CN216910848U - Environment-friendly silica gel former - Google Patents

Environment-friendly silica gel former Download PDF

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Publication number
CN216910848U
CN216910848U CN202220623214.4U CN202220623214U CN216910848U CN 216910848 U CN216910848 U CN 216910848U CN 202220623214 U CN202220623214 U CN 202220623214U CN 216910848 U CN216910848 U CN 216910848U
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silica gel
environment
base
box
guide rail
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CN202220623214.4U
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Chinese (zh)
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张文彬
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Taian Eurasian Kitchen Products Co ltd
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Taian Eurasian Kitchen Products Co ltd
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Abstract

The utility model relates to the technical field of pot cover processing and forming, in particular to an environment-friendly silica gel forming device which comprises a rack, wherein a base is horizontally arranged at the top of the rack, a forming box is arranged at the top of the base, the forming box is in a rectangular structure, a double-open type box door is arranged at the side part of the forming box, and a movable hinge structure is formed between the box door and the forming box; the gluing direction of the gluing head can be freely adjusted within a certain range, the pot cover gluing device is suitable for pot cover gluing operation with different sizes, the gluing uniformity and fineness are improved, and waste of silica gel raw materials is avoided; the pot cover provided by the utility model has a simple structure, the heating medium can accelerate the curing time of the silica gel in the processing process, and the silica gel is not required to be taken out after the silica gel raw material is formed, so that the production efficiency of the pot cover is improved.

Description

Environment-friendly silica gel former
Technical Field
The utility model relates to the technical field of pot cover processing and forming, in particular to environment-friendly silica gel forming equipment.
Background
A pot cover made of toughened glass is used to cover the entrance of pot, preventing the liquid from splashing due to heating of the matter in pot, and making hot air circulate in pot to speed up cooking of food.
Before the user uncovered the pot cover, because this moment the pot cover is covered with vapor, in case the pot cover is uncovered the back, vapor then can meet the condensation rapidly and condense into the drop of water, and the drop of water is along the inner wall landing downwards of pot cover under the effect of gravity, and the cladding is covered with the drop of water in the steel ring at pot cover edge, and the special construction of steel ring makes the user be difficult to the clearance, makes the pot cover breed the bacterium easily, consequently needs to use silica gel sealed.
Current silica gel is paintd and is adopted traditional manual work to paint the mode more, exists during the rubber coating and paint the condition emergence inhomogeneous, that overflow glues, influences rubber-coated fineness and degree of consistency, and then influences the rubber coating quality of pot cover, causes the silica gel raw materials extravagant, and silica gel solidification shaping speed is slow in addition, needs to place a period alone, and pot cover rubber coating inefficiency can't satisfy the production demand.
SUMMERY OF THE UTILITY MODEL
The utility model provides environment-friendly silica gel forming equipment, which has the following specific implementation mode:
an environment-friendly silica gel forming device comprises a frame, a base, a forming box, a box door, a positioning mechanism, a driving mechanism, a lifting mechanism, a first guide rail, a second guide rail, a sliding seat and a gluing head, wherein the base is horizontally arranged at the top of the frame, the forming box is arranged at the top of the base and is of a rectangular structure, the double-open box door is arranged at the side part of the forming box, a movable hinge structure is formed between the box door and the forming box, the positioning mechanisms are symmetrically arranged at two ends of the central line of the base, the driving mechanism is clamped between the two groups of positioning mechanisms and is arranged at the central axis of the base, the lifting mechanism is longitudinally arranged above the driving mechanism, the lifting mechanism and the driving mechanism are positioned on the same axis, the first guide rail is symmetrically arranged at two ends of the central axis of the base, the second guide rail is horizontally arranged at the oblique angle of the base, the sliding seat which horizontally slides is arranged on the second guide rail, the sliding seat is provided with a gluing head.
Furthermore, a heating medium is arranged on the forming box, and a temperature sensor is arranged in the forming box and used for detecting the temperature change in the forming box so as to control the temperature of the forming box.
The positioning mechanism comprises a lead screw and a motor used for driving the lead screw to rotate, a sliding seat is sleeved on the outer side of the lead screw, a connecting rod is longitudinally arranged at the top of the sliding seat, a positioning plate in an arc shape is horizontally arranged at the top of the connecting rod, a supporting rod in sliding connection with the first guide rail is arranged at the bottom of the positioning plate, an inwards-concave dovetail groove is formed in the joint of the supporting rod and the first guide rail, and two groups of supporting bodies are longitudinally arranged on the positioning plate.
The supporting body comprises a supporting rod and a retaining ring, the retaining ring is axially arranged at the bottom of the supporting rod, a joint is axially arranged at the top of the supporting rod, a reset spring is connected between the joint and the positioning plate, a ball socket is arranged in the joint, and a rotatable ball body is arranged in the ball socket.
The driving mechanism comprises a power element and a rotating shaft, the power element is used for driving the rotating shaft to rotate, a rotating disc is axially arranged at the top of the rotating shaft, a plurality of suckers are distributed on the rotating disc at intervals along the circumferential direction, and positioning columns are axially arranged at the top of the rotating disc.
Elevating system includes cylinder and sleeve, and the telescopic link and the muffjoint of cylinder, telescopic bottom axial cover are equipped with the clamp plate, and the outside cover of clamp plate is equipped with the spring, and the spring is connected with telescopic bottom, and the commentaries on classics hole has been seted up to the axial in the clamp plate.
The gluing head comprises a shell and a shell cover, wherein the shell is in threaded connection with the shell cover, a main flow path part, a first flow path part and a second flow path part are sequentially arranged in the shell from right to left, and the main flow path part is communicated with the hose.
Furthermore, the end face of the shell cover is provided with a glue coating nozzle, the shell cover is communicated with at least three circulating parts.
Further, the last cladding of rubberizing mouth has the rubberizing cotton, and the edge of circulation portion is equipped with rotatable ball, utilizes the frictional force that ball and pot cover direct contact produced, makes the ball roll in the edge of circulation portion, takes out silica gel and scribbles in the edge of pot cover, reaches the purpose that silica gel was scribbled.
Due to the adoption of the technical scheme, the utility model has the beneficial technical effects that:
1. according to the automatic coating machine, silica gel can be automatically coated on the edge of the pot cover, the traditional manual operation is replaced, and time and labor are saved, so that the production efficiency is improved, and the production cost is reduced;
2. the automatic pot cover gluing device can realize that the gluing direction of the gluing head can be freely adjusted within a certain range, is suitable for pot cover gluing operation with different sizes, improves the uniformity and the fineness of gluing, and avoids waste of silica gel raw materials;
3. the pot cover has a simple structure, the heating medium can accelerate the curing time of the silica gel in the processing process, and the silica gel is not required to be taken out after the silica gel raw material is molded, so that the production efficiency of the pot cover is improved.
Drawings
FIG. 1 is a first schematic structural diagram of an environment-friendly silica gel molding apparatus according to the present invention;
FIG. 2 is a schematic view of a part of the structure of an environment-friendly silica gel molding apparatus according to the present invention;
FIG. 3 is a schematic structural diagram of an environment-friendly silica gel molding apparatus according to the present invention;
FIG. 4 is a schematic view of a positioning mechanism according to the present invention;
FIG. 5 is an enlarged view of a portion of the positioning mechanism of the present invention;
FIG. 6 is an exploded view of the positioning mechanism of the present invention;
FIG. 7 is a cross-sectional view of an environment-friendly silica gel molding apparatus according to the present invention;
FIG. 8 is an exploded view of the glue head of the present invention;
FIG. 9 is a cross-sectional view of the housing of the present invention;
FIG. 10 is a diagram of the working status of an environment-friendly silica gel molding apparatus according to the present invention.
Description of reference numerals:
1. a frame, 2, a base, 3, a forming box, 4, a box door, 5, a positioning mechanism, 6, a driving mechanism, 7, a lifting mechanism, 8, a first guide rail, 9, a second guide rail, 10, a sliding seat, 11, a gluing head, 12 and an adjusting piece,
301. the heating medium, 302, the temperature sensor,
501. a motor 502, a lead screw 503, a slide carriage 504, a connecting rod 505, a positioning plate 506, a support rod 507, a dovetail groove 508 and a support body,
5081. a support rod, 5082, a baffle ring, 5083, a joint, 5084, a return spring, 5085, a ball socket, 5086 and a sphere,
601. a power element 602, a rotating shaft 603, a turntable 604, a sucker 605, a positioning column,
701. cylinder, 702, sleeve, 703, pressure plate, 704, rotary hole, 705, spring,
1101. the housing, the housing cover, 1102,
11011. a main channel portion 11012, a first channel portion 11013, a second channel portion 11014, a hose,
11021. a glue coating nozzle 11022 and a circulating part.
Detailed Description
The following description of the embodiments of the present invention refers to the accompanying drawings and examples:
it should be noted that the structures, proportions, sizes, and other dimensions shown in the drawings and described in the specification are only for the purpose of understanding and reading the present disclosure, and are not intended to limit the scope of the present disclosure, which is defined by the following claims, and any modifications of the structures, changes in the proportions and adjustments of the sizes, without affecting the efficacy and attainment of the same, are intended to fall within the scope of the present disclosure.
In addition, the terms "upper", "lower", "left", "right", "middle" and "one" used in the present specification are used for clarity of description, and are not intended to limit the scope of the present invention, and the relative relationship between the terms and the terms may be changed or adjusted without substantial change in the technical content.
Embodiment 1, with reference to fig. 1 and 2, this embodiment provides an environment-friendly silica gel molding apparatus, which includes a frame 1, a base 2 horizontally disposed on the top of the frame 1, a molding box 3 disposed on the top of the base 2, the molding box 3 being a rectangular structure, a double-open box door 4 disposed on the side of the molding box 3, a movable hinge structure formed between the box door 4 and the molding box 3, positioning mechanisms 5 symmetrically disposed on the two ends of the base 2 along the central line, a driving mechanism 6 sandwiched between the two groups of positioning mechanisms 5, the driving mechanism 6 disposed on the central axis of the base 2, a lifting mechanism 7 longitudinally disposed above the driving mechanism 6, the lifting mechanism 7 and the driving mechanism 6 being on the same axis, first guide rails 8 symmetrically disposed on the two ends of the base 2 along the central axis, a second guide rail 9 horizontally disposed at the oblique angle of the base 2, and a sliding seat 10 horizontally disposed on the second guide rail 9, the sliding seat 10 is provided with a gluing head 11.
Specifically, the adjusting part 12 is sleeved on the sliding seat 10 in a sliding mode and fixed through a bolt, so that the height of the gluing head 11 is adjusted, the gluing head 11 is movably hinged to the adjusting part 12 and fixed through the bolt, the angle of the gluing head 11 in a certain range is adjusted, and the flexibility of the gluing head 11 is improved.
Embodiment 2, with reference to fig. 3 to 5, this embodiment further provides an environment-friendly silica gel molding apparatus, the positioning mechanism 5 further includes a lead screw 502 and a motor 501 for driving the lead screw 502 to rotate, a sliding base 503 is sleeved outside the lead screw 502, a connecting rod 504 is longitudinally arranged at the top of the sliding base 503, an arc-shaped positioning plate 505 is horizontally arranged at the top of the connecting rod 504, a supporting rod 506 slidably connected to the first guide rail 8 is arranged at the bottom of the positioning plate 505, an inward concave dovetail groove 507 is arranged at a connection position of the supporting rod 506 and the first guide rail 8, and two groups of supporting bodies 508 are longitudinally arranged on the positioning plate 505.
Specifically, two sets of motors 501 drive the screws 502 on two sides to rotate simultaneously, and the screws 502 drive the sliding base 503 to move closer to the center of the base 2, so that the dovetail grooves 507 slide along the first guide rail 8, and the supporting body 508 on the positioning plate 505 contacts the bottom surface of the pot cover, thereby achieving the purpose of supporting the pot cover.
Referring to fig. 6, the supporting body 508 includes a supporting rod 5081 and a retaining ring 5082, the bottom of the supporting rod 5081 is axially provided with the retaining ring 5082, the top of the supporting rod 5081 is axially provided with a joint 5083, a return spring 5084 is connected between the joint 5083 and the positioning plate 505, a ball socket 5085 is arranged in the joint 5083, a rotatable ball 5086 is arranged in the ball socket 5085, specifically, when the pot cover is placed on the ball 5086, the surface of the ball 5086 is tangent to the pot cover, the return spring 5084 is compressed downwards by the self weight of the pot cover, so that the pot cover is buffered, and the practicability of the pot covers with different sizes is further improved.
Referring to fig. 7, the driving mechanism 6 includes a power element 601 and a rotating shaft 602, the power element 601 is used for driving the rotating shaft 602 to rotate, a rotating disc 603 is axially disposed on the top of the rotating shaft 602, a plurality of suction cups 604 are disposed on the rotating disc 603 at intervals along the circumferential direction, a positioning column 605 is axially disposed on the top of the rotating disc 603, specifically, the suction cups 604 are connected with an external vacuum-pumping device, when a pot cover is placed on the positioning mechanism 5, the vacuum-pumping device is turned on, and the suction cups 604 suck the bottom of the pot cover to prevent the pot cover from shifting during gluing.
The lifting mechanism 7 comprises an air cylinder 701 and a sleeve 702, an expansion rod of the air cylinder 701 is connected with the sleeve 702, a pressing plate 703 is axially sleeved at the bottom end of the sleeve 702, a spring 705 is sleeved outside the pressing plate 703, the spring 705 is connected with the bottom end of the sleeve 702, a rotating hole 704 is axially formed in the pressing plate 703, and specifically, the air cylinder 701 pushes the sleeve 702 to move downwards, so that the pressing plate 703 presses the surface of the pot cover, and the positioning column 605 is sleeved in the rotating hole 704 to fix the pot cover.
Embodiment 3, with reference to fig. 8 and 9, this embodiment further provides an environment-friendly silica gel molding apparatus, where the glue applying head 11 includes a housing 1101 and a housing cover 1102, the housing 1101 is in threaded connection with the housing cover 1102, a main flow path portion 11011, a first flow path portion 11012, and a second flow path portion 11013 are sequentially disposed in the housing 1101 from right to left, the main flow path portion 11011 is communicated with a hose 11014, specifically, the hose 11014 is connected with an external storage tank, the silica gel raw material conveyed from the hose 11014 is conveyed into the housing cover 1102 through the main flow path portion 11011, the first flow path portion 11012, and the second flow path portion 11013, and is applied to the surface of the pot cover from a glue applying nozzle 11021 of a top end opening of the housing cover 1102.
The end face of the cover 1102 is provided with a gluing nozzle 11021, the cover 1102 is communicated with a circulation part 11022, and at least three circulation parts 11022 are arranged. Specifically, the silica gel raw material flowing out of the second flow path portion 11013 flows to the surface of the pot cover from the flow portion 11022, so that the silica gel raw material is uniformly discharged, and the balls do not make the silica gel raw material overflow outwards, so that the silica gel raw material is uniformly coated on the surface of the pot cover through the glue spreading cotton, and waste of the silica gel raw material is avoided.
Embodiment 4, this embodiment provides a method for using an environment-friendly silica gel molding apparatus based on the above.
When the cooker cover is used, firstly, the door 4 is opened, the position of the positioning mechanism 5 is determined according to the size of the cooker cover, simultaneously, two sets of motors 501 are opened, the motors 501 drive the lead screw 502 to rotate, the lead screw 502 drives the sliding seat 503 to approach to the center of the base 2, so that the dovetail groove 507 slides along the first guide rail 8, then the cooker cover is placed on the positioning mechanism 5, the bottom surface of the cooker cover is tangent to the ball 5086, the self weight of the cooker cover is utilized to compress the return spring 5084 downwards to buffer the cooker cover, meanwhile, the suction cup 604 is connected with external vacuum pumping equipment, when the cooker cover is placed on the positioning mechanism 5, the vacuum pumping equipment is started, the suction cup 604 sucks the bottom of the cooker cover, then the sliding seat 10 moves forwards along the second guide rail 9, the gluing head 11 is in contact with the surface of the cooker cover, the cylinder 701 is started, the cylinder 701 pushes the sleeve 702 to move downwards, so that the pressure plate 703 presses the surface of the cooker cover, and the positioning column 605 is sleeved in the rotating hole 704, the pot cover is fixed.
Close chamber door 4, open heating medium 301 and preheat shaping case 3, through the temperature in the temperature sensor 302 real-time detection shaping case 3, open power component 601, power component 601 drives the pivot 602 rotatory to it is rotatory to drive the pot cover, the edge of pot cover is in the pivoted in-process and passes through rubber coating mouth 11021, thereby with the even coating of silica gel raw materials on the pot cover surface, avoid the silica gel raw materials the condition of overflowing glue to appear for the shaping efficiency of silica gel raw materials.
Many other changes and modifications may be made without departing from the spirit and scope of the utility model. It is to be understood that the utility model is not to be limited to the specific embodiments, but only by the scope of the appended claims.

Claims (9)

1. An environment-friendly silica gel forming device, which comprises a frame (1), a base (2), a forming box (3), a box door (4), a positioning mechanism (5), a driving mechanism (6), a lifting mechanism (7), a first guide rail (8), a second guide rail (9), a sliding seat (10) and a gluing head (11), and is characterized in that,
the top of the frame (1) is horizontally provided with a base (2), the top of the base (2) is provided with a forming box (3), the forming box (3) is of a rectangular structure, the lateral part of the forming box (3) is provided with a double-open box door (4), a movable hinge structure is formed between the box door (4) and the forming box (3), the base (2) is symmetrically provided with positioning mechanisms (5) along two ends of a central line, a driving mechanism (6) is clamped between the two groups of positioning mechanisms (5), the driving mechanism (6) is arranged at the central axis of the base (2), a lifting mechanism (7) is longitudinally arranged above the driving mechanism (6), the lifting mechanism (7) and the driving mechanism (6) are positioned on the same axis, the base (2) is symmetrically provided with a first guide rail (8) along two ends of the central axis, and a second guide rail (9) is horizontally arranged at the oblique angle of the base (2), a sliding seat (10) which horizontally slides is arranged on the second guide rail (9), and a gluing head (11) is arranged on the sliding seat (10).
2. The environment-friendly silica gel molding equipment according to claim 1, wherein the molding box (3) is provided with a heating medium (301), and the molding box (3) is provided with a temperature sensor (302).
3. The environment-friendly silica gel molding equipment of claim 1, wherein the positioning mechanism (5) comprises a lead screw (502) and a motor (501) for driving the lead screw (502) to rotate, a sliding base (503) is sleeved outside the lead screw (502), a connecting rod (504) is longitudinally arranged at the top of the sliding base (503), an arc-shaped positioning plate (505) is horizontally arranged at the top of the connecting rod (504), a supporting rod (506) slidably connected with the first guide rail (8) is arranged at the bottom of the positioning plate (505), an inward concave dovetail groove (507) is arranged at the connection position of the supporting rod (506) and the first guide rail (8), and two groups of supporting bodies (508) are longitudinally arranged on the positioning plate (505).
4. The environment-friendly silica gel molding equipment of claim 3, wherein the support body (508) comprises a support rod (5081) and a retaining ring (5082), the bottom of the support rod (5081) is axially provided with the retaining ring (5082), the top of the support rod (5081) is axially provided with a joint (5083), a return spring (5084) is connected between the joint (5083) and the positioning plate (505), a ball socket (5085) is arranged in the joint (5083), and a rotatable ball (5086) is arranged in the ball socket (5085).
5. The environment-friendly silica gel molding equipment according to claim 1, wherein the driving mechanism (6) comprises a power element (601) and a rotating shaft (602), the power element (601) is used for driving the rotating shaft (602) to rotate, a rotating disc (603) is axially arranged at the top of the rotating shaft (602), a plurality of sucking discs (604) are arranged on the rotating disc (603) at intervals along the circumferential direction, and a positioning column (605) is axially arranged at the top of the rotating disc (603).
6. The environment-friendly silica gel molding equipment as claimed in claim 1, wherein the lifting mechanism (7) comprises a cylinder (701) and a sleeve (702), an expansion link of the cylinder (701) is connected with the sleeve (702), a pressing plate (703) is axially sleeved at the bottom end of the sleeve (702), a spring (705) is sleeved outside the pressing plate (703), the spring (705) is connected with the bottom end of the sleeve (702), and a rotary hole (704) is axially formed in the pressing plate (703).
7. The environment-friendly silica gel molding equipment of claim 1, wherein the gluing head (11) comprises a housing (1101) and a housing cover (1102), the housing (1101) is in threaded connection with the housing cover (1102), a main flow path part (11011), a first flow path part (11012) and a second flow path part (11013) are sequentially arranged in the housing (1101) from right to left, and the main flow path part (11011) is communicated with the hose (11014).
8. The environment-friendly silica gel molding equipment of claim 7, wherein the end surface of the housing cover (1102) is provided with a coating nozzle (11021), the housing cover (1102) is communicated with a circulation part (11022), and the circulation part (11022) is provided with at least three.
9. The environment-friendly silica gel molding equipment of claim 8, wherein the coating nozzle (11021) is coated with coating cotton, and the edge of the circulation part (11022) is provided with a rotatable ball.
CN202220623214.4U 2022-03-22 2022-03-22 Environment-friendly silica gel former Active CN216910848U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202220623214.4U CN216910848U (en) 2022-03-22 2022-03-22 Environment-friendly silica gel former

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202220623214.4U CN216910848U (en) 2022-03-22 2022-03-22 Environment-friendly silica gel former

Publications (1)

Publication Number Publication Date
CN216910848U true CN216910848U (en) 2022-07-08

Family

ID=82227486

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202220623214.4U Active CN216910848U (en) 2022-03-22 2022-03-22 Environment-friendly silica gel former

Country Status (1)

Country Link
CN (1) CN216910848U (en)

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