Bread maker pendant

By designing a bread maker hanger, which uses a moving plate, locking plate, and drive unit to simulate the operation of a bread maker and provides visual and auditory feedback, the problem of monotonous operation and insufficient feedback of the hanger is solved, and the fun and interactivity are enhanced.

CN223914675UActive Publication Date: 2026-02-17FUJIAN KAIZHONG ELECTRONICS CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202520343537.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-28
Publication Date
2026-02-17
Estimated Expiration
2035-02-28

AI Technical Summary

Technical Problem

Existing pendants have a simple operation method, basic functions, and lack intuitive feedback, failing to meet users' needs for fun and interactivity, and lacking innovation in design.

Method used

Design a bread maker hanger, which includes a movable plate that can move up and down, a locking plate that can move left and right, and a drive unit. The pop-out part is activated by the cooperation of a spring and a locking hook, and a buzzer provides sound feedback to simulate the operation of a bread maker.

Benefits of technology

It enhances user enjoyment and interactivity, provides intuitive visual and auditory feedback, improves product durability and reliability, and has a unique, simple, and beautiful appearance, making it suitable for use as a decoration and toy.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223914675U_ABST
    Figure CN223914675U_ABST
Patent Text Reader

Abstract

The utility model provides a bread maker pendant which comprises a shell formed by connecting a front shell and a rear shell, and key components such as a moving plate, a locking plate and a driving part are arranged in the shell. The movable plate is matched with the first spring and connected with the pop-up portion, the pop-up portion corresponds to an opening in the upper side of the shell and is initially locked by the lock plate, the lock plate is provided with elastic force through the second spring and unlocked through the driving portion, the driving portion can move up and down and is connected with the handle, and operation is convenient and fast. An electronic assembly composed of a circuit board, a battery, a buzzer and a switch is further arranged in the shell, the driving part touches and presses the switch to control the buzzer to produce sound, and interactivity is enhanced. Besides, special connecting structures are adopted among the moving plate, the pop-up part and the shell, stable operation is guaranteed, a detachable decoration panel is arranged on the front side of the shell, and a hanging hole is formed in the front side of the shell. The ornament integrates interestingness, decoration and practicability, brings unique experience to a user, is suitable for ornament hanging of backpacks, key rings and the like, and has great market popularization value.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The utility model relates to a toy, decorative pendant technical field, concretely relates to a bread machine pendant. BACKGROUND

[0002] As a common ornament, the pendant is often hung on the backpack, key ring and other articles, and has the functions of decoration and practicality. With the improvement of people's demand for personalization and interest, the function of the pendant is no longer limited to simple decoration, and gradually integrates elements such as light emission and sound emission. Some pendants also have simple operation and play functions to enhance the interactivity with the user.

[0003] In the prior art, some pendants are provided with simple mechanical structures, such as rotatable parts and pressable buttons, to provide operation experience for users. However, the operation mode of these traditional pendants is relatively single, and the function is relatively simple, which is difficult to attract the attention of users for a long time, and cannot fully meet the pursuit of users for interest and interactivity. In addition, the existing pendants also have defects in operation feedback. Users often cannot obtain intuitive and rich feedback during operation, resulting in unsatisfactory use experience. At the same time, the existing pendants lack innovation in design, and fail to fully combine modern technology and user demand, leaving a large space for improvement in function expansion and user experience optimization.

[0004] In summary, how to design a pendant with good operation feedback, which can fully meet the user's interest and interactivity demand, and has innovation, has become a problem to be solved in the current product design field. SUMMARY

[0005] In view of the problems pointed out in the background art, the utility model provides a bread machine pendant to solve the above technical problems.

[0006] The technical scheme of the utility model is as follows:

[0007] A bread machine pendant comprises a shell,

[0008] A movable plate that can move up and down and a spring one that exerts upward elastic force on the movable plate are arranged in the shell.

[0009] The upper side of the movable plate is connected with a pop-up part.

[0010] The upper side of the shell is provided with an opening through which the pop-up part can pop out of the shell.

[0011] A lock plate that can move left and right and a spring two that exerts rightward elastic force on the lock plate are arranged in the shell.

[0012] The lock plate is provided with a lock hole penetrating through the upper and lower sides thereof, the lower side of the moving plate is provided with a lock post extending downward, the lock post is provided with a lock hook protruding leftward, the lock post extends into the lock hole and the lock hook hooks the lower side of the lock plate to prevent the moving plate from moving upward; when the lock plate moves leftward, the lock hook enters the lock hole and the lock plate can move upward;

[0013] The shell is further provided with a driving part for driving the lock plate to move leftward.

[0014] The utility model discloses further provide for, driving part can move up and down, be provided with spring three of the driving part to the shell to the upward elastic force, the driving part moves downward can push the lock plate and move leftward, the handle is connected on the driving part, the shell is provided with the slot that the handle extends, and the slot extends setting along the moving direction of the driving part.

[0015] The utility model discloses further provide for, the right side of lock plate is provided with the push part, and the upper side of push part is inclined plane and with the lower side of driving part and is in contact.

[0016] The utility model discloses further provide for, be provided with circuit board, battery, bee calling organ, switch in the shell, and battery, bee calling organ, switch are connected with circuit board respectively, and the switch is located the lower side of driving part, and when the driving part moves downward, can touch pressure switch, and the switch controls bee calling organ and sends the sound.

[0017] The utility model discloses further provide for, the pop -out part is equipped with two, and two pop -out parts are arranged in front and back interval.

[0018] The utility model discloses further provide for, be provided with the insertion slot on the upper side of moving plate, and the lower end of pop -out part is inserted in the insertion slot, and the lateral wall of insertion slot is provided with the protruding clamping part, and is provided with the clamping groove of corresponding connection with clamping part on moving plate.

[0019] The utility model discloses further provide for, the shell is connected by front shell and rear shell, and the upper lateral wall of front shell and rear shell is provided with opening respectively, and the opening on the front shell penetrates the rear side of front shell, and the opening on the rear shell penetrates the front side of rear shell, and is equipped with spacing strip between two openings, and two pop -out parts are located respectively on the front and back two sides of spacing strip, and the both ends of spacing strip are provided with connecting ring respectively, and the connecting post that extends rearward is set up on the front shell, and the connecting post passes through the connecting ring, and is provided with screw hole on the connecting post, and is provided with connecting hole corresponding with connecting post on the rear shell.

[0020] The utility model discloses further provide for, be provided with the sliding groove or slide rail structure of sliding cooperation with moving plate, lock plate, driving part respectively in the shell.

[0021] The utility model discloses further provide for, the front side of shell is connected with the decorative panel.

[0022] The shell is provided with a hanging hole.

[0023] By adopting the technical scheme, the utility model discloses the beneficial effects are:

[0024] First, from the interest and the interaction angle, it breaks the traditional pendant only has the limitation of the decoration function or simple interaction function. User can see the wonderful process similar to the real bread toaster work through the operation drive part, that is, the ejection part ejects from the shell opening, just like the freshly baked bread, greatly enhances the playing fun, satisfies people's desire to operate the novel small object, whether in the leisure time alone fiddle with, or with friends share display, can easily create a relaxed and happy atmosphere.

[0025] Secondly, in the structural design aspect, the cooperation between each component is ingenious. Spring one and spring two are as the power core, and the storage and release of elastic potential energy are utilized skillfully, so that the accurate motion control of the moving plate and the lock plate is realized. The combination of the lock column, the lock hole and the lock hook builds a stable and reliable locking and unlocking mechanism, ensures that the device is stable when not triggered, and the action is smooth after triggering, greatly improves the durability and reliability of the product, and reduces the inconvenience caused by loose structure or failure.

[0026] Thirdly, from the fusion of appearance and practicability, the shell simulates the shape of the bread toaster, which is not only a unique visual identifier, but also has a certain collection value. The hidden design of the internal components such as the ejection part ensures the realization of the function while maintaining the overall simplicity and beauty, making it convenient to carry. Whether it is hung on a backpack or a key ring as a daily decoration, or placed on a desktop occasionally, it will not look out of place, and it will greatly improve the user's experience of the pendant product. BRIEF DESCRIPTION OF DRAWINGS

[0027] In order to more clearly illustrate the technical scheme of the embodiments of the utility model or the prior art, the following will briefly introduce the drawings needed to be used in the embodiment or the prior art description. Obviously, the drawings in the following description are only some embodiments of the utility model, and those skilled in the art can obtain other drawings according to these drawings without creating creative labor.

[0028] Figure 1 It is the structural schematic diagram of the utility model.

[0029] Figure 2 It is the structural schematic diagram of the utility model decorative panel decomposition.

[0030] Figure 3 It is the structural schematic diagram of the utility model front shell decomposition.

[0031] Figure 4 It is the exploded structural schematic view of the rear shell body of the utility model.

[0032] Figure 5 It is the structural schematic view of the moving plate, the lock plate and the driving part of the utility model.

[0033] Figure 6 It is the internal structural schematic view of the utility model.

[0034] Figure 7 It is the structural schematic view of the two openings of the utility model.

[0035] Figure 8 It is the structural schematic view of the slot and the handle of the utility model.

[0036] Figure 9 It is the structural schematic view of the moving plate and the pop-up part of the utility model.

[0037] Figure 10 It is the sectional view of the moving plate and the pop-up part of the utility model.

[0038] Figure 11 It is the exploded schematic view of the moving plate, the lock plate and the driving part of the utility model. Figure 1 .

[0039] Figure 12 It is the exploded schematic view of the moving plate, the lock plate and the driving part of the utility model. Figure 2 .

[0040] Explanation of reference numerals in the drawings: moving plate 1, spring one 2, pop-up part 3, opening 4, lock plate 5, spring two 6, lock hole 7, lock column 8, lock hook 9, driving part 10, spring three 11, handle 12, slot 13, pushing part 14, circuit board 15, battery 16, buzzer 17, switch 18, plug-in slot 19, clamping part 20, clamping slot 21, front shell body 22, rear shell body 23, spacing strip 24, connecting ring 25, connecting column 26, connecting hole 27, decorative panel 28, hanging hole 29. DETAILED DESCRIPTION

[0041] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the protection scope of the utility model.

[0042] The utility model is described as follows: Figures 1-12

[0043] ​Embodiment: The present application relates to a bread machine pendant, the core structure includes a shell, which can be compared to the common toaster from the appearance and function simulation. In the shell, a plurality of key components are carefully laid out, which cooperate with each other to realize unique operation functions, aiming to bring users a novel and interesting experience, and meet people's demand for small creative accessories.

[0044] The bread machine pendant includes a shell, which is equivalent to a toaster.

[0045] A movable plate 1 and a spring 2 that exerts an upward elastic force on the movable plate 1 are provided in the shell. The lower end of the spring 2 abuts against the shell, and the upper end of the spring 2 abuts against the movable plate 1. The movable plate 1 is provided with a cylindrical structure connected to the spring 2. The upward and downward movement of the movable plate 1 is realized by relying on the spring 2 associated therewith. In the initial state, due to external constraints, the movable plate 1 is located at the lowermost position in the shell, and at this time the spring 2 is in a compressed state, storing a certain elastic potential energy, which provides a power source for subsequent actions.

[0046] The spring 2 serves as an elastic element that provides power for the movable plate 1. When the lock plate 5 is unlocked, the spring 2 rapidly converts the stored elastic potential energy into kinetic energy to drive the movable plate 1 to move upward, driving the entire ejection mechanism to start.

[0047] The upper side of the movable plate 1 is connected to an ejection part 3, which is vertically arranged. The ejection part 3 is provided with two, which are arranged in front and back. The ejection part 3 is equivalent to two pieces of bread. The ejection part 3 is functionally analogous to the bread pieces ejected after being baked by a daily toaster. When the movable plate 1 moves upward under the drive of the spring 2, the ejection part 3 moves synchronously with the upward movement of the movable plate 1, until it is ejected from the opening 4 specially provided on the upper side of the shell, realizing the effect of bread ejection after the completion of baking by a real toaster, and bringing users an intuitive and interesting visual feedback.

[0048] The upper side of the shell is provided with openings 4 corresponding to the two ejection parts 3 respectively. When the movable plate 1 moves upward, the ejection part 3 is ejected from the opening 4. The ejection part 3 is equivalent to a block of bread, simulating the ejection of two pieces of bread after the bread is baked by a toaster.

[0049] The opening 4 is provided on the upper side of the shell, and its position and number are accurately corresponding to the ejection part 3. It provides a necessary space channel for the ejection action of the ejection part 3, so that the ejection part 3 can smoothly break through the limitation of the shell under the drive of the movable plate 1, showing the dynamic effect of "bread ejection". At the same time, the size and shape of the opening 4 are designed and optimized, which can ensure the smooth passing of the ejection part 3, and will not affect the overall structural stability and appearance integrity of the shell.

[0050] The shell is provided with a lock plate 5 which can move left and right and a spring 6 which applies rightward elastic force to the lock plate 5;

[0051] The lock plate 5 is provided with a lock hole 7 which penetrates through the upper and lower sides of the lock plate 5, and the lower side of the moving plate 1 is provided with a lock column 8 which extends downward, and the lock column 8 is provided with a lock hook 9 which protrudes leftward, and the lock column 8 extends into the lock hole 7 and the lock hook 9 hooks the lower side of the lock plate 5 to prevent the moving plate 1 from moving upward; when the lock plate 5 moves leftward, the lock hook 9 enters the lock hole 7, and the lock plate 5 can move upward.

[0052] The lock plate 5 is one of the key components which control whether the moving plate 1 can move freely, and it can move in the left and right directions within the shell. The power source of its movement is the spring 6 which applies rightward elastic force to the lock plate 5, so that the lock plate 5 has a tendency to move to the right side and stay in a specific position in the normal state. The lock plate 5 is provided with a lock hole 7 which penetrates through the upper and lower sides of the lock plate 5, and this lock hole 7 plays a core role in locking and unlocking in cooperation with the moving plate 1.

[0053] The spring 6 mainly provides rightward restoring force for the lock plate 5. In the initial state, the spring 6 is in a natural extension or slightly compressed state, and the lock plate 5 is pushed to the rightmost position inside the shell, which ensures the stability of the locking structure between the lock plate 5 and the moving plate 1. When the lock plate 5 is driven to move leftward by external force, the spring 6 is compressed and stores elastic potential energy. Once the external force disappears, the spring 6 immediately releases energy to drive the lock plate 5 to reset to the right, thereby re-establishing the locking state of the moving plate 1 or returning to the initial preparation state.

[0054] The lock hole 7 penetrates through the upper and lower sides of the lock plate 5, and the width of the lock hole 7 in the left and right directions is greater than the length of the lock column 8. When the lock plate 5 is in the position of locking the moving plate 1, the lock column 8 extends into the lock hole 7, and the lock hook 9 on the lock column 8 hooks the lower side of the lock plate 5, thereby effectively preventing the moving plate 1 from moving upward under the elastic force of the spring 1.

[0055] The lock column 8 is a structural component which extends downward from the moving plate 1. The key part of the lock column 8 is that the lower end of the lock column 8 is provided with a lock hook 9 which protrudes leftward, and the lock hook 9 realizes precise locking and unlocking function in interaction with the lock plate 5. When in the locked state, the lock hook 9 tightly hooks the lower side of the lock plate 5 and bears the upward thrust of the spring 1; when the unlocking condition is met, the lock hook 9 can smoothly move in the lock hole 7 and cooperate with the entire ejection mechanism.

[0056] The lower side of the locking hook 9, which is in contact with the locking plate 5, is designed as an inclined surface. This inclined surface design has an important mechanical guiding function. When the user manually presses the ejecting part 3 downward, the moving plate 1 is driven to move downward, and the lower end of the locking hook 9 is in contact with the left side wall of the locking hole 7. Due to the existence of the inclined surface, as the moving plate 1 moves downward, the locking hook 9 will be subjected to a leftward component force, pushing the locking plate 5 to move leftward until the locking hook 9 passes through the locking hole 7, realizing the resetting operation after unlocking and preparing for the next ejecting action.

[0057] The housing is also provided with a driving part 10 for driving the locking plate 5 to move leftward. The driving part 10 is the artificial operation trigger point for starting the entire ejecting mechanism. The user can overcome the elastic force of the spring 6 by performing specific operations such as pressing or dialing (the specific operation mode can be optimized according to product design) on the driving part 10, so as to make the locking plate 5 move leftward. This action breaks the initial locking state, so that the spring 2 can release energy to push the moving plate 1 to move upward, thereby causing the ejecting part 3 to be ejected from the opening 4, and bringing an interesting playing experience to the user.

[0058] Workflow details

[0059] Initial state:

[0060] Before any operation is performed, the spring 6 pushes the locking plate 5 to the rightmost position inside the housing, at this time the locking column 8 extends into the locking hole 7, and the locking hook 9 tightly hooks the lower side of the locking plate 5, effectively limiting the movement of the moving plate 1. Under the dual action of the elastic force of the spring 2 and the locking of the locking plate 5, the moving plate 1 is at the lowermost position in the housing, and the spring 2 is in a compressed and stored state, and the entire device is in a stable state ready to be triggered.

[0061] Triggering the ejecting process:

[0062] When the user operates the driving part 10, an external force acts on the locking plate 5 to overcome the elastic force of the spring 6, so that the locking plate 5 moves leftward and the spring 6 is compressed. With the leftward movement of the locking plate 5, the locking hook 9 enters the locking hole 7, and the locking restriction on the moving plate 1 is released. At this time, the elastic potential energy stored in the spring 2 is instantaneously released and converted into kinetic energy to push the moving plate 1 to move upward. The moving plate 1 quickly moves upward, driving the ejecting part 3 to rise synchronously, and finally the ejecting part 3 is ejected from the opening 4 on the upper side of the housing, simulating the lively effect of the bread being ejected after being baked by the toaster.

[0063] Resetting process:

[0064] After the ejection action is completed, spring 6, which has been compressed before, stores elastic potential energy, and then releases the energy to push the lock plate 5 to move right to reset. If the device is to be restored to the initial state, the user needs to manually press the ejector 3 downward, which drives the moving plate 1 to move downward under the pressure. In this process, the lower end of the lock hook 9 is in contact with the left wall of the lock hole 7. Due to the design of the lower inclined surface of the lock hook 9, as the moving plate 1 moves downward, the lock hook 9 is subjected to a leftward force, pushing the lock plate 5 to move left, until the lock hook 9 passes through the lock hole 7, and the lock plate 5 is reset to the rightmost side under the action of spring 6, and the lock hook 9 re-hooks the lower side of the lock plate 5, and the entire device returns to the initial locked state, completing a complete operation cycle.

[0065] The driving part 10 can move up and down, and a spring 11 is arranged in the shell to apply an upward elastic force to the driving part 10. The driving part 10 moves downward to push the lock plate 5 to move left. The driving part 10 is connected with a handle 12, and the shell is provided with a slot 13 for the handle 12 to extend out. The slot 13 is arranged along the moving direction of the driving part 10. The right side of the lock plate 5 is provided with a pushing part 14, and the upper side of the pushing part 14 is an inclined surface and is in contact with the lower side of the driving part 10.

[0066] The driving part 10 is the key control part for starting the entire bread machine pendant ejection mechanism, and is designed to move linearly in the shell in the up-down direction. Its up-down moving stroke is restricted by the internal space of the shell and other parts working together. The spring 11 is the core elastic element for the automatic reset function of the driving part 10. When the driving part 10 moves downward under the external force, the spring 11 is compressed, and the elastic potential energy is gradually accumulated. Once the external force disappears, the spring 11 quickly releases the energy to push the driving part 10 to move upward to reset, preparing for the next operation. The handle 12 is directly connected with the driving part 10, and is the interactive medium between the user and the driving part 10. It extends out of the slot 13 in the shell, which is convenient for the user to hold and operate. The slot 13 is arranged on the shell, and its shape, size and extension direction are adapted to the moving track of the driving part 10 and the shape of the handle 12. It is arranged along the moving direction of the driving part 10 to provide a necessary space channel for the extension and movement of the handle 12.

[0067] The pushing part 14 is located at the right side of the lock plate 5, and is the key structure for driving the lock plate 5 to move left. The upper side of the pushing part 14 is designed as an inclined surface, and the angle of the inclined surface is matched with the shape of the lower side of the driving part 10. When the user operates the driving part 10 to move down through the handle 12, the lower side of the driving part 10 will slide along the inclined surface of the pushing part 14. Due to the mechanical properties of the inclined surface, a leftward component force will be generated, which will act on the lock plate 5 to overcome the rightward elastic force of the spring 6 applied to the lock plate 5, so as to push the lock plate 5 to move left. The roughness of the inclined surface of the pushing part 14 is treated to ensure that the driving part 10 can slide smoothly, and also has a certain friction to prevent slipping out of control during operation, and to ensure that the process of moving the lock plate 5 left is stable and controllable.

[0068] In the initial state, the driving part 10 is at a relatively high position under the elastic force of the spring 11, at this time the pushing part 14 and the lower side of the driving part 10 maintain a certain initial contact state, and the lock plate 5 is at the rightmost position under the action of the spring 6. When the user holds the handle 12 and forces it down, the driving part 10 starts to move down against the elastic force of the spring 11, and the lower side slides along the inclined surface of the pushing part 14, gradually increasing the leftward pushing force on the lock plate 5. With the continuous downward movement of the driving part 10, the lock plate 5 gradually moves left under the action of the pushing force, and the spring 6 is compressed. When the lock plate 5 moves left to a certain extent, the lock hook 9 enters the lock hole 7, and the locking of the moving plate 1 is released, and the subsequent moving plate 1 moves up under the action of the spring 2, and the ejecting part 3 is ejected from the opening 4, completing the entire triggering action. After the operation is completed, the user releases the handle 12, and the driving part 10 moves up to reset under the action of the spring 11, and at the same time the lock plate 5 also moves right to reset under the action of the spring 6, preparing for the next operation.

[0069] The shell is provided with a circuit board 15, a battery 16, a buzzer 17 and a switch 18. The battery 16, the buzzer 17 and the switch 18 are connected with the circuit board 15 respectively. The switch 18 is located at the lower side of the driving part 10, and can be pressed when the driving part 10 moves down. The switch 18 controls the buzzer 17 to emit sound.

[0070] When the user holds the handle 12 and pushes the driving part 10 downward, the driving part 10 moves downward along the predetermined track. Since the switch 18 is located at the lower side of the driving part 10, as the driving part 10 moves downward, the bottom of the driving part 10 will gradually press against the switch 18. At the moment of pressing, the internal contact of the switch 18 is closed (the normally open switch), the circuit is turned on, and the signal is immediately transmitted to the circuit board 15. After the circuit board 15 receives the signal, according to the preset control logic, the driving instruction is quickly sent to the buzzer 17. After the buzzer 17 receives the instruction, the internal elements start to work, generate vibration and emit a sound of a specific frequency and tone. This sound is synchronized or slightly ahead of the action of the ejecting part 3 being ejected from the opening 4, together creating a more rich and three-dimensional operation experience for the user. For example, in the context of simulating a toast maker, the buzzer 17 emits a "ding" sound similar to the completion of toasting, making the user feel as if he is actually operating a real toast maker, greatly enhancing the fun and interactivity of the product. After the operation is completed, when the user releases the handle 12, the driving part 10 moves upward and resets under the action of the spring three 11, the switch 18 is out of the pressing state, the circuit is disconnected, the buzzer 17 stops emitting sound, and the whole system returns to the initial standby state, waiting for the next operation trigger.

[0071] The upper side of the moving plate 1 is provided with a plug-in slot 19, the lower end of the ejecting part 3 is plugged into the plug-in slot 19, the side wall of the plug-in slot 19 is provided with a protruding clamping part 20, and the moving plate 1 is provided with a clamping groove 21 corresponding to the clamping part 20. During assembly, first, the lower end of the ejecting part 3 is aligned with the plug-in slot 19 on the moving plate 1, and the ejecting part 3 is slowly inserted by relying on the guiding action of the inner wall of the plug-in slot 19. As the ejecting part 3 is inserted deeper, when the clamping part 20 contacts the corresponding part of the ejecting part 3, since the clamping part 20 is protruding, it will generate a certain resistance during the insertion process. At this time, a little external force is applied to make the ejecting part 3 continue to advance until the clamping part 20 is smoothly embedded in the clamping groove 21, completing the clamping locking. In this way, the ejecting part 3 is tightly connected with the moving plate 1 together, becoming a whole, providing a solid foundation for the subsequent ejection action.

[0072] The shell is connected by a front shell 22 and a rear shell 23, the upper side walls of the front shell 22 and the rear shell 23 are respectively provided with an opening 4, the opening 4 on the front shell 22 penetrates the rear side of the front shell 22, the opening 4 on the rear shell 23 penetrates the front side of the rear shell 23, a spacing strip 24 is arranged between the two openings 4, the two ejecting parts 3 are respectively located on the front and rear sides of the spacing strip 24, the two ends of the spacing strip 24 are respectively provided with a connecting ring 25, the front shell 22 is provided with a connecting column 26 extending rearward, the connecting column 26 passes through the connecting ring 25, the connecting column 26 is provided with a threaded hole, and the rear shell 23 is provided with a connecting hole 27 corresponding to the connecting column 26.

[0073] In the above technical solution, the opening 4 on the front shell 22 penetrates the rear side of the front shell 22, and the opening 4 on the rear shell 23 penetrates the front side of the rear shell 23. This technical solution reduces the mold cost of the shell during injection molding and simplifies the demolding process. When all the hole and groove structures on the shell have their opening directions in the front-rear direction, only the front-rear mold needs to be demolded. If the side of the shell also has independent hole and groove structures, core pulling demolding needs to be performed in addition to front-rear mold demolding. This makes the overall structure of the mold complex, the manufacturing cost high, and the demolding process complex.

[0074] The shell is provided with a sliding groove or sliding rail structure that respectively slides with the moving plate 1, the locking plate 5, and the driving part 10.

[0075] The sliding groove or sliding rail structure designed in the shell respectively provides precise and stable guidance for the movement of the moving plate 1, the locking plate 5, and the driving part 10. For the moving plate 1, the sliding groove or sliding rail extends along the up-down movement direction of the moving plate 1, ensuring that the moving plate 1 can only strictly vertically lift under the driving of the spring 2, avoiding deviation or shaking, thereby ensuring that the ejection part 3 can accurately eject from the opening 4. The inner wall of the sliding groove is smooth and has appropriate friction, which can reduce the resistance when the moving plate 1 moves, making the action smooth, and can also keep the moving plate 1 stable and stationary in the non-operation state.

[0076] The sliding groove or sliding rail corresponding to the locking plate 5 is arranged along the left-right direction, guiding the locking plate 5 to accurately translate left and right under the elastic force of the spring 6 and when being pushed by the driving part 10. The size tolerance of the sliding rail is controlled within a very small range, so that the locking plate 5 closely fits the sliding rail, preventing the locking plate 5 from being stuck due to looseness, affecting the reliability of the unlocking and locking functions.

[0077] The sliding groove or sliding rail of the driving part 10 is also adapted to its up-down movement characteristics, ensuring that when the user operates the handle 12 to make the driving part 10 move up and down, the path is straight and stable, and the push part 14 and the switch 18 are accurately matched, ensuring that each operation can smoothly trigger a series of subsequent actions. These sliding groove or sliding rail structures are mostly made by an integrated molding process with the shell, enhancing the overall structural strength, reducing the number of parts, improving production efficiency and product reliability.

[0078] The front side of the shell is connected with a decorative panel 28. The decorative panel 28 is located on the front side of the shell and is a key element for improving the appearance and personalization of the hanging accessory. It is connected in a detachable manner. The connection part is usually located on the inner side of the panel and is fixed between the shell by means of clamping groove and buckle, magnetic attraction or simple screw, etc.

[0079] The shell is provided with a hanging hole 29. The shape of the hanging hole 29 is commonly circular or elliptical, and the hole diameter is suitable for commonly used hanging accessories such as hooks, key rings, backpack hanging ropes, etc.

[0080] The above merely describes preferred embodiments of the present application and is not intended to limit the present application, and any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application shall be included in the protection scope of the present application.

Claims

1. A bread maker pendant, comprising a housing, characterized in that: a movable plate is arranged in the housing and can move up and down, and a spring one is arranged in the housing and exerts an upward elastic force on the movable plate; a pop-up portion is connected to the upper side of the movable plate; an opening is arranged on the upper side of the housing and can allow the pop-up portion to pop out of the housing; a lock plate is arranged in the housing and can move left and right, and a spring two is arranged in the housing and exerts a rightward elastic force on the lock plate; a lock hole is arranged on the lock plate and penetrates through the upper and lower sides of the lock plate, a lock post is arranged on the lower side of the movable plate and extends downward, a lock hook is arranged on the lock post and protrudes to the left, the lock post extends into the lock hole and the lock hook hooks the lower side of the lock plate to prevent the movable plate from moving upward, when the lock plate moves to the left, the lock hook enters the lock hole, and the lock plate can move upward; a driving portion is further arranged in the housing and can drive the lock plate to move to the left. The driving portion can move up and down, a spring three is arranged in the housing and exerts an upward elastic force on the driving portion, the driving portion moves downward to push the lock plate to move to the left, a handle is connected to the driving portion, and a slot is arranged on the housing and can allow the handle to extend out of the housing, the slot extends along the moving direction of the driving portion. The right side of the lock plate is provided with a pushing portion, the upper side of the pushing portion is a slope and is in abutting contact with the lower side of the driving portion. The housing is provided with a circuit board, a battery, a buzzer and a switch, the battery, the buzzer and the switch are connected with the circuit board, the switch is arranged on the lower side of the driving portion and can be pressed by the driving portion when the driving portion moves downward, and the switch controls the buzzer to emit sound. The pop-up portion is provided with two, and the two pop-up portions are arranged in front of and behind each other. The upper side of the movable plate is provided with an insertion slot, the lower end of the pop-up portion is inserted into the insertion slot, a protruding clamping portion is arranged on the side wall of the insertion slot, and the movable plate is provided with a clamping groove corresponding to the clamping portion. The housing is connected by a front housing and a rear housing, the upper side walls of the front housing and the rear housing are respectively provided with openings, the opening on the front housing penetrates through the rear side of the front housing, the opening on the rear housing penetrates through the front side of the rear housing, a spacing strip is arranged between the two openings, the two pop-up portions are respectively arranged on the front side and the rear side of the spacing strip, the two ends of the spacing strip are respectively provided with connecting rings, a connecting post is arranged on the front housing and extends backward, the connecting post passes through the connecting rings, a threaded hole is arranged on the connecting post, and a connecting hole corresponding to the connecting post is arranged on the rear housing.

2. A breadmaker accessory according to claim 1, characterised in that: The housing is provided with a sliding groove or a sliding rail structure which is in sliding cooperation with the movable plate, the lock plate and the driving portion.

3. A breadmaker accessory according to claim 2, characterised in that: The front side of the housing is connected with a decorative panel.

4. A breadmaker accessory according to claim 2, characterised in that: The housing is provided with a hanging hole.

5. A breadmaker accessory according to claim 2, characterised in that: ​ 6. A breadmaker accessory according to claim 2, characterised in that: ​ 7. A breadmaker accessory according to claim 5, wherein: ​ 8. A breadmaker accessory according to claim 2, characterised in that: ​ 9. A breadmaker accessory according to claim 2, characterised in that: ​ 10. A breadmaker accessory according to claim 2, characterised in that: ​