CN212962836U - Auxiliary smelting furnace ladles out liquid gold device - Google Patents

Auxiliary smelting furnace ladles out liquid gold device Download PDF

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Publication number
CN212962836U
CN212962836U CN202021478990.7U CN202021478990U CN212962836U CN 212962836 U CN212962836 U CN 212962836U CN 202021478990 U CN202021478990 U CN 202021478990U CN 212962836 U CN212962836 U CN 212962836U
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CN
China
Prior art keywords
spoon
liquid gold
rod
cup
hinged
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Expired - Fee Related
Application number
CN202021478990.7U
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Chinese (zh)
Inventor
秦伟
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Baizhannuo Machinery & Hardware Industry Kunshan Co ltd
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Baizhannuo Machinery & Hardware Industry Kunshan Co ltd
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Priority to CN202021478990.7U priority Critical patent/CN212962836U/en
Application granted granted Critical
Publication of CN212962836U publication Critical patent/CN212962836U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The utility model discloses a device for scooping liquid gold by an auxiliary smelting furnace, which comprises a supporting rod, a control rod, a pressing plate, a spoon cup and a bearing component, wherein the pressing plate is hinged between the supporting rod and the control rod, the lower end of the supporting rod is hinged with the spoon handle of the spoon cup, the lower end of the control rod is hinged with the middle part of the spoon handle, the lower part of the pressing plate is provided with a gradually-opened curve-shaped sliding rail which is in tangent fit with a roller arranged on the bearing component, the spoon cup is integrally and fixedly connected with the spoon handle, the bearing component comprises a supporting rod, a supporting bowl and an adsorbate hinged with the supporting rod, the device utilizes a transmission structure of a double-crank mechanism to control the spoon cup to rotationally scoop liquid gold, the pressing plate is controlled to rotate, the sliding rail arranged at the bottom of the pressing plate is matched with the roller to drive the supporting rod to rotate, the supporting bowl fixedly connected with the supporting rod is used for carrying the liquid gold with the lower end of the spoon cup which is low, when the liquid gold is scooped into a, the low liquid gold adsorbate is solidified and absorbed, and the low risk can not occur.

Description

Auxiliary smelting furnace ladles out liquid gold device
Technical Field
The utility model relates to a smelting equipment technical field, concretely relates to supplementary smelting furnace ladles out liquid gold device.
Background
Along with the continuous progress of modern heavy industry level, casting processing becomes the hot door of heavily doing all can field and selects, after the melting gold process of traditional smelting furnace is accomplished, the mode of empting the smelting furnace is poured the die cavity with liquid gold and is formed pouring casting process usually to adopt, but the mode of empting liquid gold is comparatively dangerous, and the liquid gold volume of empting is difficult to control, consequently, the design that has just had the pouring spoon appears, utilize the pouring spoon can conveniently quantitatively scoop up liquid gold and pour, however, current pouring spoon is the cup, the bottom is stained with liquid gold when scooping up liquid gold, both the easy low-fall, also easily take place burn personnel's danger, so in order to improve the technical structure of current pouring spoon, when guaranteeing to scoop up liquid gold quantitatively, can also prevent liquid gold low-fall, ensure personal safety.
Disclosure of Invention
The utility model discloses the purpose: in order to solve the problems in the prior art, the auxiliary smelting furnace liquid gold scooping device is designed, a double-crank mechanism transmission structure is utilized to control a spoon cup to scoop liquid gold in a rotating mode, meanwhile, a pressing plate is controlled to rotate, a roller is matched with a gradually-opened curve-shaped sliding rail arranged at the bottom of the pressing plate to drive a supporting rod to rotate, a supporting bowl fixedly connected with the supporting rod is used for bearing liquid gold falling from the lower end of the spoon cup, when liquid gold is scooped into a crucible, the supporting bowl is lifted up in a rotating mode and is not in contact with the liquid gold, the supporting bowl is reset right below the spoon cup after the spoon cup is lifted up after the liquid gold is scooped, the liquid gold falling is solidified and absorbed by adsorbates in the supporting bowl, the low-falling risk cannot occur, and the auxiliary smelting furnace liquid gold.
The technical scheme adopted for solving the problems is as follows:
an auxiliary melting furnace ladling out liquid gold device comprises a supporting rod, a control rod, a pressing plate, a spoon cup and a bearing component,
a pressing plate is hinged between the supporting rod and the control rod, the control rod is controlled by a transmission cylinder or manpower to move up and down, the lower end of the supporting rod is hinged with the spoon handle of the spoon cup, the lower end of the control rod is hinged with the middle part of the spoon handle,
the lower part of the pressure plate is provided with an involute curve type slide rail which is in tangential fit with a roller arranged on the bearing component, the pressure plate presses the bearing component to rotate while rolling and sliding the roller,
the spoon cup is fixedly connected with the spoon handle, the front end of the spoon cup is provided with a drainage nozzle for guiding the liquid gold to flow out,
the bearing subassembly includes with bracing piece articulated die-pin, support bowl and adsorbate, the die-pin is equipped with from top to bottom according to depression bar, swing arm and connecting rod, press the cooperation of depression bar upper end shaft hole to have the gyro wheel, the swing arm upper end links firmly with between the pressure board to it is articulated with the bracing piece, the connecting rod left end links firmly with the swing arm, and the right-hand member links firmly with the support bowl.
Furthermore, a tip is arranged in the center of the bottom of the spoon cup, and after the spoon cup is fully soaked and contacted with the liquid gold in the crucible, the liquid gold on the outer wall of the spoon cup flows downwards to the tip and is received by the reset supporting bowl.
Furthermore, the supporting rod, the control rod, the pressing plate and the spoon handle are integrated to form a transmission structure of a double-crank mechanism, and the transmission structure is used for controlling the spoon cup to rotationally scoop liquid gold and pour the liquid gold.
Furthermore, a tension spring is connected between the hinged position of the lower end of the control rod and the spoon handle and the hinged position of the rotary rod and the support rod and used for supporting the component to reset.
Furthermore, the support bowl is in a concave arc shape, and the adsorbing substances are filled in the support bowl, so that the dropped liquid gold is quickly solidified and adsorbed, and secondary falling is prevented.
The utility model has the advantages that:
this supplementary smelting furnace ladles out liquid gold device utilizes the rotatory liquid gold of ladling out of transmission structure control ladle cup of double crank mechanism, and the control clamp plate is rotatory simultaneously, and the slide rail cooperation of the involute curve type that is equipped with the clamp plate bottom drives the die-pin rotation, and the die-pin support bowl that links firmly is used for accepting the liquid gold that ladle cup lower extreme low falls, when ladling out liquid gold to the crucible in, the die-pin rotates and lifts, and is contactless with liquid gold, lifts behind the liquid gold behind the ladle cup after getting out liquid gold and holds in the palm the bowl and restore to the throne just to ladle cup below, and liquid gold that low falls is absorbed by the adsorbate solidification in the die-pin, can not take place the risk of lowing, and is practical convenient.
Drawings
In order to more clearly illustrate the technical solutions in the embodiments of the present invention, the drawings used in the description of the embodiments will be briefly described below.
FIG. 1 is a schematic structural view of a device for scooping molten gold from an auxiliary melting furnace according to this embodiment;
FIG. 2 is a schematic view of the present embodiment illustrating the support assembly in a rotated and lifted position;
FIG. 3 is a schematic view showing the state of contact between the ladle cup and the molten gold in the crucible;
the device comprises a support rod 1, a control rod 2, a pressure plate 3, a spoon cup 4, a tension spring 5, a bowl 6, a crucible 7, a support frame 8, a pressing plate hinge joint 9, a pressing rod 10, a pressing plate hinge joint with a rotary rod 11, a support rod hinge joint with a spoon handle 12, a rotary rod 13, a support rod 14, a tip 15, an adsorbate 16, a drainage nozzle 17, a roller 17, a pressure plate hinge joint with a control rod 18, a slide rail 19 and a spoon handle 20.
Detailed Description
The technical solution in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention.
Referring to fig. 1-3, the present embodiment provides a device for scooping molten metal from an auxiliary melting furnace, which includes a supporting rod 1, a control rod 2, a pressing plate 3, a scoop 4 and a supporting component.
Specifically speaking, it has clamp plate 3 to articulate between bracing piece 1 and the control lever 2, and bracing piece 1 is used for supporting the displacement and the weight of whole device structure, and control lever 2 reciprocates by transmission cylinder or manpower control, and 1 lower extreme of bracing piece articulates with spoon handle 20 of spoon cup 4, and 2 lower extremes of control lever articulate with spoon handle 20 middle part, bracing piece 1, control lever 2, clamp plate 3 and spoon handle 20 four integrative constitution double crank mechanism's transmission structure for control spoon cup 4 is rotatory ladles out liquid gold and is poured liquid gold.
The lower part of the pressing plate 3 is provided with an involute curve type sliding rail 19 which is in tangent fit with a roller 17 arranged on the bearing component, and the pressing plate 3 presses the bearing component to rotate while rolling and sliding the roller 17.
The spoon cup 4 is fixedly connected with the spoon handle 20 integrally, a drainage nozzle 16 for guiding liquid gold to flow out is arranged at the front end of the spoon cup 4, a tip 14 is arranged at the center of the bottom of the spoon cup 4, and after the spoon cup 4 is fully soaked and contacted with the liquid gold in the crucible 7, the liquid gold on the outer wall of the spoon cup 4 flows downwards to the tip 14 and is received by the reset supporting bowl 6.
The bearing subassembly includes with bracing piece 1 articulated die-pin 13, support bowl 6 and adsorbate 15, die-pin 13 is equipped with from top to bottom according to depression bar 9, swing arm 12 and connecting rod, press the cooperation of depression bar 9 upper end shaft hole to have gyro wheel 17, swing arm 12 upper end links firmly with between the pressure board 3 to articulated with bracing piece 1, the connecting rod left end links firmly with swing arm 12, and the right-hand member links firmly with support bowl 6.
In a further embodiment, a tension spring 5 is connected between the hinged part of the lower end of the control rod 2 and the spoon handle 20 and the hinged part of the rotary rod 12 and the support rod 13 and is used for supporting component resetting.
The further implementation scheme is that the support bowl 6 is in a concave arc shape, and the adsorbate 15 is filled in the support bowl, so that dropped liquid gold is quickly solidified and adsorbed, and secondary falling is prevented.
The embodiments of the present invention have been described in detail with reference to the accompanying drawings, but the present invention is not limited to the above embodiments, and various changes, modifications, substitutions and alterations can be made without departing from the spirit of the present invention within the knowledge of those skilled in the art, and the scope of the present invention is defined by the appended claims and their equivalents.

Claims (5)

1. The utility model provides an auxiliary smelting furnace ladles out liquid gold device, includes bracing piece, control lever, clamp plate, spoon cup and bearing subassembly, its characterized in that:
a pressing plate is hinged between the supporting rod and the control rod, the control rod is controlled by a transmission cylinder or manpower to move up and down, the lower end of the supporting rod is hinged with the spoon handle of the spoon cup, the lower end of the control rod is hinged with the middle part of the spoon handle,
the lower part of the pressure plate is provided with an involute curve type slide rail which is in tangential fit with a roller arranged on the bearing component, the pressure plate presses the bearing component to rotate while rolling and sliding the roller,
the spoon cup is fixedly connected with the spoon handle, the front end of the spoon cup is provided with a drainage nozzle for guiding the liquid gold to flow out,
the bearing subassembly includes with bracing piece articulated die-pin, support bowl and adsorbate, the die-pin is equipped with from top to bottom according to depression bar, swing arm and connecting rod, press the cooperation of depression bar upper end shaft hole to have the gyro wheel, the swing arm upper end links firmly with between the pressure board to it is articulated with the bracing piece, the connecting rod left end links firmly with the swing arm, and the right-hand member links firmly with the support bowl.
2. The ladling device of the auxiliary smelting furnace of claim 1, wherein: the bottom center of the spoon cup is provided with a tip, and after the spoon cup is fully soaked and contacted with the liquid gold in the crucible, the liquid gold on the outer wall of the spoon cup flows downwards to the tip, and the reset supporting bowl is used for supporting the liquid gold.
3. The ladling device of the auxiliary smelting furnace of claim 1, wherein: the support rod, the control rod, the pressing plate and the spoon handle are integrated to form a transmission structure of a double-crank mechanism.
4. The ladling device of the auxiliary smelting furnace of claim 3, wherein: and a tension spring is connected between the hinged part of the lower end of the control rod and the spoon handle and the hinged part of the rotary rod and the support rod.
5. The ladling device of the auxiliary smelting furnace of claim 1, wherein: the support bowl is in a concave arc shape, and the adsorption substance is filled in the support bowl, so that the dropped liquid gold is quickly solidified and adsorbed.
CN202021478990.7U 2020-07-24 2020-07-24 Auxiliary smelting furnace ladles out liquid gold device Expired - Fee Related CN212962836U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021478990.7U CN212962836U (en) 2020-07-24 2020-07-24 Auxiliary smelting furnace ladles out liquid gold device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202021478990.7U CN212962836U (en) 2020-07-24 2020-07-24 Auxiliary smelting furnace ladles out liquid gold device

Publications (1)

Publication Number Publication Date
CN212962836U true CN212962836U (en) 2021-04-13

Family

ID=75395458

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202021478990.7U Expired - Fee Related CN212962836U (en) 2020-07-24 2020-07-24 Auxiliary smelting furnace ladles out liquid gold device

Country Status (1)

Country Link
CN (1) CN212962836U (en)

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Granted publication date: 20210413