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    • 2. 发明授权
    • Rotary retort furnace
    • 旋转蒸煮炉
    • US4090622A
    • 1978-05-23
    • US735728
    • 1976-10-26
    • Jonathan SmithRobert C. LarkoEugene E. Booth
    • Jonathan SmithRobert C. LarkoEugene E. Booth
    • C21D1/00C21D1/18C21D9/00F27B7/08F27B7/14F23K3/00
    • F27B7/14C21D9/0031F27B7/08Y10T29/49382
    • A rotary retort furnace wherein the retort is supported for rotation at only one end outside of the heated furnace shell such that the retort is cantilevered into the shell. The rotary retort has a charging door mechanism that cooperates with a skip hoist loading mechanism to provide charges of the parts to be heat treated that are of a uniform size and are introduced into the retort so as to minimize the loss of any controlled atmosphere. The skip hoist loading mechanism has a vibrating feed hopper that dispenses a weight controlled charge into a skip hoist bucket which, after receiving the predetermined charge of parts, is held in a ready position until such time as a cam mechanism controlling the opening and closing of a door on the charge end of the retort causes the door to open and the skip bucket to be moved to a position wherein the parts are dumped into the retort for heat treating. The internal auger flight for the retort is made by forming a number of toroids from a resilient material, radially cutting each of the toroids and deforming them to form individual flights, and connecting one of the split edges resulting from the cutting to the opposite edge of an adjacent flight such that an axially compressed helical subassembly is obtained. The helical subassembly is then screwed onto a shaft having a number of guide pins axially on the shaft at predetermined spacings thereby both axially extending and radially compressing the helical subassembly. The shaft and the helical subassembly are inserted into a retort shell and one free end of the subassembly is welded to one end of the retort. The shaft is then unscrewed from the subassembly while at the same time being forced axially into the retort such that the edges of the helical subassembly fit tightly against the inside of the retort. After the shaft has been removed, the remaining end of the helical subassembly is welded to the end of the retort.
    • 一种旋转式蒸煮炉,其中蒸煮器被支撑为仅在加热的炉壳外部的一端旋转,使得蒸馏器悬臂进入壳体。 旋转蒸馏器具有充电门机构,其与跳过式升降机装载机构配合,以提供均匀尺寸的待热处理部件的电荷,并将其引入蒸馏器中,以便使任何受控气氛的损失最小化。 跳过式起重机装载机构具有振动进料斗,其将重量控制的电荷分配到跳动式起重机铲斗中,该起重机铲斗在接收到预定的部件之后保持就绪位置,直到控制开启和关闭的凸轮机构 在蒸煮器的充电端上的门导致门打开,并且将跳过的铲斗移动到其中部件被倾倒到蒸馏器中用于热处理的位置。 通过从弹性材料形成多个环形线圈,径向切割每个环形线圈并使其变形以形成单独的翼片,并将从切割产生的分割边缘中的一个连接到相对的边缘 相邻的飞行,使得获得轴向压缩的螺旋组件。 然后将螺旋组件旋拧到具有多个导销的轴上,该轴在轴上以预定间隔轴向地轴向延伸并径向压缩螺旋组件。 轴和螺旋组件被插入蒸煮壳体中,并且子组件的一个自由端焊接在蒸馏器的一端。 然后将轴从组件上拧下,同时被迫轴向进入蒸馏器,使得螺旋组件的边缘紧紧地紧贴在蒸馏器的内部。 在轴被移除之后,螺旋组件的剩余端部被焊接到蒸馏器的末端。
    • 3. 发明授权
    • Rotary retort furnace
    • 旋转蒸煮炉
    • US4025297A
    • 1977-05-24
    • US615281
    • 1975-09-22
    • Jonathan SmithRobert C. LarkoEugene E. Booth
    • Jonathan SmithRobert C. LarkoEugene E. Booth
    • C21D1/00C21D1/18C21D9/00F27B7/08F27B7/14
    • F27B7/14C21D9/0031F27B7/08Y10T29/49382
    • A rotary retort furnace wherein the retort is supported for rotation at only one end outside of the heated furnace shell such that the retort is cantilevered into the shell. The rotary retort has a charging door mechanism that cooperates with a skip hoist loading mechanism to provide charges of the parts to be heat treated that are of a uniform size and are introduced into the retort so as to minimize the loss of any controlled atmosphere. The skip hoist loading mechanism has a vibrating feed hopper that dispenses a weight controlled charge into a skip hoist bucket which, after receiving the predetermined charge of parts, is held in a ready position until such time as a cam mechanism controlling the opening and closing of a door on the charge end of the retort causes the door to open and the skip bucket to be moved to a position wherein the parts are dumped into the retort for heat treating. The internal auger flight for the retort is made by forming a number of toroids from a resilient material, radially cutting each of the toroids and deforming them to form individual flights, and connecting one of the split edges resulting from the cutting to the opposite edge of an adjacent flight such that an axially compressed helical subassembly is obtained. The helical subassembly is then screwed onto a shaft having a number of guide pins axially on the shaft at predetermined spacings thereby both axially extending and radially compressing the helical subassembly. The shaft and the helical subassembly are inserted into a retort shell and one free end of the subassembly is welded to one end of the retort. The shaft is then unscrewed from the subassembly while at the same time being forced axially into the retort such that the edges of the helical subassembly fit tightly against the inside of the retort. After the shaft has been removed, the remaining end of the helical subassembly is welded to the end of the retort.
    • 一种旋转式蒸煮炉,其中蒸煮器被支撑为仅在加热的炉壳外部的一端旋转,使得蒸馏器悬臂进入壳体。 旋转蒸馏器具有充电门机构,其与跳过式升降机装载机构配合,以提供均匀尺寸的待热处理部件的电荷,并将其引入蒸馏器中,以便使任何受控气氛的损失最小化。 跳过式起重机装载机构具有振动进料斗,其将重量控制的电荷分配到跳动式起重机铲斗中,该起重机铲斗在接收到预定的部件之后保持就绪位置,直到控制开启和关闭的凸轮机构 在蒸煮器的充电端上的门导致门打开,并且将跳过的铲斗移动到其中部件被倾倒到蒸馏器中用于热处理的位置。 通过从弹性材料形成多个环形线圈,径向切割每个环形线圈并使其变形以形成单独的翼片,并将从切割产生的分割边缘中的一个连接到相对的边缘 相邻的飞行,使得获得轴向压缩的螺旋组件。 然后将螺旋组件旋拧到具有多个导销的轴上,该轴在轴上以预定间隔轴向地轴向延伸并径向压缩螺旋组件。 轴和螺旋组件被插入蒸煮壳体中,并且子组件的一个自由端焊接在蒸馏器的一端。 然后将轴从组件上拧下,同时被迫轴向进入蒸馏器,使得螺旋组件的边缘紧紧地紧贴在蒸馏器的内部。 在轴被移除之后,螺旋组件的剩余端部被焊接到蒸馏器的末端。
    • 10. 发明授权
    • Rotary retort heat treating furnace seals
    • 旋转式蒸煮热处理炉密封
    • US5567380A
    • 1996-10-22
    • US316421
    • 1994-09-30
    • Donald P. Hoover
    • Donald P. Hoover
    • C21D9/00F27B7/24C21B11/06
    • C21D9/0031F27B7/24Y10S277/903Y10S277/93
    • The present invention provides a seal ring assembly for sealing a discharge end of a rotary retort heat treating furnace. The furnace contemplated by this invention has an outer furnace shell, a retort chamber, a rear plug, a cone casting, and a support ring. The cone casting is positioned at the discharge end of the retort chamber and the cone casting and the support ring are fixedly attached to rotate together with the retort chamber. The seal rings of the present invention are aluminum-bronze annular members fixedly attached to the discharge end of the rotary retort furnace. A gasket provides a simple static biasing arrangement to ensure contact between the face of the seal and the support ring. The seal is formed at a wear surface between the face of the aluminum-bronze seal and the support ring. The wear surface is lubricated by a plurality of graphite inserts.
    • 本发明提供一种用于密封旋转式蒸煮热处理炉的排出端的密封环组件。 本发明考虑的炉子具有外炉壳,蒸煮室,后塞,锥形铸造和支撑环。 圆锥铸件定位在蒸馏室的排出端,并且锥形铸件和支撑环固定地附接以与蒸馏室一起旋转。 本发明的密封环是固定地连接到旋转式蒸煮炉的排出端的铝 - 青铜环形构件。 垫圈提供简单的静态偏置装置,以确保密封面与支撑环之间的接触。 密封件形成在铝 - 青铜密封件的表面和支撑环之间的磨损表面上。 磨损表面由多个石墨插入件润滑。