two groups of first rotating shafts 303. The two groups of first sprockets 302 at the same end are connected by a first chain 304, and the supporting frame 10 can be placed on the top surface of the two groups of first chains 304. The first motor 301 is arranged on the frame 20, and the output end is connected to one of the groups of first rotating shafts 303.
[0035] In the above embodiment, by placing the carrier frame 10 with the decorative strips on the top surfaces of the two groups of first chains 304, and then starting the first motor 301 to drive the first rotating shaft 303 to rotate, the rotation of the first rotating shaft 303 drives the first sprocket 302 to rotate, and the rotation of the first sprocket 302 can drive the two groups of first chains 304 to move, and the movement of the two groups of first chains 304 can drive the carrier frame 10 to move, so as to facilitate the movement of the carrier frame 10 from the second end 202 to the first end 201. After the carrier frame 10 moves to the first end 201, the decorative strips on the carrier frame 10 can be removed for processing, and the carrier frame 10 continues to move. Due to the rotation and movement of the two groups of first chains 304, the carrier frame 10 can be detached from the two groups of first chains 304 at this time, driving the carrier frame 10 to move from the second end 202 to the first end 201 is convenient, and it is also convenient for the carrier frame 10 to detach.
[0036] See also Figure 1 , Figure 2 In one embodiment, the guide plate 40 is tilted at the first end 201 , and the guide plate 40 is used to receive the carrier 10 detached from the first conveying assembly 30 , and enable the carrier 10 to move downward along the height direction of the frame 20 and detach from the guide plate 40 .
[0037] In the above embodiment, when the carrier frame 10 is detached from the two sets of first chains 304, the carrier frame 10 can fall on the guide plate 40, and because the guide plate 40 is inclined, the carrier frame 10 falling on the guide plate 40 can move along the lower end of the guide plate 40, which is convenient for guiding the carrier frame 10 to move downward.
[0038] Please also read Figure 3 On the basis of the above embodiment, further, the first end portion 201 is provided with a mounting plate 2011, and the guide plate 40 is connected to the mounting plate 2011 through multiple groups of buffers 2012. By providing multiple groups of buffers 2012, when the carrier 10 falls on the guide plate 40, the multiple groups of buffers 2012 can buffer the impact force generated by the carrier 10 falling on the guide plate 40, thereby preventing the carrier 10 from being damaged and improving the safety of the device.
[0039] See also Figure 1 , Figure 2 In one embodiment, the second conveying assembly 50 is disposed on the frame 20 and can receive the carrier 10 dropped from the guide plate 40. Starting the second conveying assembly 50 can drive the carrier 10 to move from the first end 201 to the second end 202 and detach from the second conveying assembly 50.
[0040] Specifically, the second transmission component 50 includes two groups of second rotating shafts 501 and a second motor 504; the two groups of second rotating shafts 501 are relatively rotatably arranged on the frame 20 and are located below the guide plate 40, and second sprockets 502 are arranged at both ends of the two groups of second rotating shafts 501, and the two groups of second sprockets 502 at the same end are connected by a second chain 503, and the supporting frame 10 can be placed on the top surface of the two groups of second chains 503, and the second motor 504 is arranged on the frame 20, and the output end is connected to one of the groups of second rotating shafts 501.
[0041] In the above embodiment, by starting the second motor 504, the second rotating shaft 501 is driven to rotate in the opposite direction relative to the first rotating shaft 303. The reverse rotation of the second rotating shaft 501 drives the second sprocket 502 to rotate in the opposite direction. The reverse rotation of the second sprocket 502 can make the two sets of second chains 503 move in the opposite direction. When the carrier 10 moves downward along the guide plate 40 and falls on the two sets of second chains 503, the two sets of second chains 503 can drive the carrier 10 to move in the opposite direction and separate the carrier 10 from the guide plate 40. When the carrier 10 moves to the second end 202, due to the rotational movement of the two sets of second chains 503, the carrier 10 can be detached from the two sets of second chains 503 at this time, and it is convenient to drive the carrier 10 to move from the first end 201 to the second end 202, and it is convenient to detach the carrier 10, so as to facilitate the carrier 10 with the decorative strips to be sent back to the previous workshop to place the decorative strips again, thereby improving the transportation efficiency of the device.
[0042] See also Figure 1 , Figure 2In one embodiment, the frame 20 further includes a lifting assembly 60, and a lifting frame 203 is obliquely arranged at the second end 202. The lifting assembly 60 is arranged on the lifting frame 203. The lifting assembly 60 can receive the carrier frame 10 detached from the second conveying assembly 50. Starting the lifting assembly 60 can drive the carrier frame 10 to move upward along the height direction of the frame 20.
[0043] Specifically, the lifting assembly 60 includes two groups of third rotating shafts 601 and a third motor 604; the two groups of third rotating shafts 601 are relatively rotatably arranged on the lifting frame 203, and one group of the third rotating shafts 601 is located below the second conveying assembly 50, and the other group of the third rotating shafts 601 is located above the first conveying assembly 30. Third sprockets 602 are arranged at both ends of the two groups of third rotating shafts 601, and the two groups of third sprockets 602 at the same end are connected by a third chain 603. Limit rods are arranged at both ends of the supporting frame 10, and the supporting frame 10 can be placed on the two groups of third chains 603, and the two groups of limit rods can be located in the gap between adjacent chain links.
[0044] In the above embodiment, the third motor 604 is started to drive the third rotating shaft 601 to rotate, and the rotation of the third rotating shaft 601 can drive the third sprocket 602 to rotate. The rotation of the third sprocket 602 can make the two groups of third chains 603 move upward. When the carrier frame 10 moves to the second end 202 and the limiting rod on the carrier frame 10 is placed in the gap between the adjacent links of the two groups of third chains 603, the two groups of third chains 603 move upward to drive the carrier frame 10 to move upward and make the carrier frame 10 disengaged from the two groups of second chains 503. By driving the carrier frame 10 to move upward, it is convenient to take the carrier frame 10, thereby facilitating the placement of the carrier frame 10 on the two groups of first chains 304 again, which is convenient and labor-saving to use.
[0045] Please also read Figure 4 On the basis of the above embodiment, further, the lifting assembly 60 also includes a guide frame 605 and a tension spring 606; the guide frame 605 is tilted, and the bottom end of the guide frame 605 is rotatably arranged on the second end 202 and is located above the first conveying assembly 30. The high end of the guide frame 605 is mounted on the lifting frame 203, and the second end 202 is provided with a mounting rod 2021, which is located below the guide frame 605 and is connected to the guide frame 605 through a tension spring 606.
[0046] When the carrier 10 moves upward, the carrier 10 first presses against the bottom of the guide frame 605 to rotate the guide frame 605 and tension the tension spring 606, and as the carrier 10 continues to move upward, the guide frame 605 will press against the side of the carrier 10 so that the carrier 10 is always located on the two groups of third chains 603, to ensure that the two groups of third chains 603 drive the carrier 10 to move upward, and improve the stability of driving the carrier 10 to move upward. When the carrier 10 moves upward and is misaligned with the guide frame 605, the reaction force of the tension spring 606 causes the guide frame 605 to rotate in the opposite direction and reset. At this time, the carrier 10 can be removed from the two groups of third chains 603 and placed on the guide frame 605, and the guiding action of the guide frame 605 can be used to slide the carrier 10 onto the two groups of first chains 304, further improving the convenience of placing the carrier 10 on the two groups of first chains 304.
[0047] The specific implementation of the above-mentioned decorative strip transfer device is as follows:
[0048] By placing the carrier 10 with the decorative strips on the top of the two sets of first chains 304, and then starting the first motor 301 to drive the first shaft 303 to rotate, the rotation of the first shaft 303 drives the first sprocket 302 to rotate, and the rotation of the first sprocket 302 can drive the two sets of first chains 304 to move, and the movement of the two sets of first chains 304 can drive the carrier 10 to move, so that the carrier 10 can be moved from the second end 202 to the first end 201. When the carrier 10 moves to the first end 201, the decorative strips on the carrier 10 can be removed for loading. The two sets of first chains 304 rotate and move, and the carrier 10 is separated from the two sets of first chains 304, so that the carrier 10 falls on the guide plate 40. At this time, the carrier 10 moves downward under the guidance of the guide plate 40 and falls on the two sets of second chains 503. At this time, the two sets of second chains 503 can drive the carrier 10 to move in the opposite direction and separate the carrier 10 from the guide plate 40. When the carrier 10 moves to the second end 202 and the limit rod on the carrier 10 is placed When the two sets of third chains 603 are in the gap between the adjacent links, the two sets of third chains 603 move upward to drive the carrier 10 to move upward and separate the carrier 10 from the two sets of second chains 503. When the carrier 10 moves upward, the carrier 10 first presses against the bottom of the guide frame 605 to rotate the guide frame 605 and tension the tension spring 606. As the carrier 10 continues to move upward, the guide frame 605 presses against the side of the carrier 10 so that the carrier 10 is always located on the two sets of third chains 603, so as to ensure that the two sets of third chains 603 drive the carrier 10 to move upward. The support frame 10 moves upward to improve the stability of driving the support frame 10 to move upward. When the support frame 10 moves upward and is misaligned with the guide frame 605, the reaction force of the tension spring 606 causes the guide frame 605 to rotate in the opposite direction and reset. At this time, the support frame 10 can be removed from the two sets of third chains 603 and placed on the guide frame 605. The guiding action of the guide frame 605 allows the support frame 10 to slide to the two sets of first chains 304 to place the decorative strips again. This cycle makes it easy to send the support frame 10 with the decorative strips placed on it back to the previous workshop to place the decorative strips again, thereby improving the transportation efficiency of the device.
[0049] 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 aforementioned embodiments, those skilled in the art should understand that they can still modify the technical solutions described in the aforementioned embodiments, or replace some or all of the technical features therein by equivalents. These modifications or replacements do not deviate the essence of the corresponding technical solutions from the scope of the technical solutions of the embodiments of the present invention, and they should all be included in the scope of the claims and specification of the present invention.
Claims
1. A decorative strip transfer device, comprising a carrier (10), wherein the carrier (10) is used to place the decorative strip, and is characterized in that: Also includes: A frame (20) comprising a first end (201) and a second end (202) opposite to each other; A first conveying assembly (30) is arranged on the frame (20), the carrier (10) can be placed on the first conveying assembly (30), and starting the first conveying assembly (30) can drive the carrier (10) to move from the second end (202) to the first end (201) and to separate from the first conveying assembly (30); a guide plate (40) obliquely arranged at the first end portion (201), the guide plate (40) being used to receive the carrier frame (10) detached from the first conveying assembly (30), and enabling the carrier frame (10) to move downward along the height direction of the frame (20) and detach from the guide plate (40); and A second conveying assembly (50) is arranged on the frame (20) and is capable of receiving the carrier frame (10) dropped from the guide plate (40). Starting the second conveying assembly (50) can drive the carrier frame (10) to move from the first end (201) to the second end (202) and to detach from the second conveying assembly (50).
2. A decorative strip transfer device according to claim 1, characterized in that: The first transmission component (30) comprises two groups of first rotating shafts (303) and a first motor (301); the two groups of the first rotating shafts (303) are relatively rotatably arranged on the frame (20), both ends of the two groups of the first rotating shafts (303) are provided with first sprockets (302), the two groups of the first sprockets (302) at the same end are connected by a first chain (304), the support frame (10) can be placed on the top surface of the two groups of the first chains (304), the first motor (301) is arranged on the frame (20), and the output end is connected to one of the groups of the first rotating shafts (303).
3. A decorative strip transfer device according to claim 1, characterized in that: The second transmission assembly (50) comprises two groups of second rotating shafts (501) and a second motor (504); the two groups of second rotating shafts (501) are relatively rotatably arranged on the frame (20) and are located below the guide plate (40); second sprockets (502) are arranged at both ends of the two groups of second rotating shafts (501); the two groups of second sprockets (502) at the same end are connected by a second chain (503); the supporting frame (10) can be placed on the top surfaces of the two groups of second chains (503); the second motor (504) is arranged on the frame (20), and the output end is connected to one of the groups of second rotating shafts (501).
4. A decorative strip transfer device according to claim 1, characterized in that: The first end portion (201) is provided with a mounting plate (2011), and the guide plate (40) is connected to the mounting plate (2011) via a plurality of groups of buffers (2012).
5. A decorative strip transfer device according to claim 1, characterized in that: The frame (20) further comprises a lifting assembly (60), the second end portion (202) being obliquely provided with a lifting frame (203), the lifting assembly (60) being arranged on the lifting frame (203), the lifting assembly (60) being capable of receiving the supporting frame (10) detached from the second conveying assembly (50), and starting the lifting assembly (60) can drive the supporting frame (10) to move upward along the height direction of the frame (20).
6. A decorative strip transfer device according to claim 5, characterized in that: The lifting assembly (60) comprises two groups of third rotating shafts (601) and a third motor (604); the two groups of third rotating shafts (601) are relatively rotatably arranged on the lifting frame (203), and one group of the third rotating shafts (601) is located below the second conveying assembly (50), and the other group of the third rotating shafts (601) is located above the first conveying assembly (30); third sprockets (602) are arranged at both ends of the two groups of third rotating shafts (601); the two groups of third sprockets (602) at the same end are connected by a third chain (603); limiting rods are arranged at both ends of the supporting frame (10); the supporting frame (10) can be placed on the two groups of third chains (603), and the two groups of limiting rods can be located in the gap between adjacent chain links.
7. A decorative strip transfer device according to claim 6, characterized in that: The lifting assembly (60) also includes a guide frame (605) and a tension spring (606); the guide frame (605) is tilted, and the bottom end of the guide frame (605) is rotatably arranged on the second end portion (202) and is located above the first conveying assembly (30); the high end of the guide frame (605) is mounted on the lifting frame (203); the second end portion (202) is provided with a mounting rod (2021), and the mounting rod (2021) is located below the guide frame (605) and is connected to the guide frame (605) through the tension spring (606).
Citation Information
Patent Citations
Instrument is transported to ornamental strip
CN206297583U