Adjustable clothes hook

CN224685545UActive Publication Date: 2026-08-28WENZHOU YOUBAO HARDWARE PROD CO LTD
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Patent Information

Application Number
CN202522061411.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-25
Publication Date
2026-08-28
Estimated Expiration
2035-09-25

AI Technical Summary

Technical Problem

[0003]大多数挂衣钩在使用时存在着一些缺点,如:多个挂衣钩的位置固定不能调整,在悬挂多件冬季厚衣物时,易出现相邻衣物相互挤压的情况,出现衣物从挂钩滑落的问题,既影响收纳整洁度,也可能造成衣物损坏,同时若其中一个挂钩损坏,只能舍弃其中一个挂钩,导致悬挂衣物的数量减少,造成了空间浪费

Benefits of technology

1.该可调式挂衣钩,当需要对滑动块的位置进行调整时,通过设置的驱动组件,可以带动两个限位块滑动并互相靠近,然后拉动挂钩并带动滑动块滑动,拉动滑动块至合适的位置,通过设置的驱动组件,可以带动两个限位块滑动并互相远离,最后两个限位块分别延伸至对应矩形槽内,可以对滑动块的位置进行固定,方便对滑动块与挂钩的位置进行调整,且操作简单无需使用工具。

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Abstract

The utility model belongs to clothes hook technical field, especially relates to a adjustable clothes hook, including fixed strip and a plurality of hooks, still include: a plurality of sliding blocks, a plurality of sliding blocks are all slidingly installed in fixed strip, all be equipped with power cavity in a plurality of sliding blocks, two limit blocks are all slidingly installed in a plurality of power cavities, the both sides of fixed strip and be located sliding block all are equipped with a plurality of rectangular slots, and limit block and rectangular slot plug-in cooperation, a plurality of limit slots, a plurality of limit slots are respectively equipped in a plurality of sliding blocks, and a plurality of hooks are all plug-in installation in a plurality of limit slots, and a plurality of limit rods are all slidingly installed in a plurality of limit slots and located the circumferential side of a plurality of hooks, and a plurality of limit rods are respectively with a plurality of hooks plug-in cooperation, a plurality of drive assemblies, a plurality of drive assemblies are respectively located in a plurality of sliding blocks, and be used for driving a plurality of limit blocks sliding, the position of sliding block and hook is adjusted conveniently, and simple operation does not need to use the tool, and the hook is installed simultaneously convenient to dismount.
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Description

Technical Field

[0001] This utility model belongs to the field of clothes hook technology, and in particular relates to an adjustable clothes hook. Background Technology

[0002] Clothes hooks, as the name suggests, are practical tools used to hang clothes in a specific location. Their core function is to use a sturdy hook structure to lift clothes, accessories, etc. off the ground or countertop, which can prevent wrinkles caused by folding and reduce the clutter caused by the accumulation of items.

[0003] Most coat hooks have several drawbacks in use, such as: fixed positions that cannot be adjusted; the tendency for adjacent garments to squeeze together when hanging multiple thick winter clothes, causing clothes to slip off the hooks, affecting tidiness and potentially damaging the clothes; and the necessity of discarding a damaged hook, reducing the number of clothes that can be hung and wasting space. Therefore, we propose an adjustable coat hook. Utility Model Content

[0004] The purpose of this invention is to provide an adjustable clothes hook to solve the problems mentioned in the background art.

[0005] In view of this, the present invention provides an adjustable clothes hook, including a fixing strip and a plurality of hooks, and further comprising: A plurality of sliding blocks are slidably installed in a fixed strip. Each of the sliding blocks has a power cavity. Two limiting blocks are slidably installed in each of the power cavities. A plurality of rectangular slots are provided in the fixed strip on both sides of the sliding blocks. The limiting blocks are inserted into the rectangular slots. A plurality of limiting grooves are provided, each of which is opened in a plurality of sliding blocks. A hook is inserted into each of the plurality of limiting grooves. A plurality of limiting rods are slidably installed in the plurality of limiting grooves and on the periphery of the plurality of hooks. The plurality of limiting rods are respectively inserted into and cooperate with the plurality of hooks. A plurality of driving components are located within a plurality of sliding blocks and are used to drive a plurality of limiting blocks to slide. A plurality of power components are located within a plurality of sliding blocks and are used to drive a plurality of limit rods to slide.

[0006] In this technical solution, when the position of the sliding block needs to be adjusted, the two limit blocks can be driven to slide and move closer to each other through the set drive component. Then, the hook is pulled and the sliding block is driven to slide. The sliding block is pulled to a suitable position. The two limit blocks can be driven to slide and move away from each other through the set drive component. Finally, the two limit blocks extend into the corresponding rectangular grooves, which can fix the position of the sliding block. This makes it convenient to adjust the position of the sliding block. The operation is simple and does not require the use of tools. When the hook needs to be replaced, the power component can drive several limit rods to slide and move away from each other. After all the limit rods have disengaged from the hook, the hook can be removed downwards, and a new hook can be inserted into the limit groove. When the hook is inserted to the limit position, the power component can drive several limit rods to slide and move closer to each other. All the limit rods are inserted into the hook, which can fix the position of the hook and facilitate the installation and removal of the hook.

[0007] In the above technical solution, the driving component further includes: A first gear is rotatably mounted inside the power chamber. A first rack is meshed on one side of the first gear. A fixing rod is fixedly mounted on the top of the first gear. A first torsion spring is sleeved on the fixing rod. The two ends of the first torsion spring are fixedly connected to the fixing rod and the inner wall of the power chamber, respectively. A second gear is fixedly mounted on the bottom of the first gear. A second rack is meshed on both sides of the second gear. The two second racks are fixedly connected to two limiting blocks, respectively.

[0008] In this technical solution, when the position of the sliding block needs to be adjusted, firstly, the rectangular column is pressed, which squeezes the first rack to slide. The first rack drives the first gear meshing with it to rotate in the forward direction. The first gear drives the fixed rod and the second gear to rotate in the forward direction. At the same time, the first torsion spring is twisted. The second gear drives the two second racks meshing with it to slide and move closer to each other. The two second racks respectively drive the two limit blocks to slide and move closer to each other. Then, the hook is pulled and the sliding block is moved to the appropriate position. The rectangular column is released. Under the action of the torsional force of the first torsion spring, the two limit blocks can be moved away from each other by the above reverse operation. Finally, the two limit blocks extend into the corresponding rectangular grooves, which can fix the position of the sliding block. This makes it convenient to adjust the position of the sliding block, and the operation is simple and does not require the use of tools.

[0009] In the above technical solution, the power component further includes: A disc is rotatably mounted in a limiting groove. A second torsion spring is sleeved on the disc, and the two ends of the second torsion spring are fixedly connected to the disc and the inner wall of the limiting groove, respectively. A spring is sleeved on each of the limiting rods, and the two ends of the springs are fixedly connected to the limiting rods and the inner wall of the limiting groove, respectively. A limiting disc is rotatably mounted in the limiting groove and between the limiting rods, and the limiting disc is in close contact with the limiting rods.

[0010] In this technical solution, when the hook needs to be replaced, the disc is rotated forward, and the second torsion spring is twisted simultaneously. The disc drives the limiting disc to rotate forward, and the limiting disc presses several limiting rods to slide and move away from each other. At the same time, several springs are compressed and contracted. After several limiting rods are disengaged from the hook, the hook is removed downwards, and a new hook is inserted into the limiting groove. When the hook is inserted to its limit position, the disc is released. Under the torsional force of the second torsion spring, both the disc and the limiting disc rotate in opposite directions. Under the rebound force of several springs, several limiting rods slide and move closer to each other, and several limiting rods are inserted into the hook. This can fix the position of the hook, making it convenient to install and remove the hook.

[0011] In the above technical solution, furthermore, guide grooves are provided on several of the hooks, and several grooves are provided on the circumferential sidewall of the disc.

[0012] In this technical solution, the position of the hook can be limited by the guide groove, and the several grooves make it convenient for the user to rotate the disc.

[0013] In the above technical solution, further, the plurality of limiting rods are distributed in a ring at equal intervals within the plurality of sliding blocks, and the plurality of rectangular grooves are distributed at equal intervals within the fixed strip.

[0014] In this technical solution, the hook can be securely fixed, and the sliding block can be fixed in any position.

[0015] In the above technical solution, the fixed rod and the second gear are rotatably connected to the power cavity, and the second rack and the first rack are slidably connected to the power cavity.

[0016] In this technical solution, it is ensured that both the fixed rod and the second gear can rotate within the power cavity, and that both the second rack and the first rack can slide within the power cavity.

[0017] In the above technical solution, a rectangular post is fixedly installed at one end of the first rack, and one end of the rectangular post passes through the power cavity, and the rectangular post is slidably connected to the power cavity.

[0018] In this technical solution, the rectangular column facilitates the sliding of the first rack by the operator.

[0019] Furthermore, in the above technical solution, the fixing strip is engraved with scale lines.

[0020] In this technical solution, the user can observe the scale lines and pull the slider to the appropriate position.

[0021] The beneficial effects of this utility model are: 1. This adjustable clothes hook, when the position of the sliding block needs to be adjusted, can drive two limit blocks to slide and move closer to each other through the set drive component. Then, pull the hook and drive the sliding block to slide. Pull the sliding block to the appropriate position, and through the set drive component, drive the two limit blocks to slide and move away from each other. Finally, the two limit blocks extend into the corresponding rectangular grooves, which can fix the position of the sliding block. This makes it easy to adjust the position of the sliding block and the hook, and the operation is simple and does not require tools.

[0022] 2. When the adjustable coat hook needs to be replaced, the power component can drive several limit rods to slide and move away from each other. After all the limit rods are disengaged from the hook, the hook can be removed downwards, and a new hook can be inserted into the limit groove. When the hook is inserted to the limit position, the power component can drive several limit rods to slide and move closer to each other. All the limit rods are inserted into the hook, which can fix the position of the hook and facilitate the installation and removal of the hook. Attached Figure Description

[0023] Figure 1 This is a schematic diagram of the overall structure of this utility model; Figure 2 This is a schematic diagram of the cross-sectional structure of the fixing strip of this utility model; Figure 3 This is a schematic diagram of the sliding block area structure of this utility model; Figure 4 This is one of the schematic diagrams of the cross-sectional structure of the sliding block of this utility model; Figure 5 This is the utility model Figure 4 Enlarged structural diagram at point A; Figure 6 This is the second schematic diagram of the cross-sectional structure of the sliding block of this utility model; Figure 7 This is the third schematic diagram of the cross-sectional structure of the sliding block of this utility model; Figure 8 This is the utility model Figure 7 Enlarged structural diagram at point B; Figure 9 This is the fourth schematic diagram of the cross-sectional structure of the sliding block of this utility model; Figure 10This is the utility model Figure 9 Enlarged structural diagram at point C; Figure 11 This is a schematic diagram of the hook area structure of this utility model.

[0024] The markings in the diagram are as follows: 1. Fixing bar; 2. Sliding block; 3. Power chamber; 4. Limiting block; 5. Rectangular groove; 6. Limiting groove; 7. Hook; 8. Limiting rod; 9. First gear; 10. First rack; 11. Rectangular column; 12. Fixing rod; 13. First torsion spring; 14. Second gear; 15. Second rack; 16. Disc; 17. Second torsion spring; 18. Limiting disc; 19. Scale line; 20. Spring; 21. Guide groove. Detailed Implementation

[0025] The following is in conjunction with the appendix Figure 1 - Figure 11 This application will be described in further detail.

[0026] In this application, the terms "upper," "lower," "left," "right," "front," "rear," "top," "bottom," "inner," "outer," "middle," "vertical," and "horizontal," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. These terms are primarily for the purpose of better describing this application and its embodiments, and are not intended to limit the indicated device, element, or component to having a specific orientation, or to be constructed and operated in a specific orientation.

[0027] Example 1: This example provides an adjustable clothes hook, including a fixing strip 1 and several hooks 7, and also includes: Several sliding blocks 2 are slidably installed in the fixed strip 1. Each of the several sliding blocks 2 has a power cavity 3. Two limit blocks 4 are slidably installed in each of the several power cavities 3. Several rectangular grooves 5 are opened in the fixed strip 1 and on both sides of the sliding blocks 2. The limit blocks 4 and the rectangular grooves 5 are inserted into each other. A plurality of limiting grooves 6 are respectively opened in a plurality of sliding blocks 2. A hook 7 is inserted and installed in each of the plurality of limiting grooves 6. A plurality of limiting rods 8 are slidably installed in the plurality of limiting grooves 6 and on the periphery of the plurality of hooks 7. The plurality of limiting rods 8 are respectively inserted and engaged with the plurality of hooks 7. Several driving components are located within several sliding blocks 2 and are used to drive several limiting blocks 4 to slide. Several power components are located within several sliding blocks 2 and are used to drive several limit rods 8 to slide.

[0028] When the position of the sliding block 2 needs to be adjusted, the two limit blocks 4 can be driven to slide and move closer to each other through the set drive component. Then, the hook 7 is pulled and the sliding block 2 is driven to slide. The sliding block 2 is pulled to the appropriate position. The two limit blocks 4 can be driven to slide and move away from each other through the set drive component. Finally, the two limit blocks 4 extend into the corresponding rectangular grooves 5 respectively, which can fix the position of the sliding block 2. It is convenient to adjust the position of the sliding block 2, and the operation is simple and does not require the use of tools. When the hook 7 needs to be replaced, the power component can drive several limit rods 8 to slide and move away from each other. After all the limit rods 8 have disengaged from the hook 7, the hook 7 can be taken out downwards, and then the new hook 7 can be inserted into the limit groove 6. When the hook 7 is inserted to the limit position, the power component can drive several limit rods 8 to slide and move closer to each other. All the limit rods 8 are inserted into the hook 7, which can fix the position of the hook 7, making it convenient to install and remove the hook 7.

[0029] In this embodiment, the driving component includes: The first gear 9 is rotatably installed in the power cavity 3. A first rack 10 is meshed on one side of the first gear 9. A fixing rod 12 is fixedly installed on the top of the first gear 9. A first torsion spring 13 is sleeved on the fixing rod 12. The two ends of the first torsion spring 13 are fixedly connected to the fixing rod 12 and the inner wall of the power cavity 3, respectively. A second gear 14 is fixedly installed at the bottom of the first gear 9. A second rack 15 is meshed on both sides of the second gear 14. The two second racks 15 are fixedly connected to two limiting blocks 4, respectively. When the position of the sliding block 2 needs to be adjusted, first press the rectangular column 11. The rectangular column 11 squeezes the first rack 10 to slide. The first rack 10 drives the first gear 9 meshing with it to rotate in the forward direction. The first gear 9 drives the fixed rod 12 and the second gear 14 to rotate in the forward direction. At the same time, the first torsion spring 13 is twisted. The second gear 14 drives the two second racks 15 meshing with it to slide and move closer to each other. The two second racks 15 respectively drive the two limit blocks 4 to slide and move closer to each other. Then pull the hook 7 and drive the sliding block 2 to slide. Pull the sliding block 2 to the appropriate position, release the rectangular column 11. Under the action of the torsional force of the first torsion spring 13, the two limit blocks 4 can be driven to slide and move away from each other through the above reverse operation. Finally, the two limit blocks 4 extend into the corresponding rectangular grooves 5, which can fix the position of the sliding block 2. It is convenient to adjust the position of the sliding block 2, and the operation is simple and does not require the use of tools.

[0030] In this embodiment, the power assembly includes: A disc 16 is rotatably installed in a limiting groove 6. A second torsion spring 17 is sleeved on the disc 16. The two ends of the second torsion spring 17 are fixedly connected to the disc 16 and the inner wall of the limiting groove 6, respectively. A spring 20 is sleeved on each of the limiting rods 8. The two ends of the spring 20 are fixedly connected to the limiting rods 8 and the inner wall of the limiting groove 6, respectively. A limiting disk 18 is rotatably installed in the limiting groove 6 and between the limiting rods 8. The limiting disk 18 is in close contact with the limiting rods 8. When the hook 7 needs to be replaced, the disc 16 is rotated forward, and the second torsion spring 17 is twisted. The disc 16 drives the limiting disc 18 to rotate forward. The limiting disc 18 squeezes several limiting rods 8 to slide and move away from each other. At the same time, several springs 20 are compressed and contracted. After several limiting rods 8 are disengaged from the hook 7, the hook 7 is taken out downward, and a new hook 7 is inserted into the limiting groove 6. When the hook 7 is inserted to the limit position, the disc 16 is released. Under the torsional force of the second torsion spring 17, the disc 16 and the limiting disc 18 rotate in opposite directions. Under the rebound force of several springs 20, several limiting rods 8 slide and move closer to each other. Several limiting rods 8 are inserted into the hook 7, which can fix the position of the hook 7 and facilitate the installation and removal of the hook 7.

[0031] Example 2: This embodiment provides an adjustable clothes hook, which, in addition to the technical solutions of the above embodiments, also has the following technical features.

[0032] In this embodiment, guide grooves 21 are provided on several hooks 7, and several grooves are provided on the circumferential sidewall of the disc 16.

[0033] The guide groove 21 can limit the position of the hook 7, and the grooves can facilitate the user to rotate the disc 16.

[0034] Example 3: This embodiment provides an adjustable clothes hook, which, in addition to the technical solutions of the above embodiments, also has the following technical features.

[0035] In this embodiment, several limiting rods 8 are distributed in a ring at equal intervals within several sliding blocks 2, and several rectangular grooves 5 are distributed at equal intervals within the fixing strip 1.

[0036] In this way, the hook 7 can be firmly fixed, and the sliding block 2 can be fixed in any position.

[0037] Example 4: This embodiment provides an adjustable clothes hook, which, in addition to the technical solutions of the above embodiments, also has the following technical features.

[0038] In this embodiment, the fixed rod 12 and the second gear 14 are rotatably connected to the power cavity 3, and the second rack 15 and the first rack 10 are slidably connected to the power cavity 3.

[0039] Specifically, it ensures that both the fixed rod 12 and the second gear 14 can rotate within the power chamber 3, and that both the second rack 15 and the first rack 10 can slide within the power chamber 3.

[0040] Example 5: This embodiment provides an adjustable clothes hook, which, in addition to the technical solutions of the above embodiments, also has the following technical features.

[0041] In this embodiment, a rectangular post 11 is fixedly installed at one end of the first rack 10, and one end of the rectangular post 11 passes through the power cavity 3. The rectangular post 11 is slidably connected to the power cavity 3.

[0042] The rectangular column 11 facilitates the sliding of the first rack 10 by the staff.

[0043] Example 6: This embodiment provides an adjustable clothes hook, which, in addition to the technical solutions of the above embodiments, also has the following technical features.

[0044] In this embodiment, the fixing strip 1 is engraved with scale lines 19.

[0045] Users can observe the scale line 19 and pull the slider 2 to the appropriate position.

[0046] Working principle: When the position of the sliding block 2 needs to be adjusted, first press the rectangular column 11. The rectangular column 11 squeezes the first rack 10 to slide. The first rack 10 drives the first gear 9 meshing with it to rotate in the forward direction. The first gear 9 drives the fixed rod 12 and the second gear 14 to rotate in the forward direction. At the same time, the first torsion spring 13 is twisted. The second gear 14 drives the two second racks 15 meshing with it to slide and move closer to each other. The two second racks 15 respectively drive the two limit blocks 4 to slide and move closer to each other. Then pull the hook 7 and drive the sliding block 2 to slide. The user observes the scale line 19, pulls the sliding block 2 to the appropriate position, releases the rectangular column 11. Under the action of the torsional force of the first torsion spring 13, the two limit blocks 4 can be driven to slide and move away from each other through the above reverse operation. Finally, the two limit blocks 4 extend into the corresponding rectangular grooves 5, which can fix the position of the sliding block 2, making it convenient to adjust the position of the sliding block 2. The operation is simple and does not require the use of tools. When the hook 7 needs to be replaced, rotate the disc 16 forward. At the same time, the second torsion spring 17 is twisted, and the disc 16 drives the limiting disc 18 to rotate forward. The limiting disc 18 squeezes several limiting rods 8 to slide and move away from each other. At the same time, several springs 20 are compressed and contracted. After several limiting rods 8 are disengaged from the hook 7, the hook 7 is taken out downward. Then, the new hook 7 is inserted into the limiting groove 6. The position of the hook 7 can be limited by the guide groove 21. When the hook 7 is inserted to the limit position, the disc 16 is released. Under the torsional force of the second torsion spring 17, the disc 16 and the limiting disc 18 rotate in opposite directions. Under the rebound force of several springs 20, several limiting rods 8 slide and move closer to each other. Several limiting rods 8 are inserted into the hook 7, which can fix the position of the hook 7 and facilitate the installation and removal of the hook 7.

[0047] The embodiments of this application have been described above with reference to the accompanying drawings. Unless otherwise specified, the embodiments and features in the embodiments of this application can be combined with each other. This application is not limited to the specific embodiments described above. The specific embodiments described above are merely illustrative and not restrictive. Those skilled in the art can make many other forms under the guidance of this application without departing from the spirit and scope of the claims, and all of these forms are within the protection scope of this application.

Claims

1. An adjustable coat hook, comprising a fixing bar (1) and a plurality of hooks (7), characterized in that, Also includes: A plurality of sliding blocks (2) are slidably installed in a fixed strip (1). A power cavity (3) is provided in each of the sliding blocks (2). Two limiting blocks (4) are slidably installed in each of the power cavities (3). A plurality of rectangular grooves (5) are provided in the fixed strip (1) on both sides of the sliding blocks (2). The limiting blocks (4) are inserted into the rectangular grooves (5). A plurality of limiting grooves (6) are respectively opened in a plurality of sliding blocks (2), and a hook (7) is inserted and installed in each of the plurality of limiting grooves (6). A plurality of limiting rods (8) are slidably installed in the plurality of limiting grooves (6) and on the periphery of the plurality of hooks (7). The plurality of limiting rods (8) are respectively inserted and engaged with the plurality of hooks (7). A plurality of driving components are located within a plurality of sliding blocks (2) and are used to drive a plurality of limiting blocks (4) to slide. A plurality of power components are located within a plurality of sliding blocks (2) and are used to drive a plurality of limit rods (8) to slide.

2. The adjustable clothes hook according to claim 1, characterized in that, The driving component includes: The first gear (9) is rotatably installed in the power cavity (3). A first rack (10) is meshed on one side of the first gear (9). A fixing rod (12) is fixedly installed at the top of the first gear (9). A first torsion spring (13) is sleeved on the fixing rod (12). The two ends of the first torsion spring (13) are fixedly connected to the fixing rod (12) and the inner wall of the power cavity (3), respectively. A second gear (14) is fixedly installed at the bottom of the first gear (9). A second rack (15) is meshed on both sides of the second gear (14). The two second racks (15) are fixedly connected to two limiting blocks (4), respectively.

3. An adjustable clothes hook according to claim 2, characterized in that, The power assembly includes: A disc (16) is rotatably installed in a limiting groove (6). A second torsion spring (17) is sleeved on the disc (16). The two ends of the second torsion spring (17) are fixedly connected to the disc (16) and the inner wall of the limiting groove (6), respectively. A spring (20) is sleeved on each of the limiting rods (8). The two ends of the springs (20) are fixedly connected to the limiting rods (8) and the inner wall of the limiting groove (6), respectively. A limiting disk (18) is rotatably installed in the limiting groove (6) and between the limiting rods (8). The limiting disk (18) is in close contact with the limiting rods (8).

4. An adjustable clothes hook according to claim 3, characterized in that, A guide groove (21) is provided on each of the hooks (7), and a number of grooves are provided on the circumferential sidewall of the disc (16).

5. An adjustable clothes hook according to claim 1, characterized in that, The limiting rods (8) are distributed in a ring at equal intervals within the sliding blocks (2), and the rectangular grooves (5) are distributed at equal intervals within the fixing strip (1).

6. An adjustable clothes hook according to claim 2, characterized in that, The fixed rod (12) and the second gear (14) are rotatably connected to the power cavity (3), and the second rack (15) and the first rack (10) are slidably connected to the power cavity (3).

7. An adjustable clothes hook according to claim 3, characterized in that, A rectangular column (11) is fixedly installed at one end of the first rack (10), and one end of the rectangular column (11) passes through the power cavity (3). The rectangular column (11) is slidably connected to the power cavity (3).

8. An adjustable clothes hook according to claim 1, characterized in that, The fixing strip (1) has scale lines (19) engraved on it.