Glass handicraft fixing structure and low-power processing device
By designing a fixed structure for glass crafts and a low-power processing device, the problems of contact collision and energy waste during the transportation of glass crafts were solved, achieving stable fixation and precise temperature control, preventing damage and accelerating the forming process.
Patent Information
- Application Number
- CN202410527763.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-04-29
- Publication Date
- 2026-02-06
- Estimated Expiration
- 2044-04-29
AI Technical Summary
During the transfer of glass crafts, existing technologies suffer from contact or collision between bottles, leading to the failure of the coating agent and damage to the glass crafts. Furthermore, energy is wasted during temperature control.
A glass craft fixing structure was designed, including a support base, a stop block and a stop mechanism, which fixes the glass craft through elastic contact. A heat insulation plate and a cooling/heating component are set in a low-power processing device to control the temperature requirements of different processes.
It effectively prevents glass crafts from being damaged during transportation, reduces energy waste, shortens molding time, and meets the temperature requirements of different processes.
Smart Images

Figure CN118238550B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the field of glass product preparation devices, in particular to a glass handicraft fixing structure and a low-power processing device. BACKGROUND
[0002] Glass handicrafts, also known as glass handicrafts, are products with artistic value processed by hand from glass raw materials or glass semi-finished products.
[0003] Glass handicraft wine bottles are bottles for containing wine prepared by hand from glass semi-finished products, such as wine bottles of the zodiac series or wine bottles with special internal structures. The preparation process and overall structure are very complex, resulting in high prices for the bottles. In factories, high-value handicraft wine bottles are usually transported in different processes in different workshops using simple thick foam and paper boxes. Accidents are inevitable during conventional transportation, causing contact or collision between the bottles.
[0004] Handicraft wine bottles usually have special parts painted, such as dragon-shaped wine bottles with gold paint applied to the dragon's horns to increase the aesthetic appeal after shaping. The paint needs to be cured at a specific temperature, and the curing temperature of different paints is different. In factories, the glass handicrafts with paint applied need to be temperature-controlled in a large space to meet the paint curing temperature requirement. Due to the time-consuming production and preparation of glass handicrafts, a large amount of energy is wasted in the temperature control process to meet the requirements of subsequent processes.
[0005] At the same time, when transporting semi-finished handicraft wine bottles in factories, contact between the bottles may cause impurities on the painted areas, resulting in ineffective paint and defective products. More seriously, collision between the bottles may cause batch damage to the glass handicraft wine bottles, resulting in significant economic losses. SUMMARY
[0006] The present application aims to provide a glass handicraft fixing structure and a low-power processing device to solve the problem of transporting high-value handicraft wine bottles in different processes in different workshops using simple thick foam and paper boxes, which inevitably causes accidents and contact or collision between the bottles. It also solves the problem of energy waste in the temperature control process to meet the requirements of subsequent processes due to the time-consuming production and preparation of glass handicrafts.
[0007] The application is realized by the following scheme: a glass handicraft fixing structure, comprising a supporting seat, a resisting block, a resisting mechanism and a base; the resisting mechanism is sleeved on the glass handicraft, the resisting block is arranged on the base after being connected with the supporting seat, and the other end of the resisting mechanism is in elastic contact with the side wall of the glass handicraft when the resisting mechanism is in contact with the resisting block, so that the glass handicraft is fixed.
[0008] Based on the above-mentioned glass handicraft fixing structure, the resisting mechanism comprises a clamping seat, a first telescopic rod and a second telescopic rod, one end of the second telescopic rod is sleeved in the first telescopic rod, the clamping seat is provided with a containing cavity for inserting the first telescopic rod, an elastic structure is sleeved on the outer wall of the first telescopic rod, one end of the elastic structure is connected with the containing cavity, and the other end is connected with the outer wall of the first telescopic rod; a fixing hole is arranged on the side wall of the first telescopic rod, the fixing hole is uniformly arranged along the length direction of the first telescopic rod, a first supporting piece elastically matched with the fixing hole is arranged on the outer wall of the second telescopic rod, the first supporting piece is connected with the second telescopic rod through a spring, a limiting structure is arranged on the outer wall of the second telescopic rod close to the first supporting piece, and the diameter of at least part of the end of the first supporting piece is not greater than that of the fixing hole.
[0009] Based on the above-mentioned glass handicraft fixing structure, the resisting mechanism is connected through a rubber ring, at least three resisting mechanisms are arranged on the rubber ring, and the central angles of the adjacent resisting mechanisms on the rubber ring are the same.
[0010] Based on the above-mentioned glass handicraft fixing structure, the bottom of the clamping seat is provided with a contact plate, the length of the contact plate is at least 3 times the diameter of the containing cavity; the contact surface between the resisting block and the second telescopic rod is an arc surface, and the initial contact surface between the second telescopic rod and the resisting block is the maximum arc of the arc surface.
[0011] Based on the above-mentioned glass handicraft fixing structure, a plurality of springs are arranged between the supporting seat and the resisting block, so that the supporting seat and the resisting block are elastically connected; a supporting seat and a supporting cavity for accommodating the supporting seat are movably arranged on the base, the supporting seat is movably connected with the resisting block through a connecting rope, the supporting seat is arranged in the supporting cavity, a first guide rail for guiding the upper end of the resisting block is arranged on the end of the supporting seat away from the base, a second guide rail for guiding the lower end of the resisting block is arranged on the base, the first guide rail and the second guide rail are matched, and the resisting block can move between the first guide rail and the second guide rail.
[0012] Based on the above kind of glass handicraft fixed structure, the receiving seat includes an extension rod and a limiting groove, the extension rod is arranged at the bottom of the receiving seat, the limiting groove is arranged on the side wall near the top surface of the receiving seat, and the bottom surface of the receiving seat is provided with a resisting inclined surface; the receiving cavity is provided with an elastic convex column, the position and size of the elastic convex column are matched with the limiting groove, the elastic convex column can be moved into the limiting groove to fix the receiving seat under the support of the elastic force; the first pulley and the second pulley are arranged between the receiving seat and the resisting block, and the connecting rope connects the resisting block and the extension rod through the first pulley and the second pulley.
[0013] Based on the above kind of glass handicraft fixed structure, the receiving seat is provided with a reset mechanism, the reset mechanism includes a reset cavity and a reset rod; the reset cavity is communicated with the limiting groove, the reset cavity is provided with an arc-shaped channel and a main channel, the arc-shaped channel is communicated with each limiting groove respectively, and the arc-shaped channel is connected and communicated with the main channel after convergence; the reset rod includes a reset thin rod and a reset main rod, the reset thin rod is arranged in each arc-shaped channel, the reset main rod is arranged in the main channel, the reset thin rod is converged and connected with the reset main rod, at least one limiting block is arranged on the reset thin rod, the size of the limiting block after convergence of all reset thin rods is greater than the size of the main channel, so that the limiting block can limit the reset rod from being separated.
[0014] The scheme provides a kind of low-power consumption processing device for glass handicraft, including glass handicraft fixed structure and shell part, the heat insulation plate is arranged in the shell part, and the shell part is divided into first storage cavity and second storage cavity by the heat insulation plate;The heating element is arranged in the first storage cavity, and the refrigeration element is arranged in the second storage cavity, and the glass handicraft fixed structure is arranged in the first storage cavity and the second storage cavity respectively.
[0015] Based on the structure of the above-mentioned low-power processing device for glass handicrafts, the first storage cavity comprises a refrigeration fin, a support cylinder, a rotating shaft and a support plate; the support cylinder is fixedly arranged in the first storage cavity, the first support cylinder is hollow, rotating bearings are arranged at the ends of the rotating shaft and between the ends of the support cylinder and the top of the first storage cavity, and the rotating shaft can freely rotate on the support cylinder; the rotating shaft is hollow and provided with a plurality of bolt holes along the length direction of the rotating shaft, and the support plate is connected with the rotating bearing through the bolt holes; the refrigeration fin is communicated with the support cylinder through a pipeline; the support plate is in a circular structure as a whole, and comprises a first arc-shaped connecting plate and a second arc-shaped connecting plate, which can be combined into a circular structure; the first arc-shaped connecting plate and the second arc-shaped connecting plate are provided with a center half-hole and a bolt seat, the shape of the center half-hole is matched with the shape of the rotating shaft, and the bolt seat is used for fixing the bolt hole; the first arc-shaped connecting plate and the second arc-shaped connecting plate are provided with a lock piece, and the first arc-shaped connecting plate and the second arc-shaped connecting plate are connected into a complete circular structure through the lock piece; the refrigeration fin comprises a refrigeration end, a semiconductor fin and a heating end, the refrigeration end is connected with the support cylinder through a pipeline, and a heat preservation layer is arranged between the pipelines; and the heating end is arranged at the bottom position; the bottom of the first storage cavity is provided with a heat dissipation cavity for placing the heating end, and the heating end is arranged in the heat dissipation cavity.
[0016] Based on the structure of the above-mentioned low-power processing device for glass handicrafts, the second storage cavity comprises a first fan, a support cylinder, a rotating shaft and a support plate; the first fan is communicated with the end of the support cylinder, the support cylinder is fixedly arranged in the first storage cavity, the first support cylinder is hollow, rotating bearings are arranged at the ends of the rotating shaft and between the ends of the support cylinder and the top of the first storage cavity, and the rotating shaft can freely rotate on the support cylinder; the bottom position of the second storage cavity is further provided with a support mesh plate, and the lower end of the support mesh plate is provided with a heater; a first circulating fan is arranged in the heat dissipation cavity, one end of the first circulating fan is communicated with the heat dissipation cavity, and the other end is connected with the second storage cavity; a second circulating fan is arranged at the top of the second storage cavity, one end of the second circulating fan is communicated with the outside, and the other end is communicated with the inside of the second storage cavity;
[0017] A plurality of temperature detectors are arranged in the first storage cavity and the second storage cavity.
[0018] As described above, due to the adoption of the above technical scheme, the beneficial effects of the present application are:
[0019] 1. The glass handicraft fixing structure in the present application is sleeved on the glass handicraft through the abutting mechanism, and the two are connected as a whole, the abutting mechanism is separated, and the elastic mechanism is arranged in the abutting mechanism, which can ensure the stability of the connection between the glass handicraft and the abutting block through elastic support.
[0020] 2、The second telescopic rod will move along the arc surface when a sudden situation occurs and the shaking is severe. The more intense the shaking, the more the second telescopic rod will move along the arc surface. With the decrease of the arc of the arc surface, the first telescopic rod and the spring in the accommodating cavity will be pressed in the opposite direction, gradually increasing the supporting force. When a more intense shaking or vibration occurs, the abutting mechanism can provide stronger supporting force, and can gradually increase the abutting force within a certain range as the intensity increases, preventing the glass handicraft from falling and ensuring the stability of the glass handicraft in extreme cases.
[0021] 3、The glass handicraft low-power processing device in the embodiment can not only fix glass handicrafts of different sizes and shapes, but also fix glass handicrafts of different heights through the fixing of the support plate at different height positions. The embodiment can also provide high-temperature or low-temperature environment processing according to the optimal temperature requirements of different parts of the glass handicraft in different processes, without causing damage to the glass handicraft during transportation, and can also accelerate the action of the medicine and shorten the final forming time of the handicraft. BRIEF DESCRIPTION OF DRAWINGS
[0022] Fig. 1 It is a schematic view of the glass handicraft fixing structure of embodiment 1.
[0023] Fig. 2 It is a schematic view of the cooperation of the first support and the fixing hole.
[0024] Fig. 3 It is a schematic view of the glass handicraft fixing structure of embodiment 2.
[0025] Fig. 4 It is an enlarged structure schematic view of the reset mechanism in embodiment 2.
[0026] Fig. 5 It is a structure schematic view of a glass handicraft low-power processing device of embodiment 3.
[0027] Fig. 6 It is a top view structure schematic view of the support plate.
[0028] Fig. 7 It is a structure schematic view of the support net plate.
[0029] Marked in the figure: 1, support seat; 2, stop block; 3, abutting mechanism; 4, base; 5, shell part; 6, heat insulation plate; 7, glass handicraft; 101, first guide rail; 201, spring; 301, clamping seat; 302, first telescopic rod; 303, second telescopic rod; 304, accommodating cavity; 305, elastic structure; 306, fixing hole; 307, first support piece; 308, limiting structure; 309, first limiting ring; 310, second limiting ring; 311, rubber ring; 312, contact plate; 401, bearing seat; 402, bearing cavity; 403, second guide rail; 404, extension rod; 405, limiting groove; 406, abutting inclined surface; 407, elastic convex column; 408, first pulley; 409, second pulley; 410, connecting rope; 411, arc-shaped channel; 412, main channel; 413, reset thin rod; 414, reset main rod; 415, limiting block; 416, connecting channel; 417, handle; 51, first storage cavity; 52, second storage cavity; 511, refrigeration piece; 512, support cylinder; 513, rotating shaft; 514, support plate; 515, bolt hole; 516, first arc-shaped connecting plate; 517, second arc-shaped connecting plate; 518, center half hole; 519, bolt seat; 520, lock piece; 521, refrigeration end; 522, semiconductor piece; 523, heating end; 524, heat preservation layer; 525, heat dissipation cavity; 526, first fan; 527, support mesh plate; 528, heater; 529, first circulating fan; 530, second circulating fan; 531, temperature detector. DETAILED DESCRIPTION
[0030] All features disclosed in this specification, and / or all steps of any methods or processes disclosed in this specification, can be combined in any combination, except combinations where at least some of such features and / or steps are mutually exclusive.
[0031] Any feature disclosed in this specification, unless stated otherwise, can be replaced by alternative features or claims disclosed in this specification. That is, each feature is one example only of a number of alternative features.
[0032] In the description of the application, it should be understood that the orientation or positional relationship indicated by the terms "upper", "lower", "left", "right", etc. is based on the orientation or positional relationship shown in the drawings, and is only for the convenience of describing the application and simplifying the description, and does not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the application.
[0033] In addition, the terms "first", "second", and the like are used only for descriptive purposes, and cannot be construed as indicating or implying relative importance or implying the number of the indicated technical features. Therefore, the features defined as "first", "second", and the like can explicitly or implicitly include one or more of the features.
[0034] Embodiment 1
[0035] As shown in the drawings, the present application provides a technical solution: Figs. 1-2
[0036] A glass handicraft fixing structure, which at least includes but is not limited to a supporting seat 1, a resisting block 2, a resisting mechanism 3 and a base 4; the resisting mechanism 3 is sleeved on the glass handicraft 7, the resisting block 2 is connected with the supporting seat 1 and then arranged on the base 4, and the resisting mechanism 3 is configured to be in elastic contact with the side wall of the glass handicraft 7 at the other end when the resisting mechanism 3 contacts with the resisting block 2, so as to fix the glass handicraft 7.
[0037] Based on the above structure, the resisting mechanism 3 is sleeved on the glass handicraft 7, so that the two are connected as a whole, and the resisting mechanism 3 is separated at the same time, and the elastic mechanism is arranged in the resisting mechanism 3, so that the stability of the connection between the glass handicraft 7 and the resisting block 2 can be ensured through elastic support.
[0038] As an example, the resisting mechanism 3 can include a clamping seat 301, a first telescopic rod 302 and a second telescopic rod 303, one end of the second telescopic rod 303 is sleeved in the first telescopic rod 302, the clamping seat 301 is provided with a receiving cavity 304 for inserting the first telescopic rod 302, an elastic structure 305 is sleeved on the outer wall of the first telescopic rod 302, one end of the elastic structure 305 is connected with the receiving cavity 304, and the other end is connected with the outer wall of the first telescopic rod 302.
[0039] The side wall of the first telescopic rod 302 is provided with a fixing hole 306, which is uniformly arranged along the length direction of the first telescopic rod 302, and the outer wall of the second telescopic rod 303 is provided with a first supporting piece 307 elastically matched with the fixing hole 306, the first supporting piece 307 is connected with the second telescopic rod 303 through a spring 201, the limiting structure 308 is arranged on the outer wall of the second telescopic rod 303 close to the first supporting piece 307, and the diameter of at least part of the end of the first supporting piece 307 is not greater than that of the fixing hole 306.
[0040] Based on the above structure, by cooperating the fixed hole 306 with the first support 307, the relative length of the second telescopic rod 303 in the first telescopic rod 302 can be adjusted. After the adjustment and fixation of the first telescopic rod 302 and the second telescopic rod 303, the force received in the direction perpendicular to the first support 307 will be borne by the rigid contact between the first support 307 and the fixed hole 306, which can ensure the stability of the first telescopic rod 302 and the second telescopic rod 303 after the length change.
[0041] As preferred, the first support 307 can be in cylindrical, spherical or rectangular structure. The part of the end of the first support 307 can pass out of the fixed hole 306 to fix the first telescopic rod 302 and the second telescopic rod 303. When it is necessary to adjust the relative distance of the first support 307 and the second support, the first support 307 is pressed back into the fixed hole 306, and the first support 307 is clamped into the predetermined position for adjustment.
[0042] As an example, the first telescopic rod 302 is provided with a first limiting ring 309, and the accommodating cavity 304 is provided with a second limiting ring 310. The second limiting ring 310 can fix the limit position of the first limiting ring 309, prevent the first telescopic rod 302 from falling out of the accommodating cavity 304, and protect the spring 201 between the first telescopic rod 302 and the accommodating cavity 304.
[0043] As an example, the abutting mechanism 3 is connected by the rubber ring 311. The abutting mechanism 3 is provided with at least three on the rubber ring 311, and the adjacent abutting mechanism 3 is provided with the same central angle on the rubber ring 311.
[0044] Based on the above structure, by connecting the abutting mechanism 3 rubber ring 311, the size of the rubber ring 311 can be adjusted so that it can be set on glass handicrafts of different shapes to fix glass handicrafts of different sizes. At the same time, by providing multiple abutting mechanisms 3 on the rubber ring 311, the circumferential position of the glass handicraft 7 can be provided with the abutting mechanism 3, which can resist and fix the glass handicraft 7 in multiple directions.
[0045] As an example, the bottom of the clamping seat 301 is provided with a contact plate 312. The length of the contact plate 312 is at least 3 times the diameter of the accommodating cavity 304, so that the contact plate 312 has enough length to prevent the abutting mechanism from twisting and turning during fixation. The rubber ring 311 is connected and fixed with the center position of the contact plate 312.
[0046] When the glass handicraft 7 needs to be clamped by the device, the abutting mechanism 3 is adjusted to an appropriate length, and the second telescopic rod 303 is in contact with the resisting block 2 to complete the fixation of the fixed part.
[0047] As an example, the contact surface of the resistance block 2 with the second telescopic rod 303 is an arc surface, and the initial contact surface of the second telescopic rod 303 with the resistance block 2 is the maximum arc of the arc surface.
[0048] Based on the above structure, the resistance mechanism 3 is in contact with the arc surface to be fixed, and when a sudden situation occurs and shakes violently, the second telescopic rod 303 will move along the arc surface. The stronger the shaking, the more the second telescopic rod 303 will move along the arc surface. With the decrease of the arc of the arc surface, the first telescopic rod 302 and the spring 201 in the accommodating cavity 304 will be reversely pressed, gradually increasing the supporting force. When a more intense shaking or vibration is encountered, the resistance mechanism 3 can provide stronger supporting force, and can gradually increase the resistance degree within a certain range as the intensity increases, preventing the glass handicraft 7 from falling, and ensuring the stability of the glass handicraft 7 in extreme cases.
[0049] Embodiment 2
[0050] As shown in Figs. 3-4 Based on the above embodiment 1, this embodiment is similar to embodiment 1, and the difference is that a plurality of springs 201 are arranged between the support seat 1 and the resistance block 2, so that the support seat 1 and the resistance block 2 are elastically connected; the base 4 movably has a receiving seat 401 and a receiving cavity 402 for accommodating the receiving seat 401, and the receiving seat 401 is movably connected to the resistance block 2 through a connecting rope 410; the receiving seat 401 is arranged in the receiving cavity 402.
[0051] The end of the support seat 1 away from the base 4 is provided with a first guide rail 101 for guiding the upper end of the resistance block 2, and the base 4 is provided with a second guide rail 403 for guiding the lower end of the resistance block 2. The first guide rail 101 and the second guide rail 403 are matched and arranged, and the resistance block 2 can move between the first guide rail 101 and the second guide rail 403.
[0052] As an example, the receiving seat 401 can include an extension rod 404 and a limiting groove 405, the extension rod 404 is arranged at the bottom of the receiving seat 401, the limiting groove 405 is arranged on the side wall close to the top surface of the receiving seat 401, and the bottom surface of the receiving seat 401 is provided with a resistance inclined surface 406.
[0053] The elastic convex column 407 is arranged on the receiving cavity 402, and the position and size of the elastic convex column 407 are matched with the limiting groove 405, so that the elastic convex column 407 can be moved into the limiting groove 405 under the support of the elasticity to fix the receiving seat 401.
[0054] As an example, the first pulley 408 and the second pulley 409 are arranged between the receiving seat 401 and the resistance block 2, and the connecting rope 410 connects the resistance block 2 and the extension rod 404 through the first pulley 408 and the second pulley 409.
[0055] Based on the above structure, when fixing the glass handicraft, it cannot be clamped into the appropriate position at one time, and the length of the first telescopic rod 302 and the second telescopic rod 303 can only be adjusted to the approximate length first, at this time, the abutting mechanism 3 can have a certain gap with the abutment, by gradually pressing the glass handicraft 7 into the receiving cavity 402 along the direction perpendicular to the base 4, when the elastic protruding column 407 is clamped into the limiting groove 405, the elastic protruding column 407 supports the receiving seat 401, and at the same time, in the process of moving the receiving seat 401 downward, the extension rod 404 also moves downward synchronously, synchronously drives the connection movement, moves the receiving block to the direction close to the glass handicraft 7, and reduces the distance between the abutting mechanism 3 and the abutment block 2 to a certain extent, so that the abutting mechanism 3 can abut the glass handicraft 7 at the initial position. The operation of the present scheme is simple, and after the length of the abutting mechanism 3 is preliminarily determined, the receiving seat 401 is pressed downward, and the stable connection of the glass handicraft 7 can be completed.
[0056] As an example, the receiving seat 401 is provided with a reset mechanism, which can include a reset cavity and a reset rod; the reset cavity is communicatively connected with the limiting groove 405, the reset cavity is provided with an arc-shaped channel 411 and a main channel 412, the arc-shaped channel 411 is respectively connected with each limiting groove 405, and the arc-shaped channel 411 is connected with the main channel 412 after converging.
[0057] The reset rod can include a reset thin rod 413 and a reset main rod 414, the reset thin rod 413 is arranged in each arc-shaped channel 411, the reset main rod 414 is arranged in the main channel 412, the reset thin rod 413 converges and is connected with the reset main rod 414, and at least one limiting block 415 is arranged on the reset thin rod 413, the size of the limiting block 415 after converging of all reset thin rods 413 is greater than the size of the main channel 412, so that the limiting block 415 can limit the reset rod from being separated.
[0058] A connecting channel 416 is arranged in the base 4, one end of the reset main rod 414 is arranged in the connecting channel 416, and a handle 417 is arranged at the end of the reset rod, the reset rod can be pushed through the handle 417, the reset thin rod 413 can push the elastic protruding column 407 out of the limiting groove 405, the fixed state of the receiving seat 401 is released, and at the same time, the abutment block 2 connected by the connecting rope 410 is also released, so that the glass handicraft 7 can be taken out of the cavity between the abutment blocks 2.
[0059] The reset rod can be a plastic rod with certain rigidity.
[0060] Embodiment 3
[0061] As Figs. 5-7As shown, the embodiment provides a low-power glass handicraft processing device, which comprises the glass handicraft fixing structure and the shell part 5 described in embodiment 1 or embodiment 2, the shell part 5 is provided with a heat insulation plate 6, the heat insulation plate 6 divides the inside of the shell part 5 into a first storage cavity 51 and a second storage cavity 52; the first storage cavity 51 is provided with a heating piece, and the second storage cavity 52 is provided with a refrigeration piece, and the glass handicraft fixing structure is arranged in the first storage cavity 51 and the second storage cavity 52 respectively.
[0062] Based on the above structure, by dividing the shell part 5 into two cavities, and arranging the heating piece and the refrigeration piece in the two cavities respectively, the required temperature requirements of the medicament on different parts of the glass handicraft under different processes can be matched.
[0063] As an example, the first storage cavity 51 can include a refrigeration piece 511, a support cylinder 512, a rotating shaft 513 and a support plate 514; the support cylinder 512 is fixedly arranged in the first storage cavity 51, the first support cylinder 512 is hollowly arranged, the rotating shaft 513 is provided with rotating shaft 513 bearings at both ends of the support cylinder 512 and between the end of the support cylinder 512 and the top of the first storage cavity 51, and the rotating shaft 513 can freely rotate on the support cylinder 512.
[0064] The rotating shaft 513 is hollowly arranged, and a plurality of bolt holes 515 are arranged along the length direction of the rotating shaft 513, and the support plate 514 is connected with the rotating shaft 513 through the bolt holes 515. The refrigeration piece 511 is communicated with the support cylinder 512 through a pipeline.
[0065] Based on the above structure, the cold energy generated by the refrigeration piece 511 can be transmitted to the support cylinder 512 and the rotating shaft 513, and due to the arrangement of the plurality of bolt holes 515, the holes can not only be used as connecting pieces with the support plate 514, but also be used as air holes, the cold energy will flow along the length direction of the rotating shaft 513 and evenly spread around, so as to ensure the constant temperature in the first storage cavity 51.
[0066] As an example, the support plate 514 as a whole can be a circular structure, and the support plate 514 can include a first arc-shaped connecting plate 516 and a second arc-shaped connecting plate 517, and the first arc-shaped connecting plate 516 and the second arc-shaped connecting plate 517 can be combined into a circular structure,
[0067] The first arc-shaped connecting plate 516 and the second arc-shaped connecting plate 517 are both provided with a center half hole 518 and a bolt seat 519, the shape of the center half hole 518 is matched with the shape of the rotating shaft 513, and the bolt seat 519 is used for fixing the bolt hole 515.
[0068] And the first arc-shaped connecting plate 516 and the second arc-shaped connecting plate 517 are provided with a lock piece 520, and the first arc-shaped connecting plate 516 and the second arc-shaped connecting plate 517 are connected into a complete circular structure through the lock piece 520.
[0069] In the scheme, the support plate 514 is arranged in multiple in the length direction of the rotating shaft 513, and can be fixed at different height positions as needed, so as to adapt to containers of different heights and increase the practicability of the scheme.
[0070] As an example, the refrigeration sheet 511 includes a refrigeration end 521, a semiconductor sheet 522, and a heating end 523. The refrigeration end 521 is connected to the support cylinder 512 through a pipeline, and a heat preservation layer 524 is arranged between the pipelines. The heating end 523 is arranged at the bottom position.
[0071] The bottom of the first storage cavity 51 is provided with a heat dissipation cavity 525 for placing the heating end 523, and the heating end 523 is arranged in the heat dissipation cavity 525.
[0072] As an example, the second storage cavity 52 can include a first fan 526, a support cylinder 512, a rotating shaft 513, and a support plate 514. The first fan 526 is arranged in communication with the end of the support cylinder 512. The support cylinder 512 is fixedly arranged in the first storage cavity 51. The first support cylinder 512 is hollow. The rotating shaft 513 is arranged at the end of the support cylinder 512 and the top of the first storage cavity 51, respectively. The rotating shaft 513 can freely rotate on the support cylinder 512.
[0073] The structure of the rotating shaft 513 and the support plate 514 is similar to that of the second storage cavity 52, and will not be described here.
[0074] The bottom position of the second storage cavity 52 is also provided with a support mesh plate 527, and the lower end of the support mesh plate 527 is provided with a heater 528.
[0075] Based on the above structure, when the second storage cavity 52 needs to be warmed up, the heater 528 and / or the first fan 526 are turned on for heating or drying operation.
[0076] As an example, the heat dissipation cavity 525 is provided with a first circulating fan 529, one end of the first circulating fan 529 is in communication with the heat dissipation cavity 525, and the other end is connected with the second storage cavity 52.
[0077] Through the circulating fan, the heat in the heating end 523 can be blown into the second storage cavity 52 for use, saving the overall energy input and realizing the recycling use of energy.
[0078] As an example, the top of the second storage cavity 52 can be provided with a second circulating fan 530, one end of the second circulating fan 530 is in communication with the outside world, and the other end is in communication with the inside of the second storage cavity 52.
[0079] Based on the above structure, the function is selected according to the actual needs, such as only dry operation is needed, then the first circulating fan 529, the first circulating fan 529 and / or the first fan 526 are started; if heating operation is needed, then the heater 528 is started, and the first circulating fan 529 and / or the first fan 526 are started.
[0080] As an example, a plurality of temperature detectors 531 are arranged in the first storage cavity 51 and the second storage cavity 52, the temperature of the current cavity can be detected through the temperature detector 531, and the input of cold or heat is dynamically adjusted.
[0081] The glass handicraft low-power processing device in the scheme can not only fix glass handicrafts of different sizes and shapes, but also fix glass handicrafts of different heights through the fixing of the support plate 514 at different height positions. The scheme can also provide a high-temperature or low-temperature environment processing according to the optimal temperature requirements of different medicaments on different parts of the glass handicraft under different processes, and will not cause damage to the glass handicraft during the transfer process. In addition, the scheme can also accelerate the action of the medicament and shorten the final forming time of the handicraft.
[0082] The above only describes the preferred embodiments of the present application and is not intended to limit the present application. Any modification, equivalent replacement and improvement within the spirit and principle of the present application shall be included in the protection scope of the present application.
Claims
1. A fixing structure for glass handicrafts, characterized in that, The device includes a support base, a stop block, a stop mechanism, and a base. The stop mechanism is fitted onto the glass craft. The stop block is connected to the support base and then mounted on the base. The stop mechanism is configured such that when it contacts the stop block, its other end elastically contacts the side wall of the glass craft, thus fixing the glass craft. The stop mechanism includes a clamping seat, a first telescopic rod, and a second telescopic rod. One end of the second telescopic rod is fitted into the first telescopic rod. The clamping seat has a receiving cavity for inserting the first telescopic rod. An elastic structure is fitted onto the outer wall of the first telescopic rod, with one end connected to the receiving cavity and the other end connected to the outer wall of the first telescopic rod. A fixing hole is provided on the side wall of the first telescopic rod, and the fixing hole extends along the first telescopic rod... The telescopic rods are evenly distributed along their length. A first support member is provided on the outer wall of the second telescopic rod, which elastically engages with the fixing hole. The first support member is connected to the second telescopic rod by a spring. A limit structure is provided on the outer wall of the first support member near the second telescopic rod. At least a portion of the end of the first support member is not larger than the diameter of the fixing hole. The abutment mechanism is connected by a rubber ring. At least three abutment mechanisms are provided on the rubber ring, and adjacent abutment mechanisms have the same central angle on the rubber ring. A contact plate is provided at the bottom of the clamping seat. The length of the contact plate is at least three times the diameter of the accommodating cavity. The contact surface between the stop block and the second telescopic rod is an arc-shaped surface. The initial contact surface between the second telescopic rod and the stop block is at the point where the arc of the arc surface is at its maximum.
2. The glass craft fixing structure as described in claim 1, characterized in that: Multiple sets of springs are provided between the support base and the stop block to provide an elastic connection between them. A receiving seat and a receiving cavity for accommodating the receiving seat are movably provided on the base. The receiving seat is movably connected to the stop block via a connecting rope. The receiving seat is disposed in the receiving cavity. A first guide rail is provided on the end of the support base away from the base to guide the upper end of the stop block. A second guide rail is provided on the base to guide the lower end of the stop block. The first guide rail and the second guide rail are matched and arranged so that the stop block can move between the first guide rail and the second guide rail.
3. The glass craft fixing structure as described in claim 2, characterized in that: The receiving seat includes an extension rod and a limiting groove. The extension rod is located at the bottom of the receiving seat, and the limiting groove is located on the side wall near the top surface of the receiving seat. A contacting inclined surface is provided at the bottom surface of the receiving seat. An elastic protrusion is provided on the receiving cavity. The position and size of the elastic protrusion are matched with the limiting groove. The elastic protrusion can move into the limiting groove under the support of elasticity to fix the receiving seat. A first pulley and a second pulley are provided between the receiving seat and the abutment block. The connecting rope connects the abutment block and the extension rod through the first pulley and the second pulley.
4. The glass craft fixing structure as described in claim 3, characterized in that: The receiving seat is provided with a reset mechanism, which includes a reset cavity and a reset rod. The reset cavity is connected to a limiting groove and has an arc-shaped channel and a main channel. The arc-shaped channel is connected to each limiting groove and converges to connect with the main channel. The reset rod includes a reset thin rod and a reset main rod. The reset thin rod is located in each arc-shaped channel, and the reset main rod is located in the main channel. The reset thin rods converge and connect with the reset main rod. Furthermore, at least one reset thin rod is provided with a limiting block. The combined size of the limiting block and all the reset thin rods is larger than the size of the main channel, so that the limiting block can prevent the reset rod from detaching.
5. A low-power processing device for glass crafts, characterized in that: Includes a glass craft fixing structure and a housing as described in any one of claims 1 to 4, wherein a heat insulation plate is provided in the housing, and the heat insulation plate divides the interior of the housing into a first storage cavity and a second storage cavity; A heating element is provided in the first storage cavity, and a cooling element is provided in the second storage cavity. The glass craft fixing structure is respectively provided in the first storage cavity and the second storage cavity.
6. The low-power processing device for glass crafts as described in claim 5, characterized in that: The first storage cavity includes a cooling chip, a support cylinder, a rotating shaft, and a support plate. The support cylinder is fixedly disposed in the first storage cavity and is hollow. Rotary bearings are respectively disposed at both ends of the rotating shaft between the ends of the support cylinder and the top of the first storage cavity, allowing the rotating shaft to rotate freely on the support cylinder. The rotating shaft is hollow and has multiple bolt holes along its length. The support plate is connected to the rotating bearings through these bolt holes. The cooling chip is connected to the support cylinder via a pipe. The support plate is generally circular and includes a first arc-shaped connecting plate and a second arc-shaped connecting plate. The plates can be assembled into a circular structure; both the first and second arc-shaped connecting plates are provided with a central half-hole and a bolt seat, the shape of the central half-hole is adapted to the shape of the rotating shaft, and the bolt seat is used for fixing with bolt holes; the first and second arc-shaped connecting plates are provided with locking fasteners, which connect the first and second arc-shaped connecting plates into a complete circular structure; the cooling chip includes a cooling end, a semiconductor chip and a heating end, the cooling section is connected to the support cylinder through pipes, and a heat insulation layer is provided between the pipes; the heating end is located at the bottom; the bottom of the first storage cavity is provided with a heat dissipation cavity for placing the heating end, and the heating end is located in the heat dissipation cavity.
7. The low-power processing device for glass crafts as described in claim 6, characterized in that: The second storage cavity includes a first fan, a support cylinder, a rotating shaft, and a support plate. The first fan is connected to the end of the support cylinder, which is fixedly installed in the first storage cavity. The first support cylinder is hollow. Rotary bearings are respectively installed at both ends of the rotating shaft between the end of the support cylinder and the top of the first storage cavity, allowing the rotating shaft to rotate freely on the support cylinder. A support mesh plate is also installed at the bottom of the second storage cavity, and a heater is installed at the lower end of the support mesh plate. A first circulation fan is installed in the heat dissipation cavity, with one end connected to the heat dissipation cavity and the other end connected to the second storage cavity. A second circulation fan is installed at the top of the second storage cavity, with one end connected to the outside and the other end connected to the interior of the second storage cavity. Multiple temperature detectors are installed in both the first and second storage cavities.
Citation Information
Patent Citations
Protection device for lacquerware handicrafts
CN115196189A
Fixing device for glass processing
CN210968556U