Ultrathin nail clippers
By using an X-shaped intersecting fixed and movable clamping body structure, combined with elastic elements and a slider design, the problem of accidental slippage of the clamping plate is solved, achieving stable clamping and convenient operation of the nail clippers, and improving the convenience of carrying and storing them.
Patent Information
- Application Number
- CN202520126182.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-17
- Publication Date
- 2026-01-27
- Estimated Expiration
- 2035-01-17
AI Technical Summary
In existing ultra-thin nail clippers, the pressure plate tends to slide naturally along the long groove during nail trimming, causing it to accidentally disengage from the locking groove of the movable clipper body, affecting the stability and convenience of the trimming operation.
The device employs an X-shaped intersecting fixed and movable clamping body structure, combined with first and second elastic elements. Through the cooperative design of the pressure plate and slider, it ensures that the pressure plate can stably squeeze the movable clamping body, achieving stable clamping and separation of the clamping blades, and maintaining the stability of the folded state through a locking mechanism.
This design solves the problem of accidental slippage of the pressure plate, ensuring the stability and convenience of the trimming operation, while also making it easy to carry and store.
Smart Images

Figure CN223830510U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of nail care tool technology, specifically relating to an ultra-thin nail clipper. Background Technology
[0002] Nail clippers are manicure tools specifically designed for trimming nails. Their miniaturization makes them easy to carry. For example, a Chinese utility model patent discloses an ultra-thin nail clipper comprising a fixed clamping body and a movable clamping body that can clamp and open together, a torsion spring for pushing the movable clamping body open, and a pressure plate. The movable clamping body has an elongated groove, and the front end of the pressure plate is fitted into this groove via a sleeve rod, allowing the sleeve rod to slide back and forth along the groove. The movable clamping body also has a locking groove. In use, the pressure plate can be rotated to open and pushed forward, causing its lower side to abut against the locking groove on the movable clamping body. Pressing down on the pressure plate then compresses the movable clamping body, clamping the two jaws together. Releasing the pressure plate automatically pushes the movable clamping body to rotate and open, allowing for easy clamping and separation of the jaws using the pressure plate, making nail trimming convenient. When not in use, the pressure plate can be pulled back and slid to disengage the lower side of the pressure plate from the slot of the movable pliers body. This allows the pressure plate to be rotated and folded onto the fixed pliers body, minimizing the thickness of the nail clippers and achieving an ultra-thin nail clipper structure that is very convenient to carry and store.
[0003] However, the aforementioned ultra-thin nail clippers still have shortcomings. Because the pressure plate slides into the long groove of the movable clamping body through the sleeve, the sleeve can easily slide backward along the long groove during nail trimming. This can cause the lower side of the pressure plate to accidentally disengage from the slot of the movable clamping body, resulting in the pressure plate being unable to squeeze the movable clamping body to make the two jaws clamp tightly, which greatly affects the nail trimming operation. Utility Model Content
[0004] To address the shortcomings of the existing technology, the purpose of this invention is to provide a structurally stable ultra-thin nail clipper whose pressure plate can stably compress the movable clipper body, making trimming more convenient.
[0005] To achieve the above objectives, the technical solution adopted by this utility model is as follows: an ultra-thin nail clipper, comprising a fixed clipper body and a movable clipper body that intersect in an X-shape and are pivotally connected by a pin. The movable clipper body can rotate relative to the fixed clipper body to clamp and separate. A first elastic element is provided for automatically separating the movable clipper body from the fixed clipper body. The front ends of the fixed clipper body and the movable clipper body are respectively provided with clipper blades. Rotating the movable clipper body can cause the two clipper blades to clamp and separate from each other. The nail clipper also includes a pressure plate and a first slider that is slidably disposed on the movable clipper body. The pressure plate is provided with a relief groove that cooperates with the first slider. The pressure plate is hinged to the movable clipper body and can rotate open and fold relative to the fixed clipper body. When the pressure plate is in the folded state, the first slider is placed in the relief groove. When the pressure plate is in the open state, the first slider can slide backward to a position that abuts against the lower side of the pressure plate.
[0006] In the above solution, during use, the pressure plate can be rotated upwards to open, and the first slider can be pushed backwards to make the upper side of the first slider abut against the lower side of the pressure plate, thereby opening the nail clippers. With the nail clippers open, the user inserts their nail between the two blades and then presses down on the pressure plate to squeeze the first slider, causing the movable clamping body to rotate and clamp the two blades together, thus cutting the nail. After releasing the pressure plate, the first elastic element automatically pushes the two blades apart through its own elastic force, allowing the movable clamping body and pressure plate to automatically reset, making the trimming operation convenient. Because the pressure plate can only rotate relative to the movable clamping body and cannot slide, it can stably squeeze the movable clamping body, causing the two blades to clamp together, resulting in a stable structure and solving the problem of existing pressure plates easily sliding naturally and accidentally disengaging from the slot. When not in use, the first slider can be pushed forward to disengage the upper side of the first slider from the lower side of the pressure plate. With the first slider no longer obstructing the pressure plate, the user can then rotate the pressure plate downwards to fold it over the fixed clamping body, thus folding the nail clippers for easy carrying and storage. When the nail clippers are folded, the first slider is placed in the clearance groove so that the pressure plate prevents the first slider from sliding backward naturally. At the same time, the pressure plate presses the rear end of the movable clipper body until the two clippers are clamped. At this time, the pressure plate locks and maintains the folded state, preventing the first elastic element from automatically pushing the movable clipper body to rotate and separate, which would affect the folding of the nail clippers.
[0007] Furthermore, the aforementioned nail clipper also includes a second elastic element for pushing the first slider backward. The backward force provided by the second elastic element on the first slider further ensures that the first slider will not slide forward naturally and accidentally disengage from the lower side of the pressure plate. This makes the upper side of the first slider more stable against the lower side of the pressure plate, ensuring the structural stability of the nail clipper in the open state and making trimming operations more convenient. Additionally, when the pressure plate rotates upward to the position above the first slider, the second elastic element will automatically push the first slider backward to abut against the lower side of the pressure plate, making the opening operation of the nail clipper even more convenient.
[0008] In order to realize the structural function of the second elastic element pushing the first slider to slide backward, the movable clamp body is provided with a first spring groove, and the first slider is provided with a first protrusion. The second elastic element is a first spring provided in the first spring groove. The two ends of the first spring abut against the front side wall of the first spring groove and the front side wall of the first protrusion, respectively. Without the action of external force, the first spring will push the first protrusion to drive the first slider to slide backward through its own elastic force.
[0009] Furthermore, two guide blocks are provided opposite each other below the first slider, and guide grooves are respectively opened on the upper part of the movable clamp body corresponding to the positions of the two guide blocks. The two guide grooves are respectively located on both sides of the first spring groove, and the two guide blocks are slidably engaged with the guide grooves on the corresponding sides, so that the first slider can slide smoothly back and forth along the guide grooves of the movable clamp body through its guide blocks.
[0010] Furthermore, the aforementioned nail clipper also includes a locking mechanism for limiting the pressure plate to a folded state. The locking mechanism includes a second slider slidably mounted on the fixed clipper body and a locking block located at the rear end of the pressure plate. The front end face of the second slider has a slot. When the pressure plate is in the folded state, sliding the second slider forward causes the slot to engage with the locking block. At this time, the pressure plate cannot be rotated upwards to open under the engagement of the slot and the locking block, thus locking the pressure plate in the folded state. Pushing the second slider backwards disengages the slot from the locking block, releasing the lock on the pressure plate and allowing it to be rotated upwards to open. In addition, when this solution is used, after the second slider slides backward until it disengages from the slot and the block, the first elastic element will automatically push the rear end of the movable clamp body to rotate upward, causing the pressure plate to rotate upward at the same time. When the movable clamp body rotates to the designed maximum angle position, it stops rotating upward, but the pressure plate will continue to rotate upward around its own rotation center due to inertia. This causes the pressure plate to automatically rotate to the position above the first slider. At this time, the second elastic element will automatically push the first slider to slide backward and abut against the lower side of the pressure plate. It is equivalent to only needing to push the second slider backward until it disengages from the slot and the block, the nail clipper will automatically switch to the open state, making the opening operation very convenient.
[0011] Furthermore, the aforementioned fixing clamp body has a second spring groove, within which a second spring is installed. A second protrusion is located below the second slider. The two ends of the second spring abut against the rear sidewall of the second protrusion and the rear sidewall of the second spring groove, respectively. Without external force, the second spring, through its own elastic force, pushes the second protrusion, causing the second slider to slide forward. The forward force provided by the second spring on the second slider ensures that the second slider will not slide backward naturally, preventing accidental disengagement of the locking groove and locking block. This improves the locking stability of the pressure plate and ensures the structural stability of the nail clippers in the folded state.
[0012] Furthermore, the second slider is provided with two guide rails facing each other below, and the fixed clamp body is provided with sliding grooves on the upper part corresponding to the positions of the two guide rails. The two sliding grooves are located on both sides of the second spring groove, and the two guide rails slide in cooperation with the sliding grooves on the corresponding sides, so that the second slider can slide smoothly back and forth along the sliding grooves of the fixed clamp body through its guide rails.
[0013] Furthermore, the first slider is provided with a first push block at the front end, which allows the user to easily push the first slider forward; the second slider is provided with a second push block at the rear end, which allows the user to easily push the second slider backward.
[0014] Furthermore, the aforementioned fixing clamp body is provided with a positioning protrusion, and a positioning groove is provided on the bottom of the pressure plate corresponding to the position of the positioning protrusion. When the pressure plate is in the folded state, the positioning protrusion and the positioning groove cooperate to make the pressure plate less likely to swing left and right in the folded state, thereby improving the structural stability of the pressure plate in the folded state.
[0015] Furthermore, the aforementioned movable clamp body is provided with a limiting protrusion. When the two clamp blades are in the separated state, the front side wall of the limiting protrusion abuts against the fixed clamp body. At this time, the limiting protrusion can prevent the movable clamp body from continuing to rotate excessively in the separation direction, thereby limiting the movable clamp body to the separated state. The aforementioned pressure plate has two connecting rods opposite each other at its front end. The two connecting rods are rotatably connected to the left and right sides of the limiting protrusion via a rotating shaft, so that the pressure plate can rotate around the rotating shaft via its two connecting rods. The gap between the two connecting rods forms a clearance groove.
[0016] This invention relates to a nail clipper whose pressure plate can only rotate relative to the movable clamping body and cannot slide. This allows the pressure plate to stably compress the movable clamping body, causing the two clamping blades to clamp together, thus solving the problem of existing pressure plates easily sliding naturally and accidentally disengaging from the locking slot. Furthermore, the rearward force provided by the first spring on the first slider ensures the stability of the first slider against the pressure plate, resulting in a stable structure and more convenient trimming operation. Additionally, the locking slot of the second slider can lock the pressure plate in a folded state, ensuring the structural stability of the nail clipper in this folded state, making it more convenient to carry and store. Pushing the second slider backward until the locking slot disengages from the locking block automatically opens the nail clipper, making opening very convenient. Attached Figure Description
[0017] Figure 1 This is an exploded structural diagram of the ultra-thin nail clipper according to an embodiment of the present invention.
[0018] Figure 2 This is a schematic diagram of the ultra-thin nail clipper in the open state and with the two blades separated, according to an embodiment of the present invention.
[0019] Figure 3This is a schematic diagram of the ultra-thin nail clipper in the open state and with the two blades clamped together, according to an embodiment of the present invention.
[0020] Figure 4 for Figure 3 Sectional view of AA.
[0021] Figure 5 This is a schematic diagram of the ultra-thin nail clipper in a folded state according to an embodiment of the present invention.
[0022] Figure 6 for Figure 5 BB section view.
[0023] Figure 7 This is a schematic diagram of the first slider structure of the ultra-thin nail clipper according to an embodiment of the present invention. Detailed Implementation
[0024] The accompanying drawings are for illustrative purposes only and should not be construed as limiting this patent. To better illustrate this embodiment, some components in the drawings may be omitted, enlarged, or reduced, and do not represent the actual dimensions of the product. It is understandable to those skilled in the art that some well-known structures and their descriptions may be omitted in the drawings. The positional relationships described in the drawings are for illustrative purposes only and should not be construed as limiting this patent.
[0025] In the accompanying drawings of this utility model, the same or similar reference numerals correspond to the same or similar components. In the description of this utility model, it should be understood that if terms such as "upper," "lower," "left," "right," "long," and "short" indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, they are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or component referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, the terms used to describe positional relationships in the drawings are only for illustrative purposes and should not be construed as limiting this patent. For those skilled in the art, the specific meaning of the above terms can be understood according to the specific circumstances.
[0026] The technical solution of this utility model will be further described in detail below through specific embodiments and with reference to the accompanying drawings:
[0027] Example 1
[0028] like Figure 1-6As shown, this embodiment provides an ultra-thin nail clipper, including a fixed clamping body 1 and a movable clamping body 2 that intersect in an X-shape and are pivotally connected by a pin 72. The movable clamping body 2 can rotate relative to the fixed clamping body 1 to clamp and separate. A first elastic element 31 is provided to automatically separate the movable clamping body 2. The fixed clamping body 1 and the movable clamping body 2 have clamping blades 10 on opposite sides at their front ends. Rotating the movable clamping body 2 allows the two clamping blades 10 to clamp and separate. The first elastic element 31 is a torsion spring fitted on the outside of the pin 72. The two legs of the torsion spring abut against the inner sides of the fixed clamping body 1 and the movable clamping body 2, respectively. Without external force, the torsion spring automatically pushes the fixed clamping body 1 and the movable clamping body 2 to rotate and separate due to its own elasticity.
[0029] The aforementioned nail clippers also include a pressure plate 4 and a first slider 5 slidably mounted on the movable clipper body 2. The pressure plate 4 has a clearance groove 41 that mates with the first slider 5. The pressure plate 4 is located behind the pin 72 and is hinged to the movable clipper body 2, allowing it to rotate, open, and fold relative to the fixed clipper body 1. Figure 5 , 6 As shown, when the pressure plate 4 is in the folded state, the first slider 5 is placed in the clearance groove 41, as... Figure 3 , 4 As shown, when the pressure plate 4 is in the open state, the first slider 5 can slide backward to a position that abuts against the lower front side of the pressure plate 4. At this time, rotating the pressure plate 4 downward will squeeze the first slider 5 and drive the movable clamp 2 to rotate, so that the two clamp blades 10 clamp each other.
[0030] In this embodiment, the nail clippers can be opened by rotating the pressure plate 4 upwards and pushing the first slider 5 backwards, so that the upper side of the first slider 5 abuts against the lower side of the front end of the pressure plate 4, thereby opening the nail clippers. Figure 2 As shown, with the nail clippers open, the user inserts their nail between the two blades 10, then presses down on the pressure plate 4 to squeeze the first slider 5, causing the movable clamp body 2 to rotate and clamp the two blades 10 together, thus cutting the nail. Figure 3 , 4 As shown, after the pressure plate 4 is released, the torsion spring will automatically push the two clamp blades 10 to separate from each other, so that the movable clamp body 2 and the pressure plate 4 will automatically rotate upward and reset, so that the user can press the pressure plate 4 again to drive the two clamp blades 10 to clamp together, making the trimming operation convenient.
[0031] When not in use, the first slider 5 can be pushed forward to disengage the upper side of the first slider 5 from the lower front end of the pressure plate 4. With the first slider 5 no longer obstructing the pressure plate 4, the user can rotate the pressure plate 4 downwards to fold it onto the fixed clamping body 1, thus folding the nail clippers up. Figure 5 , 6As shown, this design minimizes the thickness of the nail clippers, resulting in an ultra-thin nail clipper structure that is easy to carry and store. In the folded state, the first slider 5 is positioned within the clearance groove 43, preventing it from sliding backward naturally. Simultaneously, the pressure plate 4 presses down on the rear end of the movable clamping body 2 until the two clamping blades 10 are clamped. The pressure plate 4 then locks the folded state to prevent the torsion spring from automatically pushing the movable clamping body 2 to rotate and separate, thus affecting the folding of the nail clippers.
[0032] In this embodiment, the pressure plate 4 of the nail clipper can only rotate relative to the movable clamping body 2 and cannot slide, so that the pressure plate 4 can stably squeeze the movable clamping body 2 to drive the two clamping blades 10 to clamp together. The structure is stable and easy to operate, which solves the problem that the existing pressure plate 4 is easy to slide naturally and accidentally disengage from the slot.
[0033] Example 2
[0034] This embodiment is a further improvement on the ultra-thin nail clipper structure of Embodiment 1. The improvement lies in that, as Figure 1 As shown, the nail clipper also includes a second elastic element 32 for pushing the first slider 5 backward. Under the backward force provided by the second elastic element 32 on the first slider 5, the first slider 5 will not naturally slide forward and accidentally disengage from the lower front side of the pressure plate 4. This makes the upper side of the first slider 5 more stable against the lower front side of the pressure plate 4, ensuring the structural stability of the nail clipper in the open state and making trimming operations more convenient. Furthermore, when the pressure plate 4 rotates upward to the position above the first slider 5, the second elastic element 32 will automatically push the first slider 5 backward to abut against the lower front side of the pressure plate 4, making the opening operation of the nail clipper more convenient.
[0035] To achieve the structural function of the second elastic element 32 pushing the first slider 5 to slide backward, as described above, Figure 1 , 4 As shown in Figure 7, the movable clamp 2 is provided with a first spring groove 21, and the second elastic element 32 is a first spring provided in the first spring groove 21. The first slider 5 is provided with a first protrusion 51 corresponding to the rear side of the first spring, and a spring post 211 is provided on the front side wall of the first spring groove 21. The front end of the first spring is fitted on the outside of the spring post 211 and abuts against the front side wall of the first spring groove 21 to improve the installation stability of the first spring. The rear end of the first spring abuts against the front side of the first protrusion 51. Without the action of external force, the first spring will push the first protrusion 51 to drive the first slider 5 to slide backward through its own elastic force.
[0036] like Figure 1 , 7As shown, the first slider 5 is provided with two guide blocks 52 facing each other below. The movable clamp body 2 is provided with guide grooves 22 on the upper part corresponding to the positions of the two guide blocks 52. The two guide grooves 22 are located on the left and right sides of the first spring groove 21, respectively. The two guide blocks 52 slide and cooperate with the guide grooves 22 on the corresponding sides, so that the first slider 5 can slide smoothly back and forth along the guide grooves 22 of the movable clamp body 2 through its guide blocks 52.
[0037] As an improvement to this embodiment, such as Figure 1 , 2 As shown, the movable clamp body 2 is provided with a limiting protrusion 23. When the two clamp blades 10 are in the separated state, the front side wall of the limiting protrusion 23 abuts against the fixed clamp body 1. At this time, the limiting protrusion 23 can prevent the movable clamp body 2 from continuing to rotate excessively in the separation direction, so as to limit the movable clamp body 2 to the separated state.
[0038] In addition, the front end of the aforementioned pressure plate 4 is provided with two connecting rods 43. The two connecting rods 43 are rotatably connected to the left and right sides of the limiting protrusion 23 via the rotating shaft 71, so that the pressure plate 4 can be opened and folded by rotating the two connecting rods 43 around the rotating shaft 71. The gap between the two connecting rods 43 forms the aforementioned clearance groove 41.
[0039] Example 3
[0040] This embodiment is a further improvement on the ultra-thin nail clipper structure of Embodiment 2. The improvement lies in, for example... Figure 1 , 5 As shown in Figure 6, the nail clipper also includes a locking mechanism for limiting the pressure plate in a folded state. The locking mechanism includes a second slider 6 slidably disposed on the rear end of the fixed clipper body 1 and a locking block 42 disposed on the rear end of the pressure plate 4. The front end face of the second slider 6 has a locking groove 61. When the pressure plate 4 is in a folded state, sliding the second slider 6 forward will cause the locking groove 61 to engage with the locking block 42. At this time, the pressure plate 4 cannot be rotated upward to open under the action of the locking block 42 and the locking groove 61, thus locking the pressure plate 4 in a folded state. Pushing the second slider 6 backward will disengage the locking groove 61 from the locking block 42, thereby releasing the lock on the pressure plate 4 and allowing the pressure plate 4 to be rotated upward to open.
[0041] The aforementioned fixing clamp body 1 has a second spring groove 11, within which a second spring 33 is housed. A second protrusion 62 is located below the second slider 6, corresponding to the front position of the second spring 33. The front end of the second spring 33 abuts against the rear wall of the second protrusion 62, and the rear end of the second spring 33 abuts against the rear wall of the second spring groove 11. Without external force, the second spring 33, through its own elastic force, pushes the second protrusion 62, causing the second slider 6 to slide forward. The forward force provided by the second spring 33 to the second slider 6 ensures that the second slider 6 will not slide backward naturally, preventing accidental disengagement of the locking groove 61 and the locking block 42. This improves the locking stability of the pressure plate 4 and ensures the structural stability of the nail clippers in the folded state.
[0042] like Figure 1 As shown, the second slider 6 is provided with two guide rails 64 facing each other on its lower side. The fixed clamp body 1 is provided with sliding grooves 12 on its upper side corresponding to the positions of the two guide rails 64. The two sliding grooves 12 are located on the left and right sides of the second spring groove 11, respectively. The two guide rails 64 are slidably engaged with the sliding grooves 12 on the corresponding sides, so that the second slider 6 can slide smoothly back and forth along the sliding grooves 12 of the fixed clamp body 1 through its guide rails 64.
[0043] As an improvement to this embodiment, such as Figure 1 As shown, the first slider 5 is provided with a first push block 53 near the front end, which allows the user to easily push the first slider 5 forward; the second slider 6 is provided with a second push block 63 near the rear end, which allows the user to easily push the second slider 6 backward.
[0044] In addition, for example Figure 4 , 6 As shown, the above-mentioned fixing clamp body 1 is provided with a positioning protrusion 13, and the pressure plate 4 is provided with a positioning groove 44 corresponding to the position of the positioning protrusion 13. When the pressure plate 4 is in the folded state, the positioning protrusion 13 and the positioning groove 44 cooperate to make the pressure plate 4 less likely to swing left and right in the folded state, thereby improving the structural stability of the pressure plate 4 in the folded state.
[0045] In this embodiment, when the nail clippers need to be opened, the second slider 6 can be pushed backward until it disengages from the slot 61 and the locking block 42. At this time, the torsion spring will automatically push the rear end of the movable clipper body 2 to rotate upward, causing the pressure plate 4 to rotate upward simultaneously. When the movable clipper body 2 rotates to the designed maximum angle position (that is, when the front side wall of the limiting protrusion 23 abuts against the fixed clipper body 1), it stops rotating upward. However, the pressure plate 4 will continue to rotate upward around the pivot 71 due to inertia. This causes the pressure plate 4 to automatically rotate to the position above the first slider 5. At this time, the first spring will automatically push the first slider 5 backward to abut against the lower side of the pressure plate 4, thus completing the opening operation of the nail clippers. It is equivalent to simply pushing the second slider 6 backward until it disengages from the slot 61 and the locking block 42, and the nail clippers will automatically switch to the open state, making the opening operation very convenient.
[0046] Obviously, the above embodiments of this utility model are merely examples for clearly illustrating this utility model, and are not intended to limit the implementation of this utility model. Those skilled in the art can make other variations or modifications based on the above description. It is neither necessary nor possible to exhaustively describe all embodiments here. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of this utility model should be included within the protection scope of the claims of this utility model.
Claims
1. An ultra-thin nail clipper, comprising a fixed clamping body (1) and a movable clamping body (2) that intersect in an X shape and are pivotally connected by a pin (72), wherein the movable clamping body (2) can rotate relative to the fixed clamping body (1) to clamp and separate, and a first elastic element (31) for pushing the movable clamping body (2) to automatically separate relative to the fixed clamping body (1), wherein the fixed clamping body (1) and the movable clamping body (2) are respectively provided with clamping blades (10) on opposite sides of their front ends, and rotating the movable clamping body (2) can cause the two clamping blades (10) to clamp and separate from each other; Its features It also includes a pressure plate (4) and a first slider (5) slidably disposed on the movable clamp body (2). The pressure plate (4) is provided with a relief groove (41) that cooperates with the first slider (5). The pressure plate (4) is hinged to the movable clamp body (2) and can rotate open and fold relative to the fixed clamp body (1). When the pressure plate (4) is in the folded state, the first slider (5) is placed in the relief groove (41). When the pressure plate (4) is in the open state, the first slider (5) can slide backward to the position that abuts against the lower side of the pressure plate (4).
2. The ultra-thin nail clipper according to claim 1, characterized in that: It also includes a second elastic element (32) for pushing the first slider (5) to slide backward.
3. The ultra-thin nail clipper according to claim 2, characterized in that: The movable clamp (2) is provided with a first spring groove (21) on its upper surface, and a first protrusion (51) is provided below the first slider (5). The second elastic element (32) is a first spring provided in the first spring groove (21), and the two ends of the first spring abut against the front side wall of the first spring groove (21) and the front side wall of the first protrusion (51) respectively.
4. The ultra-thin nail clipper according to claim 3, characterized in that: The first slider (5) has two guide blocks (52) facing each other below. The movable clamp (2) has guide grooves (22) respectively corresponding to the positions of the two guide blocks (52). The two guide grooves (22) are located on both sides of the first spring groove (21). The two guide blocks (52) slide with the guide grooves (22) on the corresponding sides respectively.
5. The ultra-thin nail clipper according to any one of claims 1-4, characterized in that: It also includes a locking mechanism for limiting the pressure plate (4) in a folded state. The locking mechanism includes a second slider (6) slidably disposed on the fixed clamp body (1) and a locking block (42) disposed at the rear end of the pressure plate (4). The front end face of the second slider (6) is provided with a locking groove (61). When the pressure plate (4) is in a folded state, sliding the second slider (6) forward will cause the locking groove (61) to engage with the locking block (42).
6. The ultra-thin nail clipper according to claim 5, characterized in that: The fixing clamp (1) is provided with a second spring groove (11), and a second spring (33) is provided in the second spring groove (11). A second protrusion (62) is provided below the second slider (6). The two ends of the second spring (33) abut against the rear side wall of the second protrusion (62) and the rear side wall of the second spring groove (11), respectively.
7. The ultra-thin nail clipper according to claim 6, characterized in that: The second slider (6) has two guide rails (64) facing each other on its underside. The fixed clamp body (1) has a sliding groove (12) on its upper side corresponding to the two guide rails (64). The two sliding grooves (12) are located on both sides of the second spring groove (11). The two guide rails (64) slide and cooperate with the sliding grooves (12) on the corresponding sides respectively.
8. The ultra-thin nail clipper according to claim 5, characterized in that: The first slider (5) has a first push block (53) at its front end and the second slider (6) has a second push block (63) at its rear end.
9. The ultra-thin nail clipper according to claim 5, characterized in that: The fixing clamp body (1) is provided with a positioning protrusion (13) on the top, and a positioning groove (44) is provided on the bottom of the pressure plate (4) corresponding to the position of the positioning protrusion (13). When the pressure plate (4) is in the folded state, the positioning protrusion (13) and the positioning groove (44) cooperate with each other.
10. The ultra-thin nail clipper according to claim 1, characterized in that: The movable clamp body (2) is provided with a limiting protrusion (23). When the two clamp blades (10) are in the separated state, the front side wall of the limiting protrusion (23) abuts against the fixed clamp body (1). The front end of the pressure plate (4) is provided with two connecting rods (43). The two connecting rods (43) are rotatably connected to the left and right sides of the limiting protrusion (23) through the rotating shaft (71). The gap between the two connecting rods (43) forms a relief groove (41).