Scissors and scissor locking box
By introducing a flexible reset component and an RFID module into the scissors, and combining them with an identification system in a locking box, the problem of scissors being easily used to stab others or harm oneself is solved. This enables safe management and traceability of the scissors, improving safety and management efficiency.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- BOSIDENG DOWN WEAR LTD
- Filing Date
- 2026-03-16
- Publication Date
- 2026-05-01
AI Technical Summary
Traditional scissors are easily used to injure others or for self-harm, and there is a lack of effective protective measures.
Design a pair of scissors that includes a blade assembly and a resilient reset element. The blade assembly is connected by the resilient reset element and automatically retracts when piercing to avoid injury. It is also equipped with an RFID module and a chain connection for management and tracking. Combined with a scissors locking box, locking and releasing are achieved through identification and an electromagnetic lock.
Effectively prevents scissors from being used to injure others or harm oneself, enabling automatic identification, management, and traceability of scissors, reducing the risk of loss, and improving safety and management efficiency.
Smart Images

Figure CN121946601A_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of textile machinery, and in particular to a pair of scissors and a scissor locking box. Background Technology
[0002] Scissors are a common cutting tool in the textile industry, widely used due to their ease of use. However, traditional scissors can be easily used intentionally to injure others or for self-harm. Summary of the Invention
[0003] This application proposes a pair of scissors to prevent users from using them to stab others or engage in self-harm.
[0004] To achieve the above objectives, this application discloses the following technical solutions:
[0005] A pair of scissors, the scissors comprising: a blade body and a blade assembly;
[0006] The blade body is configured with a mounting cavity and an end opening, the mounting cavity extending along a first direction and communicating with the end opening;
[0007] The blade assembly includes a blade component and a resilient reset member, wherein the resilient reset member and the blade component are arranged in the mounting cavity along the first direction, and the shearing end of the blade component extends out of the end opening, and the shearing end of the blade component is used for shearing materials.
[0008] The elastic reset member and the blade component are connected at their connecting ends so that the blade component can be compressed under force.
[0009] In some technical solutions, the first direction is the length direction of the blade body.
[0010] In some technical solutions, the elastic reset element is a spring.
[0011] In some technical solutions, the scissors also include: a radio frequency identification module;
[0012] The blade body is also configured with a module mounting cavity, and the radio frequency identification module is installed in the module mounting cavity to realize the positioning and tracking of the blade body.
[0013] In some technical solutions, a chain connection part is provided at the end of the blade body away from the end opening, and the chain connection part is used to connect with a chain.
[0014] In some technical solutions, the blade body is a first blade body; the first blade body includes: a first sub-blade body, the first sub-blade body being constructed with a mounting groove and a first end opening; the mounting groove extends along the first direction and communicates with the first end opening; the number of the first sub-blade bodies is two; after the two first sub-blade bodies with mounting grooves are fitted together, the corresponding mounting grooves form the mounting cavity.
[0015] In some technical solutions, the blade component is a first blade assembly, and the number of first blade assemblies is two;
[0016] The elastic reset member and the blade component of the corresponding first blade assembly are arranged in the mounting groove along the first direction, and the shearing end of the blade component extends out of the first end opening;
[0017] The first sub-blade body, after being fitted together, is assembled via a pivot so that the two blade components can perform cutting operations.
[0018] In some technical solutions, the blade component is a first blade component; the first blade component includes: a first blade holder and a first blade;
[0019] The first blade is mounted on the first blade holder, and the first blade holder is connected to the elastic reset member.
[0020] In some technical solutions, the blade body is a second blade body; the second blade body includes: a housing; the housing is configured to have a housing mounting cavity and a second end opening; the mounting cavity is the housing mounting cavity;
[0021] The elastic reset member and the blade component are arranged in the housing mounting cavity along the first direction, and the shearing end of the blade component extends out of the second end opening.
[0022] In some technical solutions, the blade component is a second blade assembly;
[0023] The blade component of the second blade assembly includes: a second blade and a pressure shank; the second blade is configured as a U-shaped blade;
[0024] The pressure handle is located on the housing and can compress the U-shaped blade to complete the shearing action.
[0025] In some technical solutions, the second blade body further includes a plug, which is made of an elastically deformable material;
[0026] The inner wall of the second end opening is provided with a limiting protrusion, the plug is constructed as a through structure, and the outer wall of the plug matches the shape of the inner wall of the second end opening. The outer wall of the plug is provided with a limiting groove that engages with the limiting protrusion.
[0027] The second end opening is also provided with a through hole end that extends radially therethrough, and the through hole end and the limiting protrusion are arranged adjacent to each other.
[0028] The maximum dimension of the inner wall of the plug is smaller than the maximum dimension of the U-shaped blade. The part of the U-shaped blade with the maximum dimension is located inside the housing mounting cavity, and the shearing end of the U-shaped blade extends out of the plug.
[0029] A scissor locking box includes a box body and a locking component, wherein the locking component is disposed in the box body and is used to lock and release the aforementioned scissors.
[0030] In some technical solutions, the locking assembly includes: a spring clip and an electromagnetic lock disposed inside the housing;
[0031] The spring clip includes two symmetrically arranged spring clips, with a clamping space between the two spring clips, the clamping space being used to clamp the scissors;
[0032] The locking end of the electromagnetic lock can be engaged with the locking hole of the scissors.
[0033] In some technical solutions, the locking component further includes a control unit; the control unit includes an identification module and a control module;
[0034] The identification module installed in the enclosure is used to collect and compare identity information and send the comparison result to the control module; the control module controls the operation of the electromagnetic lock according to the comparison result.
[0035] In some technical solutions, the identity recognition module includes: a fingerprint recognition module and a card sensing coil.
[0036] As can be seen from the above technical solution, a type of scissors, when used by a user for stabbing, will have its cutting end retract under the force of the elastic reset member at the moment it pierces the target object (which can be any part of the human body). This is because the connecting end of the blade component is connected to the elastic reset member. This prevents the user from stabbing others or engaging in self-harm with the scissors. Attached Figure Description
[0037] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are merely some examples or embodiments of this application. For those skilled in the art, other drawings can be obtained based on the provided drawings without creative effort, and this application can be applied to other similar scenarios based on the provided drawings, all of which fall within the scope of protection of this invention. Unless obvious from the linguistic context or otherwise specified, the same reference numerals in the drawings represent the same structure or operation.
[0038] Figure 1 This is a perspective view of the first embodiment of the scissors of this application;
[0039] Figure 2 This is a first schematic diagram showing the first blade body of the scissors in this application in conjunction with other parts;
[0040] Figure 3 A second schematic diagram showing the first blade body of the scissors in this application in conjunction with other parts;
[0041] Figure 4 This is a first perspective view of a second embodiment of the scissors of this application;
[0042] Figure 5 This is a second perspective view of a second embodiment of the scissors of this application;
[0043] Figure 6 This is a schematic diagram of the second blade assembly;
[0044] Figure 7 This is a third perspective view of the second embodiment of the scissors of this application;
[0045] Figure 8 This is a schematic diagram illustrating the fit between the plug and other parts of this application;
[0046] Figure 9 This is a schematic diagram illustrating the fit between the pressure handle and other parts of this application;
[0047] Figure 10 A schematic diagram showing the assembly of the box and the scissors;
[0048] Figure 11 A schematic diagram showing the assembly of the housing, locking components, control unit, and battery;
[0049] Figure 12 This is a schematic diagram showing the cooperation between the locking components, the control unit, and the battery.
[0050] in:
[0051] 10 is the blade body, 11 is the first sub-blade body, 111 is the mounting groove, 112 is the first end opening, 113 is the pivot, 114 is the load-bearing part, 115 is the module mounting groove, 116 is the first connecting component, 12 is the housing, 121 is the housing mounting cavity, 122 is the second end opening, 1221 is the limiting protrusion, 1222 is the through hole end, 123 is the housing module cavity, 124 is the second connecting component, 13 is the plug, and 131 is the limiting groove;
[0052] 20 is the blade assembly, 21 is the first blade assembly, 211 is the first elastic reset member, 212 is the first blade support, 213 is the first blade, 22 is the second blade assembly, 221 is the second blade, 222 is the pressure handle, and 223 is the second elastic reset member.
[0053] 30 is a radio frequency identification module;
[0054] 40 is the enclosure size;
[0055] 50 is the locking component, 51 is the spring clip, 52 is the electromagnetic lock, and 53 is the electromagnetic detection module;
[0056] 60 is the control unit, 61 is the fingerprint recognition module, and 62 is the card sensing coil.
[0057] 70 is a battery. Detailed Implementation
[0058] The present application will now be described in further detail with reference to the accompanying drawings and embodiments. It is to be understood that the specific embodiments described herein are merely illustrative of the application and not intended to limit it. The described embodiments are only a part of the embodiments of the present application, and not all of them. All other embodiments obtained by those skilled in the art based on the embodiments of the present application without inventive effort are within the scope of protection of the present application.
[0059] In order to fundamentally curb the use of scissors to injure others or harm oneself, such as Figure 1 and Figure 4 As shown, this application provides a pair of scissors, which may include: a blade body 10 and a blade assembly 20.
[0060] The blade body 10 is configured with a mounting cavity and an end opening, the mounting cavity extending along a first direction and communicating with the end opening.
[0061] The blade assembly 20 may include a blade component and a resilient reset member, the resilient reset member and the blade component being arranged in a mounting cavity along a first direction, and the shearing end of the blade component extending out of an end opening, the shearing end of the blade component being used for shearing material.
[0062] The elastic reset member and the blade component are connected at their connecting ends so that the blade component can be compressed under force, and the connection between the connecting ends of the elastic reset member and the blade component can be abutting.
[0063] In the above technical solution, an elastic reset member and a blade component are sequentially assembled within the mounting cavity. During installation, the cutting end of the blade component is positioned outside the end opening, and the connecting end of the blade component is connected to the elastic reset member to form the scissors. During use, if a user attempts to pierce with the scissors, the cutting end of the blade component, upon striking the target object (which can be any part of the human body), will retract under the force of the elastic reset member due to the connection between the connecting end and the blade component. This prevents the user from injuring others or engaging in self-harm.
[0064] To maximize the use of the length space of these scissors, the first direction is the length direction of the blade body 10. The first direction is as follows: Figure 1 and Figure 4 As shown by the arrow.
[0065] To reduce the manufacturing cost of these scissors, the elastic reset element is a spring. Of course, the elastic reset element can also be other reset structures.
[0066] To achieve automatic identification, precise management, and full traceability of each pair of scissors, thus avoiding pain points such as easy loss, difficulty in inventory, misuse, and unclear responsibility, the scissors may also include: a radio frequency identification module 30; this radio frequency identification module 30 may be referred to as an RFID module.
[0067] The blade body 10 is also constructed with a module mounting cavity, in which the radio frequency identification module 30 is installed to realize the positioning and tracking of the blade body 10.
[0068] In the above technical solution, each pair of scissors has a unique tag ID, equivalent to an "electronic ID card," to distinguish different batches, models, and responsible persons, avoiding misuse or mixing. When users take or return the scissors, the reader automatically reads the ID. It also has a recording function, such as who took the scissors, when they took them, which pair they took, and the return time, eliminating the need for manual registration and reducing errors.
[0069] To prevent the scissors from being lost, a chain connection is provided at the end of the blade body 10 away from the end opening. The chain connection is used to connect with a chain. The end of the chain not connected to the chain connection can be attached to a fixed position in the workplace. In addition, the use of the chain can also restrict the range of motion of the scissors.
[0070] Based on the concept of this invention, a scissor structure is proposed, such as... Figure 1 , Figure 2 and Figure 3 As shown, the first blade body may include: a first sub-blade body 11, which is constructed with a mounting groove 111 and a first end opening 112; the mounting groove 111 extends along a first direction and communicates with the first end opening 112; there are two first sub-blade bodies 11. After the sides of the two first sub-blade bodies 11 with the mounting grooves 111 are fitted together, the corresponding mounting grooves 111 form a mounting cavity. It should be noted that the end opening is the first end opening 112. In this technical solution, the mounting cavity is formed by two mounting grooves 111, which facilitates the assembly and manufacturing of the scissors; the mutually fitted first sub-blade bodies 11 form scissors.
[0071] Based on the above technical solution, in order to make the blade component cut materials more smoothly, such as Figure 2 and Figure 3 As shown, the blade component may include: a first blade assembly 21, and the number of first blade assemblies 21 is two.
[0072] The elastic reset member and blade component of the corresponding first blade assembly 21 are arranged in the mounting groove 111 along the first direction, and the shearing end of the blade component extends out of the first end opening 112, such as Figure 2 As shown.
[0073] The first sub-blade body 11, after being fitted together, is assembled via a pivot 113 so that the two blade components can perform cutting operations.
[0074] In the above technical solution, it can be understood that the elastic reset member of the first blade assembly 21 is the first elastic reset member 211, and the blade component of the first blade assembly 21 is the first blade component. In addition, the first sub-blade body 11 also has a force-bearing part 114, which is used to bear the force, enabling the blade component to perform the cutting action.
[0075] To facilitate the maintenance and replacement of the first blade component, the blade component is referred to as the first blade component; the first blade component may include: a first blade holder 212 and a first blade 213.
[0076] The first blade 213 is mounted on the first blade bracket 212, and the first blade bracket 212 is connected to the elastic reset member. Specifically, the first blade 213 and the first blade bracket 212 are fastened with screws. In order to make the fixation between the first blade 213 and the first blade bracket 212 more secure, at least two screws are used to fasten the two, and the screws are Torx screws.
[0077] It should be noted that, as Figure 2 and Figure 3As shown, the first sub-blade body 11 has at least two through holes near the first end opening 112. The entrance to each through hole is located on the side of the first sub-blade body 11 without the mounting groove 111. These two through holes can be a first through hole and a second through hole. The two first sub-blade bodies 11 can be sub-blade body one and sub-blade body two, respectively. A screw inserted through the first through hole on blade body one is used to fasten the first blade 213 and the first blade support 212 located on sub-blade body one. A screw inserted through the second through hole on blade body one is used to fasten the first blade support 212 located on sub-blade body two and sub-blade body two. Similarly, a screw inserted through the first through hole on blade body two is used to fasten the first blade 213 and the first blade support 212 located on sub-blade body two. A screw inserted through the second through hole on blade body two is used to fasten the first blade support 212 located on sub-blade body one and sub-blade body one. This ensures that each first blade 213 is secured with two screws. Furthermore, the screw hole entrance is located on the side of the first blade body 11 that does not have the mounting groove 111, allowing the first blade 213 to be replaced through the screw hole entrance. It should be noted that the first blade body also has a guide groove, which, the mounting groove 111, and the first end opening 112 are sequentially connected. The first blade support 212 is equipped with a guide rod, and the elastic reset element is a spring. The guide rod is sleeved within the spring. Figure 3 As shown. Additionally, the tail of the first blade body is provided with a first connecting component 116, which has a chain connecting portion. This chain connecting portion can be a through hole, such as... Figure 3 As shown.
[0078] Based on the inventive concept of this technical solution, the first sub-blade body 11 is also constructed with a module mounting groove 115, and the sides of the two first sub-blade bodies 11 with the module mounting groove 115 are fitted together to form a module mounting cavity, such as... Figure 3 As shown. Of course, one of the first sub-blade bodies 11 may also have a module mounting slot 115. In addition, a first locking hole is also provided in the first sub-blade body 11.
[0079] Based on the concept of this invention, another structure for scissors is proposed, such as... Figure 5 and Figure 7 As shown, the blade body 10 is the second blade body; the second blade body may include: a housing 12; the housing 12 is configured to have a housing mounting cavity 121 and a second end opening 122; the mounting cavity is the housing mounting cavity 121.
[0080] The resilient reset member and the blade component are arranged along a first direction in the housing mounting cavity 121, and the shearing end of the blade component extends out of a second end opening 122. This technology utilizes the housing mounting cavity 121 formed inside the housing 12 to mount the resilient reset member and the blade component, facilitating rapid installation and reducing manufacturing costs.
[0081] Based on the above technical solution, in order to quickly shear materials, such as Figure 6 and Figure 7 As shown, the blade component can be a second blade assembly 22.
[0082] The blade component of the second blade assembly 22 may include: a second blade 221 and a pressure shank 222; the second blade 221 is configured as a U-shaped blade.
[0083] The pressure handle 222 is provided on the housing 12 and can compress the U-shaped blade to complete the shearing action.
[0084] In the above technical solution, the U-shaped blade can be used to shear materials using the pressure handle 222. Specifically, pressure handle mounting grooves are provided on both sides of the housing 12, and there are two pressure handles 222. The corresponding pressure handles 222 are installed in the corresponding pressure handle mounting grooves, and each pressure handle 222 presses the side of the U-shaped blade. In addition, the first end of the pressure handle 222 is installed on the housing 12 through a pressure handle elastic reset structure, so that the pressure handle 222 can be telescopically installed on the housing 12. The elastic reset structure may include a torsion spring and a pressing riveting element; the second end of the pressure handle 222 is set as an arc shape, and the apex of the arc shape and the edge of the pressure handle mounting groove form a limiting constraint to prevent the pressure handle 222 from running out of the housing body range, such as... Figure 9 The area indicated by the black box is shown. It should be noted that this elastic reset element can be a second elastic reset element 223, which is a spring, such as... Figure 6 As shown.
[0085] To facilitate replacement of the U-shaped blade, the U-shaped blade and the housing mounting cavity 121 are detachably installed. Specifically, the housing 12 is provided with a bolt mounting slot, through which a bolt is passed to detachably install the bottom connection of the U-shaped blade into the housing 12. Furthermore, to restrict the position of the U-shaped blade, such as... Figure 7 and Figure 8 As shown, the second blade body may further include: a plug 13, which is made of an elastically deformable material; wherein, the elastically deformable material may include one or more of the following: elastic polymer material, elastic composite material, elastic rubber material, and elastic plastic material.
[0086] like Figure 8As shown, the inner wall of the second end opening 122 is provided with a limiting protrusion 1221, the plug 13 is constructed as a through structure, and the outer wall of the plug 13 matches the shape of the inner wall of the second end opening 122. The outer wall of the plug 13 is provided with a limiting groove 131 that engages with the limiting protrusion 1221. The limiting groove 131 may be a toothed structure.
[0087] like Figure 8 As shown, the second end opening 122 is also provided with a through hole end 1222 that extends radially through it, and the through hole end 1222 and the limiting protrusion 1221 are arranged adjacent to each other.
[0088] The maximum dimension of the inner wall of the plug 13 is smaller than the maximum dimension of the U-shaped blade. The part with the maximum dimension of the U-shaped blade is located inside the housing mounting cavity 121, and the shearing end of the U-shaped blade extends out of the plug 13.
[0089] In this technical solution, a plug 13 is installed inside the second end opening 122 to prevent the U-shaped blade from becoming misaligned. If the U-shaped blade needs to be replaced, a force is applied to the plug 13 through the through hole end 1222 to decouple the limiting groove 131 and the limiting protrusion 1221 on the plug 13. Then, the plug 13 is removed from the second end opening 122, and the U-shaped blade is removed from the second end opening 122 and replaced.
[0090] Based on the inventive concept of this technical solution, the housing 12 is also constructed with a housing module cavity 123, such as... Figure 7 As shown, the housing module cavity 123 is a module mounting cavity for mounting the radio frequency identification module 30. Additionally, a second connecting component 124 is provided at the tail of the housing 12. This second connecting component 124 is a chain connection part, which is a lifting ring structure, such as... Figure 7 As shown. In addition, a second locking hole is provided on the housing 12.
[0091] In one technical solution, the scissors can be yarn shears.
[0092] In order to manage each pair of scissors, a scissors locking box was also invented, such as... Figure 10 and Figure 11 As shown, the scissors locking box may include: a box body 40 and a locking component 50. The locking component 50 is disposed inside the box body 40 and is used to lock and release the scissors.
[0093] Based on the inventive concept of this solution, such as Figure 12 As shown, the locking assembly 50 may include a spring clip 51 and an electromagnetic lock 52 disposed within the housing 40.
[0094] The spring clip 51 may include two symmetrically arranged spring clips, with a clamping space between the two spring clips, the clamping space being used to clamp the scissors.
[0095] The locking end of the electromagnetic lock 52 can engage with the locking hole of the scissors to lock and release the scissors. The locking assembly 50 may further include an electromagnetic detection module 53, used to detect whether the blade of the scissors is missing, preventing unauthorized removal or removal by unauthorized personnel. Figure 12 As shown.
[0096] Based on the above technical solution, in order to automatically control the operation of the electromagnetic lock 52, the locking component may further include: a control unit 60; the control unit 60 may include: an identification module and a control module.
[0097] The identification module installed in the housing 40 is used to collect and compare identification information and send the comparison result to the control module; the control module controls the operating status of the electromagnetic lock 52 according to the comparison result, such as... Figure 12 As shown. During use, the identity recognition module can identify the user's identity information, and the control module controls the unlocking of the electromagnetic lock 52 based on the comparison result. If the collected and compared identity information does not match, the electromagnetic lock 52 will not be unlocked; if the collected and compared identity information matches, the electromagnetic lock 52 will be unlocked, allowing the scissors to be taken out from the box 40.
[0098] Based on the above-described inventive concept, the identity recognition module may include: a fingerprint recognition module 61 and a card sensing coil 62. The fingerprint recognition module 61 is used to identify and compare the user's fingerprint, and the card sensing coil 62 is used to identify and compare the user's identity card. Additionally, the control module may be an STM control module (i.e., a microcontroller control module), and the card sensing coil 62 may be an RFID read / write coil (i.e., a radio frequency identification read / write coil).
[0099] In the above technical solution, the housing 40 also contains a battery 70 that powers the various components; this battery 70 can be a lithium battery. Furthermore, the housing 40, locking assembly 50, control unit 60, and battery 70 can constitute an STM32 control system (i.e., a microcontroller control system) to achieve warehouse management of the scissors' entry and exit.
[0100] In the above context, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Therefore, a feature defined as "first" or "second" may explicitly or implicitly include one or more of that feature.
[0101] In the description of the embodiments of this application, unless otherwise stated, " / " means "or". For example, A / B can mean A or B. "And / or" in this article is merely a description of the relationship between related objects, indicating that there can be three relationships. For example, A and / or B can mean: A exists alone, A and B exist simultaneously, and B exists alone.
[0102] It should be noted that, for ease of description, only the parts relevant to the application are shown in the accompanying drawings. Unless otherwise specified, the embodiments and features described in this application can be combined with each other.
[0103] The above description is merely a preferred embodiment of this application and an explanation of the technical principles employed, and is not intended to limit this application. Various modifications and variations can be made to this application by those skilled in the art. The scope of this application is not limited to technical solutions formed by specific combinations of the above-described technical features, but should also cover other technical solutions formed by arbitrary combinations of the above-described technical features or their equivalents without departing from the above-described application concept. For example, technical solutions formed by substituting the above features with (but not limited to) technical features with similar functions disclosed in this application.
Claims
1. A pair of scissors, characterized in that, The scissors include: a blade body (10) and a blade assembly (20); The blade body (10) is configured with a mounting cavity and an end opening, the mounting cavity extending along a first direction and communicating with the end opening; The blade assembly (20) includes: a blade component and an elastic reset member, the elastic reset member and the blade component being arranged in the mounting cavity along the first direction, and the shearing end of the blade component extending out of the end opening, the shearing end of the blade component being used for shearing materials; The elastic reset member and the blade component are connected at their connecting ends so that the blade component can be compressed under force.
2. The scissors as described in claim 1, characterized in that, The first direction is the length direction of the blade body (10).
3. The scissors as described in claim 1, characterized in that, The elastic reset element is a spring.
4. The scissors as described in claim 1, characterized in that, The scissors also include: a radio frequency identification module (30); The blade body (10) is also constructed with a module mounting cavity, and the radio frequency identification module (30) is installed in the module mounting cavity to realize the positioning and tracking of the blade body (10).
5. The scissors as described in claim 1, characterized in that, The blade body (10) has a chain connection part at one end away from the end opening, and the chain connection part is used to connect with a chain.
6. The scissors as described in any one of claims 1-5, characterized in that, The blade body (10) is a first blade body; the first blade body includes: a first sub-blade body (11), the first sub-blade body (11) is constructed with a mounting groove (111) and a first end opening (112); the mounting groove (111) extends along the first direction and communicates with the first end opening (112); the number of the first sub-blade bodies (11) is two; after the two first sub-blade bodies (11) with mounting grooves (111) are fitted together, the corresponding mounting grooves (111) form the mounting cavity.
7. The scissors as described in claim 6, characterized in that, The blade component is a first blade assembly (21), and the number of first blade assemblies (21) is two; The elastic reset member and the blade component of the corresponding first blade assembly (21) are arranged in the mounting groove (111) along the first direction, and the shearing end of the blade component extends out of the first end opening (112). The first sub-blade body (11) after being fitted together is assembled via a pivot (113) so that the two blade components can perform cutting operations.
8. The scissors as described in claim 7, characterized in that, The blade component is a first blade component; the first blade component includes: a first blade support (212) and a first blade (213); The first blade (213) is mounted on the first blade holder (212), and the first blade holder (212) is connected to the elastic reset member.
9. The scissors as described in any one of claims 1-5, characterized in that, The blade body (10) is a second blade body; the second blade body includes: a housing (12); the housing (12) is configured to have a housing mounting cavity (121) and a second end opening (122); the mounting cavity is the housing mounting cavity (121); The elastic reset member and the blade component are arranged in the housing mounting cavity (121) along the first direction, and the shearing end of the blade component extends out of the second end opening (122).
10. The scissors as described in claim 9, characterized in that, The blade component is a second blade assembly (22); The blade component of the second blade assembly (22) includes: a second blade (221) and a pressure shank (222); the second blade (221) is configured as a U-shaped blade; The pressure handle (222) is disposed on the housing (12) and can compress the U-shaped blade to complete the shearing action.
11. The scissors as claimed in claim 10, characterized in that, The second blade body also includes: a plug (13), the plug (13) being made of an elastically deformable material; The inner wall of the second end opening (122) is provided with a limiting protrusion (1221), the plug (13) is constructed as a through structure, and the outer wall of the plug (13) matches the shape of the inner wall of the second end opening (122), and the outer wall of the plug (13) is provided with a limiting groove (131) that engages with the limiting protrusion (1221). The second end opening (122) is also provided with a through hole end (1222) that extends radially through it, the through hole end (1222) and the limiting protrusion (1221) are arranged adjacent to each other; wherein, the maximum size of the inner wall of the plug (13) is smaller than the maximum size of the U-shaped blade, the part of the maximum size of the U-shaped blade is located in the housing mounting cavity (121), and the shearing end of the U-shaped blade extends out of the plug (13).
12. A scissor-locking box, characterized in that, The scissor locking box includes a box body (40) and a locking component (50), wherein the locking component (50) is disposed within the box body (40) and is used to lock and release the scissors as described in any one of claims 1-11.
13. The scissor locking box as described in claim 12, characterized in that, The locking assembly (50) includes a spring clip (51) and an electromagnetic lock (52) disposed within the housing (40). The spring clip (51) includes: two spring clips arranged symmetrically, with a clamping space between the two spring clips, the clamping space being used to clamp the scissors; The locking end of the electromagnetic lock (52) can be engaged in the locking hole of the scissors.
14. The scissor locking box as described in claim 13, characterized in that, The locking assembly further includes a control unit (60); the control unit (60) includes an identity recognition module and a control module; The identity recognition module installed in the housing (40) is used to collect and compare identity information and send the comparison result to the control module; the control module controls the operation status of the electromagnetic lock (52) according to the comparison result.
15. The scissor locking box as described in claim 14, characterized in that, The identity recognition module includes: a fingerprint recognition module (61) and a card sensing coil (62).