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The invention relates to the technical field of sintering, and discloses zirconia rapid sintering equipment which comprises a machine body, a heating cylinder, three silicon carbide rods, a loading table and a material containing disc, a rotary disc is rotationally connected to the middle position of a heat insulation plate of the heating cylinder, the silicon carbide rods are rotationally connected to the inner side of the rotary disc, and the tail ends of the silicon carbide rods are sleeved with transmission gears; a two-way threaded rod rotationally connected with the loading table is coaxially and fixedly connected to the lower portion of the containing disc, and a gear disc in transmission connection with the two-way threaded rod is rotationally connected to the loading table. According to the scheme, the planetary gear structure is arranged at the top end of the silicon carbide rod, the position change of the silicon carbide rod is achieved, meanwhile, the transmission gear is arranged at the bottom end of the silicon carbide rod, the gear disc is arranged on the loading table, and the transmission gear and the gear disc are matched to conduct transmission on the two-way screw at the axis position of the gear disc to achieve reciprocating motion of the containing disc in the vertical direction. And the heating uniformity of zirconium oxide during sintering is improved, and the product quality is improved.
本发明涉及烧结技术领域,且公开了一种氧化锆快速烧结设备,包括机体、加热筒、三个硅碳棒、装载台和盛料盘,所述加热筒的隔热板的中间位置转动连接有转盘,所述硅碳棒转动连接于转盘内侧,所述硅碳棒的末端套设有传动齿轮;所述盛料盘下方共轴固定连接有和装载台转动连接的双向螺纹杆,且装载台上转动连接有和双向螺纹杆传动连接的齿轮盘;本方案,通过在硅碳棒的顶端设置行星齿轮结构,实现硅碳棒位置的变化,同时硅碳棒的底端设置传动齿轮,装载台上设置齿轮盘,两者相互配合,对齿轮盘轴线位置双向螺杆进行传动,实现盛料盘在竖直方向上的往复运动,提升了烧结时氧化锆受热的均匀性,提升产品的质量。
The invention relates to the technical field of sintering, and discloses zirconia rapid sintering equipment which comprises a machine body, a heating cylinder, three silicon carbide rods, a loading table and a material containing disc, a rotary disc is rotationally connected to the middle position of a heat insulation plate of the heating cylinder, the silicon carbide rods are rotationally connected to the inner side of the rotary disc, and the tail ends of the silicon carbide rods are sleeved with transmission gears; a two-way threaded rod rotationally connected with the loading table is coaxially and fixedly connected to the lower portion of the containing disc, and a gear disc in transmission connection with the two-way threaded rod is rotationally connected to the loading table. According to the scheme, the planetary gear structure is arranged at the top end of the silicon carbide rod, the position change of the silicon carbide rod is achieved, meanwhile, the transmission gear is arranged at the bottom end of the silicon carbide rod, the gear disc is arranged on the loading table, and the transmission gear and the gear disc are matched to conduct transmission on the two-way screw at the axis position of the gear disc to achieve reciprocating motion of the containing disc in the vertical direction. And the heating uniformity of zirconium oxide during sintering is improved, and the product quality is improved.
本发明涉及烧结技术领域,且公开了一种氧化锆快速烧结设备,包括机体、加热筒、三个硅碳棒、装载台和盛料盘,所述加热筒的隔热板的中间位置转动连接有转盘,所述硅碳棒转动连接于转盘内侧,所述硅碳棒的末端套设有传动齿轮;所述盛料盘下方共轴固定连接有和装载台转动连接的双向螺纹杆,且装载台上转动连接有和双向螺纹杆传动连接的齿轮盘;本方案,通过在硅碳棒的顶端设置行星齿轮结构,实现硅碳棒位置的变化,同时硅碳棒的底端设置传动齿轮,装载台上设置齿轮盘,两者相互配合,对齿轮盘轴线位置双向螺杆进行传动,实现盛料盘在竖直方向上的往复运动,提升了烧结时氧化锆受热的均匀性,提升产品的质量。
Rapid sintering equipment for zirconium oxide
一种氧化锆快速烧结设备
TANG JIE (author)
2023-09-08
Patent
Electronic Resource
Chinese
IPC:
F27B
Industrieöfen, Schachtöfen, Brennöfen, Retorten allgemein
,
FURNACES, KILNS, OVENS, OR RETORTS IN GENERAL
/
C04B
Kalk
,
LIME
/
F27D
Einzelheiten oder Zubehör für Industrieöfen, Schachtöfen, Brennöfen oder Retorten, soweit sie nicht auf eine Ofenart eingeschränkt sind
,
DETAILS OR ACCESSORIES OF FURNACES, KILNS, OVENS, OR RETORTS, IN SO FAR AS THEY ARE OF KINDS OCCURRING IN MORE THAN ONE KIND OF FURNACE
Preparation method of high-sintering-activity zirconium oxide powder
European Patent Office | 2021
|European Patent Office | 2019
|European Patent Office | 2021
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