Disposable oral instrument box
By designing an integrated dental instrument box and dental framework, the problems of limited functionality and complex operation of existing dental treatment boxes have been solved. This design enables stable storage of medications and instruments, convenient access to root canals, and stability of the dental framework, thereby improving treatment accuracy and patient comfort, and enhancing the reliability and trustworthiness of the treatment.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- TIANJIN KANGHONG MEDICAL DEVICE CO
- Filing Date
- 2024-12-30
- Publication Date
- 2026-05-15
AI Technical Summary
Existing dental treatment kits have simple structures and limited functions. They cannot stably store medications and instruments, are difficult to retrieve from root canals, and dental frameworks can easily damage the patient's oral cavity. They are also complex to operate and increase the risk of infection, resulting in poor patient compliance.
A disposable dental instrument kit was designed, comprising a treatment box body, a dental support, and a posterior bifurcated mouth mirror. It is equipped with a medication dispenser, a cotton ball dispenser, a sterilization medication dispenser, a treatment tool dispenser, a clamping hole, and a clamping assembly. The dental support features anti-slip protrusions and a suction structure, while the posterior bifurcated mouth mirror has precise operation capabilities. The integrated design simplifies the operation process.
It enables independent storage of medications and instruments, facilitates root canal retrieval, provides a stable dental framework, reduces operational steps, improves treatment accuracy and patient comfort, and enhances trust.
Smart Images

Figure CN224235551U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of oral treatment technology, and in particular to disposable oral instrument boxes. Background Technology
[0002] Dental instrument cases are devices specifically designed for storing and organizing dental treatment and care tools. They are typically made of high-strength plastic and are characterized by their corrosion resistance, antibacterial properties, and ease of cleaning. They are commonly found in medical environments such as dental clinics, hospitals, and dental practices.
[0003] Current dental treatment kits have a relatively simple overall structure and limited function, making them unsuitable for the stable storage of medications and instruments. Furthermore, when retrieving root canals, the small diameter of the canals and the small gap between them make retrieval difficult.
[0004] Meanwhile, the current dental frameworks have a relatively simple overall function, only providing support, which cannot meet the diverse needs of dental treatment. In addition, most current dental frameworks are made of relatively hard materials, which can easily cause damage to the patient's oral cavity during use. They are also not conducive to fixing the dental framework and are prone to falling out.
[0005] Traditional dental treatment tools typically require multiple steps and various tools to complete the process of taking, mixing, and stirring raw materials. This not only increases the complexity of the operation but may also increase the risk of infection. Because traditional dental treatment processes are relatively complex and it is difficult to guarantee precision, patients may feel uncomfortable during treatment and even develop fear and resistance to the treatment. This, to some extent, affects patients' trust and treatment compliance.
[0006] In light of this, in-depth research into the aforementioned issues led to the creation of this case. Utility Model Content
[0007] The purpose of this invention is to solve the aforementioned problems by designing a disposable dental instrument box. This addresses the shortcomings of existing dental treatment boxes, which have simple overall structures, limited functions, and are unable to stably store medications and instruments. Furthermore, current dental treatment boxes are difficult to use for root canal retrieval due to the small diameter of the root canal and the small distance between the canal and the box. Dental frameworks also have limited functions, providing only support and failing to meet diverse dental treatment needs. Moreover, most current dental frameworks are made of hard materials, which can easily damage the patient's oral cavity during use and are not easy to fix, leading to potential dislodgement. Dental treatment tools typically require multiple steps and tools to complete the process of taking, mixing, and stirring materials, increasing the complexity of the operation and potentially increasing the risk of infection. Because traditional dental treatment processes are complex and lack precision, patients may experience discomfort during treatment, even developing fear and resistance, which affects patient trust and treatment compliance.
[0008] The technical solution of this utility model to achieve the above objectives is: a disposable dental instrument box, including a treatment box body, wherein the treatment box body includes a storage structure, and a dental support and a posterior bifurcated mouth mirror are placed inside the storage structure;
[0009] The storage structure includes: a medicine dispensing tank, four positioning holes, a cotton ball tank, a disinfectant tank, two treatment tool tanks, four clamping holes, a measuring toothed plate, and a clamping assembly;
[0010] The medicine dispensing slot is located at the upper end of one side of the treatment box body. All four positioning holes are located in the medicine dispensing slot. The cotton ball slot is located on one side of the medicine dispensing slot. The disinfectant slot is located on one side of the cotton ball slot. The two treatment tool slots are located at the upper end of the other side of the treatment box body. The four clamping holes are located on both sides of the two treatment tool slots. The clamping assembly is located at the lower end of the treatment box body.
[0011] The clamping assembly includes: a storage slot, several reinforcing ribs, two clamping strips, and several clamping slots;
[0012] The storage slot is located at the lower end of the treatment box body. Several reinforcing ribs are located on the lower wall of the storage slot. Two clamping strips are respectively installed at the center of the lower end and one side of the storage slot. Several clamping slots are respectively opened on the upper wall of the two clamping strips.
[0013] The treatment box body has a packaging edge on the outside, and the two ends of the treatment tool slot are conical.
[0014] Preferably, the dental framework includes a framework body, with anti-slip protrusions installed on both outer walls of the framework body, and an attraction structure installed inside the framework body;
[0015] The suction structure includes: a mounting hole, a rotary joint, two suction flat tubes, and a connecting binding assembly;
[0016] The mounting hole is located at the center of one side wall of the bracket body. One end of the rotary joint is embedded in the mounting hole. One end of each of the two suction flat tubes is embedded in the two side walls of the bracket body and is connected to one end of the rotary joint. The connecting binding wire assembly is installed on the upper and lower walls of the bracket body.
[0017] The connecting wire binding assembly includes: an upper plate, a lower plate, and two wire binding holes;
[0018] The upper plate is located at the upper end of the bracket body, and the lower plate is located at the lower end of the bracket body. Two binding holes are respectively opened on both sides of the lower plate.
[0019] The upper plate and the upper end of the support body have two first deformation holes, and the lower plate and the lower end of the support body have two second deformation holes. One end of the rotary joint is connected to a suction connecting tube, which is a spiral suction tube.
[0020] Preferably, the rear-split mouthpiece includes: a lens holder, a mouthpiece lens, an operating rod, a mouthpiece box, and a mouthpiece collection bag. The mouthpiece lens is mounted on the lens holder, and the lens holder is mounted on the operating rod. The operating rod has a forked opening that divides the operating rod into a pair of dividing rods. One dividing rod is provided with a mud-taking end, and the other dividing rod is provided with a mud-mixing end and a mud-pressing end.
[0021] The operating rod has anti-slip texture and a hand-pressing operation area. The bottom of the mud-taking end of the operating rod has a mud-digging groove, and the bottom of the mud-pressing end has a squeezing ball. The pair of dividing rods are respectively provided with millimeter and centimeter scales. The inside of the bifurcation is provided with a mouth mirror vernier scale. The mouth mirror vernier scale has a front break dotted line. The lens holder, the mouth mirror lens, the operating rod, and the mouth mirror collection bag are placed inside the mouth mirror box.
[0022] The mouth mirror collection bag is provided with a pair of sealing plastic blocks, each sealing plastic block having several L-shaped slots, and the other sealing plastic block having an L-shaped insert block. A sealing rubber ring is provided between the pair of sealing plastic blocks.
[0023] The mouth mirror box is equipped with a medicine placement area and a stirring box. The mud-taking end is rhomboid, the mud-mixing end is pointed, and the mouth mirror vernier scale is provided with mouth mirror vernier graduations.
[0024] Preferably, the storage structure also contains a tool kit, which includes: a treatment towel, a bag, gloves, a three-way suction head, cotton balls, a cap, tweezers, an extension straw, a saliva suction tube, and a probe;
[0025] The treatment towel is placed on one side of the storage slot, and the bag, gloves, three-way suction head, cotton ball and cap are placed on top of the treatment towel. The tweezers, extension straw, saliva suction tube and probe are movably embedded in the clamping slot.
[0026] Preferably, the tweezers are fitted with a head protector.
[0027] Preferably, the probe has breakage grooves machined on both sides of its center.
[0028] Preferably, both ends of the probe are fitted with rubber protective tubes.
[0029] Preferably, one end of the tweezers is provided with a support point.
[0030] Preferably, the clamping hole is a semi-cylindrical clamping hole and is connected to the groove of the treatment tool.
[0031] Preferably, the support body is trapezoidal in shape.
[0032] Beneficial effects
[0033] The treatment box body, dental framework, and posterior bifurcated mouth mirror used in this case, through the storage structure within the treatment box body, including the inclusion of a medication dispenser, cotton ball holder, disinfectant dispenser, treatment instrument holder, and clamping components, allows for the independent storage of medications, disinfectants, and treatment instruments, facilitating retrieval by medical staff. Furthermore, when retrieving root canals from the treatment instrument holder, four clamping holes increase the distance between the root canal and the center of the treatment instrument holder, enabling medical staff to easily retrieve the root canal with forceps. Simultaneously, the clamping components, with several clamping slots, can hold and store instruments used during oral treatment, preventing instruments from falling and causing contamination.
[0034] The dental framework features a trapezoidal framework body. Anti-slip protrusions on the outer side ensure effective contact with the patient's teeth, guaranteeing the framework's stability during installation. Furthermore, the first and second deformation holes allow for deformation of the framework's outer walls when the patient bites, further ensuring optimal contact between the framework and the patient's teeth. A suction structure, utilizing a suction connecting tube, a suction flat tube, and a rotary joint, effectively extracts fluid from the patient's mouth, ensuring patient comfort.
[0035] Meanwhile, the rear-split mouth mirror, through the cooperation of the mud-digging trough, the medicine placement area, and the mixing box, can precisely control the amount of raw materials used, ensuring the same amount for each operation, improving treatment consistency and repeatability; the integrated design simplifies the process of material handling, mixing, and stirring, reducing steps and tools, improving treatment efficiency, and reducing the burden on dentists; the mouth mirror vernier scale, combined with graduations, allows for measurement and positioning, ensuring precise and thorough treatment; the integrated design facilitates cleaning and maintenance, extends service life, simplifies procedures, and reduces discomfort through precise treatment, enhancing patient trust.
[0036] Meanwhile, the tweezers have an internal support point on one end and a protective sleeve on the outside, which can effectively prevent the tweezer tips from touching each other and protect the tweezer tips from deformation; and the break-off grooves on both sides of the probe center allow the probe to be broken and destroyed after use; and the addition of a three-way suction head allows for simultaneous suction of the teeth from the inside and outside, reducing operation steps and ensuring suction effect. Attached Figure Description
[0037] Figure 1 This is a top view of the treatment box body of the disposable oral instrument box described in this utility model.
[0038] Figure 2 This is a side sectional view of the treatment box body of the disposable oral instrument box described in this utility model.
[0039] Figure 3 This is a front-view three-dimensional structural diagram of the dental support structure of the disposable dental instrument box described in this utility model.
[0040] Figure 4 This is a bottom-view three-dimensional structural diagram of the dental support structure of the disposable dental instrument box described in this utility model.
[0041] Figure 5 This is a cross-sectional view of the dental support suction connecting tube of the disposable dental instrument kit of this utility model.
[0042] Figure 6 This is a front sectional view of the posterior bifurcated mouth mirror of the disposable oral instrument kit of this utility model.
[0043] Figure 7 This is a side sectional view of the posterior bifurcated mouth mirror of the disposable oral instrument box described in this utility model.
[0044] Figure 8 This is a three-dimensional right-side view of the posterior bifurcated mouth mirror of the disposable oral instrument kit described in this utility model.
[0045] Figure 9 This is a schematic diagram of the posterior bifurcated oral mirror box of the disposable oral instrument box described in this utility model.
[0046] Figure 10 This is a schematic diagram of the rear-branched mouth mirror collection bag of the disposable oral instrument box described in this utility model.
[0047] Figure 11 for Figure 7 A magnified view of the "CA" in the image.
[0048] Figure 12 for Figure 8 A magnified view of a portion of the "CB" in the image.
[0049] Figure 13 This is a top view of the storage state of the disposable dental instrument box described in this utility model.
[0050] Figure 14 This is a three-dimensional structural diagram of the tool bag of the disposable dental instrument box described in this utility model.
[0051] In the diagram: A1, Box body; A2, Medication dispensing trough; A3, Positioning hole; A4, Cotton ball trough; A5, Disinfectant trough; A6, Treatment tool trough; A7, Clamping hole; A8, Measuring toothed plate; A9, Storage trough; A10, Reinforcing rib; A11, Clamping strip; A12, Clamping groove; A13, Packaging edge pressing; B1, Support body; B2, Anti-slip protrusion; B3, Mounting hole; B4, Suction connecting tube; B5, Suction flat tube; B6, Upper plate; B7, Lower plate; B8, Binding hole; B9, First deformation hole; B10, Second deformation hole; B11, Rotary joint; C1, Lens holder; C2, Oral lens; C3, Operating lever; C4, Oral lens box; C5, Oral lens collection bag; C6, Divider rod; C7, Mud collection end; C8, Mud mixing end. C9. Sludge pressing end; C10. Squeezing ball; C11. Anti-slip texture; C12. Hand-operated area; C13. Millimeter scale; C14. Centimeter scale; C15. Vernier scale of oral endoscope; C16. Front break dotted line; C17. L-shaped bayonet; C18. L-shaped insert block; C19. Sealing ring; C20. Medicine placement area; C21. Stirring box; C22. Sealing plastic block; C23. Sludge trough; C24. Vernier scale of oral endoscope; D1. Treatment towel; D2. Bag; D3. Glove; D4. Three-way suction head; D5. Cotton ball; D6. Cap; D7. Tweezers; D8. Extension straw; D9. Saliva suction tube; D10. Probe; D11. Head end protective sleeve; D12. Break groove; D13. Rubber protective tube; D14. Support point. Detailed Implementation
[0052] The present invention will now be described in detail with reference to the accompanying drawings, such as... Figure 1-14 As shown, a disposable dental instrument kit.
[0053] Example: Figure 1-2As shown, a disposable dental instrument kit includes a treatment box body A1, which includes a storage structure. Inside the storage structure are placed a dental framework and a posterior bifurcated mouth mirror.
[0054] When in use, the dental framework and the posterior bifurcated mouth mirror can be stored through the treatment box body A1, and the storage stability of the dental framework and the posterior bifurcated mouth mirror can be guaranteed.
[0055] The storage structure includes: a medicine dispensing tank A2, four positioning holes A3, a cotton ball tank A4, a disinfectant tank A5, two treatment tool tanks A6, four clamping holes A7, a measuring toothed plate A8, and clamping components;
[0056] The medicine dispensing tank A2 is located on one side of the upper end of the treatment box body A1. The four positioning holes A3 are all located inside the medicine dispensing tank A2. The cotton ball tank A4 is located on one side of the medicine dispensing tank A2. The disinfectant tank A5 is located on one side of the cotton ball tank A4. The two treatment tool tanks A6 are both located on the other side of the upper end of the treatment box body A1. The four clamping holes A7 are located on both sides of the two treatment tool tanks A6. The clamping assembly is located at the lower end of the treatment box body A1.
[0057] In use, the four positioning holes A3 inside the medication preparation slot A2 are used to store the therapeutic medication. Multiple medications can also be mixed inside the medication preparation slot A2 according to treatment needs. The cotton ball slot A4 and the disinfectant slot A5 are used to store clean cotton balls D5 and disinfected cotton balls D5 independently, ensuring the effective use of cotton balls D5. The root canal can be stored in the treatment tool slot A6, and the four clamping holes A7 provide space for forceps D7 to be inserted, making it easy to pick up the root canal in the treatment tool slot A6. The length of the root canal can be measured through the measuring tooth plate A8, ensuring the effectiveness of the root canal use.
[0058] The clamping assembly includes: a storage slot A9, several reinforcing ribs A10, two clamping bars A11, and several clamping slots A12;
[0059] The storage slot A9 is located at the lower end of the treatment box body A1. Several reinforcing ribs A10 are located on the lower wall of the storage slot A9. Two clamping strips A11 are respectively installed at the center of the lower end of the storage slot A9 and on one side. Several clamping slots A12 are respectively opened on the upper wall of the two clamping strips A11.
[0060] The storage slot A9 allows for the storage of dental instruments, which are held in place by the clamping slots A12 at the top of the clamping strips A11 to ensure their stability. Meanwhile, the reinforcing ribs A10 ensure the overall strength of the treatment box body A1. Longer instruments can be laid flat inside the storage slot A9 and secured at both ends by the clamping slots A12 at the top of the two clamping strips A11. Shorter instruments can be placed on one side of the storage slot A9 and secured by the clamping slot A12 at the top of the rightmost clamping strip A11.
[0061] The outer side of the treatment box body A1 is provided with a packaging pressing edge A13, the two ends of the treatment tool slot A6 are tapered, and the clamping hole A7 is a semi-cylindrical clamping hole A7, which is connected to the treatment tool slot A6.
[0062] The packaging edge A13 can be used to secure the film, which can protect the medicine and instruments inside the treatment box body A1. The cross-sectional shape of the packaging edge A13 is stepped. The corners of the film are wrapped around the upper end of the packaging edge A13, and the outer corners of the film are embedded into the bottom end of the packaging edge A13 to fix the corners of the film and ensure the fixing effect of the film. In addition, the film can be quickly lifted off the upper end of the packaging edge A13 when in use.
[0063] The tapered treatment tool slot A6 can securely store root canal treatment rods of different sizes;
[0064] The root canal treatment stick is fixed in place by the clamping holes A7 and the treatment tool slot A6, which can store the root canal. The four clamping holes A7 provide space for the forceps D7 to be inserted, making it easy to pick up the root canal in the treatment tool slot A6.
[0065] like Figure 3-5 As shown, in the specific implementation process, the dental framework includes a framework body B1, anti-slip protrusions B2 are installed on both outer walls of the framework body B1, and an attraction structure is installed inside the framework body B1.
[0066] The suction structure includes: mounting hole B3, rotary joint B11, two suction flat tubes B5, and connecting binding wire assembly;
[0067] Mounting hole B3 is located at the center of one side wall of bracket body B1. One end of rotary joint B11 is embedded in mounting hole B3. One end of two suction flat tubes B5 is embedded in the two side walls of bracket body B1 respectively, and both are connected to one end of rotary joint B11. Connecting binding assembly is installed on the upper and lower walls of bracket body B1.
[0068] The connecting wire binding assembly includes: an upper plate B6, a lower plate B7, and two wire binding holes B8;
[0069] The upper plate B6 is located at the upper end of the bracket body B1, and the lower plate B7 is located at the lower end of the bracket body B1. Two wire binding holes B8 are respectively opened on both sides of the lower plate B7.
[0070] During use, the staff first removes the support body B1, then connects one end of the rotary connector B11 to the suction connecting tube B4, and inserts the other end into the mounting hole B3 on one side of the support body B1, connecting it to the two suction flat tubes B5. Then, the medical staff places one end of the support body B1 into one side of the patient's mouth, and the anti-slip protrusions B2 on both sides of the support body B1 fit against the patient's teeth. Through the first deformation hole B9 and the second deformation hole B10, the two side walls of the support body B1 can be deformed slightly, ensuring the fit between the patient's teeth and the support body B1, and also increasing the overall cushioning effect of the support body B1 to ensure the patient's comfort. At the same time, the two ends of the binding wire are inserted into the two binding wire holes B8 on both sides of the lower plate B7 to fix the support body B1. After installation, the medical staff treats the patient's teeth.
[0071] During the treatment, negative pressure suction, in conjunction with the rotary joint B11, the suction connecting tube B4 and the two suction flat tubes B5, allows the liquid in the patient's mouth to be drained, ensuring the patient's oral comfort. Finally, the entire stent body B1 is removed to complete the operation.
[0072] Two first deformation holes B9 are provided on the upper plate B6 and the upper end of the bracket body B1, and two second deformation holes B10 are provided on the lower plate B7 and the lower end of the bracket body B1.
[0073] The shape of the stent body B1 is trapezoidal, and the corners of the trapezoid are all rounded to prevent damage to the patient's oral cavity.
[0074] One end of the rotary joint B11 is connected to a suction connection tube B4, which is a spiral suction tube. The rotary joint B11 can be rotated 360 degrees to adjust the angle. The spiral suction tube prevents excessive suction from causing damage by using a spiral suction method.
[0075] like Figure 6-12 As shown, in the specific implementation process, the rear-split mouthpiece includes: a lens holder C1, a mouthpiece C2, an operating rod C3, a mouthpiece box C4, and a mouthpiece collection bag C5. The mouthpiece C2 is installed on the lens holder C1, and the lens holder C1 is installed on the operating rod C3. The operating rod C3 has a fork opening, which divides the operating rod C3 into a pair of dividing rods C6. One dividing rod C6 is provided with a mud-taking end C7, and the other dividing rod C6 is provided with a mud-mixing end C8 and a mud-pressing end C9.
[0076] The operating lever C3 has anti-slip texture C11 and a hand-pressing operation area C12. The mud-taking end C7 of the operating lever C3 has a mud-digging groove C23 at its bottom. The mud-pressing end C9 has a squeezing ball C10 at its bottom. A pair of dividing rods C6 are respectively equipped with millimeter scale C13 and centimeter scale C14. The mouth mirror vernier scale C15 is provided on the inside of the bifurcation. The mouth mirror vernier scale C15 has a front break dotted line C16. The lens holder C1, mouth mirror C2, operating lever C3 and mouth mirror collection bag C5 are placed inside the mouth mirror box C4.
[0077] The mouth mirror collection bag C5 is equipped with a pair of sealing plastic blocks C22, and several L-shaped bayonet C17 are provided on the sealing plastic blocks C22. Another sealing plastic block C22 is equipped with an L-shaped insert block C18. A sealing rubber ring C19 is provided between the pair of sealing plastic blocks C22.
[0078] The mouthpiece box C4 is equipped with a medicine placement area C20 and a stirring box C21. The mud-taking end C7 is rhomboid and the mud-harmonizing end C8 is pointed. The mouthpiece vernier scale C15 is equipped with a mouthpiece vernier scale C24.
[0079] The oral mirror is used to reflect the lesions in the patient's oral cavity, to conduct a comprehensive oral examination, assess the degree and extent of tooth damage, and administer local anesthesia to the patient.
[0080] The size and location of the patient's oral lesions are measured and located using the scale at the bifurcation point. The millimeter scale C13 and the centimeter scale C14 are convenient for measurement in different situations. Then, by pushing the vernier scale C15 forward, the dotted line C16 on the vernier scale C15 is broken, so that the vernier scale C15 stops at the measured scale position to prevent forgetting. The vernier scale C24 on the vernier scale C15 is also convenient for aligning with the millimeter scale C13 and the centimeter scale C14.
[0081] Take the medicine from the medicine box in the medicine placement area C20 through the mud-taking end C7 and place it in the stirring box C21. Stir the medicine through the mud-taking end C8. The mud-taking end C8 is a pointed end, which facilitates air release and vibration during stirring. After that, apply the prepared medicine to the patient's lesion. Compact the filled medicine by squeezing the squeezing ball C10 on the mud-pressing end C9. Finally, put the entire device into the inside of the mouth end collection bag C5 after use.
[0082] By using a pair of sealing plastic blocks C22 on the mouth mirror collection bag C5, several L-shaped insert blocks C18 on them are moved and inserted into the inside of several L-shaped bayonet C17, thereby sealing the pair of sealing plastic blocks C22. Through the tight fit between the L-shaped insert blocks C18 and the L-shaped bayonet C17, a firm seal is achieved between the entire mouth mirror device and the mouth mirror box C4, preventing contamination of the mouth mirror and mouth mirror box C4 after use. This sealing method does not require complicated operating steps or additional tools. Simply put the entire device into the collection bag and push the sealing plastic blocks C22 so that the L-shaped insert blocks C18 are inserted into the L-shaped bayonet C17 to complete the seal, thus improving work efficiency.
[0083] By combining the mud trough C23 with the liquid medicine placement area C20 and the stirring box C21, the amount of raw materials can be precisely controlled, ensuring the accuracy and consistency of each operation. This design makes the raw material processing and mixing process simpler and faster, reducing the complexity of operation.
[0084] like Figure 13-14 As shown, during the specific implementation process, a tool kit is also placed inside the storage structure. The tool kit includes: treatment towel D1, bag D2, gloves D3, three-way suction head D4, cotton ball D5, cap D6, tweezers D7, extension straw D8, saliva suction tube D9, and probe D10.
[0085] Treatment towel D1 is placed on one side of storage slot A9. Bag D2, gloves D3, three-way suction head D4, cotton ball D5 and cap D6 are all placed above treatment towel D1. Tweezers D7, extension pipette D8, saliva suction tube D9 and probe D10 are all movably embedded in clamping slot A12.
[0086] The storage slot A9 within the storage structure allows for the sequential stacking and storage of the treatment towel D1, bag D2, gloves D3, three-way suction head D4, cotton ball D5, and cap D6. The clamping slot A12 allows for the clamping and fixing of the tweezers D7, extended suction tube D8, saliva suction tube D9, and probe D10, ensuring the overall storage stability of the tweezers D7, extended suction tube D8, saliva suction tube D9, and probe D10.
[0087] With the three-way suction head D4, simultaneous suction of the teeth from both inside and outside can be achieved during use, reducing the number of operation steps and ensuring the suction effect.
[0088] In the specific implementation process, the front end of the tweezers D7 is fitted with a head end protective sleeve D11, and a support point D14 is provided at one end of the tweezers D7.
[0089] By setting support point D14, the two ends of the tweezers D7 can be separated when not in use to avoid damage caused by contact. At the same time, by putting the head end protective sleeve D11 on the head end of the tweezers D7, secondary protection is provided to further ensure the safety of the head end of the tweezers D7 during storage.
[0090] In the specific implementation process, both sides of the center of the probe D10 are machined with a breakage groove D12, and both ends of the probe D10 are fitted with rubber protective tubes D13.
[0091] By machining the break grooves D12 on both sides of the center of the probe D10, the probe D10 can be quickly broken after use, so as to facilitate the disposal of the disposable probe D10 and avoid cross-infection caused by reuse. The rubber protective tube D13 can protect both ends of the probe D10 to prevent damage to the head of the probe D10.
[0092] The above technical solution only embodies the preferred technical solution of this utility model. Any changes that may be made by those skilled in the art to certain parts of it embody the principle of this utility model and fall within the protection scope of this utility model.
Claims
1. A disposable dental instrument kit, comprising a treatment box body (A1), characterized in that, The treatment box body (A1) includes a storage structure, inside which a dental framework and a posterior bifurcated mouth mirror are placed; The storage structure includes: a medicine dispensing tank (A2), four positioning holes (A3), a cotton ball tank (A4), a disinfectant tank (A5), two treatment tool tanks (A6), four clamping holes (A7), a measuring toothed plate (A8), and a clamping assembly; The dispensing slot (A2) is located on one upper side of the treatment box body (A1). The four positioning holes (A3) are all located inside the dispensing slot (A2). The cotton ball slot (A4) is located on one side of the dispensing slot (A2). The disinfectant slot (A5) is located on one side of the cotton ball slot (A4). The two treatment tool slots (A6) are located on the other upper side of the treatment box body (A1). The four clamping holes (A7) are located on both sides of the two treatment tool slots (A6). The clamping assembly is located at the lower end of the treatment box body (A1). The clamping assembly includes: a storage slot (A9), several reinforcing ribs (A10), two clamping strips (A11), and several clamping slots (A12); The storage slot (A9) is located at the lower end of the treatment box body (A1), and a number of reinforcing ribs (A10) are located on the lower wall of the storage slot (A9). Two clamping strips (A11) are respectively installed at the center of the lower end of the storage slot (A9) and on one side. A number of clamping slots (A12) are respectively opened on the upper wall of the two clamping strips (A11). The treatment box body (A1) has a packaging pressing edge (A13) on the outside, and the treatment tool slot (A6) has tapered ends.
2. The disposable dental instrument kit according to claim 1, characterized in that, The dental framework includes a framework body (B1), and anti-slip protrusions (B2) are installed on both outer walls of the framework body (B1). An attraction structure is installed inside the framework body (B1). The suction structure includes: a mounting hole (B3), a rotary joint (B11), two suction flat tubes (B5), and a connecting binding assembly; The mounting hole (B3) is located at the center of one side wall of the bracket body (B1). One end of the rotary joint (B11) is embedded in the mounting hole (B3). One end of each of the two suction flat tubes (B5) is embedded in one side wall of the bracket body (B1) and is connected to one end of the rotary joint (B11). The connecting binding assembly is installed on the upper and lower walls of the bracket body (B1). The connecting wire binding assembly includes: an upper plate (B6), a lower plate (B7), and two wire binding holes (B8); The upper plate (B6) is located at the upper end of the bracket body (B1), and the lower plate (B7) is located at the lower end of the bracket body (B1). Two binding holes (B8) are respectively opened on both sides of the lower plate (B7). The upper plate (B6) and the support body (B1) have two first deformation holes (B9) at their upper ends, and the lower plate (B7) and the support body (B1) have two second deformation holes (B10) at their lower ends. One end of the rotary joint (B11) is connected to a suction connecting tube (B4), which is a spiral suction tube.
3. The disposable dental instrument kit according to claim 1, characterized in that, The rear-branched mouthpiece includes: a lens holder (C1), a mouthpiece (C2), an operating rod (C3), a mouthpiece box (C4), and a mouthpiece collection bag (C5). The mouthpiece (C2) is mounted on the lens holder (C1), and the lens holder (C1) is mounted on the operating rod (C3). The operating rod (C3) has a forked opening, which divides the operating rod (C3) into a pair of dividing rods (C6). One dividing rod (C6) is provided with a mud-taking end (C7), and the other dividing rod (C6) is provided with a mud-mixing end (C8) and a mud-pressing end (C9). The operating lever (C3) has anti-slip texture (C11) and a hand-pressing operation area (C12). The bottom end of the mud-taking end (C7) of the operating lever (C3) has a mud-digging groove (C23). The bottom end of the mud-pressing end (C9) has a squeezing ball (C10). A pair of dividing rods (C6) are respectively provided with millimeter scale (C13) and centimeter scale (C14). The inside of the bifurcation is provided with a mouth mirror vernier scale (C15). The mouth mirror vernier scale (C15) has a front break dotted line (C16). The lens holder (C1), the mouth mirror lens (C2), the operating lever (C3), and the mouth mirror collection bag (C5) are placed inside the mouth mirror box (C4). The mouth mirror collection bag (C5) is provided with a pair of sealing plastic blocks (C22), the sealing plastic blocks (C22) are provided with a plurality of L-shaped slots (C17), the other sealing plastic block (C22) is provided with an L-shaped insert block (C18), and a sealing rubber ring (C19) is provided between the pair of sealing plastic blocks (C22); The mouth mirror box (C4) is provided with a medicine placement area (C20) and a stirring box (C21). The mud-taking end (C7) is rhomboid, the mud-mixing end (C8) is pointed, and the mouth mirror vernier scale (C15) is provided with mouth mirror vernier graduations (C24).
4. The disposable dental instrument kit according to claim 1, characterized in that, The storage structure also contains a tool kit, which includes: a treatment towel (D1), a bag (D2), gloves (D3), a three-way suction head (D4), cotton balls (D5), a cap (D6), tweezers (D7), an extended suction tube (D8), a saliva suction tube (D9), and a probe (D10). The treatment towel (D1) is placed on one side of the storage slot (A9). The bag (D2), gloves (D3), three-way suction head (D4), cotton ball (D5), and cap (D6) are all placed above the treatment towel (D1). The tweezers (D7), extended suction tube (D8), saliva suction tube (D9), and probe (D10) are all movably embedded in the clamping slot (A12).
5. The disposable dental instrument kit according to claim 4, characterized in that, The tweezers (D7) have a head end protective cap (D11) fitted at the front end.
6. The disposable dental instrument kit according to claim 4, characterized in that, The probe (D10) has break grooves (D12) machined on both sides of its center.
7. The disposable dental instrument kit according to claim 4, characterized in that, Both ends of the probe (D10) are fitted with rubber protective tubes (D13).
8. The disposable dental instrument kit according to claim 4, characterized in that, The tweezers (D7) have a support point (D14) at one end.
9. The disposable dental instrument kit according to claim 1, characterized in that, The clamping hole (A7) is a semi-cylindrical clamping hole (A7) and is connected to the treatment tool slot (A6).
10. The disposable dental instrument kit according to claim 2, characterized in that, The support body (B1) is trapezoidal in shape.