Nameplate and processing technology thereof

By designing a nameplate structure with components such as a slanted insert plate, a rotating wheel, and a servo motor, the problem of traditional nameplates being difficult to disassemble was solved, achieving convenient replacement and nighttime illumination.

CN121884685APending Publication Date: 2026-04-17曹光成
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
曹光成
Filing Date
2023-12-02
Publication Date
2026-04-17

AI Technical Summary

Technical Problem

Traditional nameplates are difficult to remove and replace easily, making them unsuitable for usage scenarios that require frequent replacement.

Method used

A nameplate structure was designed, including components such as a slanted insert plate, a rotating wheel, a frame, and a servo motor. The nameplate can be detached and locked by the cooperation of the slanted insert plate and the frame. The servo motor controls the stop to prevent it from being pulled out at will, and LED beads provide illumination at night.

Benefits of technology

It enables easy removal and replacement of nameplates, enhances the flexibility of use, and provides easy-to-read lighting at night.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the field of nameplate processing, in particular to a nameplate and a processing technology thereof. The nameplate comprises a nameplate body, an inclined inserting plate is fixed to the rear side of the nameplate body, and a plane is arranged on the upper side of the inclined inserting plate. The frame is rectangular, the upper side of the frame is open, an inclined strip is fixed in the middle of the frame, and an inclined inserting plate is attached to the rear side of the inclined strip. Two protruding bases are fixed to the rear side of the inclined strip, the two ends of a rotating wheel are rotationally connected to the two protruding bases respectively, an inclined inserting plate is located between the two protruding bases, and the rotating wheel makes contact with the rear side of the inclined inserting plate. The nameplate machining technology comprises the steps that S1, an inclined inserting plate is installed on the rear side of a nameplate body; s2, a rotating wheel is installed on the rear side of an inclined strip, and the inclined strip is installed in the middle of a frame; s3, two square columns with insertion rings are installed on the upper portion of the frame; s4, the two cylinders are inserted into the upper portion of the board body; and S5, the inclined inserting plate is inserted between the inclined strip and the rotating wheel, and the two cylinders are inserted into the two inserting rings correspondingly. The nameplate convenient to disassemble can be machined.
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Description

Technical Field

[0001] This invention relates to the field of nameplate processing, and more specifically to a nameplate and its processing technology. Background Technology

[0002] A nameplate is an identifier or label used to identify items, equipment, products, or buildings. Nameplates provide basic information about the item, such as name, model, manufacturer, production date, and safety warnings. Nameplates are typically made of materials such as metal, plastic, ceramic, or glass to ensure durability and legibility. They can be produced using methods such as engraving, printing, and laser engraving. Nameplates are widely used in various industries, including automotive, machinery, electronics, and construction. Traditional nameplates are often fixed to objects with rivets and screws, making them difficult to disassemble and replace, and unsuitable for applications requiring frequent nameplate replacement. Summary of the Invention

[0003] To overcome the shortcomings of the prior art, the present invention provides a nameplate and its processing technology, which has the advantage of being able to process a nameplate that is easy to disassemble.

[0004] A nameplate includes a plate body, wherein a slanted insert plate is fixed to the rear side of the plate body, and a flat surface is provided on the upper side of the slanted insert plate.

[0005] It also includes a frame, which is rectangular with an open top and a diagonal strip fixed in the middle, with a diagonal insert plate attached to the back of the diagonal strip.

[0006] Two protrusions are fixed to the rear side of the inclined bar. The two ends of the rotating wheel are rotatably connected to the two protrusions respectively. An inclined plate is located between the two protrusions, and the rotating wheel contacts the rear side of the inclined plate.

[0007] A nameplate manufacturing process includes the following steps:

[0008] S1: Install a slanted insert plate on the back side of the card body;

[0009] S2: Install the wheel on the back of the diagonal bar and install the diagonal bar in the middle of the frame;

[0010] S3: Install two square columns with insert rings on the upper part of the frame;

[0011] S4: Insert the two cylinders into the upper part of the card body;

[0012] S5: Insert the inclined plate between the inclined bar and the rotating wheel, and insert the two cylinders into the two rings respectively. Attached Figure Description

[0013] The present invention will now be described in further detail with reference to the accompanying drawings and specific implementation methods.

[0014] Figure 1 A flowchart of a nameplate manufacturing process;

[0015] Figure 2 Schematic diagram of the nameplate structure Figure 1 ;

[0016] Figure 3 Schematic diagram of the nameplate structure Figure 2 ;

[0017] Figure 4 Schematic diagram of the nameplate structure Figure 3 ;

[0018] Figure 5 A schematic diagram of the card's structure Figure 1 ;

[0019] Figure 6 A schematic diagram of the card's structure Figure 2 ;

[0020] Figure 7 Schematic diagram of the diagonal strip structure Figure 1 ;

[0021] Figure 8 Schematic diagram of the diagonal strip structure Figure 2 ;

[0022] Figure 9 Schematic diagram of the frame and arc rod structure Figure 1 ;

[0023] Figure 10 Schematic diagram of the frame and arc rod structure Figure 2 ;

[0024] Figure 11 This is a structural diagram of the fixing frame.

[0025] In the diagram: 101; cylinder 102; retaining ring 103; handle 104; groove 105; inclined plate 106; flat surface 107;

[0026] 201; 202; 203; 204; 205; servo motor;

[0027] Frame 301; Wire 302; LED bead 303; Conductive post 304; Power supply 305; Square post 306; Insert ring 307; Slot 308; Side shaft 309;

[0028] Arc rod 401; rear bar 402; stop block 403; sliding column 404;

[0029] 501 fixed frame; 502 side arm; 503 positioning column. Detailed Implementation

[0030] like Figure 5-6As shown, this example allows for easy insertion and removal of nameplates.

[0031] The nameplate includes a plate body 101, and a slanted insert plate 106 is welded to the rear side of the plate body 101. A flat surface 107 is provided on the upper side of the slanted insert plate 106. The slanted insert plate 106 facilitates the insertion and removal of the nameplate, making the plate body 101 easy to disassemble.

[0032] like Figure 5-10 As shown, this example can achieve the effect of protecting the card body 101 through the frame 301.

[0033] Since the nameplate also includes a frame 301, which is rectangular and open at the top, a diagonal strip 201 is connected to the middle of the frame 301 by screws. A diagonal insert 106 fits against the back of the diagonal strip 201, allowing the diagonal insert 106 to be inserted into the middle of the diagonal strip 201. At this time, the nameplate 101 is inserted from the upper diagonal part of the frame 301 into the interior of the frame 301, and the nameplate 101 is protected by the frame 301.

[0034] like Figure 5-8 As shown, this example can reduce the friction when the inclined plate 106 is inserted into the middle of the inclined bar 201.

[0035] Since there are two protrusions 202 welded to the rear side of the inclined bar 201, the two ends of the rotating wheel 203 are rotatably connected to the two protrusions 202 respectively. The inclined plate 106 is located between the two protrusions 202. The rotating wheel 203 is in contact with the rear side of the inclined plate 106. The inclined bar 201 and the rotating wheel 203 respectively restrict the front and rear sides of the inclined plate 106 to prevent the inclined plate 106 from detaching from the inclined bar 201. The rotating wheel 203 can rotate between the two protrusions 202 to reduce the friction when the inclined plate 106 is inserted in the middle of the inclined bar 201. The two protrusions 202 respectively restrict the left and right sides of the inclined plate 106 to prevent the inclined plate 106 and the plate body 101 from moving left and right.

[0036] like Figure 5-8 As shown, this example can prevent the angled insert 106 from being pulled out arbitrarily.

[0037] A servo motor 205 is connected to the inclined bar 201 by screws, and a stop 204 is connected to the output shaft of the servo motor 205 by screws. The stop 204 can block the upper side of the plane 107. By driving the stop 204 to rotate by the servo motor 205, it is possible to control whether the stop 204 blocks the upper side of the plane 107 on the inclined plate 106. When the stop 204 blocks the upper side of the plane 107, it prevents the inclined plate 106 from being pulled out arbitrarily.

[0038] like Figure 5-10 As shown, this example can achieve the effect of locking the card body 101 within the frame 301.

[0039] Since both ends of the upper rear side of the frame 301 are connected to square posts 306 by screws, and the ends of the square posts 306 are provided with insert rings 307, and the upper part of the sign body 101 is slidably connected to two cylinders 102, the two cylinders 102 are respectively inserted into the two insert rings 307. When the sign body 101 is inserted into the frame 301, the two cylinders 102 can be inserted into the two insert rings 307 respectively, thereby locking the sign body 101 inside the frame 301.

[0040] like Figure 5-6 As shown, this example achieves the effect of allowing the cylinder 102 to be securely inserted into the ring 307.

[0041] Since a retaining ring 103 is welded to the rear end of the cylinder 102, and a compression spring is sleeved on the cylinder 102, the compression spring is located between the plate body 101 and the retaining ring 103. The compression spring on the cylinder 102 gives the cylinder 102 a backward force, so that the cylinder 102 can be inserted tightly into the insert ring 307.

[0042] like Figure 5-6 As shown, this example allows for the convenient manual removal of the card body 101 using the lever 104.

[0043] Since the nameplate also includes a handle 104, the two ends of the handle 104 are welded to the front of the two cylinders 102 respectively. The middle part of the handle 104 is provided with a groove 105. The groove 105 makes it easy to insert fingers into the back of the handle 104. Then, by pulling the handle 104, the two cylinders 102 can be easily pulled forward, so that the two cylinders 102 are separated from the two insertion rings 307 respectively, thus making it easy to manually pull out the nameplate 101 through the handle 104.

[0044] like Figure 5-10 As shown, this example allows for convenient viewing of the contents recorded on card 101 at night.

[0045] Because a wire 302 is attached to the inner front of the card body 101, and multiple LED beads 303 are connected in series on the wire 302. The multiple LED beads 303 can emit light at the edge of the card body 101, making it convenient to view the content recorded on the card body 101 at night.

[0046] like Figure 5-10 As shown, this example can achieve the effect of automatically lighting up multiple LED beads 303 after the card body 101 is inserted into the frame 301.

[0047] Since conductive posts 304 are connected in series on both square posts 306, and the two conductive posts 304 are connected in series at both ends of the wire 302, and a power supply 305 is connected in series on one of the square posts 306, and the cylinder 102 and the handle 104 are all conductors, when the sign body 101 is inserted into the frame 301, the two cylinders 102 are respectively inserted into the insertion rings 307 on the two square posts 306. At this time, the wire 302, the two conductive posts 304, the two square posts 306, the two cylinders 102 and the handle 104 form a closed circuit. At this time, the power supply 305 supplies power to multiple LED beads 303, thereby causing multiple LED beads 303 to light up, so that after the sign body 101 is inserted into the frame 301, multiple LED beads 303 are automatically lit up.

[0048] The lower rear side of the frame 301 is connected to a rear strip 402 by screws. Both ends of the rear strip 402 are slidably connected to sliding posts 404. A stop block 403 is welded to the rear end of each sliding post 404. An arc rod 401 is welded to the front end of the two sliding posts 404. A compression spring is sleeved on each sliding post 404. The compression spring on the sliding post 404 is located between the arc rod 401 and the rear strip 402.

[0049] like Figure 9-10 As shown, this example can achieve the effect of buffering the frontal impact on the card body 101 by compressing the spring.

[0050] The compression springs on the two sliding pillars 404 give the arc rod 401 a forward force. When the card body 101 is inserted into the frame 301, it can make the card body 101 fit against the front side of the arc rod 401. When the card body 101 is hit head-on, the arc rod 401 buffers the head-on impact of the card body 101 through the compression springs.

[0051] Both sides of the frame 301 are welded with side shafts 309. Each side shaft 309 is surrounded by multiple slots 308 arranged in a ring. The fixing frame 501 is provided with multiple screw holes. Side arms 502 are welded to both the left and right ends of the fixing frame 501. The two side shafts 309 are rotatably connected to the front of the two side arms 502 respectively. The front of each side arm 502 is slidably connected with a positioning post 503. A tension spring is welded to the outer end of the positioning post 503. The other end of the tension spring is welded to the corresponding side arm 502. The positioning post 503 is inserted into one of the slots 308.

[0052] like Figure 5-11 As shown, this example can achieve the effect of fixing the frame 301 and the card body 101 at the desired angle.

[0053] The mounting bracket 501 is provided with multiple screw holes, which makes it easy to fix the mounting bracket 501 to the object with screws. The frame 301 can rotate between the two side arms 502 through the two side shafts 309, thereby adjusting the angle between the frame 301 and the sign body 101, making the sign body 101 easier to view. The tension spring gives the positioning post 503 an inward force, so that the positioning post 503 is inserted into one of the slots 308, thereby fixing the frame 301 and the sign body 101 at the required angle.

[0054] A nameplate manufacturing process includes the following steps:

[0055] S1: Install a slanted insert plate 106 on the rear side of the card body 101;

[0056] S2: Install the rotating wheel 203 on the rear side of the diagonal bar 201, and install the diagonal bar 201 in the middle of the frame 301;

[0057] S3: Install two square columns 306 with insert rings 307 on the upper part of the frame 301;

[0058] S4: Insert the two cylinders 102 into the upper part of the card body 101;

[0059] S5: Insert the inclined plate 106 between the inclined bar 201 and the rotating wheel 203, and insert the two cylinders 102 into the two insertion rings 307 respectively.

Claims

1. A nameplate comprising a plate body (101), characterized in that: A slanted insert plate (106) is fixed to the rear side of the plate body (101), and a flat surface (107) is provided on the upper side of the slanted insert plate (106).

2. A nameplate according to claim 1, characterized in that: It also includes a frame (301), which is rectangular. The upper side of the frame (301) is open, and a diagonal strip (201) is fixed in the middle of the frame (301). A diagonal insert (106) is attached to the back side of the diagonal strip (201).

3. A nameplate according to claim 2, characterized in that: Two protrusions (202) are fixed to the rear side of the inclined bar (201). The two ends of the rotating wheel (203) are rotatably connected to the two protrusions (202) respectively. The inclined plate (106) is located between the two protrusions (202), and the rotating wheel (203) is in contact with the rear side of the inclined plate (106).

4. A nameplate according to claim 3, characterized in that: A servo motor (205) is fixed on the inclined bar (201), and a stop (204) is fixed on the output shaft of the servo motor (205). The stop (204) can block the upper side of the plane (107).

5. A nameplate according to claim 4, characterized in that: Both ends of the upper rear side of the frame (301) are fixed with square columns (306), and the ends of the square columns (306) are provided with insert rings (307). The upper part of the card body (101) is slidably connected with two cylinders (102), and the two cylinders (102) are respectively inserted into the two insert rings (307).

6. A nameplate according to claim 5, characterized in that: A retaining ring (103) is fixed to the rear end of the cylinder (102), and a compression spring is sleeved on the cylinder (102). The compression spring is located between the plate body (101) and the retaining ring (103).

7. A nameplate according to claim 6, characterized in that: It also includes a handle (104), the two ends of which are fixed to the front of two cylinders (102), and a groove (105) is provided in the middle of the handle (104).

8. A nameplate according to claim 7, characterized in that: A wire (302) is attached to the front inner side of the card body (101), and multiple LED beads (303) are connected in series on the wire (302).

9. A nameplate according to claim 8, characterized in that: Each of the two square pillars (306) is connected in series with a conductive pillar (304), and the two conductive pillars (304) are connected in series at both ends of the wire (302). A power source (305) is connected in series with one of the square pillars (306). The cylinder (102) and the handle (104) are all conductors.

10. A nameplate processing technology, characterized in that, Includes the following steps: S1: Install a slanted insert plate (106) on the rear side of the card body (101); S2: Install the wheel (203) on the rear side of the diagonal bar (201) and install the diagonal bar (201) in the middle of the frame (301); S3: Install two square columns (306) with insert rings (307) on the upper part of the frame (301); S4: Insert the two cylinders (102) into the upper part of the card body (101); S5: Insert the inclined plate (106) between the inclined bar (201) and the rotating wheel (203), and insert the two cylinders (102) into the two insert rings (307) respectively.