A visual laryngoscope mold and its accompanying waterway
By adjusting the length of the vertical section and arc section of the visual laryngoscope mold, the problem of single mold size is solved, and the effects of product diversification and equipment cost reduction are achieved.
Patent Information
- Application Number
- CN202510035902.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-09
- Publication Date
- 2025-09-23
- Estimated Expiration
- 2045-01-09
AI Technical Summary
The existing visual laryngoscope mold cannot be adjusted in size, resulting in the production of products with a single size that cannot adapt to diverse needs.
A visual laryngoscope mold was designed. The vertical and arc sections of the mold were adjusted by the vertical sealing plate that moved up and down and the arc sealing plate that performed circular motion. Combined with the mechanical structure, water discharge and recovery were achieved, reducing equipment costs.
The adjustability of the mold size is achieved, which improves the diversity of products and the practicality of the device. At the same time, water channel operation is achieved through the mechanical structure, which reduces the equipment cost.
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Figure CN119458821B_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of laryngoscope moulds, and in particular to a visual laryngoscope mould and an accompanying water channel thereof. Background Art
[0002] Medical devices themselves have strict precision properties. Therefore, the production and supporting of medical device components also put forward more precise technical requirements. In the production and supporting process of medical parts, the surface quality, precision and hygiene requirements of injection molded products, ranging from large hyperbaric oxygen chambers to small hearing aids, anesthesia laryngoscopes, medical buttons, etc., cannot tolerate any flaws.
[0003] Medical disposable anesthesia pharyngoscopes are relatively complex and the most typical among many medical injection molding products. First, the product structure is complex and the top space is narrow. Second, the top tip contacts the skin inside the body, and the material hygiene requirements are strict. Third, the size and quality requirements are strict, and surface defects are not allowed. Fourth, injection molding product pharyngoscopes are generally disposable products, with large quantities and price costs under control.
[0004] In the current existing technology, visual laryngoscopes are produced by injection molding. The molds of visual laryngoscopes are generally fixed in style, and only the same model of products can be produced each time. The size of the visual laryngoscope cannot be changed, resulting in a single product size that cannot adapt to diverse needs.
[0005] After searching, the Chinese patent application number 201920961365.9 discloses a visual laryngoscope mold and its accompanying waterway. The visual laryngoscope mold includes a cylinder, a cylinder connecting rod, a universal connecting rod, a slider base, a lower mold core, and a guide block. The telescopic rod of the cylinder is connected to one end of the cylinder connecting rod, the other end of the cylinder connecting rod is connected to one end of the universal connecting rod, and the other end of the universal connecting rod is connected to one end of the slider base. The other end of the slider base is equipped with an arc-shaped slider core puller, which extends into the lower mold core. The lower mold core is installed below the universal connecting rod. Its accompanying waterway includes a water outlet, a water inlet, and a nozzle. The water outlet and the water inlet are arranged on the slider base, and the nozzle extends into the arc-shaped slider core puller.
[0006] The above patent has the following shortcomings: the size of the lower mold core is fixed, the size of the produced visual laryngoscope is fixed, and the size of the lower mold core is not easy to change, so the size of the visual laryngoscope cannot be adjusted, resulting in a single size of the produced product.
[0007] In order to enable a visual laryngoscope mold to have the function of adjusting its mold size and diversify the sizes of the produced products, a visual laryngoscope mold and an accompanying waterway are proposed. Summary of the Invention
[0008] In view of the above-mentioned shortcomings of the prior art, the present invention provides a visual laryngoscope mold and an accompanying water channel thereof, which can effectively solve the existing problems.
[0009] To achieve the above objectives, the present invention is implemented through the following technical solutions:
[0010] The present invention provides a visual laryngoscope mold, comprising a lower mold table and an upper mold table, wherein the upper mold table is located directly above the lower mold table, the lower mold table is externally connected to an injection molding machine, and the upper mold table is externally connected to a telescopic driving device; a shaping mold is provided on the top surface of the lower mold table, and the shaping mold comprises two baffles, the two baffles comprise a vertical section and an arc section, the vertical sections of the two baffles are parallel to each other, and the arc sections of the two baffles have the same center of a circle; an injection port is provided on the top surface of the lower mold table, and the injection port is located on the shaping mold The mold is located between the two baffles and on the side of the arc section close to the vertical section of the baffle; an adjustment component is provided inside the upper mold table for adjusting the size of the visual laryngoscope mold, and the adjustment component includes an arc-shaped sealing plate that performs circular motion with the upper mold table as the base surface and a vertical sealing plate that moves up and down with the upper mold table as the base surface, and a folding plate is provided on one side of the arc-shaped sealing plate and the vertical sealing plate; when the upper mold table moves toward the lower mold table, the adjustment component and the shaping mold form an injection space for the injection molding of the visual laryngoscope.
[0011] Furthermore, a limiting cylinder is provided on the back of the vertical sealing plate, and the inner wall of the limiting cylinder is slidably connected to the limiting rod, one end of the limiting rod is connected to the first rotating rod through a rotating shaft, and one end of the first rotating rod is fixedly connected to the support rod; a second rotating rod is provided on the back of the arc-shaped sealing plate, and one end of the second rotating rod is sleeved on the outer wall of the support rod; the adjustment assembly also includes a driving gear of an external rotation driving device, and the driving gear is respectively engaged with the gear on the second rotating rod and the gear on the support rod.
[0012] Furthermore, when the driving gear rotates, the first rotating rod and the second rotating rod perform circular motions in opposite directions.
[0013] Furthermore, the relationship between the length of the vertical segment and the length of the arc segment in the injection molding space is:
[0014]
[0015] Where H is the length of the vertical segment in the injection molding space, L1 is the length of the first rotating rod, R is the length of the arc segment in the injection molding space with the central axis of the support rod as the center and the second rotating rod as the radius, L2 is the length of the second rotating rod, and C1, C2, and C3 are constants.
[0016] Furthermore, the starting points of the vertical sections of the two baffles are located on the same horizontal line, and the ending points of the vertical sections of the two baffles are located on the same horizontal line; the starting points of the arc sections of the two baffles are located on the same horizontal line, and the ending points of the arc sections of the two baffles are located on a chord with the support rod as the center.
[0017] A traveling water path for a visual laryngoscope mold comprises a water tank arranged inside the lower mold table and the upper mold table, the top surface of the lower mold table being provided with a water baffle, and a cooling space being formed between the water baffle and the injection molding space; the bottom surface of the upper mold table being provided with a drain pipe for injecting cooling water required for injection molding, the top surface of the lower mold table being provided with a recovery pipe for recovering cooling water after injection molding, and the central axis of the drain pipe and the recovery pipe being the same; when the drain pipe contacts the recovery pipe, the drain pipe discharges cooling water into the cooling space; when the drain pipe is separated from the recovery pipe, the recovery pipe recovers the cooling water in the cooling space.
[0018] Furthermore, the recovery tube is processed with multiple recovery ports around it; the inner wall of the bottom end of the recovery tube is fixedly connected to a cross support frame, the top of the cross support frame is fixedly connected to a recovery telescopic rod, the telescopic end of the recovery telescopic rod is fixedly connected to a recovery plug, and the top of the recovery plug is fixedly connected to a ejection support rod.
[0019] Furthermore, the drain pipe is processed with multiple drain ports around it; the inner wall of the bottom end of the drain pipe is fixedly connected with multiple drain telescopic rods, the telescopic ends of the drain telescopic rods are provided with drain plugs, and the outer wall of the bottom end of the drain plug is fixedly connected with a push-in support rod.
[0020] Furthermore, a groove is provided inside the push-in support rod, and the inner diameter of the push-in support rod groove is the same as the outer diameter of the push-out support rod.
[0021] Furthermore, the drain plug is processed with evenly distributed positioning grooves around it; the outer wall of the top end of the drain pipe is fixedly connected with evenly distributed positioning rods, and a positioning block is provided on the top of the positioning rod, and the positioning block is slidably connected to the inner wall of the positioning groove.
[0022] Beneficial effects
[0023] Compared with the known public technologies, the technical solution provided by the present invention has the following beneficial effects:
[0024] The length of the vertical section of the visual laryngoscope can be adjusted by the vertical sealing plate that moves up and down, and the length of the arc section of the visual laryngoscope can be adjusted by the arc sealing plate that can make circular motion, so that the visual laryngoscope mold has the function of adjustable size, thereby improving the practicality of the device;
[0025] There is no pump or motor involved in the accompanying water channel and its water pumping and draining process. The drainage and recycling of water in the injection molding process are achieved only through mechanical structure, which reduces the cost of the equipment. BRIEF DESCRIPTION OF THE DRAWINGS
[0026] To more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are only some embodiments of the present invention. Those skilled in the art can also derive other drawings based on these drawings without inventive effort.
[0027] Figure 1 This is an overall schematic diagram of the visual laryngoscope mold of the present invention;
[0028] Figure 2 It is a structural schematic diagram of the upper mold table of the present invention;
[0029] Figure 3 It is a structural schematic diagram of the adjustment component of the present invention;
[0030] Figure 4 It is a schematic diagram of the exploded structure of the regulating assembly of the present invention;
[0031] Figure 5 This is a schematic diagram of the explosion structure of the recovery pipe of the present invention;
[0032] Figure 6 This is a schematic diagram of the explosion structure of the water discharge pipe of the present invention;
[0033] Figure 7 This is a schematic diagram of the structure of the recovery pipe and the water discharge pipe in contact with each other in the present invention;
[0034] Figure 8 Schematic diagram of the relationship between the vertical section and the arc section of the visual laryngoscope mold of the present invention.
[0035] Reference numerals
[0036] 100 - lower mold table; 101 - molding mold; 102 - injection port; 103 - water baffle; 110 - recovery pipe; 111 - recovery telescopic rod; 112 - recovery plug; 113 - ejector rod; 114 - cross support frame; 115 - recovery port;
[0037] 200-upper mold table; 201-arc-shaped sealing plate; 202-vertical sealing plate; 203-first rotating rod; 204-second rotating rod; 205-limiting cylinder; 206-limiting rod; 207-driving gear; 208-support rod; 210-drain pipe; 211-positioning support rod; 212-drain plug; 213-positioning groove; 214-top support rod; 215-drain port; 216-drain telescopic rod. DETAILED DESCRIPTION
[0038] Embodiments of the present disclosure will be described in more detail below with reference to the accompanying drawings. Although certain embodiments of the present disclosure are shown in the accompanying drawings, it should be understood that the present disclosure can be implemented in various forms and should not be construed as limited to the embodiments described herein. Rather, these embodiments are provided to provide a more thorough and complete understanding of the present disclosure. It should be understood that the drawings and embodiments of the present disclosure are for illustrative purposes only and are not intended to limit the scope of protection of the present disclosure.
[0039] It should also be noted that, for ease of description, only the parts related to the invention are shown in the drawings. In the absence of conflict, the embodiments and features in the embodiments of the present disclosure may be combined with each other.
[0040] It should be noted that the concepts of "first" and "second" mentioned in this disclosure are only used to distinguish different devices, modules or units, and are not used to limit the order or interdependence of the functions performed by these devices, modules or units.
[0041] It should be noted that the modifications of "one" and "multiple" mentioned in the present disclosure are illustrative rather than restrictive, and those skilled in the art should understand that unless otherwise clearly indicated in the context, they should be understood as "one or more".
[0042] The present invention will be further described below with reference to the embodiments.
[0043] Example:
[0044] A visual laryngoscope mold, such as Figure 1-4As shown, it includes a lower mold table 100 and an upper mold table 200, the upper mold table 200 is located directly above the lower mold table 100, the lower mold table 100 is externally connected to an injection molding machine, and the upper mold table 200 is externally connected to a telescopic drive device. The lower mold table 100 is used to inject molten plastic into the injection space, and the upper mold table 200 is used to merge with the lower mold table 100 to form a closed space for convenient injection molding. The top surface of the lower mold table 100 is provided with a shaping mold 101, and the shaping mold 101 includes two baffles; the upper mold table 200 is internally provided with an adjustment component for adjusting the size of the visual laryngoscope mold, the adjustment component includes an arc-shaped sealing plate 201 that performs circular motion with the upper mold table 200 as a base surface and a vertical sealing plate 202 that moves up and down with the upper mold table 200 as a base surface, and one side of the arc-shaped sealing plate 201 and the vertical sealing plate 202 Both are provided with folding plates. When the upper mold table 200 moves toward the lower mold table 100, the adjusting assembly and the shaping mold 101 form an injection molding space for the injection molding of the visual laryngoscope. When the upper mold table 200 moves down onto the lower mold table 100, the two baffles of the shaping mold 101 and the folding plates on the arc-shaped sealing plate 201, the folding plates on the vertical sealing plate 202, and the table tops of the upper mold table 200 and the lower mold table 100 form a closed space, i.e., the injection molding space. At this time, molten plastic is injected into the space to produce the visual laryngoscope. Moreover, the length of the vertical section of the visual laryngoscope can be adjusted by the vertical sealing plate 202 that moves up and down, and the length of the arc section of the visual laryngoscope can be adjusted by the arc-shaped sealing plate 201 that can make a circular motion, thereby making the visual laryngoscope mold have the function of adjustable size, thereby improving the practicality of the device.
[0045] The solution for the vertical sealing plate 202 to move up and down on the upper mold table 200 is as follows:
[0046] A limiting cylinder 205 is provided on the back of the vertical sealing plate 202, and a limiting rod 206 is slidably connected to the inner wall of the limiting cylinder 205. One end of the limiting rod 206 is connected to the first rotating rod 203 via a rotating shaft, and one end of the first rotating rod 203 is fixedly connected to a support rod 208; the rotation of the support rod 208 drives the first rotating rod 203 to rotate, thereby causing the limiting rod 206 to move in the limiting cylinder 205, and then causing the vertical sealing plate 202 fixedly connected to the limiting cylinder 205 to move up and down on the upper mold table 200;
[0047] The solution for the arc-shaped sealing plate 201 to rotate on the table surface of the upper mold table 200 is as follows:
[0048] A second rotating rod 204 is provided on the back of the arc-shaped sealing plate 201, and one end of the second rotating rod 204 is sleeved on the outer wall of the support rod 208; the second rotating rod 204 rotates around the central axis of the support rod 208, thereby driving the arc-shaped sealing plate 201 to perform a circular motion on the table surface of the upper mold table 200;
[0049] In order to increase or decrease the length of the vertical section and the length of the arc section of the visual laryngoscope in proportion to each other, the adjustment component also includes a driving gear 207 of an external rotary drive device, and the driving gear 207 is respectively engaged with the gear on the second rotating rod 204 and the gear on the support rod 208. When the driving gear 207 rotates, the first rotating rod 203 and the second rotating rod 204 make circular motions in opposite directions. The rotation of the driving gear 207 causes the gears engaged therewith to rotate, thereby causing the first rotating rod 203 and the second rotating rod 204 to rotate. When the first rotating rod 203 rotates clockwise, the second rotating rod 204 rotates counterclockwise. When the first rotating rod 203 rotates counterclockwise, the second rotating rod 204 rotates clockwise, and the first rotating rod 203 and the second rotating rod 204 rotate at the same angle, as shown in FIG. Figure 8 As shown in FIG, when the angle between the first rotating rod 203 and the reference line is θ, the length H of the vertical segment in the injection molding space is expressed as:
[0050]
[0051] Wherein, L1 is the length of the first rotating rod 203, C1 is the distance from the folded plate on the vertical sealing plate 202 to the middle of the limiting cylinder 205,
[0052] At the same time, the length R of the arc segment in the injection molding space (the arc segment is formed with the central axis of the support rod 208 as the center and the length of the second rotating rod 204 as the radius) is expressed as follows:
[0053]
[0054] Wherein, L2 is the length of the second rotating rod 204, C2 is the arc corresponding to the angle between the first rotating rod 203 and the reference line in the initial state, and C3 is the arc length between the reference line and the folded plate on the arc-shaped closing plate 201 in the initial state (with the central axis of the support rod 208 as the center and the length of the second rotating rod 204 as the radius).
[0055] In summary, the relationship between the length of the vertical segment and the length of the arc segment in the injection space is:
[0056]
[0057] Where H is the length of the vertical segment in the injection molding space, L1 is the length of the first rotating rod 203, R is the length of the arc segment in the injection molding space with the central axis of the support rod 208 as the center and the second rotating rod 204 as the radius, L2 is the length of the second rotating rod, and C1, C2, and C3 are constants.
[0058] The two baffles include a vertical section and an arc section, the vertical sections of the two baffles are parallel to each other, and the arc sections of the two baffles have the same center (such as Figure 8 As shown in the figure, the center of the circle is the central axis of the support rod 208), the junction of the vertical section and the arc section of the two baffles is the reference line, and the reference line is used as the starting point of the vertical section and the arc section. The starting points of the vertical sections of the two baffles are located on the same horizontal line, and the ending points of the vertical sections of the two baffles are also located on the same horizontal line. The starting points of the arc sections of the two baffles are located on the same horizontal line, and the ending points of the arc sections of the two baffles are located on the chord with the support rod 208 as the center of the circle. The angle of the chord with the reference line as the starting line is 180-250°. The starting points and ending points of the two baffles are all located on the same straight line, which ensures that the distance between the two baffles is equal, and there is no gap when they cooperate with the folding plates on the vertical sealing plate 202 and the arc sealing plate 201, thereby improving the practicality of the device.
[0059] An injection port 102 is provided on the top surface of the lower mold table 100. The injection port 102 is located between the two baffles of the shaping mold 101 and on the side of the arc section of the baffle close to the vertical section. The injection port 102 is located below the reference line and in the middle of the two baffles. No matter how the vertical section and the arc section of the injection space change, the injection port 102 is always located inside the injection space.
[0060] A water channel accompanying a visual laryngoscope mold comprises the above-mentioned visual laryngoscope mold, wherein the lower mold platform 100 and the upper mold platform 200 are both provided with water tanks, and the top surface of the lower mold platform 100 is provided with a water baffle 103, which is in the shape of a fence and wraps the shaping mold 101 and the recovery pipe 110 therein, and the water baffle 103 at the recovery pipe 110 is in an arc shape, which avoids the collision of the water flow when the water flows into the recovery pipe 110, thereby avoiding water splashing, and forming a cooling space between the water baffle 103 and the injection space; the cooling space is used for absorbing heat from the molten plastic in the injection space after the cooling water enters the cooling space, thereby accelerating the cooling and shaping speed thereof.
[0061] The bottom surface of the upper mold platform 200 is provided with a water discharge pipe 210 for injecting cooling water required for injection molding.
[0062] The specific solution for drain pipe 210 is as follows:
[0063] The drain pipe 210 is machined with multiple drain ports 215 around its periphery; multiple drain telescopic rods 216 are fixedly connected to the inner wall of the bottom end of the drain pipe 210; the telescopic ends of the drain telescopic rods 216 are provided with drain plugs 212; the outer wall of the bottom end of the drain plug 212 is fixedly connected to a push-in support rod 214; the water tank of the upper mold platform 200 is connected to the recovery pipe 110; in the initial state, the drain telescopic rods 216 are squeezed and compressed by the drain plugs 212; the drain plug 212 is located in the inner wall of the drain pipe 210, blocking the drain pipe 210, and preventing water in the water tank of the upper mold platform 200 from flowing out of the drain ports 215 through the drain pipe;
[0064] The top surface of the lower mold table 100 is provided with a recovery pipe 110 for recovering the cooling water after injection molding.
[0065] The specific solution for the recovery pipe 110 is as follows:
[0066] The recovery pipe 110 is processed with multiple recovery ports 115 around it; a cross support frame 114 is fixedly connected to the inner wall of the bottom end of the recovery pipe 110, and a recovery telescopic rod 111 is fixedly connected to the top of the cross support frame 114. The telescopic end of the recovery telescopic rod 111 is fixedly connected to a recovery plug 112, and the top of the recovery plug 112 is fixedly connected to an ejection support rod 113; in the initial state, the recovery telescopic rod 111 is in a naturally extended state. At this time, the recovery plug 112 is located inside the recovery pipe 110, and the bottom surface height of the recovery plug 112 is higher than the top height of the recovery port 115. However, at this time, there is no cooling water in the cooling space;
[0067] The central axis of the drain pipe 210 and the recovery pipe 110 is the same, and a groove is provided inside the push-in support rod 214. The inner diameter of the groove of the push-in support rod 214 is the same as the outer diameter of the ejection support rod 113. When in use, the upper mold table 200 moves downward and moves to the lower mold table 100. The ejection support rod 113 enters the inner groove of the push-in support rod 214 and squeezes the push-in support rod 214. At this time, the drain plug 212 and The gravity of the push-in support rod 214 and the gravity of the recovery plug 112 and the ejection support rod 113 are greater than the elastic force of the recovery telescopic rod 111, that is, the recovery telescopic rod 111 contracts first, and the recovery plug 112 blocks the recovery port 115 of the recovery pipe 110. As the upper mold table 200 continues to move downward, the recovery plug 112 and the ejection support rod 113 squeeze the drain plug 212, causing the drain plug 212 to move upward, that is, to separate from the drain pipe 210. At this time, the cold The cooling water enters through the gap between the drain plug 212 and the drain pipe 210, and flows into the cooling space through the drain port 215 to cool the injection molding process. When the injection molding is completed, the upper mold table 200 moves upward and separates from the lower mold table 100. Under the obstruction of the water baffle 103, the cooling water will not overflow. During the upward movement of the upper mold table 200, the drain plug 212 and the recovery plug 112 are reset. At this time, the recovery port 115 on the recovery pipe 110 is connected to the cooling space, thereby recycling the cooling water in the cooling space into the water tank of the lower mold table 100, and the connection between the water tank of the upper mold table 200 and the drain pipe 210 is blocked by the drain plug again. At this time, water can be drained into the water tank of the upper mold table 200 for convenient use next time. The accompanying water channel in this embodiment does not involve a water pump and a motor throughout the entire process. The drainage and recovery of the injection molding process are achieved only by a mechanical structure, which reduces the cost of the equipment.
[0068] When the water discharge pipe 210 is in contact with the recovery pipe 110, the water discharge pipe 210 discharges the cooling water into the cooling space; when the water discharge pipe 210 is separated from the recovery pipe 110, the recovery pipe 110 recovers the cooling water in the cooling space;
[0069] Furthermore, in order to prevent the drain plug 212 from detaching from the drain pipe 210 and becoming unable to be reset, the drain plug 212 is processed with evenly distributed positioning grooves 213 around it; the outer wall of the top end of the drain pipe 210 is fixedly connected with evenly distributed positioning support rods 211, and a positioning block is provided on the top of the positioning support rod 211, and the positioning block is slidably connected to the inner wall of the positioning groove 213. Through the positioning grooves 213 around the drain plug 212 and the positioning blocks on the positioning support rod 211, the drain plug 212 is restricted to move on the central axis of the drain pipe 210, thereby preventing the drain plug 212 from detaching from the drain pipe 210 and becoming unable to be reset.
[0070] The above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit the same. Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art should understand that they can still modify the technical solutions described in the aforementioned embodiments, or make equivalent replacements for some of the technical features therein. However, these modifications or replacements will not cause the essence of the corresponding technical solutions to deviate from the protection scope of the technical solutions of the various embodiments of the present invention.
Claims
1. A visual laryngoscope mold, characterized in that: The mold base comprises a lower mold platform (100) and an upper mold platform (200), wherein the upper mold platform (200) is located directly above the lower mold platform (100), the lower mold platform (100) is externally connected to an injection molding machine, and the upper mold platform (200) is externally connected to a telescopic driving device; A shaping mold (101) is provided on the top surface of the lower mold table (100), and the shaping mold (101) comprises two baffles, the two baffles comprising vertical sections and arc sections, the vertical sections of the two baffles being parallel to each other, and the arc sections of the two baffles having the same center; The top surface of the lower mold platform (100) is provided with an injection port (102), and the injection port (102) is located between the two baffles of the shaping mold (101) and on a side of the arc section of the baffle close to the vertical section; An adjustment component is provided inside the upper mold table (200) for adjusting the size of the visual laryngoscope mold, and the adjustment component includes an arc-shaped sealing plate (201) that performs a circular motion with the upper mold table (200) as a base surface and a vertical sealing plate (202) that moves up and down with the upper mold table (200) as a base surface, and a folding plate is provided on one side of each of the arc-shaped sealing plate (201) and the vertical sealing plate (202); When the upper mold platform (200) moves toward the lower mold platform (100), the adjustment assembly and the shaping mold (101) form an injection molding space for injection molding of a visual laryngoscope; A limiting cylinder (205) is provided on the back of the vertical sealing plate (202); the inner wall of the limiting cylinder (205) is slidably connected to a limiting rod (206); one end of the limiting rod (206) is connected to a first rotating rod (203) via a rotating shaft; one end of the first rotating rod (203) is fixedly connected to a supporting rod (208); A second rotating rod (204) is provided on the back of the arc-shaped sealing plate (201), and one end of the second rotating rod (204) is sleeved on the outer wall of the supporting rod (208); The adjustment assembly further comprises a driving gear (207) of an externally connected rotation drive device, wherein the driving gear (207) is respectively engaged with a gear on the second rotating rod (204) and a gear on the supporting rod (208).
2. A visual laryngoscope mold according to claim 1, characterized in that: When the driving gear (207) rotates, the first rotating rod (203) and the second rotating rod (204) perform circular motions in opposite directions.
3. A visual laryngoscope mold according to claim 2, characterized in that: The relationship between the length of the vertical segment and the length of the arc segment in the injection space is: Wherein, H is the length of the vertical segment in the injection molding space, L1 is the length of the first rotating rod (203), R is the length of the arc segment in the injection molding space with the central axis of the support rod (208) as the center and the second rotating rod (204) as the radius, L2 is the length of the second rotating rod, and C1, C2, and C3 are constants.
4. A visual laryngoscope mold according to claim 3, characterized in that: The starting points of the vertical sections of the two baffles are located on the same horizontal line, and the ending points of the vertical sections of the two baffles are located on the same horizontal line; The starting points of the arc segments of the two baffles are located on the same horizontal line, and the ending points of the arc segments of the two baffles are located on a chord with the support rod (208) as the center.
5. A visual laryngoscope mold according to claim 1, characterized in that: It also includes an accompanying waterway, which includes a water tank arranged inside the lower mold platform (100) and the upper mold platform (200); a water baffle (103) is provided on the top surface of the lower mold platform (100); a cooling space is formed between the water baffle (103) and the injection space; The bottom surface of the upper mold platform (200) is provided with a drain pipe (210) for injecting cooling water required for injection molding, and the top surface of the lower mold platform (100) is provided with a recovery pipe (110) for recovering cooling water after injection molding, and the central axis of the drain pipe (210) and the recovery pipe (110) is the same; When the water discharge pipe (210) contacts the recovery pipe (110), the water discharge pipe (210) discharges cooling water into the cooling space; When the water discharge pipe (210) is separated from the recovery pipe (110), the recovery pipe (110) recovers the cooling water in the cooling space.
6. A visual laryngoscope mold according to claim 5, characterized in that: The recovery pipe (110) is processed with a plurality of recovery ports (115) around its periphery; The inner wall of the bottom end of the recovery tube (110) is fixedly connected to a cross support frame (114), the top end of the cross support frame (114) is fixedly connected to a recovery telescopic rod (111), the telescopic end of the recovery telescopic rod (111) is fixedly connected to a recovery plug (112), and the top end of the recovery plug (112) is fixedly connected to an ejection support rod (113).
7. A visual laryngoscope mold according to claim 6, characterized in that: The drain pipe (210) is formed with a plurality of drain ports (215) on its periphery; A plurality of water discharge telescopic rods (216) are fixedly connected to the inner wall of the bottom end of the water discharge pipe (210), a water discharge plug (212) is provided at the telescopic end of the water discharge telescopic rod (216), and a push-in support rod (214) is fixedly connected to the outer wall of the bottom end of the water discharge plug (212).
8. The visual laryngoscope mold according to claim 7, characterized in that: A groove is provided inside the push-in support rod (214), and the inner diameter of the groove of the push-in support rod (214) is the same as the outer diameter of the ejection support rod (113).
9. The visual laryngoscope mold according to claim 8, characterized in that: The drain plug (212) is machined with evenly distributed positioning grooves (213) around its periphery; The outer wall of the top end of the water discharge pipe (210) is fixedly connected to uniformly distributed positioning rods (211), and a positioning block is provided on the top of the positioning rod (211), and the positioning block is slidably connected to the inner wall of the positioning groove (213).
Citation Information
Patent Citations
Visual laryngoscope mold and accompanying waterway thereof
CN211194788U
Method For Supplementing a Component of a Medical Instrument
US20220332021A1