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Preservation

Conserving place so you can explore the cultural story of the Carolina Piedmont.

Historic Brattonsville’s architectural preservation team works to conserve and interpret the buildings of this former plantation community. Over 65 years ago, a group of preservation-minded citizens organized to save the dilapidated buildings at Brattonsville. Thankful for their work and the efforts of their successors, today, we strive to authentically preserve the surviving Brattonsville houses and outbuildings in order to tell the stories of the Black and white people who lived, worked, and died in this rural place.

Aside from conserving the fourteen original buildings and ruins, our work includes the care of numerous aged log structures moved to Historic Brattonsville in the 1980s, the design-build of new replica buildings, the curation of the architectural fragment collection, and the ongoing research to better understand the architecture and landscapes of the Carolina Piedmont. Our work is informed by in-depth architectural investigation, also known as building archaeology, and materials analysis.  At our in-house architectural conservation lab, we analyze building materials, like paints and mortars, to better understand the materials used to construct and finish the buildings at Historic Brattonsville. These findings inform our ongoing preservation efforts.

Preservation team painting wall at Historic Brattonsville

Preservation Timeline

Building Archaeology

The Brattons' Metal Roofs

Preservation Timeline

Like so many historic house museums in the United States, Historic Brattonsville has its origins in the lead-up to the U.S. Bicentennial in the mid-1970s. Those early efforts were to save the original Brattonsville houses and outbuildings in order to tell the early story of the United States. The houses and buildings received much overdue repair with an eye towards restoring them as house museums for the people of York County. Since that time, we’ve uncovered a deeper and more nuanced story of the Brattonsville community, the way we preserve buildings has vastly improved, and our audience has gone international. This is how we got to where we are today:

Building Archaeology

Recovering the Story of a Building from the Building Itself

In the care of old buildings, historic preservationists are always looking to better understand who, why, and how a building was built, used, and modified over time.  Our training tells us, first, to dig deep into the archival record to find photographs, written accounts, oral histories, and other documentation to explain the structures we study.  However, in so many instances, the evidence we are looking for is either missing, incomplete, or absent from the archive.  Accordingly, we turn to the only other primary document with clues about the building’s past: the building itself or, if no longer standing, its remains. This method of analyzing a building is known as building archaeology.

The renowned architectural historian Edward A. Chappell characterized this type of fieldwork as involving,

“three overlapping efforts: recognizing changes, sorting out dates, and discovering variability that reveals human choice and ideology. All three focus on historic use and meaning. The objective is to read the physical evidence as a means of understanding past intentions and patterns of behavior. This approach… involves uncovering and recording layers of evidence.  …the method builds interpretation on foundations of scrupulously analyzed data.”

Edward A. Chappell, “Fieldwork” in The Chesapeake House: Architectural Investigation by Colonial Williamsburg, edited by Cary Carson and Carl R. Lounsbury (Chapel Hill: University of North Carolina Press, 2013), 32.

Similarly, Historic Brattonsville’s architectural preservation team uses this process of looking at a building’s fabric to understand the evolution of the structure from raw materials to finished spaces. The analysis of tool marks, nails, joinery, molding profiles, and even the microscopic analysis of paint layers contribute to understanding a building’s history.  In many instances, this process involves the selective removal of architectural elements for closer study and to reveal the information that lies beneath. This data collected and recorded through measured drawings, photography, and written narrative informs our preservation work.

The Brattonsville Store

In preparation for restoring the Brick House, numerous questions about the store remained unanswered through traditional archival research.  Archival research confirmed that the Brattons had operated a store out of the Brick House, but nothing in those documents told us or depicted for us what the store looked like inside the building. Without these documents, we turned to the building for answers.

In preparation for restoring the Brick House, numerous questions about the store remained unanswered through traditional archival research.  Archival research confirmed that the Brattons had operated a store out of the Brick House, but nothing in those documents told us or depicted for us what the store looked like inside the building. Without these documents, we turned to the building for answers. 

East Elevation of the Brick House, 2016. The infilled doorways are highlighted in light-blue. The movement of the original store door to the center of the house is indicated by the light-blue arrow.

One of the most noticeable indicators of change to the Brick House was the infilling of two doorways in the east elevation. Based on prior research, we had an understanding that the house was originally built to serve a dual purpose as a store, open to the public, and a residence, private for family use.  So, the presence of two doors along the formal front of the house made sense. Measuring the rough door openings suggests that the original front door of the store was shifted to the center of the east elevation.

One of the most noticeable indicators of change to the Brick House was the infilling of two doorways in the east elevation. Based on prior research, we had an understanding that the house was originally built to serve a dual purpose as a store, open to the public, and a residence, private for family use.  So, the presence of two doors along the formal front of the house made sense. Measuring the rough door openings suggests that the original front door of the store was shifted to the center of the east elevation.

East Elevation of the Brick House, 2016. The infilled doorways are highlighted in light-blue. The movement of the original store door to the center of the house is indicated by the light-blue arrow.

East Wall, Room 101 & 101A, 2017. The infilled doorway is highlighted in light-blue. Highlighted in light-green is the wall added around the time the store door was moved to the center of the house in order to create a central hall.  The red circle highlights the location of the notch cut into the window sill.

Inside the building, we saw additional evidence of change. On the east wall, cracks in the finished plaster corresponded to the infilled doorway, along with irregularities in the baseboard at the former opening. The shifting of the door also coincided with the installation of a wall that split the former store space into two rooms. Although built with some reused original material, the wall did not resemble the original detailing of the spaces and was deduced to be part of the later evolution of the house. One other curious bit of evidence on the east wall was a notch cut into the window sill.

The north wall also showed signs of change.  The most notable is the mantle. Oral history from a former owner said the stone mantle was reused from a house in Columbia, SC, and had been installed at the Brick House in the 1980s. Irregularities seen in the baseboard support the claim. Along with the baseboard, faint lines on the plaster suggest the original was wider and taller than the stone mantle. From the mantle, a vertical crack in the plaster led to a circular patch. Measuring six inches in diameter, the patch covers a masonry infill of a hole for a six-inch stove pipe. On the ceiling, in line with the pipe hole, a fastener peaks out from the finished plaster surface. Context clues indicate that fastener was for hanging the stove pipe. By hanging the stove pipe, the wood-burning stove could be put further into the room as a centralized heat source.

North Wall, Room 101, 2017. Evidence of the original mantle is highlighted in brown. The yellow circle highlights the six-inch stove pipe hole with red circle calling attention to the fastener in the ceiling. The green line calls out a faint horizontal line in the plaster.

On the left and right are details of the original store cabinetry reused inside the N.B. Bratton Store, 2003.  Purple ovals call out the overpaint on the rails and stiles of the panels below the counters. At center, a detail of the notch cut out of the window sill in Room 101 of the Brick House, 2006.

Like those outlining the old mantle, faint lines are seen on the plaster extending around three of the four walls, measuring roughly thirty-seven inches from the floor. These lines are trace evidence of the counters that had wrapped around the walls of the former store.  Interestingly, this measurement corresponds with measurements recorded in a neighboring Bratton building in 2003. The 2003 historic structure report for the N.B. Bratton Store, completed before an electrical fire destroyed the building in 2004, noted that there were two generations of store counters and cabinetry in the building. One set appeared to be purpose-built for the building, with the other being reused from another store. Those counters noted to have come from another building also measured roughly thirty-seven inches in height.

Another bit of corroboration comes from the photography of the 2003 report. Two pictures record overpaint ghosts that don’t match any paint or molding in the N.B. Bratton Store; however, the profile shares an uncanny resemblance to the molding profile of the window sills inside the Brick House. The overpaint suggests that paneling beneath the counter originally fit into the window sills. This explains why there is a notch cut in the window sill on the east wall. The other ghost likely corresponded to a notched window sill removed when the window was expanded for the store door to be moved to the center of the house.

This fieldwork and other research informed the restoration of the Brattonsville Store to its period of significance during the Reconstruction Era.  Come explore Historic Brattonsville and see our on-going preservation work in person.

Brattonsville Store, after restoration, 2026.

The Brattons' Metal Roofs

Embracing the 19th-century Phenomenon

Throughout the eighteenth and nineteenth centuries, wood shakes and shingles covered everything from coops to one-room log houses to smoke houses to George Washington’s Mount Vernon. In the early nineteenth century, however, a new roofing material came into use in the United States: tin-plated iron sheets. Commonly referred to as tinplate, these pieces of sheet iron were hand dipped into molten tin to protect the iron from corrosion. One of the earliest adopters of tinplate was Thomas Jefferson when he had Monticello covered about 1800.  Subsequently, Jefferson covered his retreat, Popular Forest, and many of the pavilions at the University of Virginia with tinplate.  The “tin roof” grew in popularity over the course of the nineteenth century as a lighter, non-combustible, and more durable option than wood.

At Brattonsville, the first house to receive a metal roof was the Brick House, completed circa 1843. Surviving architectural evidence in the garret, or attic, of the Brick House strongly suggests that this house originally had a tinplate roof.  By studying a series of nail holes in an original section of wood roof sheathing, enclosed by a later addition, we identified a nail pattern similar to those observed on other tinplate roofs. The scars were corroborated with another clue from the house: surviving plates nailed onto an old roof hatch. The original plates matched the dimensions of those that had been removed from the sheathing.  And, they also retained trace evidence of the red paint that originally coated the tinplate roof.

The nail pattern revealed by marking individual nail holes in the wood sheathing found in the garret clarified the offset configuration of the original tinplate roof on the Brick House, 2012.

Detail of the new terne-coated stainless steel plate roof covering the Brick House, 2013.

In 2013, we worked with metal fabricators and preservation contractors to restore the appearance of the original roof. The fabricators produced new plates modeled on the original tin-coated iron plates, but used terne-coated stainless steel for improved durability. Preservation contractors installed those new plates just as the original builders did over 180 years ago.  They fit the vertical edge into the fold of the neighboring plate, bent it over, and fastened it to the wood sheathing. Today, the flat-seam metal roof on the Brick House looks as it did throughout the nineteenth century.

Detail of the new terne-coated stainless steel plate roof covering the Brick House, 2013.

In 2013, we worked with metal fabricators and preservation contractors to restore the appearance of the original roof. The fabricators produced new plates modeled on the original tin-coated iron plates, but used terne-coated stainless steel for improved durability. Preservation contractors installed those new plates just as the original builders did over 180 years ago.  They fit the vertical edge into the fold of the neighboring plate, bent it over, and fastened it to the wood sheathing. Today, the flat-seam metal roof on the Brick House looks as it did throughout the nineteenth century.

A decade after the first metal roof was installed at Brattonsville, John S. Bratton, Jr. hired the tinsmiths of Moore & Byerly out of Charlotte, NC to install a metal roof on his newly constructed plantation house, Forest Hall.  Unlike the roof on the Brick House composed of offset tinplates with flat seams, the roof on Forest Hall was done using the new standing seam method. The tinplates were, first, joined together with flat seams to create long strips. The long strips were then crimped to neighboring strips by a raised vertical, or “standing,” seam. By October 1853, Moore & Byerly had provided all the necessary tin-coated iron plates, gutters, conductors, eave pipes, and labor to complete Bratton’s roof.

Moore & Byerly Advertisement in the September 4, 1855 edition of The Western Democrat (Charlotte, NC). Courtesy of the Library of Congress.

A decade after the first metal roof was installed at Brattonsville, John S. Bratton, Jr. hired the tinsmiths of Moore & Byerly out of Charlotte, NC to install a metal roof on his newly constructed plantation house, Forest Hall.  Unlike the roof on the Brick House composed of offset tinplates with flat seams, the roof on Forest Hall was done using the new standing seam method. The tinplates were, first, joined together with flat seams to create long strips. The long strips were then crimped to neighboring strips by a raised vertical, or “standing,” seam. By October 1853, Moore & Byerly had provided all the necessary tin-coated iron plates, gutters, conductors, eave pipes, and labor to complete Bratton’s roof.

Moore & Byerly Advertisement in the September 4, 1855 edition of The Western Democrat (Charlotte, NC). Courtesy of the Library of Congress.

Left: Detail of the original section of the standing seam tinplate roof on Forest Hall’s tower. Right: Profile of an “iron roof” published by William Ranlett in 1851. The second volume of Ranlett’s pattern book entitled The Architect influenced many aspects of Forest Hall including the tower roof. Figure 1 of Plate 23 shows the (a) iron plates, (b) wood sheathing, (c) rafters, and (d) built-in gutter.  The only notable difference between Forest Hall’s tower roof and Ranlett’s design is the shape of the gutter.  Rather than a half-round gutter, Forest Hall’s builders installed a box gutter.

During the 2009 rehabilitation of Forest Hall for contemporary meeting and exhibit space, the deteriorated standing seam roof was replaced with a new standing seam roof that maintained the overall form of the former roof. Rather than strips of joined plates, our roofers used continuous one-piece lengths of aluminum-zinc alloy coated steel panels to resemble the original vertical pattern of the standing seam roof. Remarkably, one section of the original tinplate roof is intact.  The roof over the tower was deemed salvageable and was resealed as part of the rehabilitation.

Amid the construction of Forest Hall, John S. Bratton, Jr.’s mother, Harriet Bratton, had a portico added to the Homestead House. To tie the new portico into the house and make it watertight, Mrs. Bratton’s contractors needed to roof the portico.  Documentary evidence suggests that a new standing seam tinplate roof was installed after the portico was complete.  The most telling document is a circa 1900 photograph that depicts the Homestead House with a standing seam tinplate roof and built-in gutters.

Detail of Homestead House’s south wing, circa 1900. The shadows from the afternoon sun accentuate the standing seam between the strips of tin plates. Dashed lines overlaid on the photograph highlight some of the seams. The photograph also shows built-in gutters along the eave.

Homestead House, 2024. The new terne-coated stainless steel roof shares an uncanny resemblance to the 1853 tinplate roof.

Using documentation in the Homestead House Historic Structure Report, as well as the circa 1900 photograph, our preservation architect designed a reproduction roof for installation as part of our recent restoration project.  The new plates are terne-coated stainless steel for improved durability. Today, the Homestead House’s standing-seam metal roof with built-in gutters looks as it did throughout the second half of the nineteenth century.

Homestead House, 2024. The new terne-coated stainless steel roof shares an uncanny resemblance to the 1853 tinplate roof.

Using documentation in the Homestead House Historic Structure Report, as well as the circa 1900 photograph, our preservation architect designed a reproduction roof for installation as part of our recent restoration project.  The new plates are terne-coated stainless steel for improved durability. Today, the Homestead House’s standing-seam metal roof with built-in gutters looks as it did throughout the second half of the nineteenth century.