Feeding device of pyrophyllite accessory high-temperature moisture-proof drying box
By designing a feeding device for a high-temperature, moisture-proof drying oven with pyrophyllite accessories, the material is automatically fed into the drying oven using a mobile trolley and guide rail system. This solves the problems of operator burns and low production efficiency, and achieves safe and efficient feeding operations.
Patent Information
- Application Number
- CN202422476790.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-14
- Publication Date
- 2025-10-21
- Estimated Expiration
- 2034-10-14
AI Technical Summary
During the process of artificial diamond synthesis, the high-temperature moisture-proof drying operation of pyrophyllite accessories poses a risk of burns to operators and affects production efficiency.
A feeding device for a high-temperature, moisture-proof drying oven for pyrophyllite accessories is designed. The device utilizes a mobile trolley and a guide rail system, and an electric push rod drives the feeding bracket to slide on the guide rail, automatically feeding the pyrophyllite accessories into the drying oven, thus avoiding manual operation.
It enables unmanned operation in high-temperature environments, improves the convenience and safety of feeding, reduces the risk of burns to operators, and increases production efficiency.
Smart Images

Figure CN223460782U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a feeding device field especially relates to a pyrophyllite accessory high temperature moistureproof drying box feeding device. BACKGROUND
[0002] Pyrophyllite is a silicate mineral, has good heat resistance and insulation, is a sealed pressure transmission medium material. In diamond synthesis technology, pyrophyllite is often used as a medium of high pressure cavity, helps to solve the problems of pressure transmission, solid high pressure sealing, sample support and heat insulation.
[0003] In the process of artificial synthesis of diamond, the hollow bricks and accessories such as plugs made of pyrophyllite
[0004] Need to carry out the baking process in advance, to realize the impurity removal and shaping, need to be placed in the dry nature to keep in high temperature moistureproof state before participating in synthesis, currently usually through the trolley to send pyrophyllite hollow brick, plug and other components to the door of drying box, then put it into the drying box one by one with hand, but the highest temperature of drying box can reach 260 DEG C, there is the risk of operator being burned, it is inconvenient for production operation, affects production efficiency. UTILITY MODEL CONTENTS
[0005] In order to solve the above problems, the utility model provides a pyrophyllite accessory high temperature moistureproof drying box feeding device.
[0006] The technical scheme of the utility model is: a pyrophyllite accessory high temperature moistureproof drying box feeding device is arranged on the platform plate of the moving trolley, the feeding device includes two guide rails arranged side by side and a feeding support arranged between the two guide rails, the feeding support slides transversely between the two guide rails, the guide rails are arranged at the end of the platform plate along the width direction, a certain spacing is provided between the two guide rails to accommodate the feeding support, the feeding support includes two angle iron plates arranged side by side, the outer side surfaces of the two angle iron plates are respectively slidably attached to the inner side surfaces of the two guide rails, the end of the angle iron plate is connected with a moving roller through an axle, the moving rollers on both sides are symmetrically arranged and have a certain spacing, the moving roller is supported on the surface of the platform plate, two supporting rollers are arranged side by side on the side surface of the platform plate, the supporting roller and the moving roller have the same size, the two supporting rollers are located between the two guide rails, and the bottom surfaces of the two angle iron plates are respectively pressed on the surfaces of the two supporting rollers.
[0007] Preferably, the supporting roller protrudes upward from the surface of the platform plate, the angle iron plate is pressed on the supporting roller and is in a mutually parallel state with the platform plate, the supporting roller is installed on a door-shaped roller support, and the roller support is welded and fixed with the platform plate.
[0008] Preferably, a handle is arranged between the ends of the two angle iron plates, an antiskid rubber sleeve is sleeved on the handle, the handle as a whole has an I-shaped structure, and the lower horizontal rod of the handle is welded and fixed between the two angle iron plates.
[0009] Preferably, the lower crossbar and the upper crossbar of the handle are fixedly connected as a whole through an arc-shaped rod, the arc-shaped rod is bent towards the direction of the moving roller, and the arc-shaped rod is welded and fixed as a whole with the lower crossbar and the upper crossbar.
[0010] Preferably, the moving trolley is a lifting type moving trolley driven to lift by an electric push rod and a connecting rod.
[0011] Preferably, the supporting roller is close to the outer edge portion of the angle iron plate, and the supporting roller is rotatably connected to the inner side of the angle iron plate through a bolt wheel shaft.
[0012] Preferably, the length dimension of the guide rail is greater than the length dimension of the angle iron plate, and the contact surface of the guide rail and the angle iron plate is a sliding surface.
[0013] The beneficial technical effects of the utility model are as follows:
[0014] The moving trolley of the device can be automatically adjusted to a proper feeding height under the driving of the electric push rod, the feeding support can be transversely moved under the support and guide of the roller and the guide rail, the halloysite accessories placed in the tray at the end portion of the feeding support are sent into the drying box, the risk of the operator being burned due to high temperature of the drying box is avoided, and the convenience of the feeding operation is improved. BRIEF DESCRIPTION OF DRAWINGS
[0015] Figure 1 is a perspective structural schematic view of the utility model (the handrail of the moving trolley is hidden in the figure);
[0016] Figure 2 is a side view structural schematic view of Figure 1 ;
[0017] Figure 3 is a partial enlarged view of Figure 2 ;
[0018] Figure 4 is a perspective structural schematic view of the feeding support of the utility model;
[0019] Figure 5 is a perspective structural schematic view of the utility model after removing the feeding support;
[0020] Figure 6 is a schematic view of the feeding support of the utility model moving feeding.
[0021] In the figure, 11. moving trolley, 111. platform plate, 112. supporting roller, 12. guide rail, 131. angle iron plate, 132. moving roller, 133. handle, 134. lower crossbar, 135. upper crossbar, 136. arc-shaped rod, 14. tray. DETAILED DESCRIPTION
[0022] Embodiment one, see attached Figure 1 、 6 A feed device for a high-temperature moisture-proof drying oven of a pyrophyllite accessory is arranged on the platform plate 111 of the moving trolley 11. The feed device comprises two guide rails 12 arranged side by side and a feed support arranged between the two guide rails. The guide rails 12 are arranged at the end of the platform plate 111 in the width direction. The feed support moves laterally along the surface of the platform plate under the guidance of the two guide rails. The feed support comprises two angle iron plates 131 arranged side by side. The outer sides of the two angle iron plates are respectively in sliding fit with the inner sides of the two guide rails 12. The length dimension of the guide rails 12 is greater than that of the angle iron plates 131, so as to ensure that the guide rails have sufficient limiting and guiding length for the feed support.
[0023] A handle 133 is arranged between the ends of the two angle iron plates 131. The handle 133 is in the shape of an I-beam as a whole. A lower cross bar 134 of the handle 133 is welded and fixed between the two angle iron plates 131. The two angle iron plates are fixedly connected into one body through the lower cross bar, so as to form a stable feed support structure.
[0024] The lower cross bar 134 and an upper cross bar 135 of the handle 133 are fixedly connected into one body through an arc-shaped rod 136. The arc-shaped rod 136 is bent towards the direction of the moving roller 132. This design makes the upper cross bar 135 of the handle 133 form an outwardly extending structure, which is beneficial to improve the feeding stroke of the operator holding the upper cross bar to push the feed support into the drying oven, so as to ensure the accuracy of the feeding position. The upper cross bar 135 is a holding rod.
[0025] The moving trolley 11 is a lifting type moving trolley 11 driven by an electric push rod and a connecting rod. The lifting type moving trolley 11 is a common lifting trolley structure in the prior art, which will not be described in detail.
[0026] When the feed device of this embodiment is used, the pyrophyllite hollow bricks or end caps and other accessories are placed into the stainless steel trays 14. The trays 14 are uniformly stacked on the platform plate 111 of the moving trolley 11. Then the moving trolley 11 is pushed to the door of the drying oven. The electric push rod is started to drive the moving trolley 11 to automatically lift to a suitable feeding height. The tray 14 on the platform plate 111 is placed between the outer ends of the two angle iron plates 131 of the feed support. Then the handle 133 is held and pushed outwardly to move the feed support laterally outwardly under the support and guidance of the guide rails 12. The tray 14 is sent into the drying oven. Then the feed support is pulled back to sequentially place the trays 14 into the drying oven. This feeding method can effectively avoid the risk of burns of the operator caused by high temperature of the drying oven, and improve the convenience of feeding operation.
[0027] Embodiment two, see attached Figures 2-5The embodiment is basically same with the embodiment one, except that the end of the angle iron plate 131 is connected with a moving roller 132 through an axle, the moving roller 132 is supported on the surface of the platform plate 111, two supporting rollers 112 are arranged side by side on the side of the platform plate, the two supporting rollers are located between the two guide rails 12, the bottom surface of the two angle iron plates 131 is respectively pressed on the surface of the two supporting rollers 112, the supporting roller 112 is used as a fixed wheel for rolling and supporting the bottom surface of the angle iron plate 131, the moving roller 132 is used as a walking wheel for walking with the angle iron plate 131 along the surface of the platform plate 111, the moving roller 132 and the supporting roller 112 are used to reduce the friction between the feeding support and the platform plate 111, and the process of driving the feeding support to walk on the platform plate 111 between the two guide rails 12 is more labor-saving and fast.
[0028] The supporting roller 112 extends upwardly beyond the surface of the platform plate 111, the angle iron plate 131 is pressed on the supporting roller 112 and is in a parallel state with the platform plate 111, the tray 14 placed between the two angle iron plates 131 can be in a horizontal state, the phenomenon that the tray 14 slides relative to the angle iron plate 131 due to the inertia of the movement of the feeding support is avoided, and the stability of feeding is ensured; the supporting roller 112 is close to the outer side edge of the angle iron plate 131, and the supporting roller 112 is rotationally connected to the inner side of the angle iron plate 131.
Claims
1. A feeding device for a high-temperature moisture-proof drying oven for pyrophyllite accessories, which is arranged on a platform plate of a mobile trolley and is characterized by: The feeding device comprises two guide rails arranged side by side and a feeding support arranged between the two guide rails, the guide rails are arranged at the ends of the platform plate along the width direction, the feeding support comprises two angle iron plates arranged side by side, the outer sides of the two angle iron plates are respectively slidably fitted with the inner sides of the two guide rails, the ends of the angle iron plates are connected with moving rollers through wheel shafts, the moving rollers are supported on the surface of the platform plate, the side of the platform plate is provided with two support rollers arranged side by side, the two support rollers are located between the two guide rails, and the bottom surfaces of the two angle iron plates are respectively pressed on the surfaces of the two support rollers.
2. A feed device for a high temperature moisture resistant drying cabinet for processing of a small quantity of a leafy material, such as a leaf of a plant, according to claim 1, characterized in that: The support rollers protrude upward from the surface of the platform plate, and the angle iron plates are pressed on the support rollers and are in a mutually parallel state with the platform plate.
3. A pyrophyllite accessory high-temperature moisture-proof drying box feeding device according to claim 1, characterized in that: A handle is arranged between the ends of the two angle iron plates, the handle is in the shape of an I as a whole, and the lower horizontal rod of the handle is welded and fixed between the two angle iron plates.
4. A feed device for a high temperature moisture resistant drying cabinet for talc or other minerals according to claim 3, characterized in that: The lower horizontal rod and the upper horizontal rod of the handle are fixedly connected into one body through an arc-shaped rod, and the arc-shaped rod is bent towards the direction of the moving rollers.
5. A feed device for a high temperature moisture resistant drying cabinet for talc or other minerals according to claim 1, characterized in that: The moving trolley is a lifting type moving trolley driven by an electric push rod and a connecting rod.
6. A feed device for a high temperature moisture resistant drying cabinet for talc or other minerals according to claim 1, characterized in that: The support rollers are close to the outer side edges of the angle iron plates and are rotatably connected to the inner sides of the angle iron plates.
7. A feed device for a high temperature moisture resistant drying cabinet for talc or other minerals according to claim 1, characterized in that: The length of the guide rail is greater than the length of the angle iron plate.